WO2021227625A1 - 一种正负压系统及其操作方法和使用该系统的正负压电器 - Google Patents

一种正负压系统及其操作方法和使用该系统的正负压电器 Download PDF

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Publication number
WO2021227625A1
WO2021227625A1 PCT/CN2021/079845 CN2021079845W WO2021227625A1 WO 2021227625 A1 WO2021227625 A1 WO 2021227625A1 CN 2021079845 W CN2021079845 W CN 2021079845W WO 2021227625 A1 WO2021227625 A1 WO 2021227625A1
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Prior art keywords
air
positive
negative pressure
water
pipe
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PCT/CN2021/079845
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English (en)
French (fr)
Inventor
郑伯昂
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郑伯昂
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Application filed by 郑伯昂 filed Critical 郑伯昂
Priority to US17/925,073 priority Critical patent/US20230195146A1/en
Priority to EP21803646.5A priority patent/EP4148530A4/en
Priority to CA3178978A priority patent/CA3178978A1/en
Publication of WO2021227625A1 publication Critical patent/WO2021227625A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D16/00Control of fluid pressure
    • G05D16/20Control of fluid pressure characterised by the use of electric means
    • G05D16/2006Control of fluid pressure characterised by the use of electric means with direct action of electric energy on controlling means
    • G05D16/208Control of fluid pressure characterised by the use of electric means with direct action of electric energy on controlling means using a combination of controlling means as defined in G05D16/2013 and G05D16/2066
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D27/00Simultaneous control of variables covered by two or more of main groups G05D1/00 - G05D25/00
    • G05D27/02Simultaneous control of variables covered by two or more of main groups G05D1/00 - G05D25/00 characterised by the use of electric means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D17/00Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces
    • F25D17/04Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection
    • F25D17/042Air treating means within refrigerated spaces
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N12/00Machines for cleaning, blanching, drying or roasting fruits or vegetables, e.g. coffee, cocoa, nuts
    • A23N12/02Machines for cleaning, blanching, drying or roasting fruits or vegetables, e.g. coffee, cocoa, nuts for washing or blanching
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/0018Controlling processes, i.e. processes to control the operation of the machine characterised by the purpose or target of the control
    • A47L15/0063Controlling processes, i.e. processes to control the operation of the machine characterised by the purpose or target of the control using remote monitoring or controlling of the dishwasher operation, e.g. networking systems
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/4214Water supply, recirculation or discharge arrangements; Devices therefor
    • A47L15/4217Fittings for water supply, e.g. valves or plumbing means to connect to cold or warm water lines, aquastops
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/4214Water supply, recirculation or discharge arrangements; Devices therefor
    • A47L15/4225Arrangements or adaption of recirculation or discharge pumps
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/4236Arrangements to sterilize or disinfect dishes or washing liquids
    • A47L15/424Arrangements to sterilize or disinfect dishes or washing liquids by using ozone
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/4251Details of the casing
    • A47L15/4257Details of the loading door
    • A47L15/4259Arrangements of locking or security/safety devices for doors, e.g. door latches, switch to stop operation when door is open
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/46Devices for the automatic control of the different phases of cleaning ; Controlling devices
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/48Drying arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F25/00Washing machines with receptacles, e.g. perforated, having a rotary movement, e.g. oscillatory movement, the receptacle serving both for washing and for centrifugally separating water from the laundry and having further drying means, e.g. using hot air 
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/04Signal transfer or data transmission arrangements
    • D06F34/05Signal transfer or data transmission arrangements for wireless communication between components, e.g. for remote monitoring or control
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F34/00Details of control systems for washing machines, washer-dryers or laundry dryers
    • D06F34/28Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress
    • D06F34/32Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress characterised by graphical features, e.g. touchscreens
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F35/00Washing machines, apparatus, or methods not otherwise provided for
    • D06F35/001Washing machines, apparatus, or methods not otherwise provided for using ozone
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/083Liquid discharge or recirculation arrangements
    • D06F39/085Arrangements or adaptations of pumps
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/088Liquid supply arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/12Casings; Tubs
    • D06F39/14Doors or covers; Securing means therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D13/00Stationary devices, e.g. cold-rooms
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D17/00Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces
    • F25D17/04Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection
    • F25D17/042Air treating means within refrigerated spaces
    • F25D17/045Air flow control arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D21/00Defrosting; Preventing frosting; Removing condensed or defrost water
    • F25D21/14Collecting or removing condensed and defrost water; Drip trays
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers
    • F25D23/025Secondary closures
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D29/00Arrangement or mounting of control or safety devices
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23BPRESERVING, e.g. BY CANNING, MEAT, FISH, EGGS, FRUIT, VEGETABLES, EDIBLE SEEDS; CHEMICAL RIPENING OF FRUIT OR VEGETABLES; THE PRESERVED, RIPENED, OR CANNED PRODUCTS
    • A23B7/00Preservation or chemical ripening of fruit or vegetables
    • A23B7/14Preserving or ripening with chemicals not covered by groups A23B7/08 or A23B7/10
    • A23B7/144Preserving or ripening with chemicals not covered by groups A23B7/08 or A23B7/10 in the form of gases, e.g. fumigation; Compositions or apparatus therefor
    • A23B7/148Preserving or ripening with chemicals not covered by groups A23B7/08 or A23B7/10 in the form of gases, e.g. fumigation; Compositions or apparatus therefor in a controlled atmosphere, e.g. partial vacuum, comprising only CO2, N2, O2 or H2O
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L2401/00Automatic detection in controlling methods of washing or rinsing machines for crockery or tableware, e.g. information provided by sensors entered into controlling devices
    • A47L2401/17Air pressure
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L2401/00Automatic detection in controlling methods of washing or rinsing machines for crockery or tableware, e.g. information provided by sensors entered into controlling devices
    • A47L2401/18Air temperature
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/20Removing cooking fumes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
    • F25D2317/04Treating air flowing to refrigeration compartments
    • F25D2317/041Treating air flowing to refrigeration compartments by purification
    • F25D2317/0411Treating air flowing to refrigeration compartments by purification by dehumidification
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
    • F25D2317/04Treating air flowing to refrigeration compartments
    • F25D2317/041Treating air flowing to refrigeration compartments by purification
    • F25D2317/0413Treating air flowing to refrigeration compartments by purification by humidification
    • F25D2317/04131Control means therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
    • F25D2317/04Treating air flowing to refrigeration compartments
    • F25D2317/041Treating air flowing to refrigeration compartments by purification
    • F25D2317/0416Treating air flowing to refrigeration compartments by purification using an ozone generator
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
    • F25D2317/04Treating air flowing to refrigeration compartments
    • F25D2317/041Treating air flowing to refrigeration compartments by purification
    • F25D2317/0417Treating air flowing to refrigeration compartments by purification using an UV-lamp
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
    • F25D2317/04Treating air flowing to refrigeration compartments
    • F25D2317/043Treating air flowing to refrigeration compartments by creating a vacuum in a storage compartment
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2700/00Means for sensing or measuring; Sensors therefor

Definitions

  • the embodiment of the present invention belongs to the field of electrical appliances, and in particular relates to a positive and negative pressure system and an operation method thereof, and a positive and negative piezoelectric device using the system.
  • Super oxygen can quickly sterilize, disinfect and degrade pesticide residues and organic dirt, inhibit the activity of enzymes, can preserve fresh fruits, vegetables, and fish to purify the air, and many other advantages have been attracting people to apply it to production and life needs, but exposure to super Oxygen is harmful to human health. There has been no ideal solution when it is applied to electrical appliances. As a result, super oxygen is not actually used in refrigerators, washing machines and other household appliances. Modified atmosphere preservation is a more advanced method of preservation and storage of fruits and vegetables.
  • the oxygen, nitrogen, carbon dioxide concentration ratio in the space, etc. inhibit the respiration of fruits and vegetables, reduce the consumption of organic substances, maintain the original excellent flavor and aroma, delay metabolism, and control the breeding and reproduction of certain pathogens and the occurrence of physiological diseases.
  • the preservation effect is much better than ordinary refrigeration, the preservation period is significantly longer, and the power consumption is lower.
  • airtight space that can withstand a certain pressure is required for controlled atmosphere storage. It is necessary to produce the most suitable ratio and the best concentration of mixed gas and send it to the storage space.
  • the positive and negative pressure system of the embodiment of the present invention and the positive and negative piezoelectric device using the system use the intelligent positive and negative pressure system to regulate and integrate vacuum, high pressure, super oxygen, catalyst, air-conditioning preservation, negative ions, humidification, dehumidification, disinfection, and air purification , Air-to-water and low-temperature storage and other technologies are combined and applied to smart positive and negative piezoelectric devices to give electrical appliances breathing function, make electrical appliances alive, technical updates and upgrades to existing electrical appliances and traditional technologies, and develop a positive Negative piezoelectric device segmentation field.
  • the electrical equipment, transport carriage container, and storage warehouse using the intelligent positive and negative pressure system are collectively referred to as: smart positive and negative piezoelectric device;
  • the smart positive and negative piezoelectric device in the embodiment of the present invention includes: smart positive Negative pressure refrigerator, smart positive and negative pressure washing machine, smart vacuum dishwashing fruit and vegetable washing machine, smart super oxygen water washing range hood, smart positive and negative pressure oven fryer microwave oven, smart positive and negative pressure preservation compartment, smart positive and negative pressure preservation warehouse and smart positive Negative pressure module cabinet.
  • the embodiment of the present invention provides the intelligent positive and negative pressure system and the intelligent positive and negative piezoelectric device using the system.
  • the positive and negative pressure is the positive and negative pressure with atmospheric pressure atm or local instantaneous pressure as the zero standard.
  • positive air pressure is also called: positive pressure or high pressure
  • negative air pressure is also called: negative pressure or vacuum
  • positive and negative pressure are also called: ZhengFuYa or Zheng negative pressure or +–atm or +–at.
  • the intelligent positive and negative pressure system including: a positive and negative pressure cabin 1 (a positive and negative pressure cabin is also known as a vacuum high pressure cabin), an air pump 2, an air pump 3, and a positive and negative pressure cabin.
  • the pressure intelligent control device 5 and the positive and negative pressure airflow carry generation processor; the positive and negative pressure cabin 1 includes: a cabin body 1.1, a cabin door 1.2, an airtight mechanism 1.3, a cabin interior and exterior communication sealer 1.4; the cabin body 1.1 An airtight mechanism 1.3 is installed between the cabin door 1.2 and the cabin door 1.2; the cabin inside and outside sealed connector 1.4 is fixedly arranged at the rear of the positive and negative pressure cabin 1, and all pipelines and circuits entering and exiting the cabin are connected to the cabin inside and outside sealed connections.
  • the positive and negative pressure chamber 1 is provided with an air suction pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier.
  • An air conditioning device 6.1 of the generator processor a suction pipe A1 is installed at the air inlet a of the suction pump 2, a solenoid valve B1 is installed in the middle of the suction pipe A1, and the other end extends into the positive and negative pressure chamber 1
  • An air extraction and return port c is formed, an exhaust pipe A2 is installed at the air outlet b of the air pump 2, and the other end of the exhaust pipe A2 is open to the atmosphere;
  • an air outlet pipe A3 is installed at the air outlet d of the air pump 3
  • a solenoid valve B3 is installed in the middle of the charging pipe A3, and the other end extends into the positive and negative pressure chamber 1 to form its charging air inlet f.
  • the air inlet e of the air pump 5 is equipped with an air inlet pipe A4, so A solenoid valve B4 is installed in the middle of the intake pipe A4, and the other end is open to the atmosphere; the solenoid valve B4 is also connected to a circulation pipe A5, and the middle of the circulation pipe A5 is installed with a solenoid valve B5, and the other end is connected to the solenoid valve B3 and The gas-filling pipe A3 extends into the positive and negative pressure chamber 4 to form its circulation return port j; the air-conditioning device 6.1 is equipped with an air-conditioning air-intake pipe A6 at the air-intake port t, and the middle part of the air-conditioning air-intake pipe A6 is installed There is a solenoid valve B6, and the other end is connected to the inflation pipe A3 and then connected to the air outlet d of the air pump 3.
  • the air outlet s of the air conditioning device 6.1 is equipped with an air conditioning air duct A7, the air conditioning air duct A7 A solenoid valve B7 is installed in the middle part, and the other end extends into the positive and negative pressure chamber 1 to form its air-regulated air inlet i.
  • the charging air inlet f is used as a positive The circulation air return port j of the negative pressure cabin 1; the positive and negative pressure airflow generation processor is also installed inside the positive and negative pressure cabin 1, including: super oxygen (ozone) generator 6.2, negative ion generator 6.3, gas catalyst Controlled release device 6.4, humidifier 6.5; the positive and negative pressure chamber 1 is also equipped with sensors, including: pressure sensor C1, negative pressure sensor C2, super oxygen sensor C3, negative oxygen ion sensor C4, chlorine dioxide sensor C5 , Humidity sensor C6, oxygen sensor C7, nitrogen sensor C8; the described air pump 2, air pump 3, air conditioning device 6.1, super oxygen generator 6.2, negative ion generator 6.3, gas catalyst controlled release device 6.4, humidifier 6.5 , All sensors C1 ⁇ C8, all solenoid valves B1 ⁇ B7, all Connect the positive and negative pressure intelligent control device 5.
  • sensors including: pressure sensor C1, negative pressure sensor C2, super oxygen sensor C3, negative oxygen ion sensor C4, chlorine dioxide sensor C5 , Humidity sensor C6, oxygen
  • an operating method of an intelligent positive and negative pressure system is provided.
  • the technical principle and basic operation method of the intelligent positive and negative pressure system are: intelligently regulate air flow with positive and negative pressure, or carry super Various payloads such as oxygen, gas catalysts, negative ions, controlled atmosphere gases, water, etc., enter and exit or stay in a specific space (positive and negative pressure cabin) in an orderly manner and exert the required influence on the items therein; the specific details of the intelligent positive and negative pressure system
  • the operation method is: the positive and negative pressure intelligent control device 5 according to its built-in program and pre-stored data and the real-time feedback information of each sensor C1 ⁇ C8, after calculation and processing, it will send the air pump 2, the air pump 3, the positive and negative pressure air load
  • the processor and solenoid valve send out specific instructions to open or close in real time, control and adjust the opening, closing and conversion of each suction pipe, inflation pipe and circulation pipe, and intelligently regulate the level of positive and negative pressure and airflow in the positive and negative pressure chamber 1
  • the operation method for regulating the positive and negative pressure chamber 1 to positive pressure (high pressure) is: the positive and negative pressure intelligent control device 5 issues instructions to enable solenoid valves B3 and B4 to open the A3 and A4 charging pipelines (from the atmosphere) Air intake ⁇ A4 ⁇ B4 ⁇ A4 ⁇ air pump air inlet e ⁇ air pump air outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ positive and negative pressure cabin charging inlet f), and turn on the air pump 3 to set the positive and negative pressure cabin 1. Inflate the inside to the set positive pressure (high pressure); (3) Adjust the air flow and its carrying flow into, stay or flow out of the positive and negative pressure cabin 1.
  • the operation method is: 1 Outflow: use the suction pump 2, according to the specific method above (1), the air flow and its contents are drawn out of the positive and negative pressure chamber through the air extraction pipeline; 2Inflow: use the air pump 3, according to the above specific method (2), inject the air flow and its contents into the air inlet through the inflation pipeline Positive and negative pressure cabin; 3Stay: When the positive and negative pressure airflow or its cargo needs to be parked in the positive and negative pressure cabin, the positive and negative pressure intelligent control device 5 issues a command to turn on the air extractor 2 and the air extraction pipeline or open The inflator 3 and the inflation pipeline or open the positive and negative pressure airflow generation processor in the positive and negative pressure cabin, and close other irrelevant solenoid valves, until the positive and negative pressure or airflow in the cabin, the value and the residence time are as long as the mark; 4Circulation: The airflow or its carrying objects, such as air-conditioning gas, need to circulate through the positive and negative pressure chamber 1 and the air conditioning device 6.1 to make the gas concentration in
  • an intelligent positive and negative pressure refrigerator including a box body 7; the box body 7 is provided with an intelligent positive and negative pressure system, a refrigeration system 8, a common refrigerator compartment 9, and a common freezer compartment 10.
  • the positive and negative pressure cabin 1 includes: cabin body 1.1, cabin door 1.2, cabin interior and exterior sealed connector 1.4, pneumatic airtight mechanism 1.5, electric airtight mechanism 1.6, pneumatic door switch 1.8, electric cabin door Switch 1.9;
  • the compartment door 1.2 is the door of the positive and negative pressure refrigerator; the positive and negative pressure compartment 1 is designed as a vacuum high-pressure refrigerating compartment 1-1 and a vacuum high-pressure freezing compartment 1-2 according to the specific requirements of refrigerator refrigeration and freezing;
  • a pneumatic airtight mechanism 1.5 is provided between the door 1.2 of the vacuum high-pressure
  • the sealing latch 1.51 extends outwards from the cabin airtight groove 1.11 and extends into the cabin door airtight groove 1.21 at the opposite position to lock and seal the cabin door.
  • the switch 1.8 deflates the sealing tongue and folding the telescopic airbag 1.52 to retract the sealing tongue 1.51 to open the door; an electric airtight mechanism is provided between the door 1.2 of the vacuum high-pressure freezing compartment 1-2 and the compartment 1.1 1.6;
  • the electric airtight mechanism 1.6 includes an electric sealing tongue 1.61, an electromagnet 1.62, and a tension spring 1.63; the sealing tongue 1.61 is provided with a total of 4, all of which are long strips, which are movably installed on the cabin door frame The four cabins are arranged in the airtight grooves 1.11 and are hung on the tension spring 1.63.
  • the other of the tension spring The end is fixedly hung on the bottom of the cabin airtight groove 1.11; the outer part of the sealing tongue 1.61 tongue body section is a sealing rubber layer, and the inside is a bending resistant and easily magnetic metal core, facing the side of the electromagnet 1.62
  • the sealing rubber layer is open and partially exposes the inner metal core so as to be attracted by the electromagnet 1.62; the electromagnet 1.62 is also a long strip corresponding to the shape of the sealing tongue 1.61, and is fixedly installed at the position of the airtight groove 1.11 of the cabin.
  • the electric door switch 1.9 energizes the electromagnet 1.62 to generate magnetic force, and installs the sealing tongue 1.61 in the opposite cabin airtight groove 1.11 Attracted into the cabin door airtight groove 1.21, when the door is opened, the electric cabin door switch 1.9 breaks the electromagnetic force to the electromagnet 1.62 and the electromagnetic force disappears, and the tension spring 1.63 pulls the sealing latch 1.61 back into the cabin airtight groove 1.11 to open the cabin door;
  • the internal and external sealed connector 1.4 is fixedly arranged at the rear of the positive and negative pressure cabin 1, and all pipelines and circuits entering and exiting the cabin are connected to the internal and external sealed connector 1.4 and enter and exit through it to maintain the positive and negative pressure cabin 1 The sealing performance.
  • the positive and negative pressure cabin 1 is equipped with an air suction pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, a refrigeration system 8, an air system Water device 11, filtered water tank 11.1, touch screen and mobile phone monitoring system 12; the air intake of the air pump 5 is installed with an air extraction pipe A1, and the air extraction pipe A1 is connected to the extraction branch pipe A1.
  • solenoid valves B1.1 and B1.2 are respectively installed in the middle of the air extraction branch pipes A1.1 and A1.2, and the other ends are respectively extended into the vacuum high-pressure refrigerating compartment 1-1 and vacuum high-pressure
  • the refrigerating compartment 1-2 is formed with its air extraction and return ports c1 and c2;
  • the air outlet b of the air pump 2 is equipped with an exhaust pipe A2, and the middle of the exhaust pipe A2 is installed with a super oxygen decomposer 6.7 and a solenoid valve B2, the other end is connected to the air inlet h of the air water making device 11, after passing through the air water making device 11, the air is vented through the air outlet n;
  • the air outlet d of the air pump 3 is equipped with an air charging pipe A3,
  • a solenoid valve B3 is installed in the middle of the inflation pipe A3, and the other end is respectively connected to the inflation branch pipes A3.1, A3.2, A3.3, A3.4, the inflation branch pipes A3.1, A3.2, A3.3 Solenoid valves
  • Inflatable plugs 1.54 are installed at their respective midpoints, and the four inflatable plugs 1.54 are all inserted and connected to the inflatable socket 1.53; the air water making device 11 is installed at the water outlet x There is an air water pipe A10, the air water pipe A10 is connected with the water inlet y of the filter water tank 11.1; the condensate water generated in the vacuum high-pressure refrigerated compartment 1-1 flows into the condensate water collection box installed at the bottom of the compartment
  • the water inlet Y of 11.2, the condensate water pipe A11 is installed at the water outlet M of the condensate water collection box 11.2, the condensate water pipe A11 extends out of the vacuum high-pressure refrigerator compartment 1-1, and a solenoid valve B11 is installed in the middle of the back.
  • the water outlet o of the filter water tank 11.1 is installed with a humidification water pipe A12, the middle of the humidification water pipe A12 is installed with a solenoid valve B12, and the other end extends into the vacuum high-pressure refrigerating compartment 11-1 , Is connected to the water inlet R of the humidifier 6.5;
  • the refrigeration system 8 is equipped with a refrigeration cycle pipe A13, and the refrigeration cycle pipe A13 extends into the vacuum high-pressure refrigerating compartment 1-1, the vacuum high-pressure freezing compartment 1-2, and the ordinary
  • the refrigerator compartment 9 and the ordinary freezer compartment 10 are connected with the evaporator air-cooling combination 8.1 and the evaporator direct cooling combination 8.2 respectively installed therein;
  • the touch screen and the mobile phone monitoring system 12 include: door touch screen 12.1, mobile phone APP 12.2, high-definition anti-fog camera device 12.3, the high-definition anti-fog camera device 12.3 is installed inside and outside the box 7 where
  • an operating method of a smart positive and negative pressure refrigerator includes: (1) a vacuum detoxification and heat removal cleaning program: closing the vacuum high pressure refrigerating compartment door of the positive and negative pressure refrigerator 1.2 , Touch the door switch 1.8, the positive and negative pressure intelligent control device 5 will issue an instruction: make solenoid valves B3, B8 open A3, A8 and A8.1 air-tight mechanism inflation pipeline (air pump outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ A8 ⁇ B8 ⁇ A8 ⁇ A8.1 ⁇ inflating plug 1.54 ⁇ inflating socket 1.53 ⁇ sealing bolt expansion airbag 1.52), and turning on the air pump 3 to inflate the pneumatic airtight mechanism 1.5, and lock the door 1.2; at the same time, the solenoid valve B1.1 and B2 open A1, A1.1 and A2 air extraction pipelines (vacuum high pressure refrigerated compartment 1-1 air extraction return port c1 ⁇ A1.1 ⁇ B1.1 ⁇ A1.1 ⁇ A1
  • the vacuum promotes the volatile metabolites in the fruit and vegetable tissues, such as ethylene acetaldehyde and ethanol, to escape and be pumped away.
  • negative pressure is used to inhibit the reproduction of residual bacteria. , Reducing the hidden dangers of fruit and vegetable diseases and aging;
  • the positive and negative pressure intelligent control device 5 is maintained by turning on or off the suction pump 2 according to the pressure standard of the preset program and the real-time feedback of the negative pressure sensor C2
  • the appropriate negative pressure, low oxygen and low temperature environment in the vacuum high pressure refrigerated compartment 1-1 reduces the respiratory intensity of fruits and vegetables, inhibits the biosynthesis of ethylene, delays the decomposition of chlorophyll, inhibits the synthesis of carotenoids and lycopene, and slows down the hydrolysis of starch and sugar
  • the super oxygen, humidity and negative oxygen ions in 1 reach the required standards, and at the same time the solenoid valves B3, B3.1 and B4 are opened to the A3, A3.1, A4 charging pipelines (atmospheric intake ⁇ A4 ⁇ B4 ⁇ A4 ⁇ air Filter ⁇ A4 ⁇ Air intake port e ⁇ Air outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ A3.1 ⁇ B3.1 ⁇ A3.1 ⁇ Vacuum high-pressure refrigerated compartment 1-1 air inlet f1), and Turn on the air pump 3, and properly pressurize the vacuum high-pressure refrigerated chamber 1-1 to 0.01KPa ⁇ 10MPa (using the local real-time air pressure as the zero standard, depending on specific needs and The refrigerator configuration can further increase the pressure value), the appropriate positive pressure of super oxygen sterilizes the fruits, vegetables, meat and fish in the vacuum high-pressure refrigerator 1-1, anti-mold and degrades pesticide residues and ethylene and other gases breathed out by the metabolism of fruits and vegetables, affecting the enzymes in fruits and vegetables Active, prevent
  • Moisture and negative oxygen ions make the water molecule clusters of moisture smaller and easier to absorb by fruits, vegetables, meat and fish. It also inhibits the metabolism of biological tissues, reduces respiratory intensity, slows down the activity of enzymes, and has certain sterilization and purification effects. Under positive pressure, it can penetrate into the deeper interior of fruits, vegetables, meat and fish to better play its sterilization and disinfection effect (super oxygen is automatically decomposed and reduced to oxygen in about 30 minutes in air and water, but it is very stable in ice and has a very long half-life, so vacuum high-pressure freezing No super-oxygen generator is installed in cabins 1-2, and super-oxygen is not used); (4).
  • Air-regulated and pressurized storage program the positive and negative pressure intelligent control device 5 according to the program setting or sensor feedback, open the exhaust pipe and turn on the pump in a timely manner
  • the air pump 2 and the super oxygen decomposer 6.7 take the decomposed, sterilized and degraded dirty air out of the cabin, and then make the solenoid valves B3, B6, and B7.1 open the A3, A6, and A7.1 air-conditioning and inflating pipelines (air pump Air outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ A6 ⁇ B6 ⁇ A6 ⁇ Air conditioning device air inlet t ⁇ Air outlet s1 ⁇ A7.1 ⁇ B7.1 ⁇ A7.1 ⁇ Vacuum high-pressure refrigerating compartment 1-1 air conditioning Air port i1) and turn on the air pump 3, drive the air flow through the hollow fiber membrane of the air conditioning device 8.1, the oxygen is separated, the high nitrogen and low oxygen gas enters the vacuum high-pressure refrigerated compartment 1-1, and the solenoid valves B5.1, B3, B4 Open the air conditioning circulation pipeline (
  • Pressure preservation procedure for leftover food put the leftovers in the vacuum high-pressure refrigerating compartment 1-1, the regulating device 5 turns on the air pump 2 and the air pipe to remove the leftovers
  • the odor and the dirty air in the cabin are closed after being pumped out of the cabin, and then the inflatable pump 3 and the inflatable pipeline are turned on and stored under pressure, which not only prevents excessive loss of odor and moisture, but also inhibits deterioration and deterioration, and at the same time according to the feedback of the humidity sensor Information, timely turn on the humidifier 6.5 to add moisture in the air, or turn on the super oxygen generator 6.2 to kill bacteria in the air in the cabin to prevent food from spoiling; (6), low-temperature auxiliary preservation program: after the refrigerator is turned on, positive and negative
  • the intelligent pressure control device 5 starts the refrigeration system 8, and connects the evaporator air-cooling combination 8.1 and the evaporator direct cooling combination 8.2 through the refrigeration pipe A13, and provides the corresponding low temperature for each cabin through the feedback and control of the temperature sensor
  • High-pressure rapid freezing and thawing and high-pressure non-freezing storage procedures set up ultra-high pressure cryogenic compartments 1-3 in the freezer area of the positive and negative pressure refrigerator, and set up ultra-high-pressure cryogenic compartments in the cold storage area
  • High-pressure thawing chambers 1-4 are specially used for high-quality freezing, thawing, and high-pressure non-freezing storage of meat, fish and seafood.
  • the air pump 3 is used to pressurize it. A certain ultra-high pressure will affect the meat and fish tissues and cells.
  • the freezing point of internal water, the crystallization process and the size and shape of ice crystals in the range of 0 to 209.9MPa, the freezing point of water decreases with the increase of pressure, and the lowest temperature can reach -21.99°C at 209.9MPa.
  • It can avoid the maximum ice crystal formation zone during freezing at room temperature, and to a certain extent solves the problem of long retention time of the maximum ice crystal zone during the traditional normal pressure freezing and thawing and destroying fish tissues and cells, so that the quality and flavor of stored meat, fish, seafood and high-moisture food The freshness can be perfectly maintained.
  • the intelligent control device 5 can also start the air pump 3 and make the solenoid valves B3 and B2 open the air-water and air-filling pipeline (air pump outlet d ⁇ A3 ⁇ B3 ⁇ A5 ⁇ A9 ⁇ B2 ⁇ A2 ⁇ air inlet of the water-making device h), which drives the indoor air to enter the air-water-making device 11 to make water; (10), remote and short-range operation monitoring function: the touch screen and mobile phone monitoring
  • the system 12 can operate and monitor the refrigerator and other positive and negative piezoelectric devices and the positive and negative pressure module cabinets in real time through WIFI and mobile phone APP, so that the refrigerator and all other positive and negative piezoelectric devices and module cabinets are intelligently in accordance with the set program and real-time Commands to achieve various functions with high efficiency and low consumption; the described high-definition anti-fog camera 12.3 captures the condition of items in the refrigerator in real time, and the box door touch screen 12.1 or mobile phone APP 12.2 will display and remind the production time, price
  • the combination of positive and negative pressure modules, smart home mode smart
  • the positive and negative pressure refrigerator can be designed and manufactured according to the module function. It is not only used as a separate invention right for independent production and use, but also can be organically combined with other positive and negative piezoelectric devices and modular cabinets under the control of the touch screen and mobile phone APP monitoring system 12
  • the fully functional intelligent positive and negative pressure module combination home can not only share the common positive and negative pressure system, refrigeration system, and air water system, but also the appearance, shape and color are basically unified, neat and harmonious, in line with the popular trend.
  • the specific operating methods of the above-mentioned smart positive and negative pressure refrigerators can intelligently control and integrate various technologies such as vacuum, high pressure, super oxygen, air-conditioned fresh-keeping, low-temperature storage, negative oxygen ions, gas catalyst, humidification, and air water production.
  • various technologies such as vacuum, high pressure, super oxygen, air-conditioned fresh-keeping, low-temperature storage, negative oxygen ions, gas catalyst, humidification, and air water production.
  • It can be used alternately or cyclically in different combinations of single, double or multiple items, and multiple different types of vacuum hyperbaric chambers can be set in a refrigerator, and the storage of fruits, vegetables, meat and fish can be kept moist and fresh for a long time due to the policy and classification of the chambers
  • the quality and flavor of the smart positive and negative pressure refrigerator is also more energy-efficient, efficient and suitable for use with low consumption.
  • an intelligent positive and negative pressure washing machine including a body 7; the body 7 is provided with an intelligent positive and negative pressure system, a washing drying system 15 and a touch screen and a mobile phone monitoring system 12;
  • the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an inflator 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure airflow carrier generation processor; the positive and negative pressure cabin 1 is based on washing and drying clothes
  • the specific requirements are designed as a vacuum high-pressure drum outer cabin 1-5; the vacuum high-pressure drum outer cabin 1-5 includes: a cabin 1.1, a cabin door 1.2, a mechanical airtight mechanism 1.3, a cabin internal and external sealing connector 1.4; the cabin
  • the door 1.2 is the door of the positive and negative pressure washing machine; the door 1.2 of the vacuum high-pressure drum outer compartment 1-5 and the compartment 1.1 are provided with a mechanical airtight mechanism 1.3; the mechanical airtight mechanism 1.3 includes a lock ring
  • the suction pipe A1 is installed at the air inlet a of the suction pump 2
  • a solenoid valve B1 is installed in the middle of the suction pipe A1, and the other end is extended into the vacuum high-pressure drum outer compartment 1-5 and then connected with a protective Water spray suction port 2.1, and form a suction return port c, the air outlet b of the suction pump 2 is vented to the atmosphere;
  • the air outlet d of the air pump 3 is installed with an inflation pipe A3, and the middle of the inflation pipe A3 is installed
  • the other end of the solenoid valve B3 extends into the outer compartment 1-5 of the vacuum high-pressure drum and extends below the drum mechanism 15.1 to form an air inlet f; the air inlet e of the air pump 3 is open to the atmosphere
  • a washing machine water inlet pipe A15 is installed at the water outlet u of the water inlet pump 17 , A solenoid valve B15 is installed in the middle of the water inlet pipe A15, and the other end is connected to the water inlet k of the super oxygen generating mixer 6.6, the super oxygen generating mixer 6.6
  • the water outlet q is installed with a washing machine water inlet pipe A16, the middle of the water inlet pipe A16 is installed with a solenoid valve B16, and the other end is connected to the water inlet z of the detergent drawer 18, and the water outlet of the detergent drawer 18 l
  • a washing machine water inlet pipe A17 is installed, the middle of the water inlet pipe A17 is installed with a solenoid valve B17, and the other end extends into the outer compartment 1-5 of the vacuum high-pressure drum to form its water inlet T; the solenoid valve B14 is also installed
  • the water inlet pipe A18 is connected to the solenoid valve B16, which directly feeds water when super-oxygen water
  • the water inlet w of the drain pump 16 is installed with an inlet pipe A20, the middle of the drain pipe A20 is installed with a solenoid valve B20, and the other end extends into the vacuum high-pressure drum
  • the outer compartment 1-5 forms its drainage port L, a drainage pipe A21 is installed at the water outlet p of the drainage pump 16, a solenoid valve B21 is installed in the middle of the drainage pipe A21, and the other end is connected to a super oxygen decomposer 6.7
  • the water inlet g of the super oxygen decomposer 6.7 is equipped with a drainage pipe A22, the middle of the drainage pipe A22 is equipped with a solenoid valve B22, and the other end is connected to the sewer;
  • the solenoid valve B20 is also installed with a drain
  • the pipe A23 is connected to the solenoid valve B22 to directly drain when the super oxygen does not need to be decomposed and can drain by gravity; the solenoid valve B
  • an operating method of a smart positive and negative pressure washing machine includes: (1), water intake procedure: the laundry is put into the drum 15.1, the door is closed, that is, the vacuum high-pressure compartment door 1.2 is turned on The outer compartment 1-5 of the rear vacuum high-pressure drum is sealed and locked, and the positive and negative pressure intelligent control device 5 issues instructions to enable the solenoid valves B14, B15, B16, and B17 to open the corresponding water inlet pipes (1The direct water inlet pipe of tap water is A14 ⁇ B14 ⁇ A18 ⁇ B16 ⁇ A16 ⁇ detergent pull box water inlet z ⁇ water outlet l ⁇ A17 ⁇ B17 ⁇ A17 ⁇ drum outer compartment water inlet T; 2When super oxygen water is needed for washing, the water inlet pipe of the inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ Inlet pump water inlet r ⁇ water outlet u ⁇ A15 ⁇ B15 ⁇ A15 ⁇ super oxygen generator water inlet k ⁇ water outlet q ⁇ A16 ⁇
  • the super-oxygen water can accelerate the decomposition of organic dirt on the clothes and facilitate rapid cleaning.
  • the positive and negative pressure intelligent control device 5 can The solenoid valve B1 opens the suction pipe A1 (the suction pump air inlet a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ the drum outer compartment 1-5 and the suction return port c), and the suction pump 2 is turned on to make the vacuum high-pressure drum outer compartment 1-5 in Moderate negative pressure will speed up the water intake and shorten the water intake time;
  • Vacuum washing procedure the positive and negative pressure intelligent control device 5 turns on the motor combination 15.5 when the water enters, and drives the drum mechanism 15.1 to rotate to start washing, and at the same time, the solenoid valve B1 opens the A1 air extraction pipeline (exhaust pump air inlet a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ drum outer compartment 1-5 air return air return c), and turn on air extraction pump 2, to pump the vacuum high-pressure drum outer compartment 1-5 into With a moderate vacuum, the clothes fibers and dirt will
  • the super-oxygen water will directly kill in the washing process.
  • Bacteria, viruses and microorganisms on the clothes decompose the organic matter in the dust and dirt on the clothes to dissolve them into the water, enhance the decontamination ability of the detergent, improve the cleanliness, accelerate the washing process, and at the same time play a role of sterilization and deodorization; (3) ), high-pressure washing procedure: after a suitable period of vacuum washing, the positive and negative pressure intelligent control device 5 closes the solenoid valve B1 and the air pump 2, so that the solenoid valve B3 opens the A3 inflation pipeline (air outlet of the air pump 6 d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ The drum outer compartment 1-5 inflation air inlet f), and the air pump 3 is turned on, the high-pressure airflow enters the vacuum high-pressure drum outer compartment 1-5 through the A3 inflation line, and A strong bubble torrent is formed under the drum mechanism 15.1 to participate in washing.
  • the high pressure formed in the outer compartment of the vacuum high pressure drum 1-5 facilitates the penetration of the detergent into the clothes for washing. In this way, the cycle of air extraction and inflation is repeated, and the fiber expansion and torrent kneading alternately proceed.
  • the positive and negative pressure intelligent control device 5 issues instructions to enable the solenoid valves B20, B21, and B22 to open the corresponding drainage Piping
  • the direct drainage pipeline is: Drum outer compartment drain port L ⁇ A20 ⁇ B20 ⁇ A23 ⁇ B22 ⁇ A22 ⁇ sewage;
  • the drainage pipe when the drainage pump is needed and the super oxygen needs to be decomposed The road is: Drum outer compartment drain L ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Drain pump water inlet w ⁇ water outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ super oxygen decomposer water inlet g ⁇ water outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ Sewer;
  • the drainage pipeline is: Drum outer compartment drain L ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Drain pump water inlet w ⁇ water outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ super oxygen decomposer water inlet g ⁇ water outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ Sewer;
  • the drainage pipeline is: Drum outer compartment drain L ⁇ A20 ⁇ B20 ⁇ A
  • the drainage speed can be accelerated.
  • the positive and negative pressure intelligent control device 5 will start when the drainage is completed. Dehydration; during dehydration, aeration and pressure can force the moisture to leave the clothes quickly, and then alternately turn on the suction pump 2 to pump negative pressure to expand the clothes fibers in the outer compartment 1-5 of the vacuum high-pressure drum, and the moisture in it escapes to the negative pressure space and is pumped out Outside the cabin, the clothes that are hardened on the inner wall of the drum during dehydration and high pressure are simultaneously fluffed to prevent the clothes from wrinkling.
  • the cycle of air extraction and inflation is repeated, forcing the moisture out and pumping out of the cabin alternately, greatly improving the efficiency of clothes dehydration.
  • vacuum high-pressure drying program at the beginning of the drying program, the positive and negative pressure intelligent control device 5 instructs to turn on the air pump 3 and open the inflation pipeline to inflate and pressurize the outer cabin 1-5 of the vacuum high-pressure drum
  • Favorable hot air enters the clothing fibers to vaporize moisture, and then instructs to turn on the air extraction pump 2 and open the air extraction pipe to extract air.
  • the water vapor is extracted and the negative pressure expands the clothing fibers, which is beneficial to the rapid drying of water vapor.
  • the positive and negative pressure intelligent control device 5 operates the elution drying control mechanism to turn on the drying hot air to dry the interior of the washing machine, especially the drum mechanism 15.1, and then turn on the air extraction pump 2 and open the air extraction line to extract air, and extract the vacuum high-pressure drum outer compartment 1-5
  • the super-oxygen residual gas inside, and makes the drum mechanism 15.1 and the equipment in the cabin are in a moderate vacuum, aseptic, dust-free and pollution-free to keep clean, no oxidation, no rust, no damage, and vacant, prolonging the service life of the washing machine.
  • the positive and negative pressure washing machine greatly speeds up the various processes of washing, dehydration and drying, shortens the working time of each program, and improves the cleanliness of washing and the quality of drying.
  • the super oxygen also thoroughly sterilizes the laundry. Disinfect and remove odors.
  • the concentration and working time of super oxygen are intelligently controlled to be in the proper area of sterilization and degradation aid, and the critical point that may cause the oxidation and fading of dark clothes is not reached or at least reached;
  • the positive and negative pressure module combination smart home mode The intelligent positive and negative pressure washing machine can be designed and manufactured according to the function of the module.
  • the intelligent positive and negative pressure module to combine the home, not only can share the common intelligent positive and negative pressure system, but also the appearance, shape and color are basically unified, neat and harmonious, in line with the popular trend.
  • the intelligent positive and negative pressure system makes laundry dehydration and drying faster, more efficient and lower consumption, and the laundry is less wasted, cleaner, fluffy and more hygienic.
  • an intelligent vacuum dishwashing fruit and vegetable washing machine including a body 7; the body 7 is provided with an intelligent positive and negative pressure system, a dish washing and drying system 19, a fruit and vegetable cleaning system 20, and a touch panel.
  • the control screen and mobile phone APP monitoring system 12; the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier generating processor; the positive and negative pressure cabin 1
  • the vacuum super oxygen cabin 1-6 includes: a cabin 1.1, a door 1.2, a mechanical airtight mechanism 1.3, inside and outside the cabin Sealed connector 1.4;
  • the hatch 1.2 is the door of the vacuum dishwashing fruit and vegetable washing machine;
  • the mechanical airtight mechanism 1.3 is set between the door 1.2 of the vacuum super oxygen cabin 1-6 and the cabin 1.1;
  • the mechanical airtight mechanism 1.3 includes a lock ring 1.31, a lock tongue 1.32 and an airtight washer 1.33; the lock ring 1.31 and the lock tongue 1.32 are movably matched, and the lock tongue 1.32 extends into the lock ring 1.31 to lock the door when
  • the airtight gasket 1.33 is kept sealed; the internal and external pipeline coupling 1.4 of the cabin is fixed at the rear of the vacuum super oxygen cabin 1-6, and all the pipelines in and out of the cabin are fixed. And the circuit is connected to the inside and outside sealed connector 1.4 of the cabin and enters and exits through it, so as to maintain the sealing performance of the vacuum super oxygen cabin 1-6.
  • the vacuum super oxygen cabin 1-6 is equipped with a dish washing and drying system 19, a fruit and vegetable cleaning system 20, an anti-sprinkling air suction port 2.1, a negative pressure sensor C2, a super oxygen sensor C3, and a temperature sensor C9; the vacuum super oxygen
  • the outside of cabins 1-6 are equipped with suction pump 2, positive and negative pressure intelligent control device 5, drainage pump 16, water inlet pump 17, super oxygen generation mixer 6.6, super oxygen decomposer 6.7, touch screen and mobile phone APP monitoring system 12
  • the suction port a of the suction pump 2 is installed with a suction pipe A1, the middle of the suction pipe A1 is installed with a solenoid valve B1, and the other end is extended into the vacuum super oxygen cabin 1-6 and then connected to the anti-sprinkling
  • the suction port 2.1, and the suction return port c is formed; the air outlet b of the suction pump 2 is open to the atmosphere; the water inlet r of the water inlet pump 17 is installed with a water inlet pipe A14
  • the middle of the drainage pipe A22 is equipped with a solenoid valve B22, and the other end is connected to the sewer; the solenoid valve B21 is also equipped with a drainage pipe A24 and connected to A23 and then connected to the solenoid valve B22.
  • the drainage pump is directly drained; the suction pump 2, the drainage pump 16, the water inlet pump 17, the super-oxygen generation mixer 6.6, the super-oxygen decomposition device 6.7, the dish washing and drying system 19, the fruit and vegetable cleaning system 20, the touch control Screen and mobile phone APP monitoring system 12, negative pressure sensor C2, super oxygen sensor C3, temperature sensor C9 and solenoid valves B1 to B25, all connected to the intelligent control of positive and negative pressure Device 5.
  • an operating method of an intelligent vacuum dishwashing fruit and vegetable washing machine comprising: (1). Dishwashing water intake and washing procedure: a positive and negative pressure intelligent control device after closing the door 5 Issue instructions to enable solenoid valves B14, B15, B16, and B25 to open the corresponding water inlet pipes (1When super-oxygen water is needed to wash dishes, the water inlet pipe of the water inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ the water inlet of the water inlet r ⁇ the water outlet u ⁇ A15 ⁇ B15 ⁇ A15 ⁇ Super oxygen generation mixer water inlet k ⁇ water outlet q ⁇ A16 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A27 ⁇ Dishwashing and drying system water inlet G; 2When super oxygen water is not required, the water inlet pump enters The water pipeline is A14 ⁇ B14 ⁇ A14 ⁇ Inlet pump inlet r ⁇ Water outlet u ⁇ A15 ⁇ B15 ⁇ A19 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A27
  • the super-oxygen water can accelerate the decomposition of organic dirt on the tableware and facilitate rapid cleaning.
  • the positive and negative pressure control device 5 turns on the dishwashing and drying system 19 when the water is completed to start spraying and washing dishes, and the solenoid valve B1 is opened to the A1 suction line (the suction port of the suction pump a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ vacuum super-oxygen cabin pumping Air return port c), and at the same time turn on the suction pump 2 to start vacuuming, the dirt on the tableware and tableware will expand in the vacuum negative pressure, and the air in the dirt will escape, so that the adhesion of the dirt will be weakened or from the tableware and tableware.
  • the super-oxygen water directly kills the bacteria, viruses and microorganisms on the tableware during the dishwashing process, and decomposes the organic matter in the dirt on the tableware and tableware to dissolve it into the water. It can enhance the decontamination ability of the detergent, improve the washing degree, accelerate the washing process, and at the same time play the role of sterilization and deodorization; (2).
  • Dishwashing drainage and drying and disinfection procedures when the cleaning time needs to be drained, the positive or negative
  • the pressure intelligent control device 5 issues instructions to enable solenoid valves B20, B21, and B22 to open the corresponding drainage pipelines
  • the direct drainage pipeline is: washing and drying system water outlet H ⁇ A28 ⁇ A20 ⁇ B20 ⁇ A23 ⁇ B22 ⁇ A22 ⁇ Sewer;
  • the drainage pipeline is: Dishwashing and drying system outlet H ⁇ A28 ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Drain pump inlet w ⁇ out Water inlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ Super oxygen decomposition device water inlet g ⁇ water outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ Sewer;
  • the drainage pipeline is: the drain of the dishwashing and drying system Water
  • the positive and negative pressure control device 5 turns on the air pump 2 again to quickly pump out water vapor to speed up the drying process, and the vacuum super oxygen greatly speeds up the whole process of washing dishes. , And Super Oxygen also thoroughly sterilizes the dishes, chopsticks and tableware that are washed to remove odor; (3).
  • the positive and negative pressure intelligent control device 5 issues instructions to make the solenoid valve B14 , B15, B16, B25 open the corresponding water inlet pipes
  • the inlet pipe of the inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ the inlet of the inlet pump r ⁇ the outlet u ⁇ A15 ⁇ B15 ⁇ A15 ⁇ super oxygen Water mixer inlet k ⁇ water outlet q ⁇ A16 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A25 ⁇ fruit and vegetable cleaning system water inlet E;
  • the water inlet pipe of the inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ inlet Water pump inlet r ⁇ water outlet u ⁇ A15 ⁇ B15 ⁇ A19 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A25 ⁇ fruit and vegetable cleaning system water inlet E), and turn on the water inlet pump 17, and the tap water will then pass through the super oxygen generation mixer 6.6 and its
  • the positive and negative pressure regulating device 5 turns on the fruit and vegetable cleaning system 20 to start spraying and cleaning fruits and vegetables, and the solenoid valve B1 opens the A1 exhaust pipe (Air suction port a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ Vacuum super-oxygen cabin suction return c), at the same time, turn on the suction pump 2 to start vacuuming to a moderate negative pressure.
  • the dirt on the fruits and vegetables will be exposed to the negative pressure. Swelling, the air in the dirt escapes, so that the adhesion of the dirt is weakened or fall off from the fruits and vegetables, which improves the cleaning efficiency and shortens the washing process.
  • the super-oxygen water directly kills the bacteria, viruses and microorganisms on the skins of the fruits and vegetables during the cleaning process. , Decompose the organic matter in the dirt on the epidermis to dissolve it into the water, improve the cleanliness and accelerate the cleaning process, and at the same time, the negative pressure promotes the escape of harmful gases such as pesticides, heavy metals and volatile metabolites such as ethylene acetaldehyde and ethanol in the fruit and vegetable tissues. It creates a favorable environment for the rapid cleaning of super-oxygen water and the deep degradation of pesticide residues and the decomposition of harmful gases such as ethylene.
  • the positive and negative pressure intelligent control device 5 issues instructions to clean the fruits and vegetables with water spray.
  • the positive and negative pressure intelligent control device 5 issues instructions to enable solenoid valves B20, B21, and B22 to open the corresponding drain pipes (1When there is no need for a drain pump and no need to decompose the super oxygen)
  • the direct drainage pipeline is: Fruit and vegetable cleaning system outlet F ⁇ A26 ⁇ A20 ⁇ B20 ⁇ A23 ⁇ B22 ⁇ A22 ⁇ Sewer; 2When the drainage pump needs to be drained and super oxygen needs to be decomposed, the drainage pipeline is: Fruit and vegetable cleaning system outlet F ⁇ A26 ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Drain pump inlet w ⁇ outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ super oxygen decomposition device inlet g ⁇ outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ sewer; 3No need for
  • Vacuum self-cleaning aseptic placement procedure Close the door 1.2 after use, the positive and negative pressure intelligent control device 5 turns on the drying hot air to dry the interior of the vacuum super-oxygen cabin 1-6, especially the dish washing and drying system 19 And the fruit and vegetable cleaning system 20, then turn on the air extraction pump 2 and open the air extraction pipeline to extract air, extract the super oxygen residual gas in the vacuum super oxygen cabin 1-6, and make the dish washing and drying system 19, the fruit and vegetable cleaning system 20 and the cabin
  • the equipment is in a moderate vacuum. It is aseptic, dust-free and pollution-free to keep clean, which is good for health. It is free of oxidation, rust, and vacant, and extends the service life of electrical appliances.
  • the combination of positive and negative pressure module smart home mode smart positive and negative pressure dishwashing and fruit and vegetable washing machine can be designed and manufactured according to the module function, not only as a separate invention right for independent production and use, but also on the touch screen and mobile phone Under the control of the APP monitoring system 12, it is organically combined with other positive and negative piezoelectric devices and modular cabinets to form a fully functional intelligent positive and negative pressure modular home. It can not only share the water inlet pump 17, drainage pump 16, and super oxygen with the super oxygen washing range hood.
  • the water mixer 6.6 and the super oxygen decomposer 6.7 are produced, and the appearance, shape and color are basically uniform, neat and harmonious, in line with the popular trend, making the dishwashing and fruit and vegetable washing machine more energy-efficient, low-consumption and suitable for use.
  • an intelligent super-oxygen water washing range hood including a body 7; the lower part of the body 7 is a sealed and waterproof super-oxygen cabin 1-7, and the upper part is an equipment smoke pipe cabin 21
  • the sealed waterproof super oxygen cabin 1-7 includes: a triangular cabin 1.1, a sealed waterproof cabin door 1.2; the sealed waterproof cabin door 1.2 is the door of the super oxygen water washing range hood, the cabin door 1.2 and the cabin body
  • a sealing and waterproof mechanism 1.7 is arranged between 1.1; the sealing and waterproof mechanism 1.7 includes a lock ring 1.71, a lock tongue 1.72, an airtight washer 1.73, and a door hinge 1.74; When closed, the lock tongue 1.72 extends into the lock ring 1.71 to lock the door 1.2.
  • the sealing gasket 1.73 keeps the seal;
  • the sealed waterproof super oxygen cabin 1-7 is installed inside There is a motor wind wheel assembly 22, an automatic rotating spray ball 23, an oil collecting and draining groove 24, and a touch screen and a mobile phone APP monitoring system 12 are installed on the front;
  • the intelligent super oxygen cleaning system includes: super oxygen intelligent control device 5.1, water inlet pump 17, drainage pump 16, super oxygen generation water mixer 6.6, super oxygen decomposer 6.7, water heating device 27, Grease agent adder 28;
  • the water inlet r of the water inlet pump 17 is equipped with an inlet pipe A14 and connected to a tap water source, and the water outlet u of the water inlet pump 17 is equipped with an inlet pipe A15, the water inlet pipe A15 A water heating device 27 and a solenoid valve B15 are installed in the middle of the, and the other end is divided into 3 ways by the solenoid valve B15, respectively connected to the water in
  • the water inlet 1 of the degreasing agent adder 28 is equipped with a water inlet pipe A17, the middle of the water inlet pipe A17 is installed with a solenoid valve B17, and the other end is connected to the water inlet pipe A15 Then connect the solenoid valve B16; the water inlet w of the drainage pump 16 is equipped with an inlet pipe A20, the middle of the drainage pipe A20 is equipped with a solenoid valve B20, and the other end extends into the vacuum super-oxygen chamber 1-7.
  • a drain port L is formed in the oil drain tank 24; a drain pipe A21 is installed at the water outlet p of the drain pump 16, a solenoid valve B21 is installed in the middle of the drain pipe A21, and the other end is connected to the inlet of the super oxygen decomposer 6.7
  • Water port g, the water outlet m of the super oxygen decomposer 6.7 is installed with a drainage pipe A22, the middle of the drainage pipe A22 is installed with a solenoid valve B22, and One end is connected to the sewer; the solenoid valve B21 is also installed with a drainage pipe A24 and connected to the solenoid valve B22, and is directly drained by the drainage pump 16 when there is no need to decompose the super oxygen; the inlet pump 17, the drainage pump 16, and the super oxygen generating mixture Water heater 6.6, super oxygen decomposer 6.7, water heating device 27, degreaser adder 28, oil fume control mechanism 26, touch screen and mobile phone APP monitoring system 12 and solenoid valves B1 to B
  • an operating method of a smart super-oxygen water washing range hood includes: (1) Range hood procedure: when the range hood is started, the waterproof compartment door is sealed 1.2 opens the air intake to smoke, and stops working Time-sealed cabin door 1.2 is closed; (2) Self-cleaning procedure: The super-oxygen intelligent control device 5.1 issues instructions to enable solenoid valves B15, B16, and B17 to open the corresponding inlet pipes (1The inlet pipe when super-oxygen water is required for cleaning is: A14 ⁇ Inlet pump water inlet r ⁇ Water outlet u ⁇ A15 ⁇ Water heating device ⁇ A15 ⁇ B15 ⁇ A15 ⁇ Super oxygen generator water inlet k ⁇ Water outlet q ⁇ A16 ⁇ B16 ⁇ A16 ⁇ A30 ⁇ Automatic rotating spray Ball 23; 2The water inlet pipeline when cleaning with degreasing agent is required: A14 ⁇ Water inlet of water inlet pump r ⁇ Water outlet u ⁇ A15 ⁇ Water heating device ⁇ A15 ⁇
  • the super-oxygen intelligent control device 5.1 issues an instruction when draining is required to enable the solenoid valves B20, B21, B22 to open the corresponding drainage pipeline
  • the drainage pipeline is: the drain port of the oil collection drainage tank L ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Water inlet of drainage pump w ⁇ Water outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ Super oxygen decomposer water inlet g ⁇ Water outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ Sewer; 2Drain pipe when super oxygen is not required to be decomposed It is:
  • Module combination smart home mode the smart super-oxygen water washing range hood can be designed and manufactured according to the module function, It is not only used as a separate invention right, but also can be used in Under the control of the control screen and mobile phone APP monitoring system 12, it can be organically combined with other electrical appliances and modular cabinets to form a fully functional smart modular home. It can not only share the common water inlet pump 17, drainage pump 16, and super-oxygen mixed with the dish washing machine. Water heater 6.6 and super oxygen decomposer 6.7, and the appearance, shape and color are basically uniform, neat and harmonious, in line with the popular trend, making the intelligent range hood more high-energy, high-efficiency, low-consumption and suitable for use.
  • an intelligent positive and negative pressure oven air fryer microwave oven including a body 7 provided with: an intelligent positive and negative pressure system, a barbecue system 30, and an air fryer system 31 , Microwave system 32 and touch screen and mobile phone APP monitoring system 12;
  • the intelligent positive and negative pressure system includes a positive and negative pressure chamber 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5;
  • Ballast 1 according to the specific requirements of the oven, air fryer and microwave oven, is designed as a microwave vacuum hyperbaric chamber 1-8;
  • the microwave vacuum hyperbaric chamber 1-8 includes: a chamber 1.1, a door 1.2, a mechanical airtight mechanism 1.3, The cabin interior and exterior sealed connector 1.4;
  • the cabin door 1.2 is the door of the positive and negative pressure oven air fryer microwave oven;
  • the mechanical airtightness is provided between the cabin door 1.2 of the microwave vacuum hyperbaric cabin 1-8 and the cabin body 1.1 Mechanism 1.3;
  • the mechanical airtight mechanism 1.3 includes a lock ring 1.31
  • the microwave vacuum hyperbaric chamber 1-8 is provided with a barbecue system 30, an air fryer system 31, a microwave system 32, a pressure sensor C1, a negative pressure sensor C2, and an air pump is installed outside the microwave vacuum hyperbaric chamber 1-8. 2.
  • Air pump 3 positive and negative pressure intelligent control device 5, touch screen and mobile phone APP monitoring system 12;
  • the air intake a of the air pump 2 is equipped with an air extraction pipe A1, and the middle of the air extraction pipe A1
  • a solenoid valve B1 is installed, the other end of which extends into the microwave vacuum hyperbaric chamber 1-8 to form its air extraction return port c.
  • the air outlet b of the air pump 2 is equipped with an air outlet pipe A2 and is vented to the atmosphere;
  • An air charging pipe A3 is installed at the air outlet d, a solenoid valve B3 is installed in the middle of the air charging pipe A3, and the other end extends into the microwave vacuum high-pressure chamber 1-8 to form a charging air inlet f;
  • the air inlet of the air pump 3 Port e is equipped with an air intake pipe A4 and is open to the atmosphere; the suction pump 2, the air pump 3, the pressure sensor C1, the negative pressure sensor C2, the barbecue system 30, the air fryer system 31, the microwave system 32 and the touch screen and mobile phone
  • the APP monitoring system 12 is connected to the positive and negative pressure intelligent control device 5.
  • an operating method of an intelligent positive and negative pressure oven air fryer microwave oven includes: (1), a vacuum cooking program: the positive and negative pressure intelligent control device 5 opens the solenoid valve B1 With the suction pump 2, the microwave vacuum hyperbaric chamber 1-8 is pumped to a moderate vacuum through the suction pipe A1, and the food is cooked in a vacuum due to the expansion of the ingredients, so it has a unique flavor, such as turning on the air fryer system to bake French fries and cakes in a suitable vacuum And so on is more soft and delicious; (2), high-pressure cooking program; the positive and negative pressure intelligent control device 5 turns on the solenoid valve B3 and the air pump 3, and the high-pressure air enters the microwave vacuum high-pressure chamber 1-8 through the air-filling pipe A3, and cooks food under high pressure Because the seasoning easily penetrates into the ingredients, it is particularly tasty and unique, and it is easy to cook and save energy; (3).
  • Vacuum storage procedure when not in use, vacuum the microwave vacuum hyperbaric chamber 1-8 to a moderate vacuum, and the barbecue microwave system and circuit parts are in a vacuum state It is aseptic, dust-free and pollution-free to keep clean, which is good for health, and it is free of oxidation, rust, and loss to extend the service life of electrical appliances;
  • the combination of positive and negative pressure module smart home mode positive and negative pressure oven, air fryer, microwave oven can follow Module function design and manufacture, not only as a separate invention right for independent production and use, but also can be organically combined with other electrical appliances and modular cabinets under the control of the touch screen and mobile phone APP monitoring system 12 to form a fully functional smart modular home.
  • the intelligent positive and negative pressure system can be shared, and the appearance, shape and color are basically uniform, neat and harmonious, in line with the popular trend, making the smart oven air fryer microwave oven more energy-efficient, low-consumption and suitable for use.
  • an intelligent positive and negative pressure fresh-keeping compartment including a compartment (box) body 7; the compartment (box) body 7 is provided with an intelligent positive and negative pressure system and a refrigeration system 8.
  • the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure airflow carrying object generation processor;
  • the positive and negative pressure cabin 1 is designed as a box (box) type vacuum hyperbaric cabin 1-9 according to the specific requirements of an intelligent positive and negative pressure preservation compartment (container);
  • the box (box) vacuum hyperbaric cabin 1-9 includes: Body 1.1, cabin door 1.2, mechanical airtight mechanism 1.3, cabin internal and external sealing connector 1.4;
  • the cabin door 1.2 is the compartment door of the positive and negative pressure preservation compartment;
  • a mechanical airtight mechanism 1.3 is provided between the door 1.2 and the cabin body 1.1;
  • the outside of the compartment (box) vacuum hyperbaric chamber 1-9 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, Refrigeration system 8, air water making device 11, filtered water tank 11.1, touch screen and mobile phone monitoring system 12; an air extraction pipe A1 is installed at the air inlet a of the air extraction pump 2, and an air extraction pipe A1 is installed in the middle of the air extraction pipe A1 There is a solenoid valve B1, and the other end extends into the chamber (box) vacuum hyperbaric chamber 1-9 to form its exhaust gas return port c; an exhaust pipe A2 is installed at the exhaust port b of the exhaust pump 2, and the exhaust The middle of the pipe A2 is equipped with a super-oxygen decomposer 6.7 and a solenoid valve B2, and the other end is connected to the air inlet h of the air water making device 11, and the air is vented through the air outlet n of the air water making device 11
  • the air outlet s of the adjusting device 6.1 is equipped with an air outlet pipe A7, the middle of the air outlet pipe A7 is installed with a solenoid valve B7, and the other end extends into the chamber (box) vacuum high-pressure chamber 1-9 to form its Air conditioning air inlet i;
  • the water outlet x of the air water production device 11 is equipped with an air water production pipe A10, and the air water production pipe A10 communicates with the water inlet y of the filtered water tank 11-1;
  • the condensate generated in the vacuum high-pressure chamber 1-9 flows into the water inlet Y of the condensate water collection box 11.2 installed at the bottom of the cabin, and the condensate water pipe A11 is installed at the water outlet M of the condensate water collection box 11.2 ,
  • the condensate pipe A11 extends out of the compartment (box) vacuum hyperbaric chamber 1-9 in the middle of the rear part is installed with a solenoid valve B11, the other end is connected with the water inlet
  • an operating method of an intelligent positive and negative pressure fresh-keeping compartment including: (1). Vacuum detoxification and heat removal cleaning procedure: fresh goods that need to be preserved and transported After loading into the compartment (box) vacuum hyperbaric chamber 1-9, close the door 1.2, touch the door switch 1.8 or manually open it by the driver, the positive and negative pressure intelligent control device 5 will issue an instruction: open the solenoid valves B1 and B2 A1, A2 air extraction pipeline (Van vacuum high-pressure chamber extraction and return port c ⁇ A1 ⁇ B1 ⁇ A1 ⁇ pump 5 air inlet a ⁇ air outlet b ⁇ A2- super oxygen decomposer air inlet g ⁇ air outlet m ⁇ A2 ⁇ B2 ⁇ A2 ⁇ Air inlet h ⁇ Air outlet n ⁇ A2 ⁇ Exhaust into the atmosphere), and turn on the air extraction pump 2 to pump the chamber (box) vacuum hyperbaric chamber 1-9 to a moderate vacuum (- 0.01K
  • the vacuum promotes the volatile metabolites in the fruit and vegetable tissues, such as ethylene acetaldehyde and ethanol, to escape and be pumped away.
  • negative pressure to inhibit the reproduction of residual bacteria and reduce the hidden dangers of fruit and vegetable diseases and aging;
  • Decompression and humidification storage program the positive and negative pressure intelligent control device 5 according to the pressure standard of the preset program and the real-time feedback of the negative pressure sensor C2, By turning on or off the suction pump 2 to maintain a proper negative pressure, low oxygen and low temperature environment in the chamber (box) vacuum hyperbaric chamber 1-9, reduce the breathing intensity of fruits and vegetables, inhibit the biosynthesis of ethylene, delay the decomposition of chlorophyll, and inhibit carotenoids and carotenoids.
  • the synthesis of lycopene slows down the processes of starch hydrolysis, sugar increase and acid consumption, thereby delaying the maturation and aging of fruits and vegetables.
  • the humidifier 6.5 is turned on to increase the humidity in the cabin, prevent the water from escaping from fruits and vegetables, and maintain the fruits and vegetables for a longer time.
  • Negative oxygen ions make the water molecule clusters of moisture smaller and more convenient for fruits, vegetables, meat and fish to absorb. It also inhibits the metabolism of biological tissues, reduces respiratory intensity, and reduces Slow enzyme activity And a certain degree of sterilization and purification. Under positive pressure, super oxygen can penetrate into the deeper interior of fruits, vegetables, meat and fish to better play the role of sterilization and disinfection; (4).
  • Modified atmosphere and pressure storage procedure positive and negative pressure intelligent control device 5 according to Program settings or sensor feedback, timely open the air extraction pipeline and turn on the air extraction pump 2 and the super oxygen decomposition device 6.7 to extract the decomposed, sterilized and degraded dirty air out of the cabin, and then enable the solenoid valves B3, B6, B7 and B2 to open A3 , A9, A6, A7 air-conditioning charging pipeline (air pump outlet d ⁇ A3 ⁇ A9 ⁇ A6 ⁇ B6 ⁇ A6 ⁇ air conditioning device air inlet t ⁇ air outlet s ⁇ A7 ⁇ B7 ⁇ A7 ⁇ vacuum high-pressure cabin gas Adjust the air inlet i) and turn on the air pump 3 to drive the air flow through the hollow fiber membrane of the air conditioning device 8.1, oxygen is separated, and the high nitrogen and low oxygen gas enters the vacuum hyperbaric chamber 1-9, and the solenoid valves B3, B5, B4 Open the air conditioning circulation pipeline (vacuum hyperbaric chamber 1-9 circulation return port j ⁇ A3 ⁇ B3
  • Proper humidity can effectively control the respiration rate of stored fruits and vegetables, while preventing anaerobic respiration and carbon dioxide poisoning, delaying the aging process, preventing the deterioration of the quality of stored fruits and vegetables and the loss of flavor, and the positive pressure humidity maintains and replenishes the moisture of fruits and vegetables to maximize the freshness of fruits and vegetables.
  • open door and discharge protection program if someone opens the compartment door during super-oxygen sterilization or air-conditioning storage, the door switch will feedback immediately, and the positive and negative pressure intelligent control device 5 will immediately control and stop the super-oxygen or air-conditioning program At the same time, open the air extraction pipeline and start the air extraction pump 2, and quickly pump the super-oxygen or high-nitrogen low-oxygen gas to the super-oxygen decomposer 6.7 to be decomposed and discharged. Supplementary suction negative pressure in 9, so users can't touch super oxygen and high nitrogen and low oxygen gas and avoid harm.
  • the intelligent control device 5 can also start the air pump 3 and enable the solenoid valves B3 and B2 to open the air-to-water and air-filling pipeline (inflating Pump air outlet d ⁇ A3 ⁇ A9 ⁇ B2 ⁇ A2 ⁇ air inlet h ⁇ outlet n ⁇ A2 ⁇ exhaust to the atmosphere), drive the air outside the vehicle compartment into the air water production device 11 to make water; (7) Low temperature Storage auxiliary fresh-keeping program: After starting up, the positive and negative pressure intelligent control device 5 will start the refrigeration system 8, which is connected to the evaporator air-cooling combination 8.1 through the refrigeration pipe A13, and is the compartment (box) through the feedback and control of the temperature sensor controller C9 Type vacuum hyperbaric chamber 1-9 provides corresponding low temperature, and assists the positive and negative pressure system to keep the stored items fresh.
  • the touch screen and mobile phone monitoring system 12 can operate and monitor the real-time status of the positive and negative pressure preservation compartment (container) through the touch screen 12.1 and mobile APP 12.2, so that the preservation compartment (Container) can intelligently follow the set procedures and real-time instructions to achieve high efficiency, low consumption and safety; the touch screen 12.1 or mobile phone APP 12.2 will display and remind the temperature, humidity, gas concentration and storage items in the compartment The user can remotely monitor and manipulate information such as time and shelf life from the cab or outside the vehicle compartment, which is very convenient; the above procedures are automatically controlled by the positive and negative pressure system and set to the shortcut key mode on the touch screen and mobile phone monitoring system 12 Manipulation.
  • an intelligent positive and negative pressure preservation warehouse including a warehouse body 7; the warehouse body 7 is provided with an intelligent positive and negative pressure system, a refrigeration system 8, a touch screen and a mobile phone monitoring system 12;
  • the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier generation processor; the positive and negative pressure cabin 1 is in accordance with the intelligent
  • the specific requirements of the positive and negative pressure preservation warehouse are designed as storage-type vacuum hyperbaric chambers 1-10; the storage-type vacuum hyperbaric chambers 1-10 include: cabin 1.1, cabin door 1.2, mechanical airtight mechanism 1.3, and internal and external sealing connectors 1.4;
  • the hatch 1.2 is the door of the positive and negative pressure fresh-keeping warehouse;
  • the mechanical airtight mechanism 1.3 is arranged between the door 1.2 of the storage-type vacuum hyperbaric chamber 1-10 and the cabin 1.1; the mechanical air
  • the sealing mechanism 1.3 includes a lock
  • the internal and external pipeline joint controller 1.4 is fixedly arranged at the rear of the storage-type vacuum hyperbaric cabins 1-10, and all pipelines entering and exiting the cabins and The circuits are all connected to the inside and outside sealed connectors 1.4 and pass in and out through them, so as to maintain the sealing performance of the storage-type vacuum hyperbaric chamber 1-10.
  • the storage-type vacuum high-pressure cabin 1-10 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, and a refrigeration system 8 , Air water making device 11, filtered water tank 11.1, touch screen and mobile phone monitoring system 12; an air extraction pipe A1 is installed at the air inlet a of the air extraction pump 2, and a solenoid valve is installed in the middle of the air extraction pipe A1 B1, the other end extends into the storage-type vacuum hyperbaric chamber 1-10 to form its exhaust gas return port c; the exhaust port b of the exhaust pump 2 is equipped with an exhaust pipe A2, and the middle of the exhaust pipe A2 is installed with a super Oxygen decomposer 6.7 and solenoid valve B2, the other end is connected to the air inlet h of the air water making device 11, and the air is vented from the air outlet n of the air water making device 11; the air outlet d of the air pump 3 is installed There is
  • a solenoid valve B11 is installed in the middle, and the other end is connected to the water inlet v of the filtered water tank 11.1.
  • the outlet o of the filtered water tank 11.1 is installed with a humidification water pipe A12.
  • the middle of the humidification water pipe A12 is installed with a solenoid valve B12, and the other end extends Enter the storage-type vacuum high-pressure chamber 1-10, which is connected to the water inlet R of the humidifier 6.5;
  • the refrigeration system 8 is equipped with a refrigeration cycle pipe A13, and the refrigeration cycle pipe A13 extends into the storage type Inside the vacuum hyperbaric chamber 1-10, it is connected with the evaporator air-cooling assembly 8.1;
  • the touch screen and the mobile phone monitoring system 12 include: touch screen 12.1, mobile phone APP 12.2, anti-fog camera device 12.3, Anti-fog camera device 12.3 is installed inside and outside the warehouse body 7 where it needs to be monitored;
  • inside the storage-type vacuum hyperbaric chamber 1-10 is installed a positive and negative pressure airflow carrying object generation processor and sensors, including: humidifier 6.5, super Oxygen generator 6.2, negative ion generator 6.3, gas catalyst controlled release device 6.4, condensate water collection box 11.2, pressure sensor C1, negative pressure sensor C2, super oxygen
  • an operation method of an intelligent positive and negative pressure fresh-keeping warehouse includes: (1) a vacuum detoxification and heat removal cleaning procedure: fresh goods to be stored are transported into the warehouse After the vacuum hyperbaric chamber 1-10, close the door 1.2, touch the door switch 1.8 or manually open it by the warehouse clerk, the positive and negative pressure intelligent control device 5 will issue an instruction: make the solenoid valves B1 and B2 open the A1 and A2 exhaust pipes (Vacuum hyperbaric chamber suction and return c ⁇ A1 ⁇ B1 ⁇ A1 ⁇ air pump 5 air inlet a ⁇ air outlet b ⁇ A2-super oxygen decomposer air inlet g ⁇ air outlet m ⁇ A2 ⁇ B2 ⁇ A2 ⁇ air Water-making device air inlet h ⁇ air outlet n ⁇ A2 ⁇ exhaust into the atmosphere), and turn on the air pump 2 to pump the storage vacuum high-pressure chamber 1-10 to a moderate vacuum (-0.01KPa ⁇ -0.09MPa), and remove the fruits and
  • the vacuum promotes the volatile metabolites in the fruit and vegetable tissues, such as ethylene acetaldehyde, ethanol and other harmful gases to escape and be pumped away.
  • negative pressure is used to inhibit the reproduction of residual bacteria and reduce The hidden dangers of fruit and vegetable diseases and aging;
  • the positive and negative pressure intelligent control device 5 maintains the storage vacuum by turning on or off the suction pump 2 according to the pressure standard of the preset program and the real-time feedback of the negative pressure sensor C2
  • the appropriate negative pressure, low oxygen and low temperature environment in the hyperbaric chamber 1-10 reduces the breathing intensity of fruits and vegetables, inhibits the biosynthesis of ethylene, delays the decomposition of chlorophyll, inhibits the synthesis of carotenoids and lycopene, and slows down the hydrolysis of starch and the increase of sugar.
  • the humidifier 6.5 is turned on to increase the humidity in the cabin, prevent the water from escaping from the fruits and vegetables, and maintain the freshness of fruits and vegetables for a longer time; (3), super-oxygen pressurized sterilization and degradation process :
  • the positive and negative pressure intelligent control device 5 according to the program settings and the sensors C3, C4, C6 feedback, and timely instructions to turn on the super oxygen generator 6.2, the negative oxygen ion generator 6.3 and the humidifier 6.5 to make the storage vacuum hyperbaric chamber 1-10
  • the super oxygen, humidity and negative oxygen ions inside reach the required standards, and the solenoid valves B3 and B4 are opened to the A3 and A4 charging pipelines (atmospheric intake ⁇ A4 ⁇ air filter ⁇ A4 ⁇ B4 ⁇ A4 ⁇ air pump Air inlet e ⁇ air outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ vacuum hyperbaric chamber air inlet f), and turn on the air pump 3 to properly pressuri
  • the appropriate high pressure also prevents the escape of moisture in the flesh of fruits, vegetables, and fish. Under positive pressure, moisture is more likely to penetrate into the flesh of fruits and vegetables to replenish the water lost due to cold storage and negative pressure. Negative oxygen ions make moisture. The smaller water cluster size is more convenient for the absorption of fruits, vegetables, meat and fish. It also inhibits the metabolism of biological tissues, reduces the respiratory intensity, slows down the activity of enzymes, and has certain sterilization and purification effects. Under positive pressure, it can penetrate into the deeper interior of fruits, vegetables, meat and fish to better play the sterilization and disinfection effect; (4).
  • Modified atmosphere pressure storage program positive and negative pressure intelligent control device 5 according to program settings or sensor feedback, open the air extraction pipeline in a timely manner And turn on the air extraction pump 2 and the super oxygen decomposition device 6.7 to extract the decomposed, sterilized and degraded dirty air out of the cabin, and then make the solenoid valves B3, B6, B7, and B2 open the A3, A9, A6, A7 air conditioning and inflation pipelines (Air pump outlet d ⁇ A3 ⁇ A9 ⁇ A6 ⁇ B6 ⁇ A6 ⁇ air conditioning device air inlet t ⁇ air outlet s ⁇ A7 ⁇ B7 ⁇ A7 ⁇ vacuum high-pressure cabin air inlet i) and turn on the air pump 3 , Driving the air flow through the hollow fiber membrane of the air conditioning device 6.1, oxygen is separated, the high nitrogen and low oxygen gas enters the vacuum hyperbaric chamber 1-10, and the solenoid valves B3, B5, B4 are opened to ventilate the air conditioning circulation pipeline (vacuum hyperbaric chamber circulation Return air port j ⁇ A3 ⁇
  • a proper ratio of nitrogen-rich and oxygen-poor environment is formed in the storage-type vacuum hyperbaric chamber 1-10, and proper positive pressure and proper humidity are maintained to effectively control the respiration rate of stored fruits and vegetables, while preventing anaerobic respiration and Carbon dioxide poisoning delays the aging process, prevents the deterioration of the quality of stored fruits and vegetables and the loss of flavor, the positive pressure moisture maintains and replenishes the moisture of the fruits and vegetables, and maintains the freshness of the fruits and vegetables to the maximum extent; (5), open door protection procedures: if super oxygen sterilization Or someone opens the warehouse door during the controlled atmosphere storage, the door switch will feedback immediately, and the positive and negative pressure intelligent control device 5 will immediately operate to stop the super-oxygen or gas-regulated program.
  • Nitrogen-low oxygen gas is quickly pumped to the super-oxygen decomposer 6.7 to be decomposed and discharged. Since the air flows from the person’s side to the storage vacuum hyperbaric chamber 1-10 to supplement the suction negative pressure, the user cannot touch the super-oxygen and high-nitrogen-low pressure. The oxygen gas is protected from its harm. (6) Air water production process, the moist waste gas drawn by the suction pump 2 from the storage-type vacuum hyperbaric chamber 1-10 enters the super oxygen decomposer 6.7 The super oxygen is decomposed and then enters the air water production device 11, the water is condensed and filtered Become drinking standard pure water, providing uninterrupted water source for humidifier 6.5.
  • the intelligent control device 5 can also start the air pump 3 and enable the solenoid valves B3 and B2 to open the air and water filling pipeline (the air outlet of the air pump) d ⁇ A3 ⁇ A9 ⁇ B2 ⁇ A2 ⁇ air inlet h ⁇ outlet n ⁇ A2 ⁇ discharge into the atmosphere), drive the air outside the warehouse to enter the air water production device 11 to make water; (7) low-temperature storage auxiliary fresh-keeping Procedure: After starting up, the positive and negative pressure intelligent control device 5 starts the refrigeration system 8, and connects to the evaporator air-cooling combination 8.1 through the refrigeration pipe A13, and is a storage-type vacuum high-pressure chamber through the feedback and control of the temperature sensor controller C9 1- 10 Provide corresponding low temperature, and assist the positive and negative pressure system to keep the stored items fresh; (8), the remote and short-range operation monitoring function: the touch screen and mobile phone monitoring system 12 can be controlled in real time through the touch screen and mobile phone APP to monitor positive and negative Press the real-time status
  • an intelligent positive and negative pressure module cabinet including a cabinet body 7; the cabinet body 7 is provided with a smart positive and negative pressure system, a cooling and heating system 8.3, a touch screen and a mobile phone monitoring System 12; the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an inflator 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure airflow carrier generation processor; the positive and negative pressure cabin 1 is in accordance with The specific requirements of the intelligent positive and negative pressure modular cabinet are designed as a modular vacuum hyperbaric chamber 1-11; the modular vacuum hyperbaric chamber 1-11 includes: a cabin 1.1, a cabin door 1.2, a pneumatic airtight mechanism 1.5, and a sealed connection between inside and outside the cabin 1.4.
  • the cabin door 1.2 is the door of the positive and negative pressure modular cabinet; the modular vacuum high-pressure cabin 1-11 has a pneumatic airtight seal between the door 1.2 and the cabin 1.1 Mechanism 1.5;
  • the pneumatic airtight mechanism 1.5 includes a pneumatic sealing tongue 1.51 and a sealing tongue retractable airbag 1.52 integrated on the back of the sealing tongue 1.51; the sealing tongue 1.51 and sealing tongue expansion airbag 1.52 of the integrated mechanism
  • the outer part of the tongue section is made of sealing rubber, and the interior is resistant Bend the metal core; the sealing tongue folding telescopic airbag 1.52 is a foldable rubber airbag that can be expanded when inflated.
  • the rear of the airbag is provided with an inflation socket 1.53; an inflation plug 1.54 is inserted into the inflation socket 1.53, and the inflation There are a total of 4 plugs 1.54, which are respectively installed at the midpoints of the four side pipes connected to the four sides of the square ring-shaped air-tight mechanism inflation branch pipe A8.1.
  • the top of the pneumatic square ring-shaped inflation pipe A8.1 The side pipe is vertically connected to the air-filling pipe A8, and communicates with the air outlet d of the air pump 3 through the solenoid valve B5, pipe A3 and solenoid valve B3.
  • the door 1.2 touches the pneumatic door switch 1.8 and the air pump 3 Immediately start to inflate the sealing tongue to fold the telescopic airbag 1.52 to extend it, and to push the sealing tongue 1.51 out of the cabin airtight groove 1.11, and into the cabin door airtight groove 1.21 set at the corresponding position on the opposite side.
  • the pneumatic door switch 1.8 is used to deflate the retractable airbag 1.52 for the sealing bolt, and the sealing bolt 1.51 is retracted to open the door; the inside and outside of the cabin are sealed and communicated 1.4 is fixedly installed at the rear of the modular vacuum hyperbaric chamber 1-11. All pipelines and circuits entering and exiting the chamber are connected to the internal and external sealed connector 1.4 and enter and exit through it to maintain the modular vacuum hyperbaric chamber 1-11. The sealing performance.
  • the modular vacuum high-pressure chamber 1-11 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, and a cooling and heating system.
  • the air suction pipe A1 is installed at the air inlet a of the air suction pump 2, and the air suction pipe A solenoid valve B1 is installed in the middle of A1, and the other end extends into the modular vacuum hyperbaric chamber 1-11 to form its exhaust gas return port c;
  • the exhaust port b of the exhaust pump 2 is equipped with an exhaust pipe A2, the exhaust The middle part of the air pipe A2 is equipped with a super oxygen decomposer 6.7 and a solenoid valve B2, the other end is connected to the air inlet h of the air water making device 11, and the air is vented from the air outlet n of the air water making device 11 after passing
  • the four-side pipes of the square ring-shaped inflatable pipeline A8.1 are connected with each other, and the inflatable plugs 1.54 are connected to their points, and the inflatable plugs 1.54 are inserted and connected to their corresponding inflatable sockets 1.53; the inflatable The pipe A3 is also connected to an air-water-making and charging pipe A9, which is connected to the solenoid valve B2 and connected to the air-water-making device 11 air inlet h through the exhaust pipe A2; the air inlet of the air-conditioning device 6.1
  • An air-conditioning air inlet pipe A6 is installed at the port t, a solenoid valve B6 is installed in the middle of the air-conditioning air inlet pipe A6, and the other end is connected to the air-filling pipe A3, and then connected to the air outlet d of the air pump 3.
  • the air-conditioning device The air outlet s of 6.1 is equipped with an air-conditioning air outlet pipe A7, the middle of the air-conditioning air pipe A7 is equipped with a solenoid valve B7, and the other end extends into the modular vacuum high-pressure chamber 1-11 to form its air-conditioning air inlet i;
  • the water outlet x of the air water making device 11 is equipped with an air water pipe A10, and the air water pipe A10 is in communication with the water inlet y of the filter water tank 11-1; in the modular vacuum hyperbaric chamber 1-11
  • the generated condensate flows into the water inlet Y of the condensate water collection box 11.2 installed at the bottom of the cabin, and the other water inlet N of the condensate water collection box 11.2 is installed with dehumidification condensation Water pipe A31, the other end of the dehumidification condensate pipe A31 is connected to the condensate drain H of the dehumidification device; a condensate pipe A11 is installed
  • a solenoid valve B12 is installed in the middle of the humidification water pipe A12, and the other end extends into the modular vacuum hyperbaric chamber 1-11, which is connected to the water inlet R of the humidifier 8.5; the refrigeration and heating system 8.3 is equipped with a circulating pipe A13.
  • the circulation pipe A13 extends into the modular vacuum hyperbaric chamber 1-11 and is connected to the heat exchanger 8.4;
  • the touch screen and the mobile phone monitoring system 12 include: cabinet door touch screen 12.1, mobile phone APP 12.2, high-definition protection Fog camera device 12.3, the high-definition anti-fog camera device 12.3 is installed inside and outside the cabinet 7 where it needs to be monitored;
  • the modular vacuum hyperbaric chamber 1-11 is provided with a positive and negative pressure airflow generation processor and a sensor , Including: humidifier 6.5, air disinfection and sterilization device 6.9, air filter and freshener 6.10, dehumidification device 6.11, condensate water collection box 11.2, pressure sensor C1, negative pressure sensor C2, super oxygen sensor C3, negative oxygen ion sensor C4 , Chlorine dioxide sensor C5, humidity sensor C6, oxygen sensor C7, nitrogen sensor C8, temperature sensor controller C9, water level sensor controller C10, air particulate matter sensor C11; inside and All the externally installed airflow generation processors, sensors, sole
  • an operating method of a smart positive and negative pressure module cabinet because the smart positive and negative pressure module cabinet has a vacuum, high pressure, constant temperature, constant humidity, constant pressure, sterile, and dust-free environment, A variety of items and equipment can be placed and installed, such as tableware, kitchen utensils, home appliances, etc.
  • the operation methods include: (1).
  • Vacuum cleaning procedure put tableware, kitchen utensils, small home appliances, and small objects into the modular vacuum high pressure
  • the positive and negative pressure intelligent control device 5 will issue an instruction: open the solenoid valves B1 and B2 to the A1 and A2 exhaust pipes (vacuum high-pressure cabin exhaust gas return port c ⁇ A1 ⁇ B1 ⁇ A1 ⁇ Air pump 5 air inlet a ⁇ air outlet b ⁇ A2 ⁇ super oxygen decomposer air inlet g ⁇ air outlet m ⁇ A2 ⁇ B2 ⁇ A2 ⁇ air water system air inlet h ⁇ out Air port n ⁇ discharge into the atmosphere), and turn on the suction pump 2 to pump the modular vacuum hyperbaric chamber 1-11 to a moderate vacuum (-0.01KPa ⁇ -0.09MPa), to remove some bacteria and microorganisms and the dirty air in the cabin, and to clean the air and Space; (2), disinfection and sterilization procedures: the positive and
  • tableware, kitchenware, small appliances and small items can be stored in vacuum after super-oxygen sterilization, and high-end clothing of paintings, calligraphy, documents, antiques and cultural relics can be stored in vacuum with low oxygen and dust-free, or use specific gas Adjustable gas storage, or constant temperature, constant humidity, and constant pressure storage;
  • Multi-purpose display refrigeration in the wine bar packaging food, beverages, alcohol, fruit, dried fruits, sweets and pastries and other food items, all of which can adopt transparent cabinet doors Demonstrative refrigerated storage;
  • Remote and short-range operation and monitoring function The touch screen and mobile phone monitoring system 12 can be operated and monitored in real-time over the real-time status of the positive and negative pressure module cabinet through WIFI and mobile phone APP, so that the module cabinet can Intelligently follow the set procedures and real-time instructions to achieve high-efficiency and low-consumption functions; the high-definition anti-fog camera device 12.3 captures the condition of the items in the refrigerator in real time, and the box door touch screen 1
  • the said high-definition anti-fog camera device 12.3 in addition to real-time monitoring and recording, especially when the refrigerator door is closed , Starting from a position far away from the box, moving with the box door 1.2 closed, automatic continuous shooting of several pictures of all items in the refrigerator View photos, or automatically record a small video at the same time, for users to view in the mobile APP, or in the short distance without opening the door of the box without leaking the vacuum and not dropping the temperature, you can view at any time on the box door touch screen before the last time the door is closed.
  • the combination of positive and negative pressure modules Smart home mode The smart positive and negative pressure module cabinets are designed and manufactured according to the module functions, which are both a separate invention right Independent production and use, and can be organically combined with other positive and negative piezoelectric devices and modular cabinets under the control of the touch screen and mobile phone APP monitoring system 12 to form a fully functional smart positive and negative pressure modular combined home, not only the modular cabinet itself is high-energy, efficient and low-consumption It is suitable for use, and it can also share the intelligent positive and negative pressure system, refrigeration system, and air water system that share other positive and negative piezoelectric devices and modular cabinets, and the appearance, shape and color are basically uniform, neat and harmonious, in line with the popular trend.
  • the advantages of the positive and negative pressure system and the operating method thereof and the positive and negative piezoelectric device using the system in the embodiments of the present invention are as follows:
  • the existing refrigerators basically rely only on low-temperature antibacterial storage methods, and there has been no technological breakthrough.
  • the intelligent positive and negative pressure system and its operation method described in the embodiments of the present invention are intelligently controlled by using the intelligent positive and negative pressure technology and its operation method.
  • vacuum, high pressure, super oxygen, catalyst, air-conditioning preservation, negative ions, humidification, dehumidification, disinfection, air purification, air water production and low temperature storage and other technologies to be applied to electrical appliances it is discussing how to solve the problem of vacuum, Technologies such as high pressure, super oxygen, and air-conditioning preservation are better used in refrigerators in the scientific research process where there are technical difficulties.
  • the characteristics of vacuum and high pressure have been known for a long time.
  • the positive and negative pressure technology and the positive and negative pressure system and the operation method thereof proposed in the embodiments of the present invention use atmospheric pressure or local instantaneous pressure as the zero standard starting point, and apply vacuum and high pressure of appropriate pressure to household appliances based on existing materials and technology.
  • super oxygen can quickly sterilize and degrade pesticide residues and organic dirt, inhibit the vitality of enzymes, can keep fresh fruits, vegetables, meat and fish to purify the air, etc.
  • the advantages have been attracting people to apply it to production and life needs. However, exposure to super oxygen will endanger human health, and there has been no ideal solution for applying it to electrical appliances.
  • modified atmosphere preservation It is a more advanced method for fresh-keeping and storage of fruits and vegetables.
  • concentration ratio of oxygen, carbon dioxide, and nitrogen in the storage space it inhibits the respiration of fruits and vegetables, reduces the consumption of organic substances, maintains the original fine flavor and aromatic odor, delays metabolism, and controls
  • the growth and reproduction of certain pathogens and the occurrence of physiological diseases have a much better preservation effect than ordinary refrigeration.
  • the preservation period is significantly longer and the power consumption is lower.
  • controlled atmosphere storage requires an airtight space that can resist a certain pressure. Mix the mixed gas with the best concentration and input it into the storage space. At the same time, the waste gas should be discharged in a timely manner.
  • the venting of the modified atmosphere gas requires the accurate maintenance of the circulation system, etc., which are not available in ordinary refrigerators.
  • the prior art refrigerator also has a fatal defect that affects preservation, which has not been solved yet or has not been discovered or paid attention to. That is, there is no ventilation function, and the air in the box is quickly fouled, which affects the preservation effect. Although there is a little when opening and closing the door of the box.
  • the ventilation effect is incomplete and unreliable; all the above shortcomings are basically solved in the embodiment of the present invention.
  • the positive and negative pressure system of the embodiment of the present invention intelligently regulates the air flow, or is equipped with ozone, gas catalyst, negative ions, and gas.
  • Adjusting multiple payloads such as gas and water, entering and exiting the positive and negative pressure chambers in an orderly manner, is just like human breathing. Only by exhaling waste gas and inhaling fresh air can life and vitality be maintained.
  • the intelligent positive and negative pressure system is precisely regulated to make positive and negative pressures.
  • the fresh goods stored in the ballast are in the most suitable pressure range, the best gas composition, the best humidity and temperature, and the best storage environment can be kept fresh for as long as possible.
  • the embodiment of the present invention uses a smart positive and negative pressure system to regulate and integrate various technologies such as vacuum, high pressure, super oxygen, catalyst, air-conditioning preservation, negative ions, humidification, dehumidification, disinfection, air purification, air water production, and low-temperature storage.
  • the combination is applied to the positive and negative piezoelectric devices, giving the electrical breathing function, making the electrical appliances live, and upgrading the existing electrical appliances and traditional technology, and developing a subdivision field of the positive and negative piezoelectric devices.
  • the positive and negative pressures used in the embodiments of the present invention will gradually expand to deeper vacuum and ultra-high pressure.
  • Hardware equipment including positive and negative pressure chambers and suction inflators will be more economical and more suitable for use.
  • Software and hardware including the chip processor of the intelligent control device for positive and negative pressure will be gradually upgraded, the positive and negative pressure technology will be perfected day by day, and the positive and negative piezoelectric devices will bring people a better life.
  • the technical principle of the intelligent positive and negative pressure preservation compartment and the intelligent positive and negative pressure warehouse is basically the same as that of the intelligent positive and negative pressure refrigerator, and its advantages will not be described separately)
  • the existing washing machine only relies on the mechanical movement of the pulsator or the drum to wash laundry with detergent, which results in large abrasion and low washing efficiency.
  • the intelligent positive and negative pressure washing machine in the embodiment of the present invention is intelligently controlled and integrated high-pressure, vacuum, super oxygen and other technologies to be organically combined and combined in the washing, dehydration, and drying processes, which reduces the wear of clothes and improves the cleanliness and bulkiness of clothes.
  • the super-oxygen disinfection program is added, and the washing time is effectively reduced.
  • the whole body of the range hood is designed to be a fully sealed super-oxygen cabin except for the upper oil exhaust port.
  • the cover plate of the range hood is designed as a sealed door at the same time. The door is locked and sealed when the automatic cleaning is started.
  • the upper part and the volute impeller are equipped with several automatic rotating sprinklers, which spray super-oxygen water to efficiently decompose and remove the oil, and then use the degreaser and clean hot water to spray all parts of the chassis until all Clean, and finally use hot air to automatically dry the inside of the chassis and discharge the exhaust gas into the flue.
  • the intelligent positive and negative pressure oven air fryer microwave oven mainly sets the oven air fryer and microwave system in a vacuum high-pressure chamber, which truly realizes vacuum cooking and high-pressure cooking, and cooks food in a vacuum
  • the swelling of the ingredients gives it a unique flavor, especially when the air fryer cooks French fries, cakes, etc. in a proper vacuum, it is softer and more delicious.
  • Food cooked under high pressure is particularly flavorful because the seasoning easily penetrates into the ingredients.
  • the positive and negative pressure chamber can be evacuated to a moderate vacuum, and the barbecue microwave system and circuit system are in a vacuum state, aseptic, dust-free, pollution-free, clean and beneficial to health, no oxidation, no rust, no loss, preservation and extension of the service life of the appliance .
  • the intelligent positive and negative pressure module cabinet of the embodiment of the present invention is equipped with a positive and negative pressure system, which has a vacuum, high pressure, constant temperature, constant humidity, constant pressure, aseptic, dust-free environment, and can integrate the functional systems of various electrical appliances and equipment.
  • positive and negative pressure module cabinet It is designed to be installed in the positive and negative pressure module cabinet or directly installed and placed in it, including: positive and negative pressure disinfection cabinet, positive and negative pressure kitchenware sideboard, positive and negative pressure wine and fruit display refrigerator, positive and negative pressure air conditioner indoor unit, positive and negative pressure humidification Positive and negative pressure dehumidifier, positive and negative pressure air purifier, positive and negative pressure coffee juice small appliance cabinet, positive and negative pressure clothing bookcase, positive and negative pressure painting and calligraphy antiques cabinet, positive and negative pressure safe and various functions of positive and negative Pressed objects display cabinet;
  • the intelligent positive and negative pressure system and its operation method can be applied to the functional use, disinfection storage and placement of the above various electrical equipment and articles and utensils, as well as non-destructive storage during suspension of work.
  • the existing household appliances are basically individually designed, used, and placed separately.
  • the positive and negative pressure smart electrical appliances and the positive and negative pressure module cabinets in the embodiments of the present invention are designed according to the modules, and the appearance, shape and color are basically uniform, neat and harmonious. Keeping pace with the times is in line with the popular trend. It can be used independently, and can be combined with other positive and negative pressure smart appliances and positive and negative pressure modular cabinets through the touch screen and mobile phone APP to control and identify the monitoring system to form a fully functional intelligent integrated home.
  • Various types of positive and negative pressure module cabinets organically combine various related electrical equipment and articles and appliances, centrally placed neatly and beautifully, and share resources, such as sharing a smart positive and negative pressure system, an air pump and an air pump, saving energy and reducing noise And it integrates various related electrical equipment and articles into the same smart home system very conveniently and naturally.
  • Figure 1 is a schematic diagram of the technical principle of an intelligent positive and negative pressure system provided by an embodiment of the present invention
  • FIG. 2 is a side view of the technical principle of the smart positive and negative pressure refrigerator provided by an embodiment of the present invention
  • Figure 3 is an enlarged view of a pneumatic airtight mechanism of a positive and negative pressure refrigerator provided by an embodiment of the present invention
  • FIG. 4 is an enlarged view of a pneumatic airtight mechanism of a positive and negative pressure refrigerator provided by an embodiment of the present invention
  • FIG. 5 is a front view of the technical principle of a smart positive and negative pressure refrigerator provided by an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of the technical principle and an enlarged view of a mechanical airtight mechanism of an intelligent positive and negative pressure washing machine provided by an embodiment of the present invention
  • FIG. 7 is a schematic diagram of the technical principle and an enlarged view of a mechanical airtight mechanism of an intelligent positive and negative pressure dish washing and fruit and vegetable washing machine provided by an embodiment of the present invention
  • FIG. 8 is a schematic diagram of the technical principle of the intelligent super-oxygen water washing range hood and an enlarged view of the side and bottom cross-sections of the automatic rotating spray ball and the sealing and waterproof mechanism provided by an embodiment of the present invention
  • FIG. 9 is a schematic diagram of the technical principle of the intelligent positive and negative pressure oven air fryer microwave oven and an enlarged view of the mechanical airtight mechanism provided by an embodiment of the present invention.
  • FIG. 10 is a schematic diagram of the technical principle of the intelligent positive and negative pressure fresh-keeping compartment provided by an embodiment of the present invention.
  • FIG. 11 is a schematic diagram of the technical principle of an intelligent positive and negative pressure fresh-keeping warehouse provided by an embodiment of the present invention.
  • Fig. 12 is a schematic diagram of the technical principle of an intelligent positive and negative pressure module cabinet provided by an embodiment of the present invention.
  • Refrigeration and heating system 8.3, heat exchanger 8.4) ordinary refrigerator compartment 9, ordinary freezer compartment 10, air water production device 11 (filter water tank 11.1, condensate water collection box 11.2), touch screen and mobile phone monitoring system 12 ( Box door touch screen 12.1, mobile phone APP 12.2, high-definition anti-fog camera 12.3, wireless anti-fog camera 12.4), drying system 15 (roller mechanism 15.1, elution drying control mechanism 15.2, roller sealed bearing seat 15.3, large Pulley 15.4, motor combination 15.5,), drain pump washing 16, water inlet pump 17, detergent pull box 18, dish washing and drying system 19, fruit and vegetable cleaning system 20, equipment smoke pipe compartment 21, motor wind wheel combination 22, automatic rotation Sprinkler ball 23, oil collection drainage tank 24, oil fume control mechanism 26, water heating device 27, degreasing agent adder 28, Smoke exhaust pipe 29, barbecue system 30, air fryer system 31 and microwave system 32.
  • drying system 15 roller mechanism 15.1, elution drying control mechanism 15.2, roller sealed bearing seat 15.3, large Pulley 15.4, motor combination 15.5,
  • drain pump washing 16 water inlet pump 17, detergent pull box 18, dish washing and
  • the intelligent positive and negative pressure system includes: a positive and negative pressure cabin 1 (a positive and negative pressure cabin is also known as a vacuum hyperbaric cabin), a suction pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure cabin.
  • the positive and negative pressure cabin 1 includes: a cabin 1.1, a cabin door 1.2, an airtight mechanism 1.3, and a cabin-outside communication sealer 1.4; between the cabin 1.1 and the cabin door 1.2 An airtight mechanism 1.3 is installed; the cabin interior and exterior sealed connector 1.4 is fixedly arranged at the rear of the positive and negative pressure cabin 1, and all pipelines and circuits entering and exiting the cabin are connected to the cabin interior and exterior sealed connector 1.4 and enter and exit through it.
  • the outside of the positive and negative pressure cabin 1 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and an air conditioning device of a positive and negative pressure airflow generation processor.
  • a suction pipe A1 is installed at the air inlet a of the suction pump 2, a solenoid valve B1 is installed in the middle of the suction pipe A1, and the other end extends into the positive and negative pressure chamber 1 to form its suction return c
  • An exhaust pipe A2 is installed at the outlet b of the air pump 2, and the other end of the exhaust pipe A2 is open to the atmosphere;
  • the air outlet d of the air pump 3 is installed with an air filling pipe A3, the middle of the air filling pipe A3
  • a solenoid valve B3 is installed, and the other end extends into the positive and negative pressure cabin 1 to form its air inlet f.
  • the air inlet e of the air pump 5 is equipped with an air inlet pipe A4, and the middle of the air inlet pipe A4 is installed There is a solenoid valve B4, the other end is open to the atmosphere; the solenoid valve B4 is also connected to a circulating pipe A5, the middle of the circulating pipe A5 is installed with a solenoid valve B5, and the other end is connected to the solenoid valve B3 and extends into the positive
  • the negative pressure chamber 4 forms its circulation return air port j;
  • the air-conditioning air inlet pipe A6 is installed at the air-intake port t of the air-conditioning device 6.1, a solenoid valve B6 is installed in the middle of the air-conditioning air inlet pipe A6, and the other end is Connected to the air inflation pipe A3 and then connected to the air outlet d of the air pump 3.
  • the air outlet s of the air conditioning device 6.1 is equipped with an air conditioning air outlet pipe A7, and the middle of the air conditioning air outlet pipe A7 is equipped with a solenoid valve B7, The other end extends into the positive and negative pressure cabin 1 to form its air-regulated air inlet i.
  • the charging air inlet f is used as the circulation back of the positive and negative pressure cabin 1 Air port j;
  • the positive and negative pressure cabin 1 is also equipped with a positive and negative pressure air flow generating processor, including: super oxygen (ozone) generator 6.2, negative ion generator 6.3, gas catalyst controlled release device 6.4, humidifier 6.5;
  • the inside of the positive and negative pressure cabin 1 is also equipped with sensors, including: pressure sensor C1, negative pressure sensor C2, super oxygen sensor C3, negative oxygen ion sensor C4, chlorine dioxide sensor C5, humidity sensor C6, oxygen sensor C7, nitrogen sensor C8; the described air pump 2, air pump 3, air conditioning device 6.1, super oxygen generator 6.2, negative ion generator 6.3, gas catalyst controlled release device 6.4, humidifier 6.5, all sensors C1 ⁇ C8, All solenoid valves B1 ⁇ B7 are connected to the positive and negative pressure intelligent control device Set 5.
  • the technical principle and basic operation method of the intelligent positive and negative pressure system are: intelligently regulate air flow with positive and negative pressure, or carry super oxygen, gas catalyst, negative ions, air-regulated gas, water, etc. Load, orderly enter and exit or stay in a specific space (positive and negative pressure cabin) and exert the required influence on the items therein;
  • the specific operation method of the intelligent positive and negative pressure system is: the positive and negative pressure intelligent control device 5 according to its built-in program With the pre-stored data and the real-time feedback information of each sensor C1 ⁇ C8, after calculation and processing, the air pump 2, the air pump 3, the positive and negative pressure airflow generation processor and the solenoid valve are issued real-time specific instructions to open or close, and control Adjust the opening, closing and conversion of each suction pipe, inflation pipe and circulation pipe, intelligently regulate the level of positive and negative pressure and the airflow in the positive and negative pressure cabin 1 and the inflow, residence or outflow of its cargo.
  • the specific operation methods include : (1).
  • the operation method to adjust the positive and negative pressure chamber 1 to negative pressure (vacuum) is: the positive and negative pressure intelligent control device 5 issues an instruction to enable the solenoid valve B1 to open the A1 and A2 air extraction pipelines (positive and negative pressure chambers) Exhaust air return port c ⁇ exhaust pipe A1 ⁇ solenoid valve B1 ⁇ A1 ⁇ exhaust pump air inlet a ⁇ exhaust pump air outlet b ⁇ A2 ⁇ exhaust to the atmosphere) (when any pipeline is open, all other irrelevant solenoid valves are closed , The following text will be the same, no further description), and turn on the suction pump 2 to pump air in the positive and negative pressure chamber 1 to the set negative pressure (vacuum); (2), adjust the positive and negative pressure chamber 1 to positive pressure
  • the operation method of (high pressure) is: the positive and negative pressure intelligent control device 5 issues a command to make the solenoid valves B3 and B4 open the A3 and A4 charging pipelines (intake from
  • the negative pressure air flow carries a processor, and other unrelated solenoid valves are closed until the positive and negative pressure in the cabin or the value of the air flow carry and the residence time reach the target; 4Circulation: the air flow or its carried objects such as air conditioning gas need to circulate through
  • the positive and negative pressure intelligent control device 5 issues instructions to make the solenoid valves B6 and B7 open the A6 and A7 air-conditioning inflation pipelines (air pump Air outlet d ⁇ A3 ⁇ A6 ⁇ B6 ⁇ A6 ⁇ Air conditioning device air inlet t ⁇ Air outlet s ⁇ A7 ⁇ B7 ⁇ A7 ⁇ Positive and negative pressure cabin air inlet i), and at the same time make solenoid valves B3, B4, B5 Open A3, A5, A4 air conditioning circulation pipeline (positive and negative pressure chamber circulation return air port j ⁇ A3 ⁇ B3 ⁇ A5 ⁇ B5 ⁇ A5 ⁇ B4
  • the intelligent positive and negative pressure refrigerator includes a box body 7; the box body 7 is provided with an intelligent positive and negative pressure system, a refrigeration system 8, a common refrigerator compartment 9, a common freezer compartment 10, and air-made water Device 11 and touch screen and mobile phone monitoring system 12; the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure airflow carrying object generation processor
  • the positive and negative pressure cabin 1 includes: cabin body 1.1, cabin door 1.2, cabin inside and outside sealed connector 1.4, pneumatic airtight mechanism 1.5, electric airtight mechanism 1.6, pneumatic door switch 1.8, electric door switch 1.9;
  • the compartment door 1.2 is the door of the positive and negative pressure refrigerator; the positive and negative pressure compartment 1 is designed as a vacuum high-pressure refrigerating compartment 1-1 and a vacuum high-pressure freezing compartment 1-2 according to the specific requirements of refrigerator refrigeration and freezing;
  • a pneumatic airtight mechanism 1.5 is provided between the door 1.2 of the refrige
  • the pneumatic cabin door switch 1.8 When the user opens the cabin door, the pneumatic cabin door switch 1.8 is used to seal the cabin door.
  • the locking tongue folding retractable airbag 1.52 is deflated, and the sealing latch 1.51 is retracted to open the door; an electric airtight mechanism 1.6 is provided between the door 1.2 of the vacuum high-pressure freezing compartment 1-2 and the compartment 1.1;
  • the electric airtight mechanism 1.6 includes an electric sealing tongue 1.61, an electromagnet 1.62, and a tension spring 1.63; the sealing tongue 1.61 is provided with a total of 4, all of which are long strips, which are movably installed around the cabin door frame.
  • the four cabins are in the airtight grooves 1.11 and are hung on the tension spring 1.63, and the other end of the tension spring is fixed and hung on the The bottom of the cabin airtight groove 1.11;
  • the outer part of the tongue section of the sealing lock tongue 1.61 is a sealing rubber layer, and the inside is a bending resistant and easily magnetic metal core, which is open and open toward the sealing rubber layer on the side of the electromagnet 1.62
  • the metal core is partially exposed inside so as to be attracted by the electromagnet 1.62;
  • the electromagnet 1.62 is also a long strip corresponding to the shape of the sealing lock tongue 1.61, and is fixedly installed on the cabin door corresponding to the position of the cabin airtight groove 1.11
  • the electric door switch 1.9 energizes the electromagnet 1.62 to generate magnetic force, and attracts the sealing tongue 1.61 installed in the opposite cabin airtight groove 1.11 to the door air
  • the electric door switch 1.9 will
  • the connector 1.4 is fixedly arranged at the rear of the positive and negative pressure cabin 1, and all pipes and circuits entering and exiting the cabin are connected to the inside and outside sealed connector 1.4 and enter and exit through it to maintain the sealing performance of the positive and negative pressure cabin 1.
  • the positive and negative pressure cabin 1 is equipped with an air suction pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, a refrigeration system 8, an air system Water device 11, filtered water tank 11.1, touch screen and mobile phone monitoring system 12; the air intake of the air pump 5 is installed with an air extraction pipe A1, and the air extraction pipe A1 is connected to the extraction branch pipe A1.
  • solenoid valves B1.1 and B1.2 are respectively installed in the middle of the air extraction branch pipes A1.1 and A1.2, and the other ends are respectively extended into the vacuum high-pressure refrigerating compartment 1-1 and vacuum high-pressure
  • the refrigerating compartment 1-2 is formed with its air extraction and return ports c1 and c2;
  • the air outlet b of the air pump 2 is equipped with an exhaust pipe A2, and the middle of the exhaust pipe A2 is installed with a super oxygen decomposer 6.7 and a solenoid valve B2, the other end is connected to the air inlet h of the air water making device 11, after passing through the air water making device 11, the air is vented through the air outlet n;
  • the air outlet d of the air pump 3 is equipped with an air charging pipe A3,
  • a solenoid valve B3 is installed in the middle of the inflation pipe A3, and the other end is respectively connected to the inflation branch pipes A3.1, A3.2, A3.3, A3.4, the inflation branch pipes A3.1, A3.2, A3.3 Solenoid valves
  • Inflatable plugs 1.54 are installed at their respective midpoints, and the four inflatable plugs 1.54 are all inserted and connected to the inflatable socket 1.53; the air water making device 11 is installed at the water outlet x There is an air water pipe A10, the air water pipe A10 is connected with the water inlet y of the filter water tank 11.1; the condensate water generated in the vacuum high-pressure refrigerated compartment 1-1 flows into the condensate water collection box installed at the bottom of the compartment
  • the water inlet Y of 11.2, the condensate water pipe A11 is installed at the water outlet M of the condensate water collection box 11.2, the condensate water pipe A11 extends out of the vacuum high-pressure refrigerator compartment 1-1, and a solenoid valve B11 is installed in the middle of the back.
  • the water outlet o of the filter water tank 11.1 is installed with a humidification water pipe A12, the middle of the humidification water pipe A12 is installed with a solenoid valve B12, and the other end extends into the vacuum high-pressure refrigerating compartment 11-1 , Is connected to the water inlet R of the humidifier 6.5;
  • the refrigeration system 8 is equipped with a refrigeration cycle pipe A13, and the refrigeration cycle pipe A13 extends into the vacuum high-pressure refrigerating compartment 1-1, the vacuum high-pressure freezing compartment 1-2, and the ordinary
  • the refrigerator compartment 9 and the ordinary freezer compartment 10 are connected with the evaporator air-cooling combination 8.1 and the evaporator direct cooling combination 8.2 respectively installed therein;
  • the touch screen and the mobile phone monitoring system 12 include: door touch screen 12.1, mobile phone APP 12.2, high-definition anti-fog camera device 12.3, the high-definition anti-fog camera device 12.3 is installed inside and outside the box 7 where
  • the operation method of the smart positive and negative pressure refrigerator includes: (1). Vacuum detoxification and heat removal cleaning program: close the vacuum high-pressure refrigerating compartment door 1.2 of the positive and negative pressure refrigerator, touch the door switch 1.8, positive
  • the negative pressure intelligent control device 5 then issues an instruction: make solenoid valves B3, B8 open A3, A8 and A8.1 airtight mechanism inflation pipeline (air pump outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ A8 ⁇ B8 ⁇ A8 ⁇ A8 .1 ⁇ Inflating plug 1.54 ⁇ Inflating socket 1.53 ⁇ Sealing the tongue and retracting airbag 1.52), and turn on the air pump 3 to inflate the pneumatic airtight mechanism 1.5, and lock the door 1.2; at the same time, make the solenoid valves B1.1 and B2 open A1 A1.1 and A2 air extraction pipeline (vacuum high-pressure refrigerated chamber 1-1 air extraction return port c1 ⁇ A1.1 ⁇ B1.1 ⁇ A1.1 ⁇ A1 ⁇ suction pump air inlet
  • the positive and negative pressure intelligent control device 5 maintains the vacuum high-pressure refrigerated compartment 1-1 by turning on or off the suction pump 2 according to the pressure standard of the preset program and the real-time feedback of the negative pressure sensor C2
  • Appropriate negative pressure, low oxygen and low temperature environment can reduce the respiratory intensity of fruits and vegetables, inhibit the biosynthesis of ethylene, delay the decomposition of chlorophyll, inhibit the synthesis of carotenoids and lycopene, and slow down the process of starch hydrolysis, sugar increase and acid consumption.
  • Negative oxygen ions are The size of the water molecule cluster of moisture is smaller and more convenient for the absorption of fruits, vegetables, meat and fish. It also has the function of inhibiting the metabolism of biological tissues, reducing the respiratory intensity, slowing down the activity of enzymes, and certain sterilization and purification effects.
  • Super oxygen can penetrate into The deeper inside of fruit, vegetable, fish, and fish can better play its sterilization and disinfection effect (super oxygen will automatically decompose and reduce to oxygen in about 30 minutes in air and water, but it is very stable in ice and has a long half-life, so the vacuum high-pressure freezing chamber 1-2 is not installed Super oxygen generator, do not use super oxygen); (4).
  • Modified atmosphere and pressurized storage program the positive and negative pressure intelligent control device 5 according to the program setting or sensor feedback, timely open the suction pipeline and turn on the suction pump 2 and super oxygen decomposition 6.7, the decomposed, sterilized, and degraded dirty air is drawn out of the cabin, and then solenoid valves B3, B6, and B7.1 are opened to A3, A6, and A7.1.
  • Pressure and proper humidity can effectively control the respiration rate of stored fruits and vegetables, while preventing anaerobic respiration and carbon dioxide poisoning, delay the aging process, prevent the quality of stored fruits and vegetables from degrading and flavor loss, and maintain positive pressure humidity and supplement the moisture of fruits and vegetables to maximize maintenance Freshness of fruits and vegetables;
  • Procedure for pressurized storage of leftover food put the leftovers in the vacuum high-pressure refrigerating chamber 1-1, and the regulating device 5 turns on the air pump 2 and the air pipe to remove the smell of the leftovers from the chamber.
  • the dirty air inside the cabin is closed after being drawn out of the cabin, and then the air pump 3 and the air filling pipe are turned on and stored under pressure, which not only prevents excessive loss of odor and moisture, but also inhibits deterioration and deterioration.
  • the humidifier is turned on in a timely manner 6.5 Replenish the moisture in the air, or turn on the super oxygen generator at the right time.
  • the intelligent control device 5 can also start the air pump 3 and enable the solenoid valves B3 and B2 to open the air-to-water and air-filling pipeline (air outlet d ⁇ A3 ⁇ B3 of the air pump) ⁇ A5 ⁇ A9 ⁇ B2 ⁇ A2 ⁇ air inlet of the water-making device h), which drives the indoor air to enter the air-water-making device 11 to make water; (10), remote and short-range operation monitoring function: the touch screen and mobile phone monitoring
  • the system 12 can operate and monitor the refrigerator and other positive and negative piezoelectric devices and the positive and negative pressure module cabinets in real time through WIFI and mobile phone APP, so that the refrigerator and all other positive and negative piezoelectric devices and module cabinets are intelligently in accordance with the set program and real-time Commands to achieve various functions with high efficiency and low consumption; the described high-definition anti-fog camera 12.3 captures the condition of items in the refrigerator in real time, and the box door touch screen 12.1 or mobile phone APP 12.2 will display
  • the combination of positive and negative pressure modules, smart home mode smart
  • the positive and negative pressure refrigerator can be designed and manufactured according to the module function. It is not only used as a separate invention right for independent production and use, but also can be organically combined with other positive and negative piezoelectric devices and modular cabinets under the control of the touch screen and mobile phone APP monitoring system 12
  • the fully functional intelligent positive and negative pressure module combination home can not only share the common positive and negative pressure system, refrigeration system, and air water system, but also the appearance, shape and color are basically unified, neat and harmonious, in line with popular trends.
  • the specific operating methods of the above-mentioned smart positive and negative pressure refrigerators can intelligently control and integrate various technologies such as vacuum, high pressure, super oxygen, air-conditioned fresh-keeping, low-temperature storage, negative oxygen ions, gas catalyst, humidification, and air water production.
  • various technologies such as vacuum, high pressure, super oxygen, air-conditioned fresh-keeping, low-temperature storage, negative oxygen ions, gas catalyst, humidification, and air water production.
  • It can be used alternately or cyclically in different combinations of single, double or multiple items, and multiple different types of vacuum hyperbaric chambers can be set in a refrigerator, and the storage of fruits, vegetables, meat and fish can be kept moist and fresh for a long time due to the policy and classification of the chambers
  • the quality and flavor of the refrigerator also make the refrigerator more high-energy, high-efficiency, low-consumption and suitable for use.
  • the smart positive and negative pressure washing machine includes a body 7; the body 7 is provided with a smart positive and negative pressure system, a washing drying system 15 and a touch screen and a mobile phone monitoring system 12; the smart positive and negative The pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier generation processor; the positive and negative pressure cabin 1 is designed according to the specific requirements of washing and drying clothes.
  • the vacuum high-pressure drum outer cabin 1-5 includes: cabin body 1.1, cabin door 1.2, mechanical airtight mechanism 1.3, cabin interior and exterior sealing connector 1.4; the cabin door 1.2 is the positive The door of a negative pressure washing machine; a mechanical airtight mechanism 1.3 is arranged between the door 1.2 of the outer compartment 1-5 of the vacuum high-pressure drum and the compartment 1.1; the mechanical airtight mechanism 1.3 includes a lock ring 1.31 and a lock tongue 1.32 , Airtight washer 1.33 and door side gasket 1.34; the lock ring 1.31 is in dynamic cooperation with the lock tongue 1.32, when the door is closed, the lock tongue 1.32 extends into the lock ring 1.31 to lock the door, when the vacuum high pressure drum is outside the cabin 1-5 When the positive and negative air pressure is formed inside, the airtight gasket 1.33 is kept sealed; the internal and external sealing connector 1.4 of the cabin is fixedly arranged at the rear of the outer cabin 1-5 of the vacuum high-pressure drum, and
  • the pump An air extraction pipe A1 is installed at the air inlet a of the air pump 2, a solenoid valve B1 is installed in the middle of the air extraction pipe A1, and the other end extends into the outer compartment of the vacuum high-pressure drum 1-5 and is connected with an anti-sprinkling air extraction port 2.1 , And form an air extraction return port c, the air outlet b of the air pump 2 is open to the atmosphere;
  • the air outlet d of the air pump 3 is equipped with an air filling pipe A3, and the middle of the air filling pipe A3 is equipped with a solenoid valve B3, and One end extends into the outer compartment 1-5 of the vacuum high-pressure drum and extends below the drum mechanism 15.1 to form an air inlet f;
  • the air inlet e of the air pump 3 is open to the
  • a washing machine water inlet pipe A15 is installed at the water outlet u of the water inlet pump 17.
  • a solenoid valve B15 is installed in the middle of the pipe A15, and the other end is connected to the water inlet k of the super oxygen generating mixer 6.6, and the water outlet q of the super oxygen generating mixer 6.6 is installed
  • Water pipe A17, the middle of the water inlet pipe A17 is equipped with a solenoid valve B17, and the other end extends into the outer compartment 1-5 of the vacuum high pressure drum to form its water inlet T;
  • the solenoid valve B14 is also equipped with a water inlet pipe A18 and Connected to solenoid valve B16, direct water intake when super oxygen water is not
  • the drainage pump 16 When there is no need to decompose the super oxygen, the drainage pump 16 directly Drain; the motor combination 15.5 drives the large pulley 15.4, the large pulley 15.4 drives the drum mechanism 15.1 connected to it to operate; the suction pump 2, the air pump 3, the drainage pump 16, the water inlet pump 17, the super oxygen milliliter mixing water 6.6, super oxygen decomposer 6.7, elution drying control mechanism 15.2, touch screen and mobile phone APP monitoring system 12, pressure sensor C1, negative pressure sensor C2 and solenoid valves B1 to B22, all connected to the positive and negative pressure intelligent control device 5.
  • the operation method of the smart positive and negative pressure washing machine includes: (1).
  • the seal is locked, and the positive and negative pressure intelligent control device 5 issues instructions to enable solenoid valves B14, B15, B16, and B17 to open the corresponding water inlet pipes
  • the direct tap water inlet pipe is A14 ⁇ B14 ⁇ A18 ⁇ B16 ⁇ A16 ⁇ detergent Pull box water inlet z ⁇ water outlet l ⁇ A17 ⁇ B17 ⁇ A17 ⁇ drum outer compartment water inlet T;
  • the water inlet pipe of the water inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ the water inlet of the water inlet r ⁇ the water outlet u ⁇ A15 ⁇ B15 ⁇ A15 ⁇ Super oxygen ml mixer water inlet k ⁇ water outlet q ⁇ A16 ⁇ B16 ⁇ A16-deter
  • the super-oxygen water can accelerate the decomposition of organic dirt on the clothes and facilitate rapid washing.
  • the positive and negative pressure intelligent control device 5 can make the solenoid valve B1 open the air extraction pipe A1 (Air suction pump air inlet a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ Drum outer compartment 1-5 suction return c), and turn on the suction pump 2 to make the vacuum high-pressure drum outer compartment 1-5 at a moderate negative pressure, which will cause water to enter Speed up and shorten the water intake time; (2).
  • Vacuum washing procedure after the water intake, the positive and negative pressure intelligent control device 5 turns on the motor combination 15.5, and drives the drum mechanism 15.1 to rotate to start washing.
  • Air pump air inlet a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ Drum outer compartment 1-5 exhaust air return c), and turn on the suction pump 2 to pump the vacuum high-pressure drum outer compartment 1-5 to a moderate vacuum, clothing fibers and dirt It will expand in a vacuum, and the air in it will escape, weaken or fall off the adhesion of the dirt, improve the washing efficiency, shorten the washing time, super-oxygen water directly kills the bacteria, viruses and microorganisms on the clothes during the washing process, and decomposes them.
  • the positive and negative pressure intelligent control device 5 closes the solenoid valve B1 and the suction pump 2, so that the solenoid valve B3 opens the A3 inflation pipeline (air outlet of the inflation pump 6 d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ the outer compartment of the drum 1-5 inflates Inlet f), and turn on the air pump 3, the high-pressure airflow enters the vacuum high-pressure drum outer compartment 1-5 through the A3 air filling pipe, and is under the drum mechanism 15.1
  • a strong bubble torrent is formed to participate in washing, and the high-pressure beneficial detergent formed in the outer compartment 1-5 of the vacuum high-pressure drum penetrates into the clothes for washing.
  • the positive and negative pressure intelligent control device 5 issues instructions to enable solenoid valves B20, B21, and B22 to open the corresponding drainage pipes (1 No need When the drainage pump does not need to decompose the super oxygen, the direct drainage pipeline is: Drum outer compartment drainage port L ⁇ A20 ⁇ B20 ⁇ A23 ⁇ B22 ⁇ A22 ⁇ Sewer; 2When the drainage pump needs to be discharged and the super oxygen needs to be decomposed, the drainage pipeline is: outside the drum Hatch drain L ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Drain pump inlet w ⁇ outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ super oxygen decomposition device inlet g ⁇ outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ sewer; 3Drainage is required
  • the air pump 3 When draining, if the air pump 3 is turned on to inflate and pressurize the outer chambers 1-5 of the vacuum high-pressure drum, the drainage speed can be accelerated, and the positive and negative pressure intelligent control device 5 will issue an instruction to start dehydration when the drainage is completed; Pressurization can force the moisture to leave the clothes quickly, and then alternately turn on the suction pump 2 to pump negative pressure to expand the clothes fibers in the outer compartment 1-5 of the vacuum high-pressure drum. During dehydration and high pressure, the clothes that are compacted on the inner wall of the drum are fluffy to prevent the clothes from wrinkling.
  • Device 5 operates the washing and drying control mechanism to turn on the drying hot air to dry the interior of the washing machine, especially the drum mechanism 15.1, and then turn on the air extraction pump 2 and open the air extraction line to extract air, and extract the super oxygen residue in the outer compartment 1-5 of the vacuum high-pressure drum It keeps the drum mechanism 15.1 and the equipment in the cabin in a moderate vacuum.
  • the positive and negative pressure washing machine greatly speeds up the various processes of washing, dehydration and drying, shortens the working time of each program, and improves the cleanliness of washing and the quality of drying.
  • the super oxygen also thoroughly sterilizes the laundry. Disinfect and remove odors.
  • the concentration and working hours of super oxygen are intelligently controlled to be in the proper area of sterilization, degradation, and washing, not reaching or at least reaching the critical point that may cause the oxidation and fading of dark clothes;
  • the positive and negative pressure module combination smart home mode The intelligent positive and negative pressure washing machine can be designed and manufactured according to the module function. It can be produced and used as a separate invention right, and can be combined with other positive and negative piezoelectric devices and modular cabinets under the control of the touch screen and mobile phone APP monitoring system 12 It is a fully functional intelligent positive and negative pressure module to combine the home, not only can share the common intelligent positive and negative pressure system, but also the appearance, shape and color are basically unified, neat and harmonious, in line with the popular trend. In short, the intelligent positive and negative pressure system makes laundry dehydration and drying faster, more efficient and lower consumption, and the laundry is less wasted, cleaner, fluffy and more hygienic.
  • the intelligent vacuum dishwashing fruit and vegetable cleaning machine includes a body 7; the body 7 is provided with an intelligent positive and negative pressure system, a dish washing and drying system 19, a fruit and vegetable cleaning system 20, a touch screen and a mobile phone APP.
  • the specific requirements for drying and cleaning of fruits and vegetables are designed as vacuum super-oxygen cabins 1-6; the vacuum-super-oxygen cabins 1-6 include: cabin 1.1, cabin door 1.2, mechanical airtight mechanism 1.3, and internal and external sealed connectors 1.4;
  • the door 1.2 is the door of the vacuum dishwashing fruit and vegetable washing machine; the mechanical airtight mechanism 1.3 is arranged between the door 1.2 of the vacuum super oxygen cabin 1-6 and the cabin 1.1; the mechanical airtight mechanism 1.3 includes a lock
  • the airtight gasket 1.33 is kept sealed; the internal and external pipeline joint controller 1.4 of the cabin is fixed at the rear of the vacuum super-oxygen cabin 1-6, and all the pipelines and circuits entering and exiting the cabin are connected To seal the connector 1.4 inside and outside the cabin and enter and exit through it to maintain the sealing performance of the vacuum super oxygen cabin 1-6.
  • the vacuum super oxygen cabin 1-6 is equipped with a dish washing and drying system 19, a fruit and vegetable cleaning system 20, an anti-sprinkling air suction port 2.1, a negative pressure sensor C2, a super oxygen sensor C3, and a temperature sensor C9; the vacuum super oxygen
  • the outside of cabins 1-6 are equipped with suction pump 2, positive and negative pressure intelligent control device 5, drainage pump 16, water inlet pump 17, super oxygen generation mixer 6.6, super oxygen decomposer 6.7, touch screen and mobile phone APP monitoring system 12
  • the suction port a of the suction pump 2 is installed with a suction pipe A1, the middle of the suction pipe A1 is installed with a solenoid valve B1, and the other end is extended into the vacuum super oxygen cabin 1-6 and then connected to the anti-sprinkling
  • the suction port 2.1, and the suction return port c is formed; the air outlet b of the suction pump 2 is open to the atmosphere; the water inlet r of the water inlet pump 17 is installed with a water inlet pipe A14
  • the middle of the drainage pipe A22 is equipped with a solenoid valve B22, and the other end is connected to the sewer; the solenoid valve B21 is also equipped with a drainage pipe A24 and connected to A23 and then connected to the solenoid valve B22.
  • the drainage pump is directly drained; the suction pump 2, the drainage pump 16, the water inlet pump 17, the super oxygen generation mixer 6.6, the super oxygen decomposition device 6.7, the dish washing and drying system 19, the fruit and vegetable cleaning system 20, the touch control Screen and mobile phone APP monitoring system 12, negative pressure sensor C2, super oxygen sensor C3, temperature sensor C9 and solenoid valves B1 to B25, all connected to positive and negative pressure intelligent control Device 5.
  • the operation method of the intelligent vacuum dishwashing fruit and vegetable washing machine includes: (1). Dishwashing water intake and washing procedure: after closing the door, the positive and negative pressure intelligent control device 5 issues an instruction to make the solenoid valve B14 , B15, B16, B25 open the corresponding water inlet pipeline (1When super oxygen water is needed to wash the dishes, the inlet pipeline of the inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ Inlet pump inlet r ⁇ Water outlet u ⁇ A15 ⁇ B15 ⁇ A15 ⁇ Super oxygen Water mixer inlet k ⁇ water outlet q ⁇ A16 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A27 ⁇ dishwashing and drying system water inlet G; 2When super-oxygen water is not required to wash dishes, the water inlet pipe of the water inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ Inlet pump water inlet r ⁇ Water outlet u ⁇ A15 ⁇ B15 ⁇ A19 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A27 ⁇ Dishwashing and drying system water inlet G), and
  • the super-oxygen water can accelerate the decomposition of organic dirt on the tableware and facilitate rapid cleaning.
  • the positive and negative pressure regulating device 5 Turn on the dishwashing and drying system 19 to start spraying and washing dishes, and enable the solenoid valve B1 to open the A1 air extraction line (exhaust pump air inlet a ⁇ A1 ⁇ B1 ⁇ A1 ⁇ vacuum super oxygen chamber exhaust air return c), and open it at the same time
  • the suction pump 2 starts to vacuum, the dirt on the tableware and tableware will expand in the vacuum negative pressure, and the air in the dirt will escape, which will weaken the adhesion of the dirt or fall off from the tableware and tableware, improving the cleaning efficiency ,
  • Shorten the washing process super-oxygen water directly kills the bacteria, viruses and microorganisms on the tableware during the dishwashing process, decomposes the organic matter in the dirt on the tableware and tableware to dissolve it in the water, and can also enhance the decontamination ability of the detergent , To improve the cleanliness,
  • the inlet pipeline of the inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ the inlet of the inlet pump r ⁇ the outlet u ⁇ A15 ⁇ B15 ⁇ A15 ⁇ the inlet of the super-oxygen generator mixer k ⁇ out Water inlet q ⁇ A16 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A25 ⁇ Fruit and vegetable cleaning system water inlet E;
  • the water inlet pipe of the inlet pump is A14 ⁇ B14 ⁇ A14 ⁇ the inlet of the inlet pump r ⁇ the outlet u ⁇ A15 ⁇ B15 ⁇ A19 ⁇ B16 ⁇ A16 ⁇ B25 ⁇ A25 ⁇ Fruit and vegetable cleaning system water inlet E), and turn on the water inlet pump 17, then the tap water is quickly mixed with the super oxygen produced by the super oxygen generator 6.6 to the appropriate concentration
  • the super-oxygen water enters the vacuum super-oxygen cabin 1-6, and the positive and negative pressure control device 5
  • the dirt on the fruits and vegetables will expand under negative pressure, and the air in the dirt will escape. , It can weaken the adhesion of dirt or fall off from fruits and vegetables, improve the washing efficiency, shorten the washing process, super-oxygen water directly kills the bacteria, viruses and microorganisms on the skin of fruits and vegetables during the cleaning process, and decomposes the organic matter in the dirt on the skin. It dissolves into water to increase the degree of cleanliness and speed up the cleaning process. At the same time, the negative pressure promotes the escape of harmful gases such as pesticides, heavy metals and volatile metabolites, ethylene acetaldehyde, ethanol, etc. in the fruit and vegetable tissues, which is a rapid cleaning and deep degradation of super-oxygen water.
  • harmful gases such as pesticides, heavy metals and volatile metabolites, ethylene acetaldehyde, ethanol, etc.
  • the positive and negative pressure intelligent control device 5 issues instructions to spray the fruits and vegetables with clean water.
  • the positive and negative pressure intelligent control device 5 issues instructions to enable solenoid valves B20, B21, and B22 to open the corresponding drain pipes (1When there is no need for a drain pump and no need to decompose the super oxygen)
  • the direct drainage pipeline is: fruit and vegetable cleaning system outlet F ⁇ A26 ⁇ A20 ⁇ B20 ⁇ A23 ⁇ B22 ⁇ A22 ⁇ sewer; 2When the drainage pump needs to be drained and super oxygen needs to be decomposed, the drainage pipeline is: fruit and vegetable cleaning system outlet F ⁇ A26 ⁇ A20 ⁇ B20 ⁇ A20 ⁇ Drain pump inlet w ⁇ outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ super oxygen decomposition device inlet g ⁇ outlet m ⁇ A
  • Vacuum self-cleaning aseptic placement procedure Close the door 1.2 after use, the positive and negative pressure intelligent control device 5 turns on the drying hot air to dry the interior of the vacuum super-oxygen cabin 1-6, especially the dish washing and drying system 19 And the fruit and vegetable cleaning system 20, then turn on the air extraction pump 2 and open the air extraction pipeline to extract air, extract the super oxygen residual gas in the vacuum super oxygen cabin 1-6, and make the dish washing and drying system 19, the fruit and vegetable cleaning system 20 and the cabin
  • the equipment is in a moderate vacuum. It is aseptic, dust-free and pollution-free to keep clean, which is good for health. It is free of oxidation, rust, and vacant, and extends the service life of electrical appliances.
  • the combination of positive and negative pressure module smart home mode smart positive and negative pressure dishwashing and fruit and vegetable washing machine can be designed and manufactured according to the module function, not only as a separate invention right for independent production and use, but also on the touch screen and mobile phone Under the control of the APP monitoring system 12, it is organically combined with other positive and negative piezoelectric devices and modular cabinets to form a fully functional intelligent positive and negative pressure modular home. It can not only share the water inlet pump 17, drainage pump 16, and super oxygen with the super oxygen washing range hood.
  • the water mixer 6.6 and the super oxygen decomposer 6.7 are produced, and the appearance, shape and color are basically uniform, neat and harmonious, in line with the popular trend, making the dishwashing and fruit and vegetable washing machine more energy-efficient, low-consumption and suitable for use.
  • the smart super oxygen water washing range hood includes a body 7; the lower part of the body 7 is a sealed and waterproof super oxygen cabin 1-7, and the upper part is an equipment smoke pipe cabin 21; the sealed and waterproof
  • the super-oxygen cabin 1-7 includes: a triangular cabin 1.1, a sealed waterproof cabin door 1.2; the sealed waterproof cabin door 1.2 is the door of the super-oxygen water washing range hood, and a space between the cabin door 1.2 and the cabin 1.1 Sealed and waterproof mechanism 1.7;
  • the sealed and waterproof mechanism 1.7 includes a lock ring 1.71, a lock tongue 1.72, an airtight gasket 1.73, and a door hinge 1.74; the lock ring 1.71 is in dynamic cooperation with the lock tongue 1.72, and the lock tongue 1.72 when the door is closed
  • the lock ring 1.71 is extended to lock the door 1.2, and the sealing gasket 1.73 keeps the seal when the sealed waterproof super oxygen cabin 1-7 is sprayed and cleaned; the sealed waterproof super oxygen cabin 1-7 is equipped with a motor and wind
  • the intelligent super oxygen cleaning system includes: super oxygen intelligent control device 5.1, water inlet pump 17, drainage pump 16, super oxygen generation mixer 6.6, super oxygen decomposition device 6.7, water heating device 27, degreasing agent adder 28
  • the water inlet r of the water inlet pump 17 is installed with a water inlet pipe A14 and connected to a tap water source, the water outlet u of the water inlet pump 17 is equipped with a water inlet pipe A15, and the middle of the water inlet pipe A15 is installed with water
  • the heating device 27 and the solenoid valve B15, the other end is divided into 3 ways by the solenoid valve B15, respectively connected to the water inlet k of the super oxygen generator mixer 6.6, the water inlet z of the degreasing agent adder 28 and the sole
  • At least one automatic rotating spray ball 23 is installed on the spray pipe A30.
  • the axis of the spray ball is at a 45-degree angle to the axis of the middle circle of spray holes.
  • the spray ball 23 is sprayed with water.
  • Automatic rotation water inlet pipe A17 is installed at the water outlet 1 of the degreasing agent adder 28, a solenoid valve B17 is installed in the middle of the water inlet pipe A17, and the other end is connected to the water inlet pipe A15 and then connected to the solenoid valve B16
  • a water inlet pipe A20 is installed at the water inlet w of the drainage pump 16, a solenoid valve B20 is installed in the middle of the drainage pipe A20, and the other end extends into the oil collection drainage groove 24 at the bottom of the vacuum super-oxygen cabin 1-7
  • a drain port L is formed; a drain pipe A21 is installed at the water outlet p of the drain pump 16, a solenoid valve B21 is installed in the middle of the drain pipe A21, and
  • a drainage pipe A22 is installed at the outlet m of the super oxygen decomposition device 6.7, a solenoid valve B22 is installed in the middle of the drainage pipe A22, and the other end is connected to a sewer;
  • the solenoid valve B21 is also installed with a drainage pipe A24 and connected to the solenoid valve B22, which is directly discharged by the drainage pump 16 when there is no need to decompose the super oxygen;
  • the operation method of the intelligent super-oxygen water washing range hood includes: (1) Range hood procedure: when the range hood is started, the sealed waterproof compartment door 1.2 opens for air intake and smoke, and when the range hood stops working, the sealed compartment door 1.2 is closed; 2) Self-cleaning procedure: The super-oxygen intelligent control device 5.1 issues instructions to enable solenoid valves B15, B16, and B17 to open the corresponding water inlet pipes (1When super-oxygen water is required for cleaning, the water inlet pipe is: A14 ⁇ water inlet of the water inlet r ⁇ Water outlet u ⁇ A15 ⁇ water heating device ⁇ A15 ⁇ B15 ⁇ A15 ⁇ super oxygen generator water inlet k ⁇ water outlet q ⁇ A16 ⁇ B16 ⁇ A16 ⁇ A30 ⁇ automatic rotating spray ball 23; 2degreasing agent is required When cleaning, the water inlet pipeline is: A14 ⁇ water inlet pump inlet r ⁇ water outlet u ⁇ A15 ⁇ water heating device ⁇ A15 ⁇ B15 ⁇ A15 ⁇ degreas
  • the oxygen intelligent control device 5.1 issues an instruction to enable the solenoid valves B20, B21, and B22 to open the corresponding drainage pipeline
  • the drainage pipeline is: the drainage port of the oil collection drain L ⁇ A20 ⁇ B20 ⁇ A20 ⁇ drain pump inlet Water outlet w ⁇ water outlet p ⁇ A21 ⁇ B21 ⁇ A21 ⁇ super oxygen decomposition device water inlet g ⁇ water outlet m ⁇ A22 ⁇ B22 ⁇ A22 ⁇ the sewer;
  • the drainage pipeline is: the drain of the oil collection drainage tank L ⁇ A20 ⁇ B20 ⁇ A20 ⁇ drain pump water inlet w ⁇ water outlet p ⁇ A21 ⁇ B21 ⁇ A24 ⁇ B22 ⁇ A22 ⁇ sewer), and turn on the drain pump 16 to discharge the water to the
  • the resolver 6.7 and the appearance, shape and color are basically uniform, neat and harmonious, in line with the popular trend, making the intelligent range hood more energy-efficient, low-consumption and suitable for use.
  • the smart positive and negative pressure oven air fryer microwave oven includes a body 7, and the body 7 is provided with: a smart positive and negative pressure system, a barbecue system 30, an air fryer system 31, a microwave system 32 and Touch screen and mobile phone APP monitoring system 12;
  • the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5;
  • the positive and negative pressure cabin 1, according to The specific requirements of the oven, air fryer and microwave oven are designed as microwave vacuum hyperbaric chambers 1-8;
  • the microwave vacuum hyperbaric chambers 1-8 include: a chamber 1.1, a door 1.2, a mechanical airtight mechanism 1.3, and a sealed connector inside and outside the cabin 1.4;
  • the cabin door 1.2 is the door of the positive and negative pressure oven air fryer microwave oven;
  • a mechanical airtight mechanism 1.3 is provided between the door 1.2 of the microwave vacuum high-pressure cabin 1-8 and the cabin 1.1;
  • the mechanical airtight mechanism 1.3 includes
  • the airtight gaskets 1.33 are kept sealed; the internal and external pipeline joint controller 1.4 is fixedly arranged at the rear of the microwave vacuum hyperbaric chambers 1-8, and all the pipelines entering and exiting the chambers and The electric circuits are all connected to the inside and outside sealed connectors 1.4 of the cabin and in and out through them, so as to maintain the sealing performance of the microwave vacuum hyperbaric cabin 1-8.
  • the microwave vacuum hyperbaric chamber 1-8 is equipped with a barbecue system 30, an air fryer system 31, a microwave system 32, a pressure sensor C1, a negative pressure sensor C2, and an air pump is installed outside the microwave vacuum hyperbaric chamber 1-8. 2.
  • the solenoid valve B1 is installed, and the other end extends into the microwave vacuum high-pressure chamber 1-8 to form its air extraction return port c.
  • the air outlet b of the air extraction pump 2 is equipped with an air outlet pipe A2 and is open to the atmosphere;
  • An air charging pipe A3 is installed at the air outlet d, a solenoid valve B3 is installed in the middle of the air charging pipe A3, and the other end extends into the microwave vacuum high-pressure chamber 1-8 to form a charging air inlet f;
  • the air inlet of the air pump 3 Port e is installed with an air intake pipe A4 and open to the atmosphere;
  • the APP monitoring system 12 is connected to the positive and negative pressure intelligent control device 5.
  • the operation method of the smart positive and negative pressure oven air fryer microwave oven includes: (1). Vacuum cooking program: the positive and negative pressure intelligent control device 5 opens the solenoid valve B1 and the air pump 2, and then draws air. Pipe A1 draws the microwave vacuum high-pressure chamber 1-8 into a moderate vacuum. Food cooked in a vacuum has a special flavor due to the expansion of the ingredients. For example, turning on the air fryer system and baking French fries, cakes, etc. in a proper vacuum will be softer and more delicious; (2) ), high-pressure cooking process; the positive and negative pressure intelligent control device 5 turns on the solenoid valve B3 and the air pump 3, and the high-pressure air enters the microwave vacuum hyperbaric chamber 1-8 through the inflatable pipe A3.
  • the intelligent positive and negative pressure fresh-keeping compartment includes a compartment (box) body 7; the compartment (box) body 7 is provided with an intelligent positive and negative pressure system, a refrigeration system 8, and a touch screen With the mobile phone monitoring system 12; the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an inflator 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier generating processor; the positive and negative pressure Cabin 1 is designed as a box (box) type vacuum hyperbaric chamber 1-9 according to the specific requirements of an intelligent positive and negative pressure preservation compartment (container); the box (box) type vacuum hyperbaric chamber 1-9 includes: a cabin body 1.1, a door 1.2.
  • Mechanical airtight mechanism 1.3 Internal and external sealing connector 1.4; the door 1.2 is the door of the positive and negative pressure preservation compartment; the door 1.2 of the compartment (box) vacuum high-pressure compartment 1-9 and the compartment A mechanical airtight mechanism 1.3 is arranged between the body 1.1; the mechanical airtight mechanism 1.3 includes a lock ring 1.31, a lock tongue 1.32, and an airtight washer 1.33; the lock ring 1.31 is in dynamic cooperation with the lock tongue 1.32, and the lock tongue is closed when the door is closed 1.32 extends into the lock ring 1.31 to lock the door.
  • the airtight gasket 1.33 keeps the seal; the internal and external pipeline linkage 1.4 is fixed at At the rear of the chamber (box) vacuum hyperbaric chamber 1-9, all the pipes and circuits that enter and exit the chamber are connected to the internal and external sealed connector 1.4 and enter and exit through it to maintain the chamber (box) vacuum hyperbaric chamber 1- 9's sealing performance.
  • the outside of the compartment (box) vacuum hyperbaric chamber 1-9 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, Refrigeration system 8, air water making device 11, filtered water tank 11.1, touch screen and mobile phone monitoring system 12; an air extraction pipe A1 is installed at the air inlet a of the air extraction pump 2, and an air extraction pipe A1 is installed in the middle of the air extraction pipe A1 There is a solenoid valve B1, and the other end extends into the chamber (box) vacuum hyperbaric chamber 1-9 to form its exhaust gas return port c; an exhaust pipe A2 is installed at the exhaust port b of the exhaust pump 2, and the exhaust The middle of the pipe A2 is equipped with a super-oxygen decomposer 6.7 and a solenoid valve B2, and the other end is connected to the air inlet h of the air water making device 11, and the air is vented through the air outlet n of the air water making device 11
  • the air outlet s of the adjusting device 6.1 is equipped with an air outlet pipe A7, the middle of the air outlet pipe A7 is installed with a solenoid valve B7, and the other end extends into the chamber (box) vacuum high-pressure chamber 1-9 to form its Air conditioning air inlet i;
  • the water outlet x of the air water production device 11 is equipped with an air water production pipe A10, and the air water production pipe A10 communicates with the water inlet y of the filtered water tank 11-1;
  • the condensate generated in the vacuum high-pressure chamber 1-9 flows into the water inlet Y of the condensate water collection box 11.2 installed at the bottom of the cabin, and the condensate water pipe A11 is installed at the water outlet M of the condensate water collection box 11.2 ,
  • the condensate pipe A11 extends out of the compartment (box) vacuum hyperbaric chamber 1-9 in the middle of the rear part is installed with a solenoid valve B11, the other end is connected with the water inlet
  • the operation method of the intelligent positive and negative pressure fresh-keeping compartment includes: (1). Vacuum detoxification and heat-removing cleaning procedure: fresh goods that need to be preserved and transported are loaded into compartment (box) vacuum After the hyperbaric compartment 1-9, close the compartment door 1.2, touch the compartment door switch 1.8 or manually open it by the driver, and the positive and negative pressure intelligent control device 5 will issue an instruction: make the solenoid valves B1 and B2 open the A1 and A2 exhaust pipes (compartment Type vacuum hyperbaric chamber suction and return port c ⁇ A1 ⁇ B1 ⁇ A1 ⁇ exhaust pump 5 air inlet a ⁇ air outlet b ⁇ A2-super oxygen decomposer air inlet g ⁇ air outlet m ⁇ A2 ⁇ B2 ⁇ A2 ⁇ air Water-making device air inlet h ⁇ air outlet n ⁇ A2 ⁇ discharge into the atmosphere), and turn on the air pump 2 to pump the chamber (box) vacuum hyperbaric chamber 1-9 to a moderate vacuum (-0.01KPa ⁇ -
  • the vacuum promotes the volatile metabolites in the fruit and vegetable tissues, such as ethylene acetaldehyde, ethanol and other harmful gases to escape and be pumped away.
  • negative pressure is used to inhibit the reproduction of residual bacteria. , Reducing the hidden dangers of fruit and vegetable diseases and aging;
  • Decompression and humidification storage program the positive and negative pressure intelligent control device 5 is maintained by turning on or off the suction pump 2 according to the pressure standard of the preset program and the real-time feedback of the negative pressure sensor C2
  • the appropriate negative pressure, low oxygen and low temperature environment in the van (box) vacuum hyperbaric chamber 1-9 reduces the respiratory intensity of fruits and vegetables, inhibits the biosynthesis of ethylene, delays the decomposition of chlorophyll, inhibits the synthesis of carotenoids and lycopene, and slows down starch
  • the solenoid valves B3 and B4 are opened to the A3 and A4 inflation pipelines (atmospheric intake ⁇ A4 ⁇ air filter ⁇ A4 ⁇ B4 ⁇ A4 ⁇ air pump air inlet e ⁇ air outlet d ⁇ A3 ⁇ B3 ⁇ A3 ⁇ vacuum hyperbaric chamber air inlet f), and turn on the air pump 3 pairs of compartment (box) vacuum hyperbaric chamber 1- 9
  • Properly pressurized to between 0.01KPa ⁇ 10MPa, and proper positive pressure of super oxygen sterilizes the fruits, vegetables, meat and fish in the chamber (box) vacuum hyperbaric chamber 1-9, anti-mold and degrades pesticide residues and ethylene breathed out by the metabolism of fruits and vegetables, etc.
  • Appropriate high pressure also prevents the escape of water in fruits, vegetables, and fish, and moisture is more likely to penetrate into fruits, vegetables, and fish under positive pressure to supplement the cause
  • the water lost in cold storage and negative pressure, and negative oxygen ions make the water molecules of moisture smaller and easier to absorb by fruits, vegetables, meat and fish. It also inhibits the metabolism of biological tissues, reduces respiratory intensity, slows down enzyme activity and certain sterilization. And purification Under positive pressure, super oxygen can penetrate into the deeper interior of fruits, vegetables, meat and fish to better play its sterilization and disinfection effect; (4).
  • Modified atmosphere and pressurized storage procedure positive and negative pressure intelligent control device 5 according to program settings or sensor feedback, timely Open the air extraction pipeline and turn on the air extraction pump 2 and the super oxygen decomposition device 6.7 to extract the decomposed, sterilized, and degraded dirty air out of the cabin, and then enable the solenoid valves B3, B6, B7, and B2 to open A3, A9, A6, A7 air Adjust the inflation pipeline (air outlet d of the inflator pump ⁇ A3 ⁇ A9 ⁇ A6 ⁇ B6 ⁇ A6 ⁇ air inlet t of the air conditioning device ⁇ air outlet s ⁇ A7 ⁇ B7 ⁇ A7 ⁇ vacuum high-pressure cabin air inlet i) and Turn on the air pump 3, drive the air flow through the hollow fiber membrane of the air conditioning device 8.1, the oxygen is separated, the high nitrogen and low oxygen gas enters the vacuum hyperbaric chamber 1-9, and the solenoid valves B3, B5, B4 are opened to the air conditioning circulation pipeline ( Vacuum hyperbar
  • the intelligent control device 5 can also start the air pump 3 and enable the solenoid valves B3 and B2 to open the air-to-water and air-filling pipeline (inflating Pump air outlet d ⁇ A3 ⁇ A9 ⁇ B2 ⁇ A2 ⁇ air inlet h ⁇ outlet n ⁇ A2 ⁇ exhaust to the atmosphere), drive the air outside the vehicle compartment into the air water production device 11 to make water; (7) Low temperature Storage auxiliary fresh-keeping program: After starting up, the positive and negative pressure intelligent control device 5 starts the refrigeration system 8, and connects to the evaporator air-cooling combination 8.1 through the refrigeration pipe A13, and is the compartment (box) through the feedback and control of the temperature sensor controller C9 Type vacuum hyperbaric chamber 1-9 provides corresponding low temperature, and assists the positive and negative pressure system to keep the stored items fresh.
  • the touch screen and mobile phone monitoring system 12 can control the real-time status of the positive and negative pressure preservation compartment (container) through the touch screen 12.1 and mobile APP 12.2, so that the preservation compartment (Container) can intelligently follow the set procedures and real-time instructions to achieve high efficiency, low consumption and safety; the touch screen 12.1 or mobile phone APP 12.2 will display and remind the temperature, humidity, gas concentration and the storage of the storage items.
  • the user can remotely monitor and control information such as time and shelf life from the cab or outside the compartment, which is very convenient; the above procedures are automatically controlled by the positive and negative pressure system and set to the shortcut key mode on the touch screen and mobile phone monitoring system 12 Manipulation.
  • the intelligent positive and negative pressure fresh-keeping warehouse includes a warehouse body 7; the warehouse body 7 is provided with an intelligent positive and negative pressure system, a refrigeration system 8, a touch screen and a mobile phone monitoring system 12;
  • the positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier generation processor;
  • the positive and negative pressure cabin 1 is in accordance with the intelligent positive and negative pressure fresh-keeping warehouse
  • the specific requirements are designed as storage-type vacuum hyperbaric chambers 1-10; the storage-type vacuum hyperbaric chambers 1-10 include: a cabin 1.1, a door 1.2, a mechanical airtight mechanism 1.3, a sealed connector inside and outside the cabin 1.4; the cabin
  • the door 1.2 is the door of the positive and negative pressure fresh-keeping warehouse;
  • a mechanical airtight mechanism 1.3 is arranged between the door 1.2 of the storage-type vacuum high-pressure cabin 1-10 and the cabin 1.1;
  • the lock tongue 1.32 extends into the lock ring 1.31 to lock the door.
  • the internal and external pipeline joint controller 1.4 is fixedly arranged at the rear of the storage-type vacuum hyperbaric chamber 1-10, and all the pipelines and circuits entering and exiting the cabin are connected to The inside and outside of the cabin are sealed with the connector 1.4 and enter and exit through it, so as to maintain the sealing performance of the storage-type vacuum high-pressure cabin 1-10.
  • the storage-type vacuum high-pressure cabin 1-10 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, and a refrigeration system 8 , Air water making device 11, filtered water tank 11.1, touch screen and mobile phone monitoring system 12; an air extraction pipe A1 is installed at the air inlet a of the air extraction pump 2, and a solenoid valve is installed in the middle of the air extraction pipe A1 B1, the other end extends into the storage-type vacuum hyperbaric chamber 1-10 to form its exhaust gas return port c; the exhaust port b of the exhaust pump 2 is equipped with an exhaust pipe A2, and the middle of the exhaust pipe A2 is installed with a super Oxygen decomposer 6.7 and solenoid valve B2, the other end is connected to the air inlet h of the air water making device 11, and the air is vented from the air outlet n of the air water making device 11; the air outlet d of the air pump 3 is installed There is
  • a solenoid valve B11 is installed in the middle, and the other end is connected to the water inlet v of the filtered water tank 11.1.
  • the outlet o of the filtered water tank 11.1 is installed with a humidification water pipe A12.
  • the middle of the humidification water pipe A12 is installed with a solenoid valve B12, and the other end extends Enter the storage-type vacuum high-pressure chamber 1-10, which is connected to the water inlet R of the humidifier 6.5;
  • the refrigeration system 8 is equipped with a refrigeration cycle pipe A13, and the refrigeration cycle pipe A13 extends into the storage type Inside the vacuum hyperbaric chamber 1-10, it is connected to the evaporator air-cooled assembly 8.1;
  • the touch screen and the mobile phone monitoring system 12 include: touch screen 12.1, mobile phone APP 12.2, anti-fog camera device 12.3, Anti-fog camera device 12.3 is installed inside and outside the warehouse 7 where it needs to be monitored;
  • the storage-type vacuum hyperbaric chamber 1-10 is equipped with a positive and negative pressure airflow generation processor and sensors, including: humidifier 6.5, ultra Oxygen generator 6.2, negative ion generator 6.3, gas catalyst controlled release device 6.4, condensate water collection box 11.2, pressure sensor C1, negative pressure sensor C2, super oxygen sensor C3, negative
  • the operation method of the intelligent positive and negative pressure fresh-keeping warehouse includes: (1) Vacuum detoxification and heat removal cleaning procedure: fresh goods to be stored are transported into the storage-type vacuum hyperbaric chamber 1-10, Close the cabin door 1.2, touch the cabin door switch 1.8 or manually open it by the warehouse clerk, and the positive and negative pressure intelligent control device 5 will issue an instruction: open the solenoid valves B1 and B2 to the A1 and A2 exhaust pipes (vacuum high-pressure cabin exhaust gas return port c ⁇ A1 ⁇ B1 ⁇ A1 ⁇ Air suction pump 5 Air inlet a ⁇ Air outlet b ⁇ A2-Super oxygen decomposer air inlet g ⁇ Air outlet m ⁇ A2 ⁇ B2 ⁇ A2 ⁇ Air water system air inlet h ⁇ Air outlet n ⁇ A2 ⁇ discharge into the atmosphere), and turn on the suction pump 2 to pump the storage vacuum hyperbaric chamber 1-10 to a moderate vacuum (-0.01KPa ⁇ -0.09MPa), and remove the heat, bacteria and microorganisms of fruits
  • the positive and negative pressure intelligent control device 5 maintains the appropriate storage vacuum hyperbaric chamber 1-10 by turning on or off the suction pump 2 according to the pressure standard of the preset program and the real-time feedback of the negative pressure sensor C2
  • the negative pressure, low oxygen and low temperature environment reduces the respiratory intensity of fruits and vegetables, inhibits the biosynthesis of ethylene, delays the decomposition of chlorophyll, inhibits the synthesis of carotenoids and lycopene, and slows down the processes of starch hydrolysis, sugar increase and acid consumption, etc.
  • Negative oxygen ions make the size of moisture water molecules smaller and smaller. Facilitate the absorption of fruits, vegetables, meat and fish. It also inhibits the metabolism of biological tissues, reduces respiratory intensity, slows down enzyme activity, and has certain sterilization and purification effects. Superoxide can penetrate into fruits, vegetables, and fish under positive pressure. The deeper inner part of the tube is better for sterilization and disinfection; (4).
  • Modified atmosphere and pressurized storage program The positive and negative pressure intelligent control device 5 will open the suction pipe and turn on the suction pump 2 and super oxygen decomposition according to the program setting or sensor feedback.
  • the decomposed, sterilized, and degraded dirty air is taken out of the cabin, and then solenoid valves B3, B6, B7, and B2 are opened to the A3, A9, A6, and A7 air-conditioning and inflating pipelines (air pump outlet d ⁇ A3 ⁇ A9 ⁇ A6 ⁇ B6 ⁇ A6 ⁇ Air-conditioning device air inlet t ⁇ Air outlet s ⁇ A7 ⁇ B7 ⁇ A7 ⁇ Vacuum high-pressure cabin air-conditioning air inlet i) and turn on the air pump 3 to drive the air flow through the air-conditioning device 6.1
  • the hollow fiber membrane separates the oxygen, and the high nitrogen and low oxygen gas enters the vacuum hyperbaric chamber 1-10.
  • the solenoid valves B3, B5, and B4 are opened to ventilate the air regulation circulation pipeline (vacuum hyperbaric chamber loop return port j ⁇ A3 ⁇ B3 ⁇ A5 ⁇ B5 ⁇ A5 ⁇ B4 ⁇ A4 ⁇ air pump air inlet e ⁇ air pump air outlet d), and turn on the humidifier 8.5 at the same time, until the air concentration, air humidity and positive air pressure in the cabin reach the air pressure storage standard.
  • the storage-type vacuum hyperbaric chamber 1-10 forms a proper ratio of nitrogen-rich and oxygen-poor environment and maintains proper positive pressure and proper humidity, effectively controlling the respiration rate of stored fruits and vegetables, while preventing anaerobic respiration and carbon dioxide poisoning, delaying the aging process and preventing The quality of stored fruits and vegetables is reduced and the flavor is lost.
  • Positive pressure humidity maintains and replenishes the moisture of fruits and vegetables to maximize the freshness of fruits and vegetables;
  • Open door protection program If someone opens the warehouse door during super-oxygen sterilization or controlled atmosphere storage , The door switch immediately feedbacks, the positive and negative pressure intelligent control device 5 immediately controls to stop the super-oxygen or air conditioning program, and at the same time opens the air extraction pipeline and starts the air extraction pump 2, to quickly pump the super oxygen or high nitrogen and low oxygen gas to super oxygen
  • the decomposer 6.7 is decomposed and discharged. Since the air flows from the person's side to the storage-type vacuum hyperbaric chamber 1-10 to supplement the suction negative pressure, the user will not be exposed to super-oxygen, high-nitrogen and low-oxygen gases and avoid harm.
  • the intelligent control device 5 can also start the air pump 3 and enable the solenoid valves B3 and B2 to open the air and water filling pipeline (the air outlet of the air pump) d ⁇ A3 ⁇ A9 ⁇ B2 ⁇ A2 ⁇ air inlet h ⁇ outlet n ⁇ A2 ⁇ discharge into the atmosphere), drive the air outside the warehouse into the air water production device 11 to produce water; (7) low-temperature storage auxiliary preservation Procedure: After starting up, the positive and negative pressure intelligent control device 5 starts the refrigeration system 8, and connects to the evaporator air-cooling combination 8.1 through the refrigeration pipe A13, and through the feedback and control of the temperature sensor controller C9, it is a storage-type vacuum high-pressure chamber 1- 10 Provide corresponding low temperature, and assist the positive and negative pressure system to keep the stored items fresh; (8), the remote and short-range operation monitoring function: the touch screen and mobile phone monitoring system 12 can be controlled in real time through the touch screen and mobile phone APP to monitor positive and negative Press the real-time status of
  • the smart positive and negative pressure module cabinet includes a cabinet body 7; the cabinet body 7 is provided with a smart positive and negative pressure system, a cooling and heating system 8.3, a touch screen and a mobile phone monitoring system 12;
  • the intelligent positive and negative pressure system includes a positive and negative pressure cabin 1, an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, and a positive and negative pressure air flow carrier generation processor; the positive and negative pressure cabin 1 is in accordance with the intelligent positive and negative pressure module
  • the specific requirements of the cabinet are designed as a modular vacuum hyperbaric chamber 1-11; the modular vacuum hyperbaric chamber 1-11 includes: a cabin 1.1, a door 1.2, a pneumatic airtight mechanism 1.5, a sealed connector inside and outside the cabin 1.4, a pneumatic cabin Door switch 1.8; the door 1.2 is the door of the positive and negative pressure modular cabinet; a pneumatic airtight mechanism 1.5 is provided between the door 1.2 of the modular vacuum high-pressure compartment 1-11 and the compartment 1.1;
  • the door 1.2 touches the pneumatic door switch 1.8, and the air pump 3 is activated as a sealing lock.
  • the tongue-folding telescopic airbag 1.52 is inflated to extend it, and the sealing latch 1.51 is pushed to extend outward from the cabin air-tight groove 1.11, and into the cabin door air-tight groove 1.21 set at the opposite position, thereby locking and
  • the pneumatic cabin door switch 1.8 is used to deflate the retractable airbag 1.52 for the sealing bolt and retract the sealing bolt 1.51 to open the door;
  • all piping and circuits entering and exiting the chamber are connected to the internal and external sealed connector 1.4 and enter and exit through it to maintain the sealing performance of the modular vacuum hyperbaric chamber 1-11.
  • the modular vacuum high-pressure chamber 1-11 is equipped with an air pump 2, an air pump 3, a positive and negative pressure intelligent control device 5, an air conditioning device 6.1, a super oxygen decomposition device 6.7, an air filter 6.8, and a cooling and heating system.
  • the four-side pipes of the square ring-shaped inflatable pipeline A8.1 are connected with each other, and the inflatable plugs 1.54 are connected to their points, and the inflatable plugs 1.54 are inserted and connected to their corresponding inflatable sockets 1.53; the inflatable The pipe A3 is also connected to an air-water-making and charging pipe A9, which is connected to the solenoid valve B2 and connected to the air-water-making device 11 air inlet h through the exhaust pipe A2; the air inlet of the air-conditioning device 6.1
  • An air-conditioning air inlet pipe A6 is installed at the port t, a solenoid valve B6 is installed in the middle of the air-conditioning air inlet pipe A6, and the other end is connected to the air-filling pipe A3, and then connected to the air outlet d of the air pump 3.
  • the air-conditioning device The air outlet s of 6.1 is equipped with an air-conditioning air outlet pipe A7, the middle of the air-conditioning air pipe A7 is equipped with a solenoid valve B7, and the other end extends into the modular vacuum high-pressure chamber 1-11 to form its air-conditioning air inlet i;
  • the water outlet x of the air water device 11 is equipped with an air water pipe A10, which is connected to the water inlet y of the filter water tank 11-1; in the modular vacuum hyperbaric chamber 1-11
  • the generated condensate flows into the water inlet Y of the condensate water collection box 11.2 installed at the bottom of the cabin, and the other water inlet N of the condensate water collection box 11.2 is installed with dehumidification condensation Water pipe A31, the other end of the dehumidification condensate pipe A31 is connected to the condensate drain H of the dehumidification device; a condensate pipe A11 is installed at the water outlet M of the con
  • a solenoid valve B12 is installed in the middle of the humidification water pipe A12, and the other end extends into the modular vacuum hyperbaric chamber 1-11, which is connected to the water inlet R of the humidifier 8.5; the cooling and heating system 8.3 is equipped with a circulating pipe A13.
  • the circulation pipe A13 extends into the modular vacuum hyperbaric chamber 1-11 and is connected to the heat exchanger 8.4;
  • the touch screen and the mobile phone monitoring system 12 include: cabinet door touch screen 12.1, mobile phone APP 12.2, high-definition protection Fog camera device 12.3, the high-definition anti-fog camera device 12.3 is installed inside and outside the cabinet 7 where it needs to be monitored;
  • the modular vacuum hyperbaric chamber 1-11 is provided with a positive and negative pressure airflow generation processor and a sensor , Including: humidifier 6.5, air disinfection and sterilization device 6.9, air filter and freshener 6.10, dehumidification device 6.11, condensate water collection box 11.2, pressure sensor C1, negative pressure sensor C2, super oxygen sensor C3, negative oxygen ion sensor C4 , Chlorine dioxide sensor C5, humidity sensor C6, oxygen sensor C7, nitrogen sensor C8, temperature sensor controller C9, water level sensor controller C10, air particulate matter sensor C11; inside and All the externally installed airflow generation processors, sensors, sole
  • the operation method of the smart positive and negative pressure module cabinet because the smart positive and negative pressure module cabinet has a vacuum, high pressure, constant temperature, constant humidity, constant pressure, sterile, dust-free environment, can be placed and installed
  • the operation methods include: (1) Vacuum cleaning procedure: put tableware, kitchenware, small home appliances, and small items into the modular vacuum hyperbaric chamber 1-11 , When closing the cabin door 1.2, touch the cabin door switch 1.8, and the positive and negative pressure intelligent control device 5 will issue an instruction: make solenoid valves B1 and B2 open A1 and A2 exhaust pipes (vacuum high-pressure cabin exhaust gas return port c ⁇ A1 ⁇ B1 ⁇ A1 ⁇ Exhaust pump 5 air inlet a ⁇ air outlet b ⁇ A2 ⁇ super oxygen decomposer air inlet g ⁇ air outlet m ⁇ A2 ⁇ B2 ⁇ A2 ⁇ air water system air inlet h ⁇ air outlet n ⁇ discharge Atmosphere), and turn on the suction pump 2 to pump the modular vacuum hyperbaric chamber 1-11 to a moderate vacuum (-0.01KPa ⁇ -0.09MPa), to remove some bacteria and microorganisms and the dirty air in the cabin, and to clean the air and space; (2) , Disinfection and sterilization procedures:
  • the air disinfection and sterilization device 6.9 includes: super oxygen generator and ultraviolet disinfection lamp, etc., which can be set and selected according to different disinfection requirements , Sterilize the environment and items in the cabin; (3) Aseptic and non-destructive storage procedures under specific conditions: Module cabinets of different types and configurations can provide vacuum, high pressure, constant temperature, constant humidity, constant pressure, sterile, dust-free and other specific The storage environment can meet various storage needs.
  • tableware, kitchenware, small household appliances and small items can be stored in vacuum after super-oxygen sterilization, paintings, calligraphy, documents, antiques, cultural relics, and high-end clothing can be stored in a vacuum with low oxygen and dust-free storage, or stored with a specific modified atmosphere gas, or Storage at constant temperature, humidity, and pressure;
  • Multi-purpose display refrigeration in the wine bar packaged food, beverages, alcohol, fruit, dried fruit, confectionery and other food items can be stored in transparent cabinet doors for display refrigeration;
  • Remote and short-range operation and monitoring function The touch screen and mobile phone monitoring system 12 can be operated and monitored in real-time on the positive and negative pressure module cabinet through WIFI and mobile phone APP, so that the module cabinet can intelligently follow the settings Programs and real-time instructions are efficient and low-consumption functions; the high-definition anti-fog camera device 12.3 captures the condition of items in the refrigerator in real time, and the box door touch screen 12.1 or mobile phone APP 12.2 will display and remind the production time,
  • the positive and negative pressure module combination smart home mode the smart positive and negative pressure module cabinet is designed and manufactured according to the module function, and it is used as a separate invention right for independent production and use, and It can be organically combined with other positive and negative piezoelectric devices and modular cabinets under the control of the touch screen and mobile phone APP monitoring system 12 to form a fully functional smart positive and negative pressure modular home.
  • modular cabinet itself is high-energy, high-efficiency, low-consumption and suitable for use, but also can be used It shares the intelligent positive and negative pressure system, refrigeration system, and air water system of other positive and negative piezoelectric devices and modular cabinets, and the appearance, shape and color are basically uniform, neat and harmonious, in line with popular trends.

Abstract

一种正负压系统及其操作方法和使用正负压系统的正负压电器,正负压电器包括:正负压冰箱、正负压洗衣机、真空洗碗果蔬清洗机、超氧水洗油烟机、正负压烤箱炸锅微波炉、正负压保鲜车厢、正负压保鲜仓库和正负压模块柜。正负压系统的技术原理和基本操作方法是:以正负压调控空气流,或搭载臭氧、气触媒、负离子、气调气体、水等多种有效载荷,有序进出或驻留正负压舱,并对其中物品施加所需影响。据此,用正负压系统调控整合真空、高压、臭氧、触媒、气调保鲜、负离子、消毒净化、加湿除湿、空气制水和低温贮藏多种技术,组合应用于正负压电器中,赋予电器呼吸功能,对现有电器和传统技术升级换代,开发了一个正负压电器细分领域。

Description

一种正负压系统及其操作方法和使用该系统的正负压电器 技术领域
本发明实施例属于电器领域,尤其是涉及一种正负压系统及其操作方法和使用该系统的正负压电器。
背景技术
生产生活电器领域近几十年得到迅猛发展,特别是冰箱洗衣机等日益普及,然而近年来家电产品的更新换代却不能尽如人意,例如冰箱,自从上世纪初年压缩制冷式冰箱问世一百多年来,虽然冰箱外观已经改进的非常美观,也添加了各种五花八门的辅助功能,然而仅靠低温抑菌的基本贮藏方法一直没有技术突破。真空和高压的特点早已为人所知,真空中细菌微生物无法存活保存果蔬肉鱼不易腐坏,一直吸引人们利用真空贮存食品,然而真空中也没有氧气会导致果蔬无氧呼吸损害了品质及新鲜度,同时真空负压过低时会破坏果蔬肉鱼的细胞和组织结构导致腐坏,会使果蔬肉鱼的内部水分加快逸出散失导致品质下降风味损失,由于利弊参半所以一直没有实际应用于冰箱等家电;高压技术运用于冷冻冷藏等领域,经多年研究探明:采用高压抑菌、高压冻结、高压解冻和高压不冻冷藏技术,通过压力和温度的协调配置,可解决常压冷冻、解冻和冻结保藏中最大冰晶生成带对食品造成无法逆转的品质损害这一技术难题,而且高压冻结和解冻的速度比常压下快速很多,然而在家用电器中制造一个深度的真空和超高压 空间,现有材料和技术水平实现起来困难很大问题很多、且成本太高不适合家用电器,以上种种原因致使真空和高压技术至今没有实际应用于冰箱等生产生活电器。超氧(臭氧)可快速杀菌消毒降解农药残留和有机污垢,抑制酶的活力,可保鲜果蔬肉鱼净化空气等等诸多的优点一直在吸引人们将其应用于生产和生活所需,然而接触超氧会危害人体健康,将其运用于电器上一直没有理想的解决方案,致使超氧也没有实际应用于冰箱、洗衣机等家用电器;气调保鲜是当今较为先进的果蔬保鲜贮藏方法,通过调控贮藏空间中的氧气、氮气、二氧化碳浓度比例等等,抑制果蔬呼吸作用,减少有机物质的消耗,保持原有的优良风味和芳香气味,延缓新陈代谢,控制某些病原菌的滋生繁殖和生理病害的发生,保鲜效果比普通冷藏好很多,保鲜期明显延长,而且电耗较小,然而气调储藏需要能抵抗一定压力的气密空间,既要生产最适配比最佳浓度的混合气体并向贮藏空间输入,同时又要将废旧气体适时排出,而且这种气调气体的吐故纳新需要循环系统的精确维持等等,以上这些都是普通冰箱所做不到的;其实,现有技术的冰箱还有一个影响保鲜的致命缺陷至今未解决或者未被人发现或重视,那就是没有换气功能,箱内空气很快污浊影响了保鲜效果,开关箱门虽有一定换气效果但不彻底亦不可靠,以上种种缺憾,都在本发明实施例中得到基本解决。洗衣机、洗碗和果蔬清洗机、抽油烟机和微波炉等家用电器技术也都面临升级换代的问题,本发明实施例的目的是提供一种新的技术、新的方法,解决以上问题,为现有的一些生产生活用电器特别是家用电器进行技术更新和升级换代。
发明内容
本发明实施例正负压系统和使用该系统的正负压电器,用智能正负压系统调控和整合真空、高压、超氧、触媒、气调保鲜、负离子、加湿、除湿、消毒、空气净化、空气制水和低温贮藏等多种技术,组合应用到智能正负压电器中,赋予电器呼吸功能,让电器活起来,对现有电器和传统技术进行技术更新和升级换代,开发了一个正负压电器细分领域。本发明实施例中使用了智能正负压系统的电器设备、运输车厢集装箱、仓储仓库,统一简称为:智能正负压电器;本发明实施例中所述智能正负压电器,包括:智能正负压冰箱、智能正负压洗衣机、智能真空洗碗果蔬清洗机、智能超氧水洗油烟机、智能正负压烤箱炸锅微波炉、智能正负压保鲜车厢、智能正负压保鲜仓库和智能正负压模块柜。本发明实施例采用了以下技术方案:
本发明实施例提供所述一种智能正负压系统和使用该系统的智能正负压电器,所述正负压即以大气压atm或当地即时气压作零标准的正气压和负气压,本发明实施例中,正气压又称:正压或高压,负气压又称:负压或真空,正负压又称:ZhengFuYa或郑负压或+–atm或+–at,上述相关名称涵义相同,并在本发明实施例中通用。
根据本发明的第一实施例,提供一种所述智能正负压系统,包括:正负压舱1(正负压舱又名:真空高压舱)、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱 1,包括:舱体1.1、舱门1.2、气密机构1.3、舱内外联通密封器1.4;所述舱体1.1和舱门1.2之间设置安装有气密机构1.3;所述舱内外密封联通器1.4固定设置在正负压舱1的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持正负压舱1密封性能;所述正负压舱1的外部设置安装有抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器之一气调装置6.1;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1中部安装有电磁阀B1,另一端伸入正负压舱1内形成其抽气回气口c,所述抽气泵2的出气口b处安装有排气管道A2,排气管道A2的另一端通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入正负压舱1内形成其充气进气口f,所述充气泵5的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端连接在电磁阀B3上并通过充气管道A3伸入正负压舱4内形成其循环回气口j;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3再连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入正负压舱1内形成其气调进气口i,在进入正负压舱1内的气调气体需要循环时,充气进气口f则作为正负压舱1的循环回气口j;所述正负压舱1的内部也安装有正负压气流搭载 物发生处理器,包括:超氧(臭氧)发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5;所述正负压舱1的内部还安装有传感器,包括:压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8;所述的抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、全部传感器C1~C8、全部电磁阀B1~B7,均接入正负压智能调控装置5。
根据本发明的第二实施例,提供一种智能正负压系统的操作方法,所述智能正负压系统的技术原理和基本操作方法是:以正负压智能的调控空气流、或搭载超氧、气触媒、负离子、气调气体、水等多种有效载荷,有序进出或驻留特定空间(正负压舱)并对其中物品施加所需影响;所述智能正负压系统的具体操作方法是:由正负压智能调控装置5根据其内置程序和预存数据以及各传感器C1~C8的实时回馈信息,经计算处理后,向抽气泵2、充气泵3、正负压气流搭载物发生处理器和电磁阀实时发出开启或关闭的具体指令,控制调整各抽气管道、充气管道和循环管道的开启、关闭和转换,智能的调控正负压舱1内正负压力的高低和气流及其搭载物的流入、驻留或流出,具体操作方法包括:(1)、将正负压舱1内调控为负压(真空)的操作方法为:正负压智能调控装置5发出指令,使电磁阀B1开通A1、A2抽气管路(正负压舱抽气回气口c→抽气管道A1→电磁阀B1→A1→抽气泵进气口a→抽气泵出气口b→A2→排入大气)(任一管路开通时,其他无关电磁阀全部关闭,后文同此,不再说明),并开启抽气泵2, 将正负压舱1内抽气至设定负压(真空);(2)、将正负压舱1内调控为正压(高压)的操作方法为:正负压智能调控装置5发出指令,使电磁阀B3、B4开通A3、A4充气管路(从大气进气→A4→B4→A4→充气泵进气口e→充气泵出气口d→A3→B3→A3→正负压舱充气进气口f),并开启充气泵3,将正负压舱1内充气至设定正压(高压);(3)、调控气流及其搭载物流入、驻留或流出正负压舱1的操作方法为:①流出:使用抽气泵2,按照上述具体方法(1),将空气流及其搭载物通过抽气管路抽出正负压舱;②流入:使用充气泵3,按照上述具体方法(2),将空气流及其搭载物通过充气管路充进正负压舱;③驻留:需将正负压气流或其搭载物驻留于正负压舱内时,正负压智能调控装置5发出指令,开启抽气机2及抽气管路或开启充气机3及充气管路或开启正负压舱内的正负压气流搭载物发生处理器,并使其他无关电磁阀关闭,直至舱内正负压或气流搭载物数值和驻留时长达标;④循环:气流或其搭载物如气调气体需循环流经正负压舱1及气调装置6.1以使正负压舱内气体浓度达标时,正负压智能调控装置5发出指令,使电磁阀B6、B7开通A6、A7气调充气管路(充气泵出气口d→A3→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→正负压舱气调进气口i),同时使电磁阀B3、B4、B5开通A3、A5、A4气调循环管路(正负压舱循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e),并开启充气泵3,使气调气体循环流动,直至其浓度、正负压舱内气压和驻留时长达标;所述智能正负压系统使用以上方法,智能的调控和整合真空、高压、超氧、触媒、 气调保鲜、负离子、加湿、除湿、消毒、空气净化、空气制水和低温贮藏等多种技术,多项组合或单项应用于电器设备、运输车厢集装箱、仓储仓库等,因其设置使用了智能正负压系统,均统一简称为:智能正负压电器;本发明实施例中所述智能正负压电器,包括:智能正负压冰箱、智能正负压洗衣机、智能真空洗碗果蔬清洗机、智能超氧水洗油烟机、智能正负压烤箱炸锅微波炉、智能正负压保鲜车厢、智能正负压保鲜仓库和智能正负压模块柜。
根据本发明的第三实施例,提供一种智能正负压冰箱,包括箱体7;所述箱体7内设置有智能正负压系统、制冷系统8、普通冷藏室9、普通冷冻室10、空气制水装置11和触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1包括:舱体1.1、舱门1.2、舱内外密封联通器1.4、气动气密机构1.5、电动气密机构1.6、气动舱门开关1.8、电动舱门开关1.9;所述舱门1.2即为正负压冰箱的箱门;所述正负压舱1根据冰箱冷藏冷冻的特定要求设计为真空高压冷藏舱1-1和真空高压冷冻舱1-2;所述真空高压冷藏舱1-1的舱门1.2与舱体1.1之间设置有气动气密机构1.5;所述气动气密机构1.5包括气动密封锁舌1.51和一体制作在密封锁舌1.51后部的密封锁舌伸缩气囊1.52;所述一体结构的密封锁舌1.51和密封锁舌伸缩气囊1.52共设置有4个,均为长条形,分别按装在舱体1.1门框的4条边框内设置的4个舱体气密槽1.11内,舌体截面外层部分为密封橡胶,内部为耐弯折金属芯;所述密封锁舌折 叠伸缩气囊1.52为充气即可伸长的折叠式橡胶气囊,气囊后部设置有充气插座1.53;所述充气插座1.53内插入有充气插头1.54,所述充气插头1.54共设置有4个,分别安装连通在方环形的气密机构充气支管道A8.1的四条边的4个边管道各自的中点部位,所述方环形的气密机构充气支管道A8.1的底边管道与气密机构充气管道A8垂直连接,并通过电磁阀B8和管道A3以及电磁阀B3与充气泵3出气口d连通;关闭舱门时,舱门1.2触碰到气动舱门开关1.8,充气泵3随即启动为密封锁舌折叠伸缩气囊1.52充气使其伸长、并且连带推动密封锁舌1.51从舱体气密槽1.11向外伸出,并伸入其对面对应位置设置的舱门气密槽1.21内,从而锁定并密封舱门,使用人打开舱门时通过气动舱门开关1.8为密封锁舌折叠伸缩气囊1.52放气,使密封锁舌1.51缩回以便打开舱门;所述真空高压冷冻舱1-2的舱门1.2与舱体1.1之间设置有电动气密机构1.6;所述电动气密机构1.6包括电动密封锁舌1.61、电磁铁1.62、拉力弹簧1.63;所述密封锁舌1.61共设置有4个,均为长条形,分别活动按装在舱体门框四周内设置的4个舱体气密槽1.11内并挂接在拉力弹簧1.63上,所述拉力弹簧的另一端固定挂接在舱体气密槽1.11内的底部;所述密封锁舌1.61舌体截面外层部分为密封橡胶层,内部为耐弯折易磁吸金属芯,朝向电磁铁1.62一侧的密封橡胶层开放并部分露出内部的金属芯以便于被电磁铁1.62吸引;所述电磁铁1.62亦为与密封锁舌1.61形状相对应的长条形,固定安装在与舱体气密槽1.11位置相对应的舱门气密槽1.21的槽底里面,关门后需要密封时,电动舱门开关1.9 给电磁铁1.62通电产生磁力,将安装在对面的舱体气密槽1.11里的密封锁舌1.61吸引到舱门气密槽1.21里来,开门时电动舱门开关1.9给电磁铁1.62断电磁力消失,拉力弹簧1.63将密封锁舌1.61拉回舱体气密槽1.11里去以便打开舱门;所述舱内外密封联通器1.4固定设置在正负压舱1的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持正负压舱1的密封性能。所述正负压舱1的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵5的进气口a处安装有抽气管道A1,所述抽气管道A1分别连接有抽气支管道A1.1和A1.2,所述抽气支管道A1.1和A1.2各自的中部分别安装有电磁阀B1.1和B1.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其抽气回气口c1和c2;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后经其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端分别连接有充气支管道A3.1、A3.2、A3.3、A3.4,所述充气支管道A3.1、A3.2、A3.3、A3.4各自的中部均安装有电磁阀B3.1、B3.2、B3.3、B3.4,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内,A3.1的另一端端口形成真空高压冷藏舱1-1的充气进气口f1;A3.2的另一端端口形成真空高压冷冻 舱1-2的充气进气口f2;A3.3的另一端连接至超高压解冻舱1-3的进气口G;A3.4的另一端连接至超高压深冷舱1-4的进气口Q;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有空气滤清器6.8和电磁阀B4,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5连接至循环支管道A5.1和A5.2,所述循环支管道A5.1和A5.2各自的中部均安装有电磁阀B5.1和B5.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其循环回气口j1和j2;所述循环管道A5还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h,所述空气制水充气管道A9与循环管道A5连接并接通电磁阀B3,然后通过充气管道A3连通充气泵3的出气口d;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后通过电磁阀B3连通充气泵3的出气口d,所述气调装置6.1的出气口s1和s2处分别安装有气调出气管道A7.1和A7.2,所述气调出气管道A7.1和A7.2中部分别安装有电磁阀B7.1和B7.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其各自的气调进气口i1和i2;所述充气管道A3还连接至气密机构充气管道A8,所述气密机构充气管道A8的中部安装有电磁阀B8,另一端垂直连接至方环形的气密机构充气支管道A8.1的底边管道;所述方环形的气密机构充气支管道A8.1的四个边管道相互连通,所述四个边管道各自的中点部位均设置安装有充气插头1.54,所述四个充 气插头1.54均插入连接至充气插座1.53内;所述空气制水装置11的出水口x处安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11.1的进水口y相连通;真空高压冷藏舱1-1内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出真空高压冷藏舱1-1后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入真空高压冷藏舱11-1,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13分别伸入真空高压冷藏舱1-1、真空高压冷冻舱1-2、普通冷藏室9和普通冷冻室10内,与其内分别安装的蒸发器风冷组合8.1和蒸发器直冷组合8.2均连通;所述的触控屏与手机监控系统12,包括:箱门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3,所述的高清防雾摄像装置12.3安装在箱体7内外部需监控位置;所述正负压舱1的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:设置安装在真空高压冷藏舱1-1内的有:超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;设置安装在真空高压冷冻舱1-2内的有:气触媒控释器6.4、压力传感器C1、负压传感器C2、二氧化氯传感器C5、氧 气传感器C7、氮气传感器C8、温度传感器C9;所述正负压舱1内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置,包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、超高压解冻舱1-3、超高压深冷舱1-4、触控屏与手机监控系统12、箱门触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10和电磁阀B1至B12,均接入正负压智能调控装置5。
根据本发明的第四实施例,提供一种智能正负压冰箱的操作方法,所述方法包括:(1)、真空除害除热清洁程序:关闭正负压冰箱的真空高压冷藏舱门1.2,触动舱门开关1.8,正负压智能调控装置5即发出指令:使电磁阀B3、B8开通A3、A8和A8.1气密机构充气管路(充气泵出气口d→A3→B3→A3→A8→B8→A8→A8.1→充气插头1.54→充气插座1.53→密封锁舌伸缩气囊1.52),并开启充气泵3为气动气密机构1.5充气,锁闭舱门1.2;同时使电磁阀B1.1和B2开通A1、A1.1和A2抽气管路(真空高压冷藏舱1-1抽气回气口c1→A1.1→B1.1→A1.1→A1→抽气泵进气口a→出气口b→A2→超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将真空高压冷藏舱1-1抽为适度真空(﹣0.01KPa~﹣0.1MPa)(以当地即时气压为零标准, 文内均同,视具体需求和冰箱配置可再提高真空度),抽走果蔬肉鱼自带热量、部分细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持真空高压冷藏舱1-1内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使真空高压冷藏舱1-1内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、B3.1和B4开通A3、A3.1、A4充气管路(大气进气→A4→B4→A4→空气滤清器→A4→充气泵进气口e→出气口d→A3→B3→A3→A3.1→B3.1→A3.1→真空高压冷藏舱1-1充气进气口f1),并开启充气泵3,对真空高压冷藏舱1-1适当加压至0.01KPa~10MPa之间(以当地即时气压为零标准,视具体需求和冰箱配置可再提高压力值),适当正压的超氧对真空高压冷藏舱1-1中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内 水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用(超氧在空气和水中30分钟左右即自动分解还原为氧气,但是在冰中非常稳定半衰期极长,故真空高压冷冻舱1-2不设置超氧发生器,不使用超氧);(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管道并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7.1开通A3、A6、A7.1气调充气管路(充气泵出气口d→A3→B3→A3→A6→B6→A6→气调装置进气口t→出气口s1→A7.1→B7.1→A7.1→真空高压冷藏舱1-1气调进气口i1)并开启充气泵3,带动气流经过气调装置8.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压冷藏舱1-1,同时使电磁阀B5.1、B3、B4开通气调循环管路(真空高压冷藏1-1循环回气口j1→A5.1→B5.1→A5.1→A5→B3→A5→B4→A4→空气滤清器→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器6.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,真空高压舱内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、剩菜食 物加压保存程序:剩菜放入真空高压冷藏舱1-1中,调控装置5开启抽气泵2和抽气管路,将剩菜已经散发的气味和舱内污浊空气抽出舱外后关闭,然后开启充气泵3和充气管路适当加压保存,既防止气味和水分过度散失,也抑制了变质腐坏,同时根据湿度传感器的反馈信息,适时开启加湿器6.5补充空气中水分,或适时开启超氧发生器6.2杀灭舱内空气中细菌防止食物腐坏;(6)、低温辅助保鲜程序:冰箱开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1和蒸发器直冷组合8.2,通过温度传感控制器C9的反馈和控制,为各个舱室提供相应低温,并辅助正负压系统为贮藏物品保鲜;(7)、高压快速冻结与解冻和高压不冻贮藏程序:在正负压冰箱冷冻区内设置超高压深冷舱1-3,在冷藏区内设置超高压解冻舱1-4,专门用来对肉鱼海鲜等进行高质量冻结保鲜、解冻保鲜和高压不冻贮藏,用充气泵3为其加压,一定的超高压力会影响肉鱼组织和细胞内部水分的冻结点、结晶过程和冰晶尺寸形状,在0至209.9MPa范围内,水的冻结点随压力的提高而降低,最低在209.9MPa压力下可达﹣21.99℃才冻结,利用这个原理,可以避开常温冻结中的冰晶最大形成带,一定程度的解决了传统常压冻结和解冻时最大冰晶带停留时间长破坏鱼肉组织和细胞的问题,使贮藏肉鱼海鲜高水分食品的品质风味和鲜度得以完美保持,虽然现有技术和材料尚无法以合适的较低成本在冰箱中设置本发明之超高压舱,但随着科技的发展会很快的逐步实现;(8)、开门即排保护功能:如果超氧杀菌消毒或气调贮藏期间有人打开冰箱门,则舱门开关立即反馈,正负 压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至冰箱后边的超氧分解器6.7分解后排出,由于空气是从人身旁流向真空高压冷藏舱内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害。(9)、空气制水程序,抽气泵2从真空高压舱内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→B3→A5→A9→B2→A2→空气制水装置进气口h),带动室内空气进入空气制水装置11制水;(10)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过WIFI和手机APP远近程实时操纵监控本冰箱和其他正负压电器以及正负压模块柜,使本冰箱和其他所有正负压电器以及模块柜均智能的按照设定程序和即时指令高效低耗的实现各项功能;所述的高清防雾摄像装置12.3实时拍摄冰箱内物品状况,箱门触控屏12.1或手机APP12.2会显示和提醒生产时间、价格、保质期、生产厂家等商品信息和购买商场、网店信息,自动记录分析整理本冰箱存入取出物品时间数量频次喜好等等大数据并进行智能分析,然后在手机APP12.2上及时提醒或直接将建议购买商品推送到手机APP12.2和箱门触屏12.1上供使用人方便的选择购买;所述的高清防雾摄像装置12.3除了实时监控录制外,还特别要在冰箱门关闭过程中,从远离箱体的位置开始,随着箱门1.2关闭移动、自动连拍数张冰箱内物品全景照片, 或同时自动录制小视频,供使用者在手机APP中查看,或近程时无需打开箱门不泄真空不降温度、即可在箱门触控屏中随时查看最后一次关门前和关门过程中、光线好视野大的冰箱内物品全景照片或视频;(11)、正负压模块组合智能家居模式:智能正负压冰箱可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以共享共用正负压系统、制冷系统、空气制水装置,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。总而言之,以上所述智能正负压冰箱的具体操作方法,可以智能的调控整合真空、高压、超氧、气调保鲜、低温贮藏、负氧离子、气触媒、加湿和空气制水等多种技术,用单项、双项或多项的不同组合交替或者循环运用,并且可以一个冰箱中设置多个不同类型的真空高压舱,因舱施策、分类调控,使贮藏的果蔬肉鱼长期保持水润新鲜的品质风味,同时也使智能正负压冰箱更加高能高效低耗宜用。
根据本发明的第五实施例,提供一种智能正负压洗衣机,包括机体7;所述机体7内设置有智能正负压系统、洗脱烘系统15和触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1根据洗衣干衣的特定要求设计为真空高压滚筒外舱1-5;所述真空高压滚筒外舱1-5包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压 洗衣机的机门;所述真空高压滚筒外舱1-5的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32、气密垫圈1.33和门边密封垫1.34;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当真空高压滚筒外舱1-5内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外密封联通器1.4固定设置在真空高压滚筒外舱1-5的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持真空高压滚筒外舱1-5的密封性能;所述真空高压滚筒外舱1-5内设有滚筒机构15.1、防淋水抽气口2.1、滚筒密封轴承座15.3、压力传感器C1和负压传感器C2;所述真空高压滚筒外舱1-5外部安装有抽气泵2、充气泵3、正负压智能调控装置5、洗脱烘控制机构15.2、滚筒大皮带轮15.4、电机组合15.5、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、触控屏与手机APP监控系统12、洗涤剂拉盒18;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入真空高压滚筒外舱1-5后连接有防淋水抽气口2.1,并形成抽气回气口c,所述抽气泵2的出气口b通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入真空高压滚筒外舱1-5内并延至滚筒机构15.1的下方,形成充气进气口f;所述充气泵3的进气口e通大气;所述进水泵17的进水口r处安装有进水管道A14,所述进水管道A14的中部安装有电磁阀B14,另一端接通自来水源,所述进水泵17的出水口u处安 装有洗衣机进水管道A15,所述进水管道A15的中部安装有电磁阀B15,另一端接通超氧发生混水器6.6的进水口k,所述超氧发生混水器6.6的出水口q安装有洗衣机进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端接通洗涤剂拉盒18的进水口z,所述洗涤剂拉盒18的出水口l安装有洗衣机进水管道A17,所述进水管道A17的中部安装有电磁阀B17,另一端伸入真空高压滚筒外舱1-5内形成其进水口T;所述电磁阀B14还安装有进水管道A18并连通电磁阀B16,在无需超氧水且自来水压达标时直接进水;所述电磁阀B15还安装有进水管道A19并连接至进水管道A18再连通电磁阀B16,在无需超氧水时由进水泵17直接进水;所述排水泵16的进水口w处安装有进水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空高压滚筒外舱1-5内形成其排水口L,所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B20还安装有排水管道A23并连通电磁阀B22,在无需分解超氧且可以自流排水时直接排水;所述电磁阀B21还安装有排水管道A24并连接至排水管道A23再连通电磁阀B22,在无需分解超氧时由排水泵16直接排水;所述电机组合15.5带动大皮带轮15.4,所述大皮带轮15.4带动连接其上的滚筒机构15.1运转;所述抽气泵2、充气泵3、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、洗脱烘控制机构15.2、触控屏与手机APP 监控系统12、压力传感器C1、负压传感器C2和电磁阀B1至B22,均接入正负压智能调控装置5。
根据本发明的第六实施例,提供一种智能正负压洗衣机的操作方法,所述方法包括:(1)、进水程序:衣物放入滚筒15.1,关闭机门即真空高压舱门1.2开机后真空高压滚筒外舱1-5密封锁死,正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B17开通相应进水管路(①自来水直接进水管路为A14→B14→A18→B16→A16→洗涤剂拉盒进水口z→出水口l→A17→B17→A17→滚筒外舱进水口T;②需超氧水洗涤时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16-洗涤剂拉盒z→出水口l→A17→B17→A17→滚筒外舱进水口T;③无需超氧水清洗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→A18→B16→A16→洗涤剂拉盒进水口z→出水口l→A17→B17→A17→滚筒外舱进水口T),并开启进水泵17,自来水随之直接进水或通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空高压滚筒外舱1-5,超氧水可加速分解衣物上的有机污垢利于快速洗净,进水开始后正负压智能调控装置5可使电磁阀B1开通抽气管道A1(抽气泵进气口a→A1→B1→A1→滚筒外舱1-5抽气回气口c),并开启抽气泵2使真空高压滚筒外舱1-5处于适度负压,会使进水加快,缩短进水时间;(2)、真空洗涤程序:进水完毕正负压智能调控装置5开启电机组合15.5,带动滚筒机构15.1转动开始 洗涤,同时使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→滚筒外舱1-5抽气回气口c),并开启抽气泵2,将真空高压滚筒外舱1-5抽为适度真空,衣物纤维和污物在真空中都会膨胀,其中的空气逸出,使污物附着力减弱或脱落,提高了洗净效率,缩短了洗涤时间,超氧水在洗衣过程中直接杀灭衣物上的细菌病毒微生物,分解衣物上尘埃污垢中的有机物使其溶入水中,增强洗涤剂的去污能力,提高洗净度,加速洗净过程,同时起到杀菌除臭的作用;(3)、高压洗涤程序:真空洗涤适当时间后,正负压智能调控装置5关闭电磁阀B1和抽气泵2,使电磁阀B3开通A3充气管路(充气泵6出气口d→A3→B3→A3→滚筒外舱1-5充气进气口f),并开启充气泵3,高压气流通过A3充气管路进入真空高压滚筒外舱1-5,并在滚筒机构15.1下方形成强烈气泡激流参与洗涤,同时真空高压滚筒外舱1-5内形成的高压有利洗涤剂渗入衣物便于洗净,如此抽气和充气循环反复,纤维膨胀和激流揉荡交替进行,大大提高了洗净度和洗衣效率,加快了洗涤和漂洗进程;(4)、排水脱水程序:需排水时正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:滚筒外舱排水口L→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:滚筒外舱排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:滚筒外舱排水口L→A20→B20→A20→排水泵进水口w→出水口p→ A21→B21→A24→A23→B22→A22→下水道),并开启排水泵16排水,排水时如开启充气泵3向真空高压滚筒外舱1-5充气加压,可加快排水速度,排水完毕正负压智能调控装置5即发出指令开始脱水;脱水时充气加压可迫使水分快速脱离衣物,再交替开启抽气泵2抽负压,使真空高压滚筒外舱1-5中衣物纤维膨胀,其中的水分向负压空间逸出并被抽出舱外,同时使脱水和高压中板结在滚筒内壁上的衣物蓬松开来防止衣物皱褶,如此抽气和充气循环反复,逼出水分和抽出舱外交替进行,大大提高了衣物脱水的效率,缩短了排水和脱水时间;(5)、真空高压烘干程序:烘干程序开始时正负压智能调控装置5指令开启充气泵3并开通充气管路向真空高压滚筒外舱1-5充气加压有利热气进入衣物纤维内使水分汽化,然后指令开启抽气泵2并开通抽气管路抽气,抽出水气同时负压使衣物纤维膨胀有利水汽散发快干,如此抽气和充气循环反复,加热气化和抽出水气交替进行,大大加快了干衣进程,衣物蓬松提高了干衣质量,有效缩短了干衣时间;(6)、真空自洁无菌放置程序:洗衣完毕后关闭机门1.2,正负压智能调控装置5操纵洗脱烘控制机构开启烘干热风,吹干洗衣机内部特别是滚筒机构15.1,然后开启抽气泵2并开通抽气管路抽气,抽出真空高压滚筒外舱1-5内的超氧余气,并使滚筒机构15.1和舱内设备均处于适度真空中,无菌无尘无污染保持洁净,无氧化不生锈无损空置,延长洗衣机使用寿命。综上所述正负压洗衣机大大加快了洗衣脱水干衣各个过程,缩短了各个程序的工作时长,并提高了洗衣洁净度和干衣质量,而且超氧还对所洗衣物进行了彻底的杀菌消毒除异味。同时智能 的控制超氧的浓度和工作时长处于杀菌降解助洗的适度区域,不达到或尽少达到可能使深色衣物氧化褪色的临界点;(7)、正负压模块组合智能家居模式:智能正负压洗衣机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以共享共用智能正负压系统,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。总之智能正负压系统使洗衣脱水烘干更快速更高效更低耗,而且所洗衣物更少损耗更洁净更蓬松也更卫生。
根据本发明的第七实施例,提供一种智能真空洗碗果蔬清洗机,包括机体7;所述机体7内设置有智能正负压系统、洗碗烘干系统19、果蔬清洗系统20和触控屏与手机APP监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1根据智能洗碗烘干和果蔬清洗的特定要求设计为真空超氧舱1-6;所述真空超氧舱1-6包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为真空洗碗果蔬清洗机的机门;所述真空超氧舱1-6的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当真空超氧舱1-6内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在真空超氧舱1-6的后部,进出舱内 外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持真空超氧舱1-6的密封性能。所述真空超氧舱1-6内设有洗碗烘干系统19、果蔬清洗系统20、防淋水抽气口2.1、负压传感器C2、超氧传感器C3、温度传感器C9;所述真空超氧舱1-6外部安装有抽气泵2、正负压智能调控装置5、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、触控屏与手机APP监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入真空超氧舱1-6后连接有防淋水抽气口2.1,并形成抽气回气口c;所述抽气泵2的出气口b通大气;所述进水泵17的进水口r处安装有进水管道A14,所述进水管道A14的中部安装有电磁阀B14,另一端接通自来水源,所述进水泵17的出水口u处安装有进水管道A15,所述进水管道A15的中部安装有电磁阀B15,另一端接通超氧发生混水器6.6的进水口k,所述超氧发生混水器6.6的出水口q安装有进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端伸入真空超氧舱1-6接至电磁阀B25,所述电磁阀B25又分别连接有果蔬清洗进水管道A25和洗碗烘干进水管道A27,所述进水管道A25接至果蔬清洗系统20的进水口E;所述进水管道A27接至洗碗烘干系统19的进水口G;所述电磁阀B15还安装有进水管道A19并连接至电磁阀B16,在无需超氧水时由进水泵17直接进水;所述排水泵16的进水口w处安装有排水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空超氧舱1-6并分别接至果蔬清洗排水管道A26和洗碗烘干排水管道A28,所述排 水管道A26接至果蔬清洗系统20的出水口F;所述排水管道A28接至洗碗烘干系统21的排水口H;所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B21还安装有排水管道A24并连接至A23再连通电磁阀B22,在无需分解超氧时由排水泵直接排水;所述抽气泵2、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、洗碗烘干系统19、果蔬清洗系统20、触控屏与手机APP监控系统12、负压传感器C2、超氧传感器C3、温度传感器C9和电磁阀B1至B25,均接入正负压智能调控装置5。
根据本发明的第八实施例,提供一种智能真空洗碗果蔬清洗机的操作方法,所述方法包括:(1)、洗碗进水和清洗程序:关闭机门后正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B25开通相应进水管路(①需超氧水洗碗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→B25→A27→洗碗烘干系统进水口G;②无需超氧水洗碗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→B16→A16→B25→A27→洗碗烘干系统进水口G),并开启进水泵17,自来水随之通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,超氧水可加速分解餐具上的有机污垢利于快速洗 净,进水完毕正负压调控装置5开启洗碗烘干系统19开始喷淋洗碗,并使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→真空超氧舱抽气回气口c),同时开启抽气泵2开始抽真空,碗筷餐具上沾染的污物在真空负压中都会膨胀,污物中的空气逸出,使污物附着力减弱或从碗筷餐具上脱落,提高了洗净效率,缩短了洗涤进程,超氧水在洗碗过程中直接杀灭碗筷餐具上的细菌病毒微生物,分解碗筷餐具上污垢中的有机物使其溶入水中,还能增强洗涤剂的去污能力,提高洗净度,加速洗净过程,同时起到杀菌除臭的作用;(2)、洗碗排水和烘干消毒程序:清洗适当时间需排水时,正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A23→B22→A22→下水道),直接排水或开启排水泵16,或再开启超氧分解器6.7,将废水分解后排入下水道,同时再次用清水将餐具喷淋清洗干净,烘干程序时,正负压调控装置5再次开启抽气泵2迅速抽出水蒸气加快了烘干进程,真空超氧大大加快了洗碗全过程,而且超氧还对所洗碗筷餐具进行了彻底的杀菌消毒除异味;(3)、果蔬清洗进水和清洗程序:关闭机门后正负压智能调控装置5发出指令,使电磁阀 B14、B15、B16、B25开通相应进水管道(①需超氧水清洗果蔬时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→B25→A25→果蔬清洗系统进水口E;②无需超氧水清洗果蔬时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→B16→A16→B25→A25→果蔬清洗系统进水口E),并开启进水泵17,自来水随之通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,进水完毕正负压调控装置5开启果蔬清洗系统20开始喷淋清洗果蔬,并使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→真空超氧舱抽气回气口c),同时开启抽气泵2开始抽真空至适度负压,果蔬上沾染的污物在负压中都会膨胀,污物中的空气逸出,使污物附着力减弱或从果蔬上脱落,提高了洗净效率,缩短了洗涤进程,超氧水在清洗过程中直接杀灭果蔬表皮上的细菌病毒微生物,分解表皮上污垢中的有机物使其溶入水中,提高洗净度加速洗净过程,同时负压促使果蔬组织内的农药重金属等残留和挥发性代谢物乙烯乙醛乙醇等有害气体逸出,为超氧水快速清洗和深度降解农残以及分解乙烯等有害气体创造了有利环境,超氧水清洗适当时间后正负压智能调控装置5发出指令,用清水喷淋将果蔬清洗干净。(4)、果蔬清洗后排水程序:清洗适当时间需排水时,正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A23→B22 →A22→下水道;②需排水泵排水并需分解超氧时排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A23→B22→A22→下水道),直接排水或开启排水泵16或再开启超氧分解器6.7,将废水分解后排入下水道。(5)、真空自洁无菌放置程序:使用完毕后关闭机门1.2,正负压智能调控装置5开启烘干热风,吹干真空超氧舱1-6内部特别是洗碗烘干系统19和果蔬清洗系统20,然后开启抽气泵2并开通抽气管路抽气,抽出真空超氧舱1-6内的超氧余气,并使洗碗烘干系统19、果蔬清洗系统20和舱内设备均处于适度真空中,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损空置,延长电器使用寿命。(6)、正负压模块组合智能家居模式:智能正负压洗碗和果蔬清洗机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以和超氧水洗油烟机共享共用进水泵17、排水泵16、超氧发生混水器6.6和超氧分解器6.7,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使洗碗和果蔬清洗机更加高能高效、低耗宜用。
根据本发明的第九实施例,提供一种智能超氧水洗油烟机,包括机体7;所述机体7的下半部分为密封防水超氧舱1-7,上半部分为设备烟管舱21;所述密封防水超氧舱1-7包括:三角形舱体1.1、 密封防水舱门1.2;所述密封防水舱门1.2即为超氧水洗油烟机的机门,所述舱门1.2与舱体1.1之间设置有密封防水机构1.7;所述密封防水机构1.7包括锁环1.71、锁舌1.72、气密垫圈1.73和舱门合页1.74;所述锁环1.71与锁舌1.72动配合,舱门关闭时锁舌1.72伸入锁环1.71锁住舱门1.2,当密封防水超氧舱1-7内喷淋清洗时由密封垫圈1.73保持密封;所述密封防水超氧舱1-7内部设置安装有电机风轮组合22、自动旋转喷淋球23、集油排水槽24,正面还安装有触控屏与手机APP监控系统12;所述设备烟管舱21内安装有超氧智能清洗系统和抽油烟控制机构26;所述智能超氧清洗系统包括:超氧智能调控装置5.1、进水泵17、排水泵16、超氧发生混水器6.6、超氧分解器6.7、水加热装置27、去油污剂添加器28;所述进水泵17的进水口r安装有进水管道A14并接通自来水源,所述进水泵17的出水口u处安装有进水管道A15,所述进水管道A15的中部安装有水加热装置27和电磁阀B15,另一端通过电磁阀B15分为3路,分别接通超氧发生混水器6.6的进水口k、去油污剂添加器28的进水口z和电磁阀B16;所述超氧发生混水器6.6的出水口q安装有进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端伸入密封防水超氧舱1-7连接至喷淋管道A30,所述喷淋管道A30上安装有至少1个自动旋转喷淋球23,所述喷淋球的轴线与中间一圈喷淋孔的轴线呈45度角,喷出水流时喷淋球23自动旋转;所述去油污剂添加器28的出水口l处安装有进水管道A17,所述进水管道A17的中部安装有电磁阀B17,另一端接通进水管道A15再连通电磁阀B16; 所述排水泵16的进水口w处安装有进水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空超氧舱1-7底部的集油排水槽24中形成排水口L;所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B21还安装有排水管道A24并连接至电磁阀B22,在无需分解超氧时由排水泵16直接排水;所述进水泵17、排水泵16、超氧发生混水器6.6、超氧分解器6.7、水加热装置27、去油污剂添加器28、抽油烟控制机构26、触控屏与手机APP监控系统12和电磁阀B1至B22,均接入超氧智能调控装置5.1。
根据本发明的第十实施例,提供一种智能超氧水洗油烟机的操作方法,所述方法包括:(1)抽油烟程序:启动油烟机时密封防水舱门1.2打开进风抽烟,停止工作时密封舱门1.2关闭;(2)、自清洗程序:超氧智能调控装置5.1发出指令,使电磁阀B15、B16、B17开通相应进水管道(①需超氧水清洗时进水管路为:A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→A30→自动旋转喷淋球23;②需去油污剂清洗时进水管路为:A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→去油污剂添加器进水口z→出水口l→A17→B17→A17→A15→B16→A16→A30→自动旋转喷淋球23;③无需超氧水亦无需去油污剂清洗时进水管路为A14→进水泵进 水口r→出水口u→A15→水加热装置→A15→B15→A15→B16→A16→A30→自动旋转喷淋球23),并开启进水泵17,自来水随之通过水加热装置27、超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,通过自动旋转喷淋球23,对机箱内各个部位包括电机风轮组合22全面喷淋清洗,先喷淋适当温度的超氧热水高效分解去除油污,再用去油污剂混合热水喷淋,再用干净的热水喷淋,直至全部清洗干净,清洗后的污水下流汇集到机箱最下部的集油排水槽24内,需排水时超氧智能调控装置5.1发出指令,使电磁阀B20、B21、B22开通相应排水管路(①需分解超氧时排水管路为:集油排水槽排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;②无需分解超氧时排水管路为:集油排水槽排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A24→B22→A22→下水道),并开启排水泵16,将水排放至下水道;(3)吹干放置程序,清洗后超氧智能调控装置5.1指令开启油烟机将机箱内部完全吹干然后关机放置,防止锈蚀;(4)、开机保护功能:当使用人开机时,空气便立即从身旁流向真空超氧舱内并从排烟管29排出,所以根本接触不到任何超氧;(5)、模块组合智能家居模式:智能超氧水洗油烟机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他电器以及模块柜有机组合为功能齐全的智能模块组合家居,不但可以和洗碗果蔬清洗机共享共用进水泵17、排水泵16、超氧发生 混水器6.6和超氧分解器6.7,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使智能抽油烟机更加高能高效、低耗宜用。
根据本发明的第十一实施例,提供一种智能正负压烤箱空气炸锅微波炉,包括机体7,所述机体7内设有:智能正负压系统、烧烤系统30、空气炸锅系统31、微波系统32和触控屏与手机APP监控系统12;所述智能正负压系统,包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5;所述正负压舱1,根据烤箱空气炸锅和微波炉的特定要求设计为微波真空高压舱1-8;所述微波真空高压舱1-8,包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压烤箱空气炸锅微波炉的机门;所述微波真空高压舱1-8的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当微波真空高压舱1-8内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在微波真空高压舱1-8的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持微波真空高压舱1-8的密封性能。所述微波真空高压舱1-8内部设置安装有烧烤系统30、空气炸锅系统31、微波系统32、压力传感器C1、负压传感器C2;所述微波真空高压舱1-8外部安装有抽气泵2、充气泵3、正负压智能调控装置5、触控屏与手机APP监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1, 另一端伸入微波真空高压舱1-8内形成其抽气回气口c,所述抽气泵2的出气口b安装有出气管道A2并通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入微波真空高压舱1-8内,形成充气进气口f;所述充气泵3的进气口e安装有进气管道A4并通大气;所述抽气泵2、充气泵3、压力传感器C1、负压传感器C2、烧烤系统30、空气炸锅系统31、微波系统32和触控屏与手机APP监控系统12,均接入正负压智能调控装置5。
根据本发明的第十二实施例,提供一种智能正负压烤箱空气炸锅微波炉的操作方法,所述方法包括:(1)、真空烹饪程序:正负压智能调控装置5开启电磁阀B1和抽气泵2,通过抽气管道A1将微波真空高压舱1-8抽为适度真空,在真空中烹饪食物因食材膨胀所以别有风味,例如开启空气炸锅系统在适当真空中烤制薯条、蛋糕等等更加松软可口;(2)、高压烹饪程序;正负压智能调控装置5开启电磁阀B3和充气泵3,高压气流通过充气管道A3进入微波真空高压舱1-8,在高压中烹饪食物因调料容易渗入食材所以特别入味并别有风味,而且易熟节能;(3)、真空放置程序:不使用时将微波真空高压舱1-8抽为适度真空,烧烤微波系统及电路零件处在真空状态下,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损耗保存延长电器的使用寿命;(4)、正负压模块组合智能家居模式:正负压烤箱空气炸锅微波炉可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他电器以 及模块柜有机组合为功能齐全的智能模块组合家居,不但可以共享共用智能正负压系统,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使智能烤箱空气炸锅微波炉更加高能高效、低耗宜用。
根据本发明的第十三实施例,提供一种智能正负压保鲜车厢(集装箱),包括厢(箱)体7;所述厢(箱)体7内设置有智能正负压系统、制冷系统8,触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压保鲜车厢(集装箱)的特定要求设计为厢(箱)式真空高压舱1-9;所述厢(箱)式真空高压舱1-9包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压保鲜车厢的车厢门;所述厢(箱)式真空高压舱1-9的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当厢(箱)式真空高压舱1-9内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在厢(箱)式真空高压舱1-9的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持厢(箱)式真空高压舱1-9的密封性能。所述厢(箱)式真空高压舱1-9的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12; 所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入厢(箱)式真空高压舱1-9内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入厢(箱)式真空高压舱1-9内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入厢(箱)式真空高压舱1-9内形成其循环回气口j;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入厢(箱)式真空高压舱1-9内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;厢(箱)式真空高压舱1-9内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口 Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出厢(箱)式真空高压舱1-9后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入厢(箱)式真空高压舱1-9,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13伸入厢(箱)式真空高压舱1-9内,与蒸发器风冷组合8.1连通;所述的触控屏与手机监控系统12,包括:触控屏12.1、手机APP12.2、无线防雾摄像装置12.4,所述的无线防雾摄像装置12.4安装在厢(箱)体7内外部需监控位置;所述厢(箱)式真空高压舱1-9的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、超氧发生器6.2、负离子发生6.3、气触媒控释器6.4、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;所述厢(箱)式真空高压舱1-9内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、触控屏12-1、无线防雾摄像装置12-4、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、 温度传感器C9、水位传感器C10和电磁阀B1至B12均接入正负压智能调控装置5。
根据本发明的第十四实施例,提供一种智能正负压保鲜车厢(集装箱)的操作方法,所述方法包括:(1)、真空除害除热清洁程序:需保鲜运输的生鲜货物装进厢(箱)式真空高压舱1-9后,关闭舱门1.2,触动舱门开关1.8或者由驾驶员手动开启,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(厢式真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2-超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将厢(箱)式真空高压舱1-9抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走果蔬肉鱼自带热量、细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持厢(箱)式真空高压舱1-9内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发 出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使厢(箱)式真空高压舱1-9内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、和B4开通A3、A4充气管路(大气进气→A4→空气滤清器→A4→B4→A4→充气泵进气口e→出气口d→A3→B3→A3→真空高压舱充气进气口f),并开启充气泵3对厢(箱)式真空高压舱1-9适当加压至0.01KPa~10MPa之间,适当正压的超氧对厢(箱)式真空高压舱1-9中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用;(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管路并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7以及B2开通A3、A9、A6、A7气调充气管路(充气泵出气口d→A3→A9→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→真空高压舱气调进气口i)并开启充气泵3,带动气流经过气调装置8.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压舱1-9,同时使电磁阀B3、B5、B4开通气调循环管路(真空高压舱1-9循环回气口j→A3→B3→A5→B5→A5→B4→A4→ 充气泵进气口e→充气泵出气口d),同时开启加湿器6.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,厢(箱)式真空高压舱1-9内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、开门即排保护程序:如果超氧杀菌消毒或气调贮藏期间有人打开车厢门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至超氧分解器6.7分解后排出,由于空气是从人身旁流向厢(箱)式真空高压舱1-9内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害。(6)、空气制水程序,抽气泵2从厢(箱)式真空高压舱1-9内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→A9→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),带动车厢外空气进入空气制水装置11制水;(7)低温贮藏辅助保鲜程序:开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1,通过温度传感控制器C9的反馈和控制,为厢(箱)式真空高压舱1-9提供相应低温,并辅助正负压系统为贮藏物品保鲜。(8)、远近程操 纵监控功能:所述的触控屏与手机监控系统12可通过触控屏12.1和手机APP12.2实时操纵监控正负压保鲜车厢(集装箱)的实时状态,使保鲜车厢(集装箱)能智能的按照设定程序和即时指令高效低耗安全的实现功能;所述的触控屏12.1或手机APP12.2会显示和提醒厢内温度、湿度、气体浓度和贮藏物品装入时间以及保质期等信息,使用人可在驾驶室或车厢外远程监测和操纵,非常方便;以上程序均由正负压系统自动操控并在触控屏与手机监控系统12设置为快捷键模式远近程操控。
根据本发明的第十五实施例,提供一种智能正负压保鲜仓库,包括库体7;所述库体7内设置有智能正负压系统、制冷系统8,触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压保鲜仓库的特定要求设计为仓储式真空高压舱1-10;所述仓储式真空高压舱1-10包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压保鲜仓库的库门;所述仓储式真空高压舱1-10的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当仓储式真空高压舱1-10内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在仓储式真空高压舱1-10的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通 过其出入,以保持仓储式真空高压舱1-10的密封性能。所述仓储式真空高压舱1-10的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入仓储式真空高压舱1-10内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入仓储式真空高压舱1-10内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入仓储式真空高压舱1-10内形成其循环回气口j;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入仓储式真空 高压舱1-10内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;仓储式真空高压舱1-10内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出仓储式真空高压舱1-10后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入仓储式真空高压舱1-10,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13伸入仓储式真空高压舱1-10内,与蒸发器风冷组合8.1连通;所述的触控屏与手机监控系统12,包括:触控屏12.1、手机APP12.2、防雾摄像装置12.3,所述的防雾摄像装置12.3安装在库体7内外部需监控位置;所述仓储式真空高压舱1-10的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、超氧发生器6.2、负离子发生6.3、气触媒控释器6.4、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;所述仓储式真空高压舱1-10内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装 置11、过滤水箱11.1、触控屏与手机监控系统12、触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9、水位传感器C10和电磁阀B1至B12均接入正负压智能调控装置5。
根据本发明的第十六实施例,提供一种智能正负压保鲜仓库的操作方法,所述方法包括:(1)、真空除害除热清洁程序:需贮藏的生鲜货物运进仓储式真空高压舱1-10后,关闭舱门1.2,触动舱门开关1.8或者由仓库保管员手动开启,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2-超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将仓储式真空高压舱1-10抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走果蔬肉鱼自带热量、细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持仓储式真空高压舱1-10内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加 湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使仓储式真空高压舱1-10内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、和B4开通A3、A4充气管路(大气进气→A4→空气滤清器→A4→B4→A4→充气泵进气口e→出气口d→A3→B3→A3→真空高压舱充气进气口f),并开启充气泵3对真空高压舱1-10适当加压至0.01KPa~10MPa之间),适当正压的超氧对仓储式真空高压舱1-10中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用;(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管道并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7以及B2开通A3、A9、A6、A7气调充气管路(充气泵出气口d→A3→A9→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→真空高压舱气调进气口i)并开启充气泵3,带动气流经过气调装置6.1的中空纤维膜,氧气分 离出去,高氮低氧气体进入真空高压舱1-10,同时使电磁阀B3、B5、B4开通气调循环管路(真空高压舱循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器8.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,仓储式真空高压舱1-10内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、开门即排保护程序:如果超氧杀菌消毒或气调贮藏期间有人打开仓库门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至超氧分解器6.7分解后排出,由于空气是从人身旁流向仓储式真空高压舱1-10内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害。(6)、空气制水程序,抽气泵2从仓储式真空高压舱1-10内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→A9→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),带动仓库外空气进入空气制水装置11制水;(7)低温贮藏辅助保鲜程序:开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1, 通过温度传感控制器C9的反馈和控制,为仓储式真空高压舱1-10提供相应低温,并辅助正负压系统为贮藏物品保鲜;(8)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过触控屏和手机APP实时操纵监控正负压保鲜仓库的实时状态,使保鲜仓库能智能的按照设定程序和即时指令高效低耗安全的实现功能;所述的触控屏12.1或手机APP12.2会显示和提醒库内温度、湿度、气体浓度和贮藏物品装入时间以及保质期等信息,使用人可远近程监测和操纵,非常方便;以上程序均由正负压系统自动操控并在触控屏与手机监控系统12设置为快捷键模式远近程操控。
根据本发明的第十七实施例,提供一种智能正负压模块柜,包括柜体7;所述柜体7内设置有智能正负压系统、制冷加热系统8.3、触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压模块柜的特定要求设计为模块式真空高压舱1-11;所述模块式真空高压舱1-11包括:舱体1.1、舱门1.2、气动气密机构1.5、舱内外密封联通器1.4、气动舱门开关1.8;所述舱门1.2即为正负压模块柜的柜门;所述模块式真空高压舱1-11的舱门1.2与舱体1.1之间设置有气动气密机构1.5;所述气动气密机构1.5包括气动密封锁舌1.51和一体制作在密封锁舌1.51后部的密封锁舌伸缩气囊1.52;所述一体机构的密封锁舌1.51和密封锁舌伸缩气囊1.52共设置有4个,均为长条形,分别按装在舱体1.1门框的4条边框内设置的4个舱体气密槽1.11内,舌体截 面外层部分为密封橡胶,内部为耐弯折金属芯;所述密封锁舌折叠伸缩气囊1.52为充气即可伸长的折叠式橡胶气囊,气囊后部设置有充气插座1.53;所述充气插座1.53内插入有充气插头1.54,所述充气插头1.54共设置有4个,分别安装连通在方环形的气密机构充气支管道A8.1的四条边的4个边管道各自的中点部位,所述气动方环形充气管道A8.1的顶边管道与充气管道A8垂直连接,并通过电磁阀B5和管道A3以及电磁阀B3与充气泵3出气口d连通,关闭舱门时,舱门1.2触碰到气动舱门开关1.8,充气泵3随即启动为密封锁舌折叠伸缩气囊1.52充气使其伸长、并且连带推动密封锁舌1.51从舱体气密槽1.11向外伸出,并伸入其对面对应位置设置的舱门气密槽1.21内,从而锁定并密封舱门,使用人打开舱门时通过气动舱门开关1.8为密封锁舌折叠伸缩气囊1.52放气,使密封锁舌1.51缩回以便打开舱门;所述舱内外密封联通器1.4固定设置在模块式真空高压舱1-11的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持模块式真空高压舱1-11的密封性能。所述模块式真空高压舱1-11的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷加热系统8.3、空气制水装置11、过滤水箱11.1、气动舱门开关1.8、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入模块式真空高压舱1-11内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有 超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入模块式真空高压舱1-11内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入模块式真空高压舱1-11内形成其循环回气口j;所述电磁阀B5还连接有气密机构充气管道A8,所述气密机构充气管道A8通过电磁阀B5再通过充气管道A3连通充气泵3的出气口d,所述充气管道A8的另一端连接至方环形充气管道A8.1的顶边管道,所述方环形充气管道A8.1的四边管道相互连通,其中点部位均连接有充气插头1.54,所述充气插头1.54均插入连接至与其对应的充气插座1.53;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入模块式真空高压舱1-11内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11-1的进水口y 相连通;模块式真空高压舱1-11内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的另一进水口N安装有除湿冷凝水管道A31,所述除湿冷凝水管道A31的另一端连接在除湿装置的冷凝水排水口H处;所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出模块式真空高压舱1-11后中部安装有电磁阀B11,另一端与过滤水箱11-1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入模块式真空高压舱1-11,与加湿器8.5的进水口R相连通;所述制冷加热系统8.3安装有循环管道A13,所述循环管道A13伸入模块式真空高压舱1-11内,与热交换器8.4连通;所述的触控屏与手机监控系统12,包括:柜门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3,所述的高清防雾摄像装置12.3安装在柜体7内外需监控位置;所述模块式真空高压舱1-11的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、空气消毒灭菌装置6.9、空气过滤清新装置6.10、除湿装置6.11、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10、空气颗粒物传感器C11;所述模块式真空高压舱1-11内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、加湿器6.5、超氧分解器6.7、空气消毒灭菌装置6.9、空气过滤清 新装置6.10、除湿装置6.11、制冷加热系统8.3、热交换器8.4、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、柜门触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10、空气颗粒物传感器C11和电磁阀B1至B12均接入正负压智能调控装置5。
根据本发明的第十八实施例,提供一种智能正负压模块柜的操作方法,因智能正负压模块柜具备真空、高压、恒温、恒湿、恒压、无菌、无尘环境,可置放和安装多种物品与设备,如餐具、厨具、家电等,其操作方法包括:(1)、真空除害清洁程序:将餐具、厨具、小家电、小物品放入模块式真空高压舱1-11后,关闭舱门1.2时触动舱门开关1.8,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2→超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→排入大气),并开启抽气泵2将模块式真空高压舱1-11抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走部分细菌微生物和舱内污浊空气,清洁空气和空间;(2)、消毒杀菌程序:正负压智能调控装置5发出指令开启开启空气消毒灭菌装置6.9,所述空气消毒灭菌装置6.9包括:超氧发生器和紫外线消毒灯等,可根据不同消毒要求设置选用,对舱内环境和物品消毒杀菌;(3)、特定条件无菌无损贮存程序:不同类别不同配置的 模块柜可提供真空、高压、恒温、恒湿、恒压、无菌、无尘等特定贮存环境,满足各类不同的贮存需求,如餐具厨具小家电小物品均可超氧消毒后真空贮存,书画文件古玩文物高档衣物可真空低氧无尘贮存,或者用特定气调气体贮存,或者恒温、恒湿、恒压贮存;(4)、酒水吧多用途展示性冷藏:包装食品、饮料酒类、水果干果、糖果糕点等多种食品物品,均可采用透明柜门展示性冷藏储存;(5)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过WIFI和手机APP远近程实时操纵监控正负压模块柜的实时状态,使模块柜能智能的按照设定程序和即时指令高效低耗的实现功能;所述的高清防雾摄像装置12.3实时拍摄冰箱内物品状况,箱门触控屏12.1或手机APP12.2会显示和提醒生产时间、价格、保质期、生产厂家等商品信息和购买商场、网店信息,自动记录分析整理本冰箱存入取出物品时间数量频次喜好等等大数据并进行智能分析,然后在手机APP12.2上及时提醒或直接将建议购买商品推送到手机APP12.2和箱门触屏12.1上供使用人方便的选择购买;所述的高清防雾摄像装置12.3除了实时监控录制外,还特别要在冰箱门关闭过程中,从远离箱体的位置开始,随着箱门1.2关闭移动、自动连拍数张冰箱内物品全景照片,或同时自动录制小视频,供使用者在手机APP中查看,或近程时无需打开箱门不泄真空不降温度、即可在箱门触控屏中随时查看最后一次关门前和关门过程中、光线好视野大的冰箱内物品全景照片或视频;(6)、正负压模块组合智能家居模式:智能正负压模块柜按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控 屏与手机APP监控系统12的操控下与其他正负压电器和模块柜有机组合为功能齐全的智能正负压模块组合家居,不但模块柜本身高能高效低耗宜用,还可以共享共用其他正负压电器和模块柜的智能正负压系统、制冷系统、空气制水装置,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。
必须强调的是:以上所述正负压系统及其操作方法和使用该系统及其操作方法的若干智能正负压电器,仅仅是本发明实施例众多方案中若干种较佳实施例而已,并不用以限制本发明实施例,凡在本发明实施例的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明实施例的保护范围之内。
与现有的技术相比,本发明实施例一种正负压系统及其操作方法和使用该系统的正负压电器的优点在于:
第一,现有冰箱基本上仅靠低温抑菌的贮藏方法一直没有技术突破,本发明实施例所述智能正负压系统及其操作方法以及运用智能正负压技术及其操作方法智能地调控与整合真空、高压、超氧、触媒、气调保鲜、负离子、加湿、除湿、消毒、空气净化、空气制水和低温贮藏等多种技术组合应用到电器中,便是在探讨解决将真空、高压、超氧、气调保鲜等技术更好运用到冰箱中目前存在技术难题的科研过程中发明的。真空和高压的特点早已为人所知,真空中细菌微生物无法存活保存果蔬肉鱼不易腐坏,一直吸引人们利用真空贮存食品,然 而真空中也没有氧气会导致果蔬无氧呼吸损害了品质及新鲜度,同时真空负压过低时会破坏果蔬肉鱼的细胞和组织结构导致腐坏,会使果蔬肉鱼的内部水分加快逸出散失导致品质下降风味损失,由于利弊参半所以一直没有实际应用于冰箱等家电;高压技术运用于冷冻冷藏等领域,经多年研究探明:采用高压抑菌、高压冻结、高压解冻和高压不冻冷藏技术,通过压力和温度的协调配置,可解决常压冷冻、解冻和冻结保藏中最大冰晶生成带对食品造成无法逆转的品质损害这一技术难题,而且高压冻结和解冻的速度比常压下快速很多,然而在家用电器中制造一个高度的真空和超高压空间,现有材料和技术水平实现起来困难很大问题很多、且成本太高不适合家用电器,以上种种原因致使真空和高压技术至今没有实际应用于冰箱等家用电器。本发明实施例提出的正负压技术和正负压系统及其操作方法,以大气压或当地即时气压作零标准起始点,在现有材料和技术水平上将适当压力的真空和高压运用于家用电器,并且随着科学技术的发展,逐步地向深度真空和超高压开拓和发展;超氧可快速杀菌消毒降解农药残留和有机污垢,抑制酶的活力,可保鲜果蔬肉鱼净化空气等等诸多的优点一直在吸引人们将其应用于生产和生活所需,然而接触超氧会危害人体健康,将其运用于电器上一直没有理想的解决方案,致使超氧也没有实际应用于冰箱;气调保鲜是当今较为先进的果蔬保鲜贮藏方法,通过调控贮藏空间中氧气、二氧化碳、氮气浓度比例等等,抑制果蔬呼吸作用,减少有机物质的消耗,保持原有的优良风味和芳香气味,延缓新陈代谢,控制某些病原菌的滋生繁殖和生理病害的发生,保鲜效 果比普通冷藏好很多,保鲜期明显延长,而且电耗较小,然而气调储藏需要能抵抗一定压力的气密空间,既要生产最适配比最佳浓度的混合气体并向贮藏空间输入,同时又要将废旧气体适时排出,而且这种气调气体的吐故纳新需要循环系统的精确维持等等,以上这些都是普通冰箱所做不到的;现有技术的冰箱还有一个影响保鲜的致命缺陷至今未解决或者未被人发现或重视,那就是没有换气功能,箱内空气很快污浊影响了保鲜效果,开关箱门虽有一点换气作用但不彻底亦不可靠;以上种种缺憾,都在本发明实施例中得到基本解决,本发明实施例正负压系统,智能的调控空气流,或者搭载臭氧、气触媒、负离子、气调气体、水等多种有效载荷,有序进出正负压舱,就犹如人之呼吸,呼出废浊气体,吸入新鲜空气,才能维持生命活力,智能正负压系统的精准调控,使正负压舱内贮藏的生鲜物品处于最适气压范围、最优气体成分、最佳湿度温度,最好储存环境之中,得以尽可能长久的保持新鲜。据此,本发明实施例用智能正负压系统调控整合真空、高压、超氧、触媒、气调保鲜、负离子、加湿、除湿、消毒、空气净化、空气制水和低温贮藏等多种技术,组合应用到正负压电器中,赋予电器呼吸功能,让电器活起来,对现有电器和传统技术升级换代,开发了一个正负压电器细分领域。随着科技的快速发展,本发明实施例涉及使用的正负压力会逐步的向更深度的真空和超高压陆续拓展,包括正负压舱和抽气充气机等硬件设备会更加经济更加宜用,包括正负压智能调控装置的芯片处理器等软硬件会逐步升级换代,正负压技术会日臻完美,正负压电器会给人们带来更加美好的生活。(智能正负压保 鲜车厢和智能正负压仓库的技术原理与智能正负压冰箱基本相同,其优点不再另述)
第二、现有洗衣机仅靠波轮或滚筒的机械运动辅以洗涤剂洗衣,磨损大洗衣效率低。本发明实施例智能正负压洗衣机智能调控和整合高压、真空、超氧等技术有机结合组合运用到洗衣、脱水、烘干过程中,降低了衣物磨损,提高了衣物洗净度和蓬松度,增加了超氧消毒程序,而且有效减少了洗衣时间。
第三、现有抽油烟机的油垢清理问题,一直以来没有理想的解决方案。本发明实施例将抽油烟机的机体整体设计成除去上部排油烟口外其余为全密封超氧舱,吸油烟口盖板同时设计为密封舱门,启动自动清洗时舱门锁紧密封,机箱最上部和蜗壳叶轮等重点油污处均设有若干自动旋转喷淋头,先喷淋超氧水高效分解去除油污,再用去油污剂和干净的热水对机箱内各个部位全面喷淋直至全部清洗干净,最后用热风将机箱内部自动吹干并将废气排放到烟道。当使用人开机时,机箱形成负压,空气从身旁流向油烟机箱内,所以根本接触不到任何超氧。洗遍全机箱的污水下流汇集到三角机箱最下部的集油长槽内经排油排水口排放到下水道,彻底解决了自动清洗问题。
第四、本发明实施例所述智能正负压烤箱空气炸锅微波炉,主要是将烤箱空气炸锅和微波系统设置在真空高压舱中,真正实现了真空烹饪和高压烹饪,在真空中烹饪食物因食材膨胀所以别有风味,特别是空气炸锅在适当真空中烤制薯条、蛋糕等等更加松软可口,在高压中烹饪食物因调料容易渗入食材所以特别入味。不使用时可将正负压 舱抽为适度真空,烧烤微波系统及电路系统处在真空状态下,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损耗保存延长电器的使用寿命。
第五、本发明实施例智能正负压模块柜设置有正负压系统,具备真空、高压、恒温、恒湿、恒压、无菌、无尘环境,可以将各种电器和设备的功能系统设计设置在正负压模块柜中或者直接安装放置其中,包括:正负压消毒柜、正负压厨具餐具柜、正负压酒水果品展示冷藏柜、正负压空调室内机、正负压加湿器、正负压去湿器、正负压空气净化器、正负压咖啡果汁小家电柜、正负压衣物书柜、正负压书画古玩文物柜、正负压保险箱和各类功能的正负压置物展示柜;另外可以将智能正负压系统及其操作方法运用到以上各种电器设备和物品用具的功能使用和消毒储存摆放以及暂停工作期间的无损贮存中去。
第六、现有家用电器基本上都是单独设计、单独使用、单独摆放,本发明实施例正负压智能电器和正负压模块柜按照模块设计,外观形状和色彩基本统一、整齐合谐与时俱进符合流行趋势,既可独立使用又可通过触控屏和手机APP操纵及识别监控系统与其他正负压智能电器和正负压模块柜有机组合为功能齐全的智能整体组合家居。各类正负压模块柜将各种相关电器设备和物品用具分门别类有机组合、集中摆放整齐美观、共用资源例如共用一套智慧正负压系统一个充气泵和抽气泵、节省能耗降低了噪音、并且将各种相关电器设备和物品用具非常方便和自然的整合进同一个智能家居系统。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例提供的智能正负压系统技术原理简图;
图2是本发明实施例提供的智能正负压冰箱技术原理侧视图;
图3是本发明实施例提供的正负压冰箱气动气密机构放大图;
图4是本发明实施例提供的正负压冰箱气动气密机构放大图;
图5是本发明实施例提供的智能正负压冰箱技术原理正视图;
图6是本发明实施例提供的智能正负压洗衣机技术原理简图和机械气密机构放大图;
图7是本发明实施例提供的智能正负压洗碗和果蔬清洗机技术原理简图和机械气密机构放大图;
图8是本发明实施例提供的智能超氧水洗油烟机技术原理简图和自动旋转喷淋球侧视与底视截面及密封防水机构放大图;
图9是本发明实施例提供的智能正负压烤箱空气炸锅微波炉技术原理简图和机械气密机构放大图;
图10是本发明实施例提供的智能正负压保鲜车厢技术原理简图;
图11是本发明实施例提供的智能正负压保鲜仓库技术原理简图;
图12是本发明实施例提供的智能正负压模块柜技术原理简图。
图中:管道A1~A29、电磁阀B1~B23、传感器C1~10(压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9、水位传感器C10、空气颗粒物传感器C11)、正负压舱1(舱体1.1、舱体气密槽1.11、舱体加固件1.12、舱门1.2、舱门气密槽1.21、机械气密机构1.3、锁环1.31、锁舌1.32、气密垫圈1.33、门边密封垫1.34、舱内外密封联通器1.4、气动气密机构1.5、气动密封锁舌1.51、密封锁舌伸缩气囊1.52、充气插座1.53、充气插头1.54、电动气密机构1.6、电动密封锁舌1.61、电磁铁1.62、拉力弹簧1.63、密封防水机构1.7、锁环1.71、锁舌1.72、密封垫圈1.73、舱门合页1.74、气动舱门开关1.8、电动舱门开关1.9)(真空高压冷藏舱1-1、真空高压冷冻舱1-2、超高压深冷舱1-3、超高压解冻舱1-4、真空高压滚筒外舱1-5、真空超氧舱1-6、密封防水超氧舱1-7、微波真空高压舱1-8、厢(箱)式真空高压舱1-9、仓储式真空高压舱1-10、模块式真空高压舱1-11)、抽气泵2(防淋水抽气口2.1)、充气泵3、正负压智能调控装置5(超氧智能调控装置5.1)、正负压气流搭载物发生处理器(气调装置6.1、超氧发生器6.2、负氧离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧发生混水器6.6、超氧分解器6.7、空气滤清器6.8、空气消毒灭菌装置6.9、空气过滤清新装置6.10、除湿装置6.11)、箱(机)体7、制冷系统8(蒸发器风冷组合8.1、蒸发器直冷组合8.2、制冷加热系统8.3、热交换器8.4)、普通冷藏室9、普通冷冻室10、空气制水装置11(过滤水箱11.1、冷凝水集水盒11.2)、触控屏与手机监控系统12(箱门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3、无线防雾摄像装置12.4)、脱烘系统15(滚筒机构15.1、洗脱烘控制机构15.2、滚筒密封轴承座15.3、大皮带轮15.4、电机组合15.5、)、排水泵洗16、进水泵17、洗涤剂拉盒18、洗碗烘干系统19、果蔬清洗系统20、设备烟管舱21、电机风轮组合22、自动旋转喷淋球23、集油排水槽24、抽油烟控制机构26、水加热装置27、去油污剂添加器28、排烟管29、烧烤系统30、空气炸锅系统31和微波系统32。
具体实施方式
以下是本发明实施例的具体实施方式,对本发明实施例的技术方案作进一步的描述,但本发明实施例并不限于这些实施例和实施方式。
具体实施例一,所述智能正负压系统,包括:正负压舱1(正负压舱又名:真空高压舱)、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1,包括:舱体1.1、舱门1.2、气密机构1.3、舱内外联通密封器1.4;所述舱体1.1和舱门1.2之间设置安装有气密机构1.3;所述舱内外密封联通器1.4固定设置在正负压舱1的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持正负压舱1密封性能;所述正负压舱1的外部设置安装有抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器之一气调装置6.1;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1中部安装有电磁阀B1,另一端伸入正负压舱1内形成其抽气回气口c,所述抽气泵2的出气口b处安装有排气管道A2,排气管道A2的另一端通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入正负压舱1内形成其充气进气口f,所述充气泵5的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端连接在电磁阀B3上并通过充气管道A3伸入正负压舱4内形成其循环回气口j;所述气调装置6.1的进气口t处安装有气调进气管道A6,所 述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3再连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入正负压舱1内形成其气调进气口i,在进入正负压舱1内的气调气体需要循环时,充气进气口f则作为正负压舱1的循环回气口j;所述正负压舱1的内部也安装有正负压气流搭载物发生处理器,包括:超氧(臭氧)发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5;所述正负压舱1的内部还安装有传感器,包括:压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8;所述的抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、全部传感器C1~C8、全部电磁阀B1~B7,均接入正负压智能调控装置5。
具体实施例二,所述智能正负压系统的技术原理和基本操作方法是:以正负压智能的调控空气流、或搭载超氧、气触媒、负离子、气调气体、水等多种有效载荷,有序进出或驻留特定空间(正负压舱)并对其中物品施加所需影响;所述智能正负压系统的具体操作方法是:由正负压智能调控装置5根据其内置程序和预存数据以及各传感器C1~C8的实时回馈信息,经计算处理后,向抽气泵2、充气泵3、正负压气流搭载物发生处理器和电磁阀实时发出开启或关闭的具体指令,控制调整各抽气管道、充气管道和循环管道的开启、关闭和转换,智能的调控正负压舱1内正负压力的高低和气流及其搭载物的流入、 驻留或流出,具体操作方法包括:(1)、将正负压舱1内调控为负压(真空)的操作方法为:正负压智能调控装置5发出指令,使电磁阀B1开通A1、A2抽气管路(正负压舱抽气回气口c→抽气管道A1→电磁阀B1→A1→抽气泵进气口a→抽气泵出气口b→A2→排入大气)(任一管路开通时,其他无关电磁阀全部关闭,后文同此,不再说明),并开启抽气泵2,将正负压舱1内抽气至设定负压(真空);(2)、将正负压舱1内调控为正压(高压)的操作方法为:正负压智能调控装置5发出指令,使电磁阀B3、B4开通A3、A4充气管路(从大气进气→A4→B4→A4→充气泵进气口e→充气泵出气口d→A3→B3→A3→正负压舱充气进气口f),并开启充气泵3,将正负压舱1内充气至设定正压(高压);(3)、调控气流及其搭载物流入、驻留或流出正负压舱1的操作方法为:①流出:使用抽气泵2,按照上述具体方法(1),将空气流及其搭载物通过抽气管路抽出正负压舱;②流入:使用充气泵3,按照上述具体方法(2),将空气流及其搭载物通过充气管路充进正负压舱;③驻留:需将正负压气流或其搭载物驻留于正负压舱内时,正负压智能调控装置5发出指令,开启抽气机2及抽气管路或开启充气机3及充气管路或开启正负压舱内的正负压气流搭载物发生处理器,并使其他无关电磁阀关闭,直至舱内正负压或气流搭载物数值和驻留时长达标;④循环:气流或其搭载物如气调气体需循环流经正负压舱1及气调装置6.1以使正负压舱内气体浓度达标时,正负压智能调控装置5发出指令,使电磁阀B6、B7开通A6、A7气调充气管路(充气泵出气口d→A3→A6→B6→A6→气调装置进气口t→出 气口s→A7→B7→A7→正负压舱气调进气口i),同时使电磁阀B3、B4、B5开通A3、A5、A4气调循环管路(正负压舱循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e),并开启充气泵3,使气调气体循环流动,直至其浓度、正负压舱内气压和驻留时长达标;所述智能正负压系统使用以上方法,智能的调控和整合真空、高压、超氧、触媒、气调保鲜、负离子、加湿、除湿、消毒、空气净化、空气制水和低温贮藏等多种技术,多项组合或单项应用于电器设备、运输车厢集装箱、仓储仓库等,因其设置使用了智能正负压系统,均统一简称为:智能正负压电器;本发明实施例中所述智能正负压电器,包括:智能正负压冰箱、智能正负压洗衣机、智能真空洗碗果蔬清洗机、智能超氧水洗油烟机、智能正负压烤箱炸锅微波炉、智能正负压保鲜车厢、智能正负压保鲜仓库和智能正负压模块柜。
具体实施例三,所述种智能正负压冰箱,包括箱体7;所述箱体7内设置有智能正负压系统、制冷系统8、普通冷藏室9、普通冷冻室10、空气制水装置11和触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1包括:舱体1.1、舱门1.2、舱内外密封联通器1.4、气动气密机构1.5、电动气密机构1.6、气动舱门开关1.8、电动舱门开关1.9;所述舱门1.2即为正负压冰箱的箱门;所述正负压舱1根据冰箱冷藏冷冻的特定要求设计为真空高压冷藏舱1-1和真空高压冷冻舱1-2;所述真空高压冷藏舱1-1的舱门1.2与舱体1.1之间设置有气动气密机构1.5;所述气 动气密机构1.5包括气动密封锁舌1.51和一体制作在密封锁舌1.51后部的密封锁舌伸缩气囊1.52;所述一体结构的密封锁舌1.51和密封锁舌伸缩气囊1.52共设置有4个,均为长条形,分别按装在舱体1.1门框的4条边框内设置的4个舱体气密槽1.11内,舌体截面外层部分为密封橡胶,内部为耐弯折金属芯;所述密封锁舌折叠伸缩气囊1.52为充气即可伸长的折叠式橡胶气囊,气囊后部设置有充气插座1.53;所述充气插座1.53内插入有充气插头1.54,所述充气插头1.54共设置有4个,分别安装连通在方环形的气密机构充气支管道A8.1的四条边的4个边管道各自的中点部位,所述方环形的气密机构充气支管道A8.1的底边管道与气密机构充气管道A8垂直连接,并通过电磁阀B8和管道A3以及电磁阀B3与充气泵3出气口d连通;关闭舱门时,舱门1.2触碰到气动舱门开关1.8,充气泵3随即启动为密封锁舌折叠伸缩气囊1.52充气使其伸长、并且连带推动密封锁舌1.51从舱体气密槽1.11向外伸出,并伸入其对面对应位置设置的舱门气密槽1.21内,从而锁定并密封舱门,使用人打开舱门时通过气动舱门开关1.8为密封锁舌折叠伸缩气囊1.52放气,使密封锁舌1.51缩回以便打开舱门;所述真空高压冷冻舱1-2的舱门1.2与舱体1.1之间设置有电动气密机构1.6;所述电动气密机构1.6包括电动密封锁舌1.61、电磁铁1.62、拉力弹簧1.63;所述密封锁舌1.61共设置有4个,均为长条形,分别活动按装在舱体门框四周内设置的4个舱体气密槽1.11内并挂接在拉力弹簧1.63上,所述拉力弹簧的另一端固定挂接在舱体气密槽1.11内的底部;所述密封锁舌1.61舌 体截面外层部分为密封橡胶层,内部为耐弯折易磁吸金属芯,朝向电磁铁1.62一侧的密封橡胶层开放并部分露出内部的金属芯以便于被电磁铁1.62吸引;所述电磁铁1.62亦为与密封锁舌1.61形状相对应的长条形,固定安装在与舱体气密槽1.11位置相对应的舱门气密槽1.21的槽底里面,关门后需要密封时,电动舱门开关1.9给电磁铁1.62通电产生磁力,将安装在对面的舱体气密槽1.11里的密封锁舌1.61吸引到舱门气密槽1.21里来,开门时电动舱门开关1.9给电磁铁1.62断电磁力消失,拉力弹簧1.63将密封锁舌1.61拉回舱体气密槽1.11里去以便打开舱门;所述舱内外密封联通器1.4固定设置在正负压舱1的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持正负压舱1的密封性能。所述正负压舱1的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵5的进气口a处安装有抽气管道A1,所述抽气管道A1分别连接有抽气支管道A1.1和A1.2,所述抽气支管道A1.1和A1.2各自的中部分别安装有电磁阀B1.1和B1.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其抽气回气口c1和c2;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后经其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有 电磁阀B3,另一端分别连接有充气支管道A3.1、A3.2、A3.3、A3.4,所述充气支管道A3.1、A3.2、A3.3、A3.4各自的中部均安装有电磁阀B3.1、B3.2、B3.3、B3.4,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内,A3.1的另一端端口形成真空高压冷藏舱1-1的充气进气口f1;A3.2的另一端端口形成真空高压冷冻舱1-2的充气进气口f2;A3.3的另一端连接至超高压解冻舱1-3的进气口G;A3.4的另一端连接至超高压深冷舱1-4的进气口Q;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有空气滤清器6.8和电磁阀B4,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5连接至循环支管道A5.1和A5.2,所述循环支管道A5.1和A5.2各自的中部均安装有电磁阀B5.1和B5.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其循环回气口j1和j2;所述循环管道A5还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h,所述空气制水充气管道A9与循环管道A5连接并接通电磁阀B3,然后通过充气管道A3连通充气泵3的出气口d;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后通过电磁阀B3连通充气泵3的出气口d,所述气调装置6.1的出气口s1和s2处分别安装有气调出气管道A7.1和A7.2,所述气调出气管道A7.1和A7.2中部分别安装有电磁阀B7.1和B7.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其各自 的气调进气口i1和i2;所述充气管道A3还连接至气密机构充气管道A8,所述气密机构充气管道A8的中部安装有电磁阀B8,另一端垂直连接至方环形的气密机构充气支管道A8.1的底边管道;所述方环形的气密机构充气支管道A8.1的四个边管道相互连通,所述四个边管道各自的中点部位均设置安装有充气插头1.54,所述四个充气插头1.54均插入连接至充气插座1.53内;所述空气制水装置11的出水口x处安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11.1的进水口y相连通;真空高压冷藏舱1-1内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出真空高压冷藏舱1-1后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入真空高压冷藏舱11-1,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13分别伸入真空高压冷藏舱1-1、真空高压冷冻舱1-2、普通冷藏室9和普通冷冻室10内,与其内分别安装的蒸发器风冷组合8.1和蒸发器直冷组合8.2均连通;所述的触控屏与手机监控系统12,包括:箱门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3,所述的高清防雾摄像装置12.3安装在箱体7内外部需监控位置;所述正负压舱1的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:设置安装在真空高压冷藏舱1-1内的有:超氧发生器6.2、负离子发生 器6.3、气触媒控释器6.4、加湿器6.5、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;设置安装在真空高压冷冻舱1-2内的有:气触媒控释器6.4、压力传感器C1、负压传感器C2、二氧化氯传感器C5、氧气传感器C7、氮气传感器C8、温度传感器C9;所述正负压舱1内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置,包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、超高压解冻舱1-3、超高压深冷舱1-4、触控屏与手机监控系统12、箱门触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10和电磁阀B1至B12,均接入正负压智能调控装置5。
具体实施例四,所述智能正负压冰箱的操作方法,包括:(1)、真空除害除热清洁程序:关闭正负压冰箱的真空高压冷藏舱门1.2,触动舱门开关1.8,正负压智能调控装置5即发出指令:使电磁阀B3、B8开通A3、A8和A8.1气密机构充气管路(充气泵出气口d→A3→B3→A3→A8→B8→A8→A8.1→充气插头1.54→充气插座1.53→密封锁舌伸缩气囊1.52),并开启充气泵3为气动气密机构1.5充气,锁闭舱门1.2;同时使电磁阀B1.1和B2开通A1、A1.1和A2抽气管 路(真空高压冷藏舱1-1抽气回气口c1→A1.1→B1.1→A1.1→A1→抽气泵进气口a→出气口b→A2→超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将真空高压冷藏舱1-1抽为适度真空(﹣0.01KPa~﹣0.1MPa)(以当地即时气压为零标准,文内均同,视具体需求和冰箱配置可再提高真空度),抽走果蔬肉鱼自带热量、部分细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持真空高压冷藏舱1-1内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使真空高压冷藏舱1-1内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、B3.1和B4开通A3、A3.1、A4充气管路(大气进气→A4→B4→A4→空气滤清器→A4→充气泵进气口e→出气口d→A3→B3→A3→A3.1→B3.1→A3.1→真空高压冷藏舱1-1充气进气口f1),并开启充气泵3,对真空高 压冷藏舱1-1适当加压至0.01KPa~10MPa之间(以当地即时气压为零标准,视具体需求和冰箱配置可再提高压力值),适当正压的超氧对真空高压冷藏舱1-1中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用(超氧在空气和水中30分钟左右即自动分解还原为氧气,但是在冰中非常稳定半衰期极长,故真空高压冷冻舱1-2不设置超氧发生器,不使用超氧);(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管道并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7.1开通A3、A6、A7.1气调充气管路(充气泵出气口d→A3→B3→A3→A6→B6→A6→气调装置进气口t→出气口s1→A7.1→B7.1→A7.1→真空高压冷藏舱1-1气调进气口i1)并开启充气泵3,带动气流经过气调装置8.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压冷藏舱1-1,同时使电磁阀B5.1、B3、B4开通气调循环管路(真空高压冷藏1-1循环回气口j1→A5.1→B5.1→A5.1→A5→B3→A5→B4→A4→空气滤清器→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器6.5,直至舱内气调气 体浓度、空气湿度和正气压均达气调加压贮藏标准,真空高压舱内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、剩菜食物加压保存程序:剩菜放入真空高压冷藏舱1-1中,调控装置5开启抽气泵2和抽气管路,将剩菜已经散发的气味和舱内污浊空气抽出舱外后关闭,然后开启充气泵3和充气管路适当加压保存,既防止气味和水分过度散失,也抑制了变质腐坏,同时根据湿度传感器的反馈信息,适时开启加湿器6.5补充空气中水分,或适时开启超氧发生器6.2杀灭舱内空气中细菌防止食物腐坏;(6)、低温辅助保鲜程序:冰箱开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1和蒸发器直冷组合8.2,通过温度传感控制器C9的反馈和控制,为各个舱室提供相应低温,并辅助正负压系统为贮藏物品保鲜;(7)、高压快速冻结与解冻和高压不冻贮藏程序:在正负压冰箱冷冻区内设置超高压深冷舱1-3,在冷藏区内设置超高压解冻舱1-4,专门用来对肉鱼海鲜等进行高质量冻结保鲜、解冻保鲜和高压不冻贮藏,用充气泵3为其加压,一定的超高压力会影响肉鱼组织和细胞内部水分的冻结点、结晶过程和冰晶尺寸形状,在0至209.9MPa范围内,水的冻结点随压力的提高而降低,最低在209.9MPa压力下可达﹣21.99℃才冻结,利用这个原理,可以避开常温冻结中的冰晶最大形成带,一定程度的解决了传统常压冻结和解冻时最大冰晶带停留时 间长破坏鱼肉组织和细胞的问题,使贮藏肉鱼海鲜高水分食品的品质风味和鲜度得以完美保持,虽然现有技术和材料尚无法以合适的较低成本在冰箱中设置本发明之超高压舱,但随着科技的发展会很快的逐步实现;(8)、开门即排保护功能:如果超氧杀菌消毒或气调贮藏期间有人打开冰箱门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至冰箱后边的超氧分解器6.7分解后排出,由于空气是从人身旁流向真空高压冷藏舱内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害。(9)、空气制水程序,抽气泵2从真空高压舱内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→B3→A5→A9→B2→A2→空气制水装置进气口h),带动室内空气进入空气制水装置11制水;(10)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过WIFI和手机APP远近程实时操纵监控本冰箱和其他正负压电器以及正负压模块柜,使本冰箱和其他所有正负压电器以及模块柜均智能的按照设定程序和即时指令高效低耗的实现各项功能;所述的高清防雾摄像装置12.3实时拍摄冰箱内物品状况,箱门触控屏12.1或手机APP12.2会显示和提醒生产时间、价格、保质期、生产厂家等商品信息和购买商场、网店信息,自动记录分析整理本冰箱存入取出物品时间数量频次喜好 等等大数据并进行智能分析,然后在手机APP12.2上及时提醒或直接将建议购买商品推送到手机APP12.2和箱门触屏12.1上供使用人方便的选择购买;所述的高清防雾摄像装置12.3除了实时监控录制外,还特别要在冰箱门关闭过程中,从远离箱体的位置开始,随着箱门1.2关闭移动、自动连拍数张冰箱内物品全景照片,或同时自动录制小视频,供使用者在手机APP中查看,或近程时无需打开箱门不泄真空不降温度、即可在箱门触控屏中随时查看最后一次关门前和关门过程中、光线好视野大的冰箱内物品全景照片或视频;(11)、正负压模块组合智能家居模式:智能正负压冰箱可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以共享共用正负压系统、制冷系统、空气制水装置,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。总而言之,以上所述智能正负压冰箱的具体操作方法,可以智能的调控整合真空、高压、超氧、气调保鲜、低温贮藏、负氧离子、气触媒、加湿和空气制水等多种技术,用单项、双项或多项的不同组合交替或者循环运用,并且可以一个冰箱中设置多个不同类型的真空高压舱,因舱施策、分类调控,使贮藏的果蔬肉鱼长期保持水润新鲜的品质风味,同时也使冰箱更加高能高效低耗宜用。
具体实施例五,所述智能正负压洗衣机,包括机体7;所述机体7内设置有智能正负压系统、洗脱烘系统15和触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、 正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1根据洗衣干衣的特定要求设计为真空高压滚筒外舱1-5;所述真空高压滚筒外舱1-5包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压洗衣机的机门;所述真空高压滚筒外舱1-5的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32、气密垫圈1.33和门边密封垫1.34;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当真空高压滚筒外舱1-5内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外密封联通器1.4固定设置在真空高压滚筒外舱1-5的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持真空高压滚筒外舱1-5的密封性能;所述真空高压滚筒外舱1-5内设有滚筒机构15.1、防淋水抽气口2.1、滚筒密封轴承座15.3、压力传感器C1和负压传感器C2;所述真空高压滚筒外舱1-5外部安装有抽气泵2、充气泵3、正负压智能调控装置5、洗脱烘控制机构15.2、滚筒大皮带轮15.4、电机组合15.5、排水泵16、进水泵17、超氧毫升混水器6.6、超氧分解器6.7、触控屏与手机APP监控系统12、洗涤剂拉盒18;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入真空高压滚筒外舱1-5后连接有防淋水抽气口2.1,并形成抽气回气口c,所述抽气泵2的出气口b通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入真空高压 滚筒外舱1-5内并延至滚筒机构15.1的下方,形成充气进气口f;所述充气泵3的进气口e通大气;所述进水泵17的进水口r处安装有进水管道A14,所述进水管道A14的中部安装有电磁阀B14,另一端接通自来水源,所述进水泵17的出水口u处安装有洗衣机进水管道A15,所述进水管道A15的中部安装有电磁阀B15,另一端接通超氧发生混水器6.6的进水口k,所述超氧发生混水器6.6的出水口q安装有洗衣机进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端接通洗涤剂拉盒18的进水口z,所述洗涤剂拉盒18的出水口l安装有洗衣机进水管道A17,所述进水管道A17的中部安装有电磁阀B17,另一端伸入真空高压滚筒外舱1-5内形成其进水口T;所述电磁阀B14还安装有进水管道A18并连通电磁阀B16,在无需超氧水且自来水压达标时直接进水;所述电磁阀B15还安装有进水管道A19并连接至进水管道A18再连通电磁阀B16,在无需超氧水时由进水泵17直接进水;所述排水泵16的进水口w处安装有进水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空高压滚筒外舱1-5内形成其排水口L,所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B20还安装有排水管道A23并连通电磁阀B22,在无需分解超氧且可以自流排水时直接排水;所述电磁阀B21还安装有排水管道A24并连接至排水管道A23再连通电磁阀B22,在 无需分解超氧时由排水泵16直接排水;所述电机组合15.5带动大皮带轮15.4,所述大皮带轮15.4带动连接其上的滚筒机构15.1运转;所述抽气泵2、充气泵3、排水泵16、进水泵17、超氧毫升混水器6.6、超氧分解器6.7、洗脱烘控制机构15.2、触控屏与手机APP监控系统12、压力传感器C1、负压传感器C2和电磁阀B1至B22,均接入正负压智能调控装置5。
具体实施例六,所述智能正负压洗衣机的操作方法,包括:(1)、进水程序:衣物放入滚筒15.1,关闭机门即真空高压舱门1.2开机后真空高压滚筒外舱1-5密封锁死,正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B17开通相应进水管路(①自来水直接进水管路为A14→B14→A18→B16→A16→洗涤剂拉盒进水口z→出水口l→A17→B17→A17→滚筒外舱进水口T;②需超氧水洗涤时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧毫升混水器进水口k→出水口q→A16→B16→A16-洗涤剂拉盒z→出水口l→A17→B17→A17→滚筒外舱进水口T;③无需超氧水清洗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→A18→B16→A16→洗涤剂拉盒进水口z→出水口l→A17→B17→A17→滚筒外舱进水口T),并开启进水泵17,自来水随之直接进水或通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空高压滚筒外舱1-5,超氧水可加速分解衣物上的有机污垢利于快速洗净,进水开始后正负压智能调控装置5可使电磁阀B1开通抽气管道A1(抽气泵进气口a →A1→B1→A1→滚筒外舱1-5抽气回气口c),并开启抽气泵2使真空高压滚筒外舱1-5处于适度负压,会使进水加快,缩短进水时间;(2)、真空洗涤程序:进水完毕正负压智能调控装置5开启电机组合15.5,带动滚筒机构15.1转动开始洗涤,同时使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→滚筒外舱1-5抽气回气口c),并开启抽气泵2,将真空高压滚筒外舱1-5抽为适度真空,衣物纤维和污物在真空中都会膨胀,其中的空气逸出,使污物附着力减弱或脱落,提高了洗净效率,缩短了洗涤时间,超氧水在洗衣过程中直接杀灭衣物上的细菌病毒微生物,分解衣物上尘埃污垢中的有机物使其溶入水中,增强洗涤剂的去污能力,提高洗净度,加速洗净过程,同时起到杀菌除臭的作用;(3)、高压洗涤程序:真空洗涤适当时间后,正负压智能调控装置5关闭电磁阀B1和抽气泵2,使电磁阀B3开通A3充气管路(充气泵6出气口d→A3→B3→A3→滚筒外舱1-5充气进气口f),并开启充气泵3,高压气流通过A3充气管路进入真空高压滚筒外舱1-5,并在滚筒机构15.1下方形成强烈气泡激流参与洗涤,同时真空高压滚筒外舱1-5内形成的高压有利洗涤剂渗入衣物便于洗净,如此抽气和充气循环反复,纤维膨胀和激流揉荡交替进行,大大提高了洗净度和洗衣效率,加快了洗涤和漂洗进程;(4)、排水脱水程序:需排水时正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:滚筒外舱排水口L→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:滚筒外舱排水口 L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:滚筒外舱排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A24→A23→B22→A22→下水道),并开启排水泵16排水,排水时如开启充气泵3向真空高压滚筒外舱1-5充气加压,可加快排水速度,排水完毕正负压智能调控装置5即发出指令开始脱水;脱水时充气加压可迫使水分快速脱离衣物,再交替开启抽气泵2抽负压,使真空高压滚筒外舱1-5中衣物纤维膨胀,其中的水分向负压空间逸出并被抽出舱外,同时使脱水和高压中板结在滚筒内壁上的衣物蓬松开来防止衣物皱褶,如此抽气和充气循环反复,逼出水分和抽出舱外交替进行,大大提高了衣物脱水的效率,缩短了排水和脱水时间;(5)、真空高压烘干程序:烘干程序开始时正负压智能调控装置5指令开启充气泵3并开通充气管路向真空高压滚筒外舱1-5充气加压有利热气进入衣物纤维内使水分汽化,然后指令开启抽气泵2并开通抽气管路抽气,抽出水气同时负压使衣物纤维膨胀有利水汽散发快干,如此抽气和充气循环反复,加热气化和抽出水气交替进行,大大加快了干衣进程,衣物蓬松提高了干衣质量,有效缩短了干衣时间;(6)、真空自洁无菌放置程序:洗衣完毕后关闭机门1.2,正负压智能调控装置5操纵洗脱烘控制机构开启烘干热风,吹干洗衣机内部特别是滚筒机构15.1,然后开启抽气泵2并开通抽气管路抽气,抽出真空高压滚筒外舱1-5内的超氧余气,并使滚筒机构15.1和舱内设备均处于适度真空中,无 菌无尘无污染保持洁净,无氧化不生锈无损空置,延长洗衣机使用寿命。综上所述正负压洗衣机大大加快了洗衣脱水干衣各个过程,缩短了各个程序的工作时长,并提高了洗衣洁净度和干衣质量,而且超氧还对所洗衣物进行了彻底的杀菌消毒除异味。同时智能的控制超氧的浓度和工作时长处于杀菌降解助洗的适度区域,不达到或尽少达到可能使深色衣物氧化褪色的临界点;(7)、正负压模块组合智能家居模式:智能正负压洗衣机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以共享共用智能正负压系统,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。总之智能正负压系统使洗衣脱水烘干更快速更高效更低耗,而且所洗衣物更少损耗更洁净更蓬松也更卫生。
具体实施例七,所述智能真空洗碗果蔬清洗机,包括机体7;所述机体7内设置有智能正负压系统、洗碗烘干系统19、果蔬清洗系统20和触控屏与手机APP监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1根据智能洗碗烘干和果蔬清洗的特定要求设计为真空超氧舱1-6;所述真空超氧舱1-6包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为真空洗碗果蔬清洗机的机门;所述真空超氧舱1-6的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环 1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当真空超氧舱1-6内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在真空超氧舱1-6的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持真空超氧舱1-6的密封性能。所述真空超氧舱1-6内设有洗碗烘干系统19、果蔬清洗系统20、防淋水抽气口2.1、负压传感器C2、超氧传感器C3、温度传感器C9;所述真空超氧舱1-6外部安装有抽气泵2、正负压智能调控装置5、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、触控屏与手机APP监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入真空超氧舱1-6后连接有防淋水抽气口2.1,并形成抽气回气口c;所述抽气泵2的出气口b通大气;所述进水泵17的进水口r处安装有进水管道A14,所述进水管道A14的中部安装有电磁阀B14,另一端接通自来水源,所述进水泵17的出水口u处安装有进水管道A15,所述进水管道A15的中部安装有电磁阀B15,另一端接通超氧发生混水器6.6的进水口k,所述超氧发生混水器6.6的出水口q安装有进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端伸入真空超氧舱1-6接至电磁阀B25,所述电磁阀B25又分别连接有果蔬清洗进水管道A25和洗碗烘干进水管道A27,所述进水管道A25接至果蔬清洗系统20的进水口E;所述进水管道A27接至洗碗烘干系统19的进水口G;所述电磁阀B15还安装有进水 管道A19并连接至电磁阀B16,在无需超氧水时由进水泵17直接进水;所述排水泵16的进水口w处安装有排水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空超氧舱1-6并分别接至果蔬清洗排水管道A26和洗碗烘干排水管道A28,所述排水管道A26接至果蔬清洗系统20的出水口F;所述排水管道A28接至洗碗烘干系统21的排水口H;所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B21还安装有排水管道A24并连接至A23再连通电磁阀B22,在无需分解超氧时由排水泵直接排水;所述抽气泵2、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、洗碗烘干系统19、果蔬清洗系统20、触控屏与手机APP监控系统12、负压传感器C2、超氧传感器C3、温度传感器C9和电磁阀B1至B25,均接入正负压智能调控装置5。
具体实施例八,所述智能真空洗碗果蔬清洗机的操作方法,包括:(1)、洗碗进水和清洗程序:关闭机门后正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B25开通相应进水管路(①需超氧水洗碗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→B25→A27→洗碗烘干系统进水口G;②无需超氧水洗碗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水 口u→A15→B15→A19→B16→A16→B25→A27→洗碗烘干系统进水口G),并开启进水泵17,自来水随之通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,超氧水可加速分解餐具上的有机污垢利于快速洗净,进水完毕正负压调控装置5开启洗碗烘干系统19开始喷淋洗碗,并使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→真空超氧舱抽气回气口c),同时开启抽气泵2开始抽真空,碗筷餐具上沾染的污物在真空负压中都会膨胀,污物中的空气逸出,使污物附着力减弱或从碗筷餐具上脱落,提高了洗净效率,缩短了洗涤进程,超氧水在洗碗过程中直接杀灭碗筷餐具上的细菌病毒微生物,分解碗筷餐具上污垢中的有机物使其溶入水中,还能增强洗涤剂的去污能力,提高洗净度,加速洗净过程,同时起到杀菌除臭的作用;(2)、洗碗排水和烘干消毒程序:清洗适当时间需排水时,正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A23→B22→A22→下水道),直接排水或开启排水泵16,或再开启超氧分解器6.7,将废水分解后排入下水道,同时再次用清水将餐具喷淋清洗干净,烘干程序时,正 负压调控装置5再次开启抽气泵2迅速抽出水蒸气加快了烘干进程,真空超氧大大加快了洗碗全过程,而且超氧还对所洗碗筷餐具进行了彻底的杀菌消毒除异味;(3)、果蔬清洗进水和清洗程序:关闭机门后正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B25开通相应进水管道(①需超氧水清洗果蔬时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→B25→A25→果蔬清洗系统进水口E;②无需超氧水清洗果蔬时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→B16→A16→B25→A25→果蔬清洗系统进水口E),并开启进水泵17,自来水随之通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,进水完毕正负压调控装置5开启果蔬清洗系统20开始喷淋清洗果蔬,并使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→真空超氧舱抽气回气口c),同时开启抽气泵2开始抽真空至适度负压,果蔬上沾染的污物在负压中都会膨胀,污物中的空气逸出,使污物附着力减弱或从果蔬上脱落,提高了洗净效率,缩短了洗涤进程,超氧水在清洗过程中直接杀灭果蔬表皮上的细菌病毒微生物,分解表皮上污垢中的有机物使其溶入水中,提高洗净度加速洗净过程,同时负压促使果蔬组织内的农药重金属等残留和挥发性代谢物乙烯乙醛乙醇等有害气体逸出,为超氧水快速清洗和深度降解农残以及分解乙烯等有害气体创造了有利环境,超氧水清洗适当时间后正负压智能调控装置5发出指令,用清水喷淋将果蔬清 洗干净。(4)、果蔬清洗后排水程序:清洗适当时间需排水时,正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A23→B22→A22→下水道),直接排水或开启排水泵16或再开启超氧分解器6.7,将废水分解后排入下水道。(5)、真空自洁无菌放置程序:使用完毕后关闭机门1.2,正负压智能调控装置5开启烘干热风,吹干真空超氧舱1-6内部特别是洗碗烘干系统19和果蔬清洗系统20,然后开启抽气泵2并开通抽气管路抽气,抽出真空超氧舱1-6内的超氧余气,并使洗碗烘干系统19、果蔬清洗系统20和舱内设备均处于适度真空中,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损空置,延长电器使用寿命。(6)、正负压模块组合智能家居模式:智能正负压洗碗和果蔬清洗机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以和超氧水洗油烟机共享共用进水泵17、排水泵16、超氧发生混水器6.6和超氧分解器6.7,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使洗碗和果 蔬清洗机更加高能高效、低耗宜用。
具体实施例九,所述智能超氧水洗油烟机,包括机体7;所述机体7的下半部分为密封防水超氧舱1-7,上半部分为设备烟管舱21;所述密封防水超氧舱1-7包括:三角形舱体1.1、密封防水舱门1.2;所述密封防水舱门1.2即为超氧水洗油烟机的机门,所述舱门1.2与舱体1.1之间设置有密封防水机构1.7;所述密封防水机构1.7包括锁环1.71、锁舌1.72、气密垫圈1.73和舱门合页1.74;所述锁环1.71与锁舌1.72动配合,舱门关闭时锁舌1.72伸入锁环1.71锁住舱门1.2,当密封防水超氧舱1-7内喷淋清洗时由密封垫圈1.73保持密封;所述密封防水超氧舱1-7内部设置安装有电机风轮组合22、自动旋转喷淋球23、集油排水槽24,正面还安装有触控屏与手机APP监控系统12;所述设备烟管舱21内安装有超氧智能清洗系统和抽油烟控制机构26;所述智能超氧清洗系统包括:超氧智能调控装置5.1、进水泵17、排水泵16、超氧发生混水器6.6、超氧分解器6.7、水加热装置27、去油污剂添加器28;所述进水泵17的进水口r安装有进水管道A14并接通自来水源,所述进水泵17的出水口u处安装有进水管道A15,所述进水管道A15的中部安装有水加热装置27和电磁阀B15,另一端通过电磁阀B15分为3路,分别接通超氧发生混水器6.6的进水口k、去油污剂添加器28的进水口z和电磁阀B16;所述超氧发生混水器6.6的出水口q安装有进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端伸入密封防水超氧舱1-7连接至喷淋管道A30,所述喷淋管道A30上安装有至少1个自动旋转喷淋 球23,所述喷淋球的轴线与中间一圈喷淋孔的轴线呈45度角,喷出水流时喷淋球23自动旋转;所述去油污剂添加器28的出水口l处安装有进水管道A17,所述进水管道A17的中部安装有电磁阀B17,另一端接通进水管道A15再连通电磁阀B16;所述排水泵16的进水口w处安装有进水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空超氧舱1-7底部的集油排水槽24中形成排水口L;所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B21还安装有排水管道A24并连接至电磁阀B22,在无需分解超氧时由排水泵16直接排水;所述进水泵17、排水泵16、超氧发生混水器6.6、超氧分解器6.7、水加热装置27、去油污剂添加器28、抽油烟控制机构26、触控屏与手机APP监控系统12和电磁阀B1至B22,均接入超氧智能调控装置5.1。
具体实施例十,所述智能超氧水洗油烟机的操作方法,包括:(1)抽油烟程序:启动油烟机时密封防水舱门1.2打开进风抽烟,停止工作时密封舱门1.2关闭;(2)、自清洗程序:超氧智能调控装置5.1发出指令,使电磁阀B15、B16、B17开通相应进水管道(①需超氧水清洗时进水管路为:A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→A30→自动旋转喷淋球23;②需去油污剂清洗时进 水管路为:A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→去油污剂添加器进水口z→出水口l→A17→B17→A17→A15→B16→A16→A30→自动旋转喷淋球23;③无需超氧水亦无需去油污剂清洗时进水管路为A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→B16→A16→A30→自动旋转喷淋球23),并开启进水泵17,自来水随之通过水加热装置27、超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,通过自动旋转喷淋球23,对机箱内各个部位包括电机风轮组合22全面喷淋清洗,先喷淋适当温度的超氧热水高效分解去除油污,再用去油污剂混合热水喷淋,再用干净的热水喷淋,直至全部清洗干净,清洗后的污水下流汇集到机箱最下部的集油排水槽24内,需排水时超氧智能调控装置5.1发出指令,使电磁阀B20、B21、B22开通相应排水管路(①需分解超氧时排水管路为:集油排水槽排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;②无需分解超氧时排水管路为:集油排水槽排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A24→B22→A22→下水道),并开启排水泵16,将水排放至下水道;(3)吹干放置程序,清洗后超氧智能调控装置5.1指令开启油烟机将机箱内部完全吹干然后关机放置,防止锈蚀;(4)、开机保护功能:当使用人开机时,空气便立即从身旁流向真空超氧舱内并从排烟管29排出,所以根本接触不到任何超氧;(5)、模块组合智能家居模式:智能超氧水洗油 烟机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他电器以及模块柜有机组合为功能齐全的智能模块组合家居,不但可以和洗碗果蔬清洗机共享共用进水泵17、排水泵16、超氧发生混水器6.6和超氧分解器6.7,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使智能抽油烟机更加高能高效、低耗宜用。
具体实施例十一,所述智能正负压烤箱空气炸锅微波炉,包括机体7,所述机体7内设有:智能正负压系统、烧烤系统30、空气炸锅系统31、微波系统32和触控屏与手机APP监控系统12;所述智能正负压系统,包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5;所述正负压舱1,根据烤箱空气炸锅和微波炉的特定要求设计为微波真空高压舱1-8;所述微波真空高压舱1-8,包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压烤箱空气炸锅微波炉的机门;所述微波真空高压舱1-8的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当微波真空高压舱1-8内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在微波真空高压舱1-8的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持微波真空高压舱1-8的密封性能。所述微波真空高压舱1-8内部设置安装有烧烤系统30、空气炸锅系统31、微波 系统32、压力传感器C1、负压传感器C2;所述微波真空高压舱1-8外部安装有抽气泵2、充气泵3、正负压智能调控装置5、触控屏与手机APP监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入微波真空高压舱1-8内形成其抽气回气口c,所述抽气泵2的出气口b安装有出气管道A2并通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入微波真空高压舱1-8内,形成充气进气口f;所述充气泵3的进气口e安装有进气管道A4并通大气;所述抽气泵2、充气泵3、压力传感器C1、负压传感器C2、烧烤系统30、空气炸锅系统31、微波系统32和触控屏与手机APP监控系统12,均接入正负压智能调控装置5。
具体实施例十二,所述智能正负压烤箱空气炸锅微波炉的操作方法,包括:(1)、真空烹饪程序:正负压智能调控装置5开启电磁阀B1和抽气泵2,通过抽气管道A1将微波真空高压舱1-8抽为适度真空,在真空中烹饪食物因食材膨胀所以别有风味,例如开启空气炸锅系统在适当真空中烤制薯条、蛋糕等等更加松软可口;(2)、高压烹饪程序;正负压智能调控装置5开启电磁阀B3和充气泵3,高压气流通过充气管道A3进入微波真空高压舱1-8,在高压中烹饪食物因调料容易渗入食材所以特别入味并别有风味,而且易熟节能;(3)、真空放置程序:不使用时将微波真空高压舱1-8抽为适度真空,烧烤微波系统及电路零件处在真空状态下,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损耗保存延长电器的使用寿命;(4)、正负压 模块组合智能家居模式:正负压烤箱空气炸锅微波炉可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他电器以及模块柜有机组合为功能齐全的智能模块组合家居,不但可以共享共用智能正负压系统,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使智能烤箱空气炸锅微波炉更加高能高效、低耗宜用。
具体实施例十三,所述智能正负压保鲜车厢(集装箱),包括厢(箱)体7;所述厢(箱)体7内设置有智能正负压系统、制冷系统8,触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压保鲜车厢(集装箱)的特定要求设计为厢(箱)式真空高压舱1-9;所述厢(箱)式真空高压舱1-9包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压保鲜车厢的车厢门;所述厢(箱)式真空高压舱1-9的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当厢(箱)式真空高压舱1-9内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在厢(箱)式真空高压舱1-9的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持厢(箱)式真空高压舱1-9的密封性能。所述厢(箱)式真空高压舱1-9的外 部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入厢(箱)式真空高压舱1-9内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入厢(箱)式真空高压舱1-9内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入厢(箱)式真空高压舱1-9内形成其循环回气口j;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入厢(箱)式真空高压舱1-9内形成其气调进气口i;所述空气制水装置11的出水口x安 装有空气制水管道A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;厢(箱)式真空高压舱1-9内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出厢(箱)式真空高压舱1-9后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入厢(箱)式真空高压舱1-9,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13伸入厢(箱)式真空高压舱1-9内,与蒸发器风冷组合8.1连通;所述的触控屏与手机监控系统12,包括:触控屏12.1、手机APP12.2、无线防雾摄像装置12.4,所述的无线防雾摄像装置12.4安装在厢(箱)体7内外部需监控位置;所述厢(箱)式真空高压舱1-9的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、超氧发生器6.2、负离子发生6.3、气触媒控释器6.4、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;所述厢(箱)式真空高压舱1-9内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系 统12、触控屏12-1、无线防雾摄像装置12-4、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9、水位传感器C10和电磁阀B1至B12均接入正负压智能调控装置5。
具体实施例十四,所述智能正负压保鲜车厢(集装箱)的操作方法,包括:(1)、真空除害除热清洁程序:需保鲜运输的生鲜货物装进厢(箱)式真空高压舱1-9后,关闭舱门1.2,触动舱门开关1.8或者由驾驶员手动开启,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(厢式真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2-超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将厢(箱)式真空高压舱1-9抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走果蔬肉鱼自带热量、细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持厢(箱)式真空高压舱1-9内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新 鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使厢(箱)式真空高压舱1-9内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、和B4开通A3、A4充气管路(大气进气→A4→空气滤清器→A4→B4→A4→充气泵进气口e→出气口d→A3→B3→A3→真空高压舱充气进气口f),并开启充气泵3对厢(箱)式真空高压舱1-9适当加压至0.01KPa~10MPa之间,适当正压的超氧对厢(箱)式真空高压舱1-9中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用;(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管路并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7以及B2开通A3、A9、A6、A7气调充气管路(充气泵出气口d→A3→A9→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→真空高压舱气调进气口i)并开启充气泵3,带动气流经过气调装置8.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压舱1-9,同时 使电磁阀B3、B5、B4开通气调循环管路(真空高压舱1-9循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器6.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,厢(箱)式真空高压舱1-9内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、开门即排保护程序:如果超氧杀菌消毒或气调贮藏期间有人打开车厢门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至超氧分解器6.7分解后排出,由于空气是从人身旁流向厢(箱)式真空高压舱1-9内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害。(6)、空气制水程序,抽气泵2从厢(箱)式真空高压舱1-9内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→A9→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),带动车厢外空气进入空气制水装置11制水;(7)低温贮藏辅助保鲜程序:开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1,通过温度传感控制器C9的反馈 和控制,为厢(箱)式真空高压舱1-9提供相应低温,并辅助正负压系统为贮藏物品保鲜。(8)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过触控屏12.1和手机APP12.2实时操纵监控正负压保鲜车厢(集装箱)的实时状态,使保鲜车厢(集装箱)能智能的按照设定程序和即时指令高效低耗安全的实现功能;所述的触控屏12.1或手机APP12.2会显示和提醒厢内温度、湿度、气体浓度和贮藏物品装入时间以及保质期等信息,使用人可在驾驶室或车厢外远程监测和操纵,非常方便;以上程序均由正负压系统自动操控并在触控屏与手机监控系统12设置为快捷键模式远近程操控。
具体实施例十五,所述智能正负压保鲜仓库,包括库体7;所述库体7内设置有智能正负压系统、制冷系统8,触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压保鲜仓库的特定要求设计为仓储式真空高压舱1-10;所述仓储式真空高压舱1-10包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压保鲜仓库的库门;所述仓储式真空高压舱1-10的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当仓储式真空高压舱1-10内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在仓储式真空高压舱1-10的后部,进出舱内 外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持仓储式真空高压舱1-10的密封性能。所述仓储式真空高压舱1-10的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入仓储式真空高压舱1-10内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入仓储式真空高压舱1-10内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入仓储式真空高压舱1-10内形成其循环回气口j;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述 气调出气管道A7中部安装有电磁阀B7,另一端伸入仓储式真空高压舱1-10内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;仓储式真空高压舱1-10内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出仓储式真空高压舱1-10后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入仓储式真空高压舱1-10,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13伸入仓储式真空高压舱1-10内,与蒸发器风冷组合8.1连通;所述的触控屏与手机监控系统12,包括:触控屏12.1、手机APP12.2、防雾摄像装置12.3,所述的防雾摄像装置12.3安装在库体7内外部需监控位置;所述仓储式真空高压舱1-10的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、超氧发生器6.2、负离子发生6.3、气触媒控释器6.4、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;所述仓储式真空高压舱1-10内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器 6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9、水位传感器C10和电磁阀B1至B12均接入正负压智能调控装置5。
具体实施例十六,所述智能正负压保鲜仓库的操作方法,包括:(1)、真空除害除热清洁程序:需贮藏的生鲜货物运进仓储式真空高压舱1-10后,关闭舱门1.2,触动舱门开关1.8或者由仓库保管员手动开启,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2-超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将仓储式真空高压舱1-10抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走果蔬肉鱼自带热量、细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持仓储式真空高压舱1-10内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消 耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使仓储式真空高压舱1-10内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、和B4开通A3、A4充气管路(大气进气→A4→空气滤清器→A4→B4→A4→充气泵进气口e→出气口d→A3→B3→A3→真空高压舱充气进气口f),并开启充气泵3对真空高压舱1-10适当加压至0.01KPa~10MPa之间),适当正压的超氧对仓储式真空高压舱1-10中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用;(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管道并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7以及B2开通A3、A9、A6、A7气调充气管路(充气泵出气口d→A3→A9→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→真空高压舱气调进气口i)并开启充气泵3, 带动气流经过气调装置6.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压舱1-10,同时使电磁阀B3、B5、B4开通气调循环管路(真空高压舱循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器8.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,仓储式真空高压舱1-10内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、开门即排保护程序:如果超氧杀菌消毒或气调贮藏期间有人打开仓库门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至超氧分解器6.7分解后排出,由于空气是从人身旁流向仓储式真空高压舱1-10内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害。(6)、空气制水程序,抽气泵2从仓储式真空高压舱1-10内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→A9→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),带动仓库外空气进入空气制水装置11制水;(7)低温贮藏辅助保鲜程序:开机后,正负压智能调控装置5即开启制冷系 统8,通过制冷管道A13连通蒸发器风冷组合8.1,通过温度传感控制器C9的反馈和控制,为仓储式真空高压舱1-10提供相应低温,并辅助正负压系统为贮藏物品保鲜;(8)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过触控屏和手机APP实时操纵监控正负压保鲜仓库的实时状态,使保鲜仓库能智能的按照设定程序和即时指令高效低耗安全的实现功能;所述的触控屏12.1或手机APP12.2会显示和提醒库内温度、湿度、气体浓度和贮藏物品装入时间以及保质期等信息,使用人可远近程监测和操纵,非常方便;以上程序均由正负压系统自动操控并在触控屏与手机监控系统12设置为快捷键模式远近程操控。
具体实施例十七,所述智能正负压模块柜,包括柜体7;所述柜体7内设置有智能正负压系统、制冷加热系统8.3、触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压模块柜的特定要求设计为模块式真空高压舱1-11;所述模块式真空高压舱1-11包括:舱体1.1、舱门1.2、气动气密机构1.5、舱内外密封联通器1.4、气动舱门开关1.8;所述舱门1.2即为正负压模块柜的柜门;所述模块式真空高压舱1-11的舱门1.2与舱体1.1之间设置有气动气密机构1.5;所述气动气密机构1.5包括气动密封锁舌1.51和一体制作在密封锁舌1.51后部的密封锁舌伸缩气囊1.52;所述一体机构的密封锁舌1.51和密封锁舌伸缩气囊1.52共设置有4个,均为长条形,分别按装在舱体1.1门 框的4条边框内设置的4个舱体气密槽1.11内,舌体截面外层部分为密封橡胶,内部为耐弯折金属芯;所述密封锁舌折叠伸缩气囊1.52为充气即可伸长的折叠式橡胶气囊,气囊后部设置有充气插座1.53;所述充气插座1.53内插入有充气插头1.54,所述充气插头1.54共设置有4个,分别安装连通在方环形的气密机构充气支管道A8.1的四条边的4个边管道各自的中点部位,所述气动方环形充气管道A8.1的顶边管道与充气管道A8垂直连接,并通过电磁阀B5和管道A3以及电磁阀B3与充气泵3出气口d连通,关闭舱门时,舱门1.2触碰到气动舱门开关1.8,充气泵3随即启动为密封锁舌折叠伸缩气囊1.52充气使其伸长、并且连带推动密封锁舌1.51从舱体气密槽1.11向外伸出,并伸入其对面对应位置设置的舱门气密槽1.21内,从而锁定并密封舱门,使用人打开舱门时通过气动舱门开关1.8为密封锁舌折叠伸缩气囊1.52放气,使密封锁舌1.51缩回以便打开舱门;所述舱内外密封联通器1.4固定设置在模块式真空高压舱1-11的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持模块式真空高压舱1-11的密封性能。所述模块式真空高压舱1-11的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷加热系统8.3、空气制水装置11、过滤水箱11.1、气动舱门开关1.8、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入模块式真空高压舱1-11内形成其抽气回气口c;所述抽气泵2的出气口b 处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入模块式真空高压舱1-11内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入模块式真空高压舱1-11内形成其循环回气口j;所述电磁阀B5还连接有气密机构充气管道A8,所述气密机构充气管道A8通过电磁阀B5再通过充气管道A3连通充气泵3的出气口d,所述充气管道A8的另一端连接至方环形充气管道A8.1的顶边管道,所述方环形充气管道A8.1的四边管道相互连通,其中点部位均连接有充气插头1.54,所述充气插头1.54均插入连接至与其对应的充气插座1.53;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入模块式真空高压舱1-11内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道 A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;模块式真空高压舱1-11内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的另一进水口N安装有除湿冷凝水管道A31,所述除湿冷凝水管道A31的另一端连接在除湿装置的冷凝水排水口H处;所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出模块式真空高压舱1-11后中部安装有电磁阀B11,另一端与过滤水箱11-1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入模块式真空高压舱1-11,与加湿器8.5的进水口R相连通;所述制冷加热系统8.3安装有循环管道A13,所述循环管道A13伸入模块式真空高压舱1-11内,与热交换器8.4连通;所述的触控屏与手机监控系统12,包括:柜门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3,所述的高清防雾摄像装置12.3安装在柜体7内外需监控位置;所述模块式真空高压舱1-11的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、空气消毒灭菌装置6.9、空气过滤清新装置6.10、除湿装置6.11、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10、空气颗粒物传感器C11;所述模块式真空高压舱1-11内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、 加湿器6.5、超氧分解器6.7、空气消毒灭菌装置6.9、空气过滤清新装置6.10、除湿装置6.11、制冷加热系统8.3、热交换器8.4、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、柜门触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10、空气颗粒物传感器C11和电磁阀B1至B12均接入正负压智能调控装置5。
具体实施例十八,所述智能正负压模块柜的操作方法,因智能正负压模块柜具备真空、高压、恒温、恒湿、恒压、无菌、无尘环境,可置放和安装多种物品与设备,如餐具、厨具、家电等,其操作方法包括:(1)、真空除害清洁程序:将餐具、厨具、小家电、小物品放入模块式真空高压舱1-11后,关闭舱门1.2时触动舱门开关1.8,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2→超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→排入大气),并开启抽气泵2将模块式真空高压舱1-11抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走部分细菌微生物和舱内污浊空气,清洁空气和空间;(2)、消毒杀菌程序:正负压智能调控装置5发出指令开启开启空气消毒灭菌装置6.9,所述空气消毒灭菌装置6.9包括:超氧发生器和紫外线消毒灯等,可根据不同消毒要求设置选用,对舱内环境和物品消毒杀菌;(3)、 特定条件无菌无损贮存程序:不同类别不同配置的模块柜可提供真空、高压、恒温、恒湿、恒压、无菌、无尘等特定贮存环境,满足各类不同的贮存需求,如餐具厨具小家电小物品均可超氧消毒后真空贮存,书画文件古玩文物高档衣物可真空低氧无尘贮存,或者用特定气调气体贮存,或者恒温、恒湿、恒压贮存;(4)、酒水吧多用途展示性冷藏:包装食品、饮料酒类、水果干果、糖果糕点等多种食品物品,均可采用透明柜门展示性冷藏储存;(5)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过WIFI和手机APP远近程实时操纵监控正负压模块柜的实时状态,使模块柜能智能的按照设定程序和即时指令高效低耗的实现功能;所述的高清防雾摄像装置12.3实时拍摄冰箱内物品状况,箱门触控屏12.1或手机APP12.2会显示和提醒生产时间、价格、保质期、生产厂家等商品信息和购买商场、网店信息,自动记录分析整理本冰箱存入取出物品时间数量频次喜好等等大数据并进行智能分析,然后在手机APP12.2上及时提醒或直接将建议购买商品推送到手机APP12.2和箱门触屏12.1上供使用人方便的选择购买;所述的高清防雾摄像装置12.3除了实时监控录制外,还特别要在冰箱门关闭过程中,从远离箱体的位置开始,随着箱门1.2关闭移动、自动连拍数张冰箱内物品全景照片,或同时自动录制小视频,供使用者在手机APP中查看,或近程时无需打开箱门不泄真空不降温度、即可在箱门触控屏中随时查看最后一次关门前和关门过程中、光线好视野大的冰箱内物品全景照片或视频;(6)、正负压模块组合智能家居模式:智能正负压模块柜按照模块功能设计制造,既作为一项 单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器和模块柜有机组合为功能齐全的智能正负压模块组合家居,不但模块柜本身高能高效低耗宜用,还可以共享共用其他正负压电器和模块柜的智能正负压系统、制冷系统、空气制水装置,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。

Claims (18)

  1. 一种智能正负压系统,其特征在于,包括:正负压舱1(正负压舱又名:真空高压舱)、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1,包括:舱体1.1、舱门1.2、气密机构1.3、舱内外联通密封器1.4;所述舱体1.1和舱门1.2之间设置安装有气密机构1.3;所述舱内外密封联通器1.4固定设置在正负压舱1的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持正负压舱1密封性能;所述正负压舱1的外部设置安装有抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器之一气调装置6.1;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1中部安装有电磁阀B1,另一端伸入正负压舱1内形成其抽气回气口c,所述抽气泵2的出气口b处安装有排气管道A2,排气管道A2的另一端通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入正负压舱1内形成其充气进气口f,所述充气泵5的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端连接在电磁阀B3上并通过充气管道A3伸入正负压舱4内形成其循环回气口j;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3再连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一 端伸入正负压舱1内形成其气调进气口i,在进入正负压舱1内的气调气体需要循环时,充气进气口f则作为正负压舱1的循环回气口j;所述正负压舱1的内部也安装有正负压气流搭载物发生处理器,包括:超氧(臭氧)发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5;所述正负压舱1的内部还安装有传感器,包括:压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8;所述的抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、全部传感器C1~C8、全部电磁阀B1~B7,均接入正负压智能调控装置5。
  2. 一种智能正负压系统的操作方法,其特征在于,所述智能正负压系统的技术原理和基本操作方法是:以正负压智能的调控空气流、或搭载超氧、气触媒、负离子、气调气体、水等多种有效载荷,有序进出或驻留特定空间(正负压舱)并对其中物品施加所需影响;所述智能正负压系统的具体操作方法是:由正负压智能调控装置5根据其内置程序和预存数据以及各传感器C1~C8的实时回馈信息,经计算处理后,向抽气泵2、充气泵3、正负压气流搭载物发生处理器和电磁阀实时发出开启或关闭的具体指令,控制调整各抽气管道、充气管道和循环管道的开启、关闭和转换,智能的调控正负压舱1内正负压力的高低和气流及其搭载物的流入、驻留或流出,具体操作方法包括:(1)、将正负压舱1内调控为负压(真空)的操作方法为:正负压智能调控装置5发出指令,使电磁阀B1开通A1、A2抽气管路(正负压 舱抽气回气口c→抽气管道A1→电磁阀B1→A1→抽气泵进气口a→抽气泵出气口b→A2→排入大气)(任一管路开通时,其他无关电磁阀全部关闭,后文同此,不再说明),并开启抽气泵2,将正负压舱1内抽气至设定负压(真空);(2)、将正负压舱1内调控为正压(高压)的操作方法为:正负压智能调控装置5发出指令,使电磁阀B3、B4开通A3、A4充气管路(从大气进气→A4→B4→A4→充气泵进气口e→充气泵出气口d→A3→B3→A3→正负压舱充气进气口f),并开启充气泵3,将正负压舱1内充气至设定正压(高压);(3)、调控气流及其搭载物流入、驻留或流出正负压舱1的操作方法为:①流出:使用抽气泵2,按照上述具体方法(1),将空气流及其搭载物通过抽气管路抽出正负压舱;②流入:使用充气泵3,按照上述具体方法(2),将空气流及其搭载物通过充气管路充进正负压舱;③驻留:需将正负压气流或其搭载物驻留于正负压舱内时,正负压智能调控装置5发出指令,开启抽气机2及抽气管路或开启充气机3及充气管路或开启正负压舱内的正负压气流搭载物发生处理器,并使其他无关电磁阀关闭,直至舱内正负压或气流搭载物数值和驻留时长达标;④循环:气流或其搭载物如气调气体需循环流经正负压舱1及气调装置6.1以使正负压舱内气体浓度达标时,正负压智能调控装置5发出指令,使电磁阀B6、B7开通A6、A7气调充气管路(充气泵出气口d→A3→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→正负压舱气调进气口i),同时使电磁阀B3、B4、B5开通A3、A5、A4气调循环管路(正负压舱循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气 泵进气口e),并开启充气泵3,使气调气体循环流动,直至其浓度、正负压舱内气压和驻留时长达标;所述智能正负压系统使用以上方法,智能的调控和整合真空、高压、超氧、触媒、气调保鲜、负离子、加湿、除湿、消毒、空气净化、空气制水和低温贮藏等多种技术,多项组合或单项应用于电器设备、运输车厢集装箱、仓储仓库等,因其设置使用了智能正负压系统,均统一简称为:智能正负压电器;本发明实施例中所述智能正负压电器,包括:智能正负压冰箱、智能正负压洗衣机、智能真空洗碗果蔬清洗机、智能超氧水洗油烟机、智能正负压烤箱炸锅微波炉、智能正负压保鲜车厢、智能正负压保鲜仓库和智能正负压模块柜。
  3. 一种智能正负压冰箱,其特征在于,包括箱体7;所述箱体7内设置有智能正负压系统、制冷系统8、普通冷藏室9、普通冷冻室10、空气制水装置11和触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1包括:舱体1.1、舱门1.2、舱内外密封联通器1.4、气动气密机构1.5、电动气密机构1.6、气动舱门开关1.8、电动舱门开关1.9;所述舱门1.2即为正负压冰箱的箱门;所述正负压舱1根据冰箱冷藏冷冻的特定要求设计为真空高压冷藏舱1-1和真空高压冷冻舱1-2;所述真空高压冷藏舱1-1的舱门1.2与舱体1.1之间设置有气动气密机构1.5;所述气动气密机构1.5包括气动密封锁舌1.51和一体制作在密封锁舌1.51后部的密封锁舌伸缩气囊1.52;所述一体结构的密封锁舌1.51和密 封锁舌伸缩气囊1.52共设置有4个,均为长条形,分别按装在舱体1.1门框的4条边框内设置的4个舱体气密槽1.11内,舌体截面外层部分为密封橡胶,内部为耐弯折金属芯;所述密封锁舌折叠伸缩气囊1.52为充气即可伸长的折叠式橡胶气囊,气囊后部设置有充气插座1.53;所述充气插座1.53内插入有充气插头1.54,所述充气插头1.54共设置有4个,分别安装连通在方环形的气密机构充气支管道A8.1的四条边的4个边管道各自的中点部位,所述方环形的气密机构充气支管道A8.1的底边管道与气密机构充气管道A8垂直连接,并通过电磁阀B8和管道A3以及电磁阀B3与充气泵3出气口d连通;关闭舱门时,舱门1.2触碰到气动舱门开关1.8,充气泵3随即启动为密封锁舌折叠伸缩气囊1.52充气使其伸长、并且连带推动密封锁舌1.51从舱体气密槽1.11向外伸出,并伸入其对面对应位置设置的舱门气密槽1.21内,从而锁定并密封舱门,使用人打开舱门时通过气动舱门开关1.8为密封锁舌折叠伸缩气囊1.52放气,使密封锁舌1.51缩回以便打开舱门;所述真空高压冷冻舱1-2的舱门1.2与舱体1.1之间设置有电动气密机构1.6;所述电动气密机构1.6包括电动密封锁舌1.61、电磁铁1.62、拉力弹簧1.63;所述密封锁舌1.61共设置有4个,均为长条形,分别活动按装在舱体门框四周内设置的4个舱体气密槽1.11内并挂接在拉力弹簧1.63上,所述拉力弹簧的另一端固定挂接在舱体气密槽1.11内的底部;所述密封锁舌1.61舌体截面外层部分为密封橡胶层,内部为耐弯折易磁吸金属芯,朝向电磁铁1.62一侧的密封橡胶层开放并部分露出内部的金属芯以便于 被电磁铁1.62吸引;所述电磁铁1.62亦为与密封锁舌1.61形状相对应的长条形,固定安装在与舱体气密槽1.11位置相对应的舱门气密槽1.21的槽底里面,关门后需要密封时,电动舱门开关1.9给电磁铁1.62通电产生磁力,将安装在对面的舱体气密槽1.11里的密封锁舌1.61吸引到舱门气密槽1.21里来,开门时电动舱门开关1.9给电磁铁1.62断电磁力消失,拉力弹簧1.63将密封锁舌1.61拉回舱体气密槽1.11里去以便打开舱门;所述舱内外密封联通器1.4固定设置在正负压舱1的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持正负压舱1的密封性能
    Figure PCTCN2021079845-appb-100001
    所述正负压舱1的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵5的进气口a处安装有抽气管道A1,所述抽气管道A1分别连接有抽气支管道A1.1和A1.2,所述抽气支管道A1.1和A1.2各自的中部分别安装有电磁阀B1.1和B1.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其抽气回气口c1和c2;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后经其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端分别连接有充气支管道A3.1、A3.2、A3.3、A3.4,所述充气支管道A3.1、A3.2、A3.3、A3.4各自的中部均安装有电磁 阀B3.1、B3.2、B3.3、B3.4,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内,A3.1的另一端端口形成真空高压冷藏舱1-1的充气进气口f1;A3.2的另一端端口形成真空高压冷冻舱1-2的充气进气口f2;A3.3的另一端连接至超高压解冻舱1-3的进气口G;A3.4的另一端连接至超高压深冷舱1-4的进气口Q;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有空气滤清器6.8和电磁阀B4,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5连接至循环支管道A5.1和A5.2,所述循环支管道A5.1和A5.2各自的中部均安装有电磁阀B5.1和B5.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其循环回气口j1和j2;所述循环管道A5还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h,所述空气制水充气管道A9与循环管道A5连接并接通电磁阀B3,然后通过充气管道A3连通充气泵3的出气口d;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后通过电磁阀B3连通充气泵3的出气口d,所述气调装置6.1的出气口s1和s2处分别安装有气调出气管道A7.1和A7.2,所述气调出气管道A7.1和A7.2中部分别安装有电磁阀B7.1和B7.2,另一端分别伸入真空高压冷藏舱1-1和真空高压冷冻舱1-2内形成其各自的气调进气口i1和i2;所述充气管道A3还连接至气密机构充气管道A8,所述气密机构充气管道A8的中部安装有电磁阀B8,另一端垂 直连接至方环形的气密机构充气支管道A8.1的底边管道;所述方环形的气密机构充气支管道A8.1的四个边管道相互连通,所述四个边管道各自的中点部位均设置安装有充气插头1.54,所述四个充气插头1.54均插入连接至充气插座1.53内;所述空气制水装置11的出水口x处安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11.1的进水口y相连通;真空高压冷藏舱1-1内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出真空高压冷藏舱1-1后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入真空高压冷藏舱11-1,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13分别伸入真空高压冷藏舱1-1、真空高压冷冻舱1-2、普通冷藏室9和普通冷冻室10内,与其内分别安装的蒸发器风冷组合8.1和蒸发器直冷组合8.2均连通;所述的触控屏与手机监控系统12,包括:箱门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3,所述的高清防雾摄像装置12.3安装在箱体7内外部需监控位置;所述正负压舱1的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:设置安装在真空高压冷藏舱1-1内的有:超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二 氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;设置安装在真空高压冷冻舱1-2内的有:气触媒控释器6.4、压力传感器C1、负压传感器C2、二氧化氯传感器C5、氧气传感器C7、氮气传感器C8、温度传感器C9;所述正负压舱1内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置,包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、超高压解冻舱1-3、超高压深冷舱1-4、触控屏与手机监控系统12、箱门触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10和电磁阀B1至B12,均接入正负压智能调控装置5。
  4. 一种智能正负压冰箱的操作方法,其特征在于,所述方法包括:(1)、真空除害除热清洁程序:关闭正负压冰箱的真空高压冷藏舱门1.2,触动舱门开关1.8,正负压智能调控装置5即发出指令:使电磁阀B3、B8开通A3、A8和A8.1气密机构充气管路(充气泵出气口d→A3→B3→A3→A8→B8→A8→A8.1→充气插头1.54→充气插座1.53→密封锁舌伸缩气囊1.52),并开启充气泵3为气动气密机构1.5充气,锁闭舱门1.2;同时使电磁阀B1.1和B2开通A1、A1.1和A2抽气管路(真空高压冷藏舱1-1抽气回气口c1→A1.1→B1.1→A1.1→A1→抽气泵进气口a→出气口b→A2→超氧分解器进气口g →出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将真空高压冷藏舱1-1抽为适度真空(﹣0.01KPa~﹣0.1MPa)(以当地即时气压为零标准,文内均同,视具体需求和冰箱配置可再提高真空度),抽走果蔬肉鱼自带热量、部分细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持真空高压冷藏舱1-1内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使真空高压冷藏舱1-1内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、B3.1和B4开通A3、A3.1、A4充气管路(大气进气→A4→B4→A4→空气滤清器→A4→充气泵进气口e→出气口d→A3→B3→A3→A3.1→B3.1→A3.1→真空高压冷藏舱1-1充气进气口f1),并开启充气泵3,对真空高压冷藏舱1-1适当加压至0.01KPa~10MPa之间(以当地即时气压为零标准,视具体需求和冰箱配置可再提高压力值),适当正压 的超氧对真空高压冷藏舱1-1中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用(超氧在空气和水中30分钟左右即自动分解还原为氧气,但是在冰中非常稳定半衰期极长,故真空高压冷冻舱1-2不设置超氧发生器,不使用超氧);(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管道并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7.1开通A3、A6、A7.1气调充气管路(充气泵出气口d→A3→B3→A3→A6→B6→A6→气调装置进气口t→出气口s1→A7.1→B7.1→A7.1→真空高压冷藏舱1-1气调进气口i1)并开启充气泵3,带动气流经过气调装置8.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压冷藏舱1-1,同时使电磁阀B5.1、B3、B4开通气调循环管路(真空高压冷藏1-1循环回气口j1→A5.1→B5.1→A5.1→A5→B3→A5→B4→A4→空气滤清器→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器6.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,真空高压舱内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效 控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、剩菜食物加压保存程序:剩菜放入真空高压冷藏舱1-1中,调控装置5开启抽气泵2和抽气管路,将剩菜已经散发的气味和舱内污浊空气抽出舱外后关闭,然后开启充气泵3和充气管路适当加压保存,既防止气味和水分过度散失,也抑制了变质腐坏,同时根据湿度传感器的反馈信息,适时开启加湿器6.5补充空气中水分,或适时开启超氧发生器6.2杀灭舱内空气中细菌防止食物腐坏;(6)、低温辅助保鲜程序:冰箱开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1和蒸发器直冷组合8.2,通过温度传感控制器C9的反馈和控制,为各个舱室提供相应低温,并辅助正负压系统为贮藏物品保鲜;(7)、高压快速冻结与解冻和高压不冻贮藏程序:在正负压冰箱冷冻区内设置超高压深冷舱1-3,在冷藏区内设置超高压解冻舱1-4,专门用来对肉鱼海鲜等进行高质量冻结保鲜、解冻保鲜和高压不冻贮藏,用充气泵3为其加压,一定的超高压力会影响肉鱼组织和细胞内部水分的冻结点、结晶过程和冰晶尺寸形状,在0至209.9MPa范围内,水的冻结点随压力的提高而降低,最低在209.9MPa压力下可达﹣21.99℃才冻结,利用这个原理,可以避开常温冻结中的冰晶最大形成带,一定程度的解决了传统常压冻结和解冻时最大冰晶带停留时间长破坏鱼肉组织和细胞的问题,使贮藏肉鱼海鲜高水分食品的品质风味和鲜度得以完美保持,虽然现有技术和材料尚无法以 合适的较低成本在冰箱中设置本发明之超高压舱,但随着科技的发展会很快的逐步实现;(8)、开门即排保护功能:如果超氧杀菌消毒或气调贮藏期间有人打开冰箱门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至冰箱后边的超氧分解器6.7分解后排出,由于空气是从人身旁流向真空高压冷藏舱内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害
    Figure PCTCN2021079845-appb-100002
    (9)、空气制水程序,抽气泵2从真空高压舱内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→B3→A5→A9→B2→A2→空气制水装置进气口h),带动室内空气进入空气制水装置11制水;(10)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过WIFI和手机APP远近程实时操纵监控本冰箱和其他正负压电器以及正负压模块柜,使本冰箱和其他所有正负压电器以及模块柜均智能的按照设定程序和即时指令高效低耗的实现各项功能;所述的高清防雾摄像装置12.3实时拍摄冰箱内物品状况,箱门触控屏12.1或手机APP12.2会显示和提醒生产时间、价格、保质期、生产厂家等商品信息和购买商场、网店信息,自动记录分析整理本冰箱存入取出物品时间数量频次喜好等等大数据并进行智能分析,然后在手机APP12.2上及时提醒或直接将建议购买商品推送到手机APP12.2和箱门触屏 12.1上供使用人方便的选择购买;所述的高清防雾摄像装置12.3除了实时监控录制外,还特别要在冰箱门关闭过程中,从远离箱体的位置开始,随着箱门1.2关闭移动、自动连拍数张冰箱内物品全景照片,或同时自动录制小视频,供使用者在手机APP中查看,或近程时无需打开箱门不泄真空不降温度、即可在箱门触控屏中随时查看最后一次关门前和关门过程中、光线好视野大的冰箱内物品全景照片或视频;(11)、正负压模块组合智能家居模式:智能正负压冰箱可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以共享共用正负压系统、制冷系统、空气制水装置,而且外观形状和色彩基本统一、整齐合谐符合流行趋势
    Figure PCTCN2021079845-appb-100003
    总而言之,以上所述智能正负压冰箱的具体操作方法,可以智能的调控整合真空、高压、超氧、气调保鲜、低温贮藏、负氧离子、气触媒、加湿和空气制水等多种技术,用单项、双项或多项的不同组合交替或者循环运用,并且可以一个冰箱中设置多个不同类型的真空高压舱,因舱施策、分类调控,使贮藏的果蔬肉鱼长期保持水润新鲜的品质风味,同时也使冰箱更加高能高效低耗宜用。
  5. 一种智能正负压洗衣机,其特征在于,包括机体7;所述机体7内设置有智能正负压系统、洗脱烘系统15和触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压 舱1根据洗衣干衣的特定要求设计为真空高压滚筒外舱1-5;所述真空高压滚筒外舱1-5包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压洗衣机的机门;所述真空高压滚筒外舱1-5的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32、气密垫圈1.33和门边密封垫1.34;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当真空高压滚筒外舱1-5内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外密封联通器1.4固定设置在真空高压滚筒外舱1-5的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持真空高压滚筒外舱1-5的密封性能;所述真空高压滚筒外舱1-5内设有滚筒机构15.1、防淋水抽气口2.1、滚筒密封轴承座15.3、压力传感器C1和负压传感器C2;所述真空高压滚筒外舱1-5外部安装有抽气泵2、充气泵3、正负压智能调控装置5、洗脱烘控制机构15.2、滚筒大皮带轮15.4、电机组合15.5、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、触控屏与手机APP监控系统12、洗涤剂拉盒18;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入真空高压滚筒外舱1-5后连接有防淋水抽气口2.1,并形成抽气回气口c,所述抽气泵2的出气口b通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入真空高压滚筒外舱1-5内并延至滚筒机构15.1的下方,形成充气进气口f; 所述充气泵3的进气口e通大气;所述进水泵17的进水口r处安装有进水管道A14,所述进水管道A14的中部安装有电磁阀B14,另一端接通自来水源,所述进水泵17的出水口u处安装有洗衣机进水管道A15,所述进水管道A15的中部安装有电磁阀B15,另一端接通超氧发生混水器6.6的进水口k,所述超氧发生混水器6.6的出水口q安装有洗衣机进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端接通洗涤剂拉盒18的进水口z,所述洗涤剂拉盒18的出水口l安装有洗衣机进水管道A17,所述进水管道A17的中部安装有电磁阀B17,另一端伸入真空高压滚筒外舱1-5内形成其进水口T;所述电磁阀B14还安装有进水管道A18并连通电磁阀B16,在无需超氧水且自来水压达标时直接进水;所述电磁阀B15还安装有进水管道A19并连接至进水管道A18再连通电磁阀B16,在无需超氧水时由进水泵17直接进水;所述排水泵16的进水口w处安装有进水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空高压滚筒外舱1-5内形成其排水口L,所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B20还安装有排水管道A23并连通电磁阀B22,在无需分解超氧且可以自流排水时直接排水;所述电磁阀B21还安装有排水管道A24并连接至排水管道A23再连通电磁阀B22,在无需分解超氧时由排水泵16直接排水;所述电机组合15.5带动大皮 带轮15.4,所述大皮带轮15.4带动连接其上的滚筒机构15.1运转;所述抽气泵2、充气泵3、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、洗脱烘控制机构15.2、触控屏与手机APP监控系统12、压力传感器C1、负压传感器C2和电磁阀B1至B22,均接入正负压智能调控装置5。
  6. 一种智能正负压洗衣机的操作方法,其特征在于,所述智能正负压洗衣机的操作方法包括:(1)、进水程序:衣物放入滚筒15.1,关闭机门即真空高压舱门1.2开机后真空高压滚筒外舱1-5密封锁死,正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B17开通相应进水管路(①自来水直接进水管路为A14→B14→A18→B16→A16→洗涤剂拉盒进水口z→出水口l→A17→B17→A17→滚筒外舱进水口T;②需超氧水洗涤时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16-洗涤剂拉盒z→出水口l→A17→B17→A17→滚筒外舱进水口T;③无需超氧水清洗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→A18→B16→A16→洗涤剂拉盒进水口z→出水口l→A17→B17→A17→滚筒外舱进水口T),并开启进水泵17,自来水随之直接进水或通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空高压滚筒外舱1-5,超氧水可加速分解衣物上的有机污垢利于快速洗净,进水开始后正负压智能调控装置5可使电磁阀B1开通抽气管道A1(抽气泵进气口a→A1→B1→A1→滚筒外舱 1-5抽气回气口c),并开启抽气泵2使真空高压滚筒外舱1-5处于适度负压,会使进水加快,缩短进水时间;(2)、真空洗涤程序:进水完毕正负压智能调控装置5开启电机组合15.5,带动滚筒机构15.1转动开始洗涤,同时使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→滚筒外舱1-5抽气回气口c),并开启抽气泵2,将真空高压滚筒外舱1-5抽为适度真空,衣物纤维和污物在真空中都会膨胀,其中的空气逸出,使污物附着力减弱或脱落,提高了洗净效率,缩短了洗涤时间,超氧水在洗衣过程中直接杀灭衣物上的细菌病毒微生物,分解衣物上尘埃污垢中的有机物使其溶入水中,增强洗涤剂的去污能力,提高洗净度,加速洗净过程,同时起到杀菌除臭的作用;(3)、高压洗涤程序:真空洗涤适当时间后,正负压智能调控装置5关闭电磁阀B1和抽气泵2,使电磁阀B3开通A3充气管路(充气泵6出气口d→A3→B3→A3→滚筒外舱1-5充气进气口f),并开启充气泵3,高压气流通过A3充气管路进入真空高压滚筒外舱1-5,并在滚筒机构15.1下方形成强烈气泡激流参与洗涤,同时真空高压滚筒外舱1-5内形成的高压有利洗涤剂渗入衣物便于洗净,如此抽气和充气循环反复,纤维膨胀和激流揉荡交替进行,大大提高了洗净度和洗衣效率,加快了洗涤和漂洗进程;(4)、排水脱水程序:需排水时正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:滚筒外舱排水口L→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:滚筒外舱排水口L→A20→B20→A20→排水 泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道
    Figure PCTCN2021079845-appb-100004
    ③需排水泵排水无需分解超氧时排水管路为:滚筒外舱排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A24→A23→B22→A22→下水道),并开启排水泵16排水,排水时如开启充气泵3向真空高压滚筒外舱1-5充气加压,可加快排水速度,排水完毕正负压智能调控装置5即发出指令开始脱水;脱水时充气加压可迫使水分快速脱离衣物,再交替开启抽气泵2抽负压,使真空高压滚筒外舱1-5中衣物纤维膨胀,其中的水分向负压空间逸出并被抽出舱外,同时使脱水和高压中板结在滚筒内壁上的衣物蓬松开来防止衣物皱褶,如此抽气和充气循环反复,逼出水分和抽出舱外交替进行,大大提高了衣物脱水的效率,缩短了排水和脱水时间;(5)、真空高压烘干程序:烘干程序开始时正负压智能调控装置5指令开启充气泵3并开通充气管路向真空高压滚筒外舱1-5充气加压有利热气进入衣物纤维内使水分汽化,然后指令开启抽气泵2并开通抽气管路抽气,抽出水气同时负压使衣物纤维膨胀有利水汽散发快干,如此抽气和充气循环反复,加热气化和抽出水气交替进行,大大加快了干衣进程,衣物蓬松提高了干衣质量,有效缩短了干衣时间;(6)、真空自洁无菌放置程序:洗衣完毕后关闭机门1.2,正负压智能调控装置5操纵洗脱烘控制机构开启烘干热风,吹干洗衣机内部特别是滚筒机构15.1,然后开启抽气泵2并开通抽气管路抽气,抽出真空高压滚筒外舱1-5内的超氧余气,并使滚筒机构15.1和舱内设备均处于适度真空中,无菌无尘无污染保持洁净,无氧化不 生锈无损空置,延长洗衣机使用寿命
    Figure PCTCN2021079845-appb-100005
    综上所述正负压洗衣机大大加快了洗衣脱水干衣各个过程,缩短了各个程序的工作时长,并提高了洗衣洁净度和干衣质量,而且超氧还对所洗衣物进行了彻底的杀菌消毒除异味
    Figure PCTCN2021079845-appb-100006
    同时智能的控制超氧的浓度和工作时长处于杀菌降解助洗的适度区域,不达到或尽少达到可能使深色衣物氧化褪色的临界点;(7)、正负压模块组合智能家居模式:智能正负压洗衣机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以共享共用智能正负压系统,而且外观形状和色彩基本统一、整齐合谐符合流行趋势
    Figure PCTCN2021079845-appb-100007
    总之智能正负压系统使洗衣脱水烘干更快速更高效更低耗,而且所洗衣物更少损耗更洁净更蓬松也更卫生。
  7. 一种智能真空洗碗果蔬清洗机,其特征在于,包括机体7;所述机体7内设置有智能正负压系统、洗碗烘干系统19、果蔬清洗系统20和触控屏与手机APP监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1根据智能洗碗烘干和果蔬清洗的特定要求设计为真空超氧舱1-6;所述真空超氧舱1-6包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为真空洗碗果蔬清洗机的机门;所述真空超氧舱1-6的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32 动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当真空超氧舱1-6内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在真空超氧舱1-6的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持真空超氧舱1-6的密封性能
    Figure PCTCN2021079845-appb-100008
    所述真空超氧舱1-6内设有洗碗烘干系统19、果蔬清洗系统20、防淋水抽气口2.1、负压传感器C2、超氧传感器C3、温度传感器C9;所述真空超氧舱1-6外部安装有抽气泵2、正负压智能调控装置5、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、触控屏与手机APP监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入真空超氧舱1-6后连接有防淋水抽气口2.1,并形成抽气回气口c;所述抽气泵2的出气口b通大气;所述进水泵17的进水口r处安装有进水管道A14,所述进水管道A14的中部安装有电磁阀B14,另一端接通自来水源,所述进水泵17的出水口u处安装有进水管道A15,所述进水管道A15的中部安装有电磁阀B15,另一端接通超氧发生混水器6.6的进水口k,所述超氧发生混水器6.6的出水口q安装有进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端伸入真空超氧舱1-6接至电磁阀B25,所述电磁阀B25又分别连接有果蔬清洗进水管道A25和洗碗烘干进水管道A27,所述进水管道A25接至果蔬清洗系统20的进水口E;所述进水管道A27接至洗碗烘干系统19的进水口G;所述电磁阀B15还安装有进水管道A19并连接至电磁阀B16,在无需超氧水时由进水泵 17直接进水;所述排水泵16的进水口w处安装有排水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空超氧舱1-6并分别接至果蔬清洗排水管道A26和洗碗烘干排水管道A28,所述排水管道A26接至果蔬清洗系统20的出水口F;所述排水管道A28接至洗碗烘干系统21的排水口H;所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B21还安装有排水管道A24并连接至A23再连通电磁阀B22,在无需分解超氧时由排水泵直接排水;所述抽气泵2、排水泵16、进水泵17、超氧发生混水器6.6、超氧分解器6.7、洗碗烘干系统19、果蔬清洗系统20、触控屏与手机APP监控系统12、负压传感器C2、超氧传感器C3、温度传感器C9和电磁阀B1至B25,均接入正负压智能调控装置5。
  8. 一种智能真空洗碗果蔬清洗机的操作方法,其特征在于,所述方法包括:(1)、洗碗进水和清洗程序:关闭机门后正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B25开通相应进水管路(①需超氧水洗碗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→B25→A27→洗碗烘干系统进水口G;②无需超氧水洗碗时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→B16→A16→B25→A27→洗碗 烘干系统进水口G),并开启进水泵17,自来水随之通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,超氧水可加速分解餐具上的有机污垢利于快速洗净,进水完毕正负压调控装置5开启洗碗烘干系统19开始喷淋洗碗,并使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→真空超氧舱抽气回气口c),同时开启抽气泵2开始抽真空,碗筷餐具上沾染的污物在真空负压中都会膨胀,污物中的空气逸出,使污物附着力减弱或从碗筷餐具上脱落,提高了洗净效率,缩短了洗涤进程,超氧水在洗碗过程中直接杀灭碗筷餐具上的细菌病毒微生物,分解碗筷餐具上污垢中的有机物使其溶入水中,还能增强洗涤剂的去污能力,提高洗净度,加速洗净过程,同时起到杀菌除臭的作用;(2)、洗碗排水和烘干消毒程序:清洗适当时间需排水时,正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A23→B22→A22→下水道;②需排水泵排水并需分解超氧时排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;③需排水泵排水无需分解超氧时排水管路为:洗碗烘干系统出水口H→A28→A20→B20→A23→B22→A22→下水道),直接排水或开启排水泵16,或再开启超氧分解器6.7,将废水分解后排入下水道,同时再次用清水将餐具喷淋清洗干净,烘干程序时,正负压调控装置5再次开启抽气泵2迅速抽出水 蒸气加快了烘干进程,真空超氧大大加快了洗碗全过程,而且超氧还对所洗碗筷餐具进行了彻底的杀菌消毒除异味;(3)、果蔬清洗进水和清洗程序:关闭机门后正负压智能调控装置5发出指令,使电磁阀B14、B15、B16、B25开通相应进水管道(①需超氧水清洗果蔬时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→B25→A25→果蔬清洗系统进水口E
    Figure PCTCN2021079845-appb-100009
    ②无需超氧水清洗果蔬时进水泵进水管路为A14→B14→A14→进水泵进水口r→出水口u→A15→B15→A19→B16→A16→B25→A25→果蔬清洗系统进水口E),并开启进水泵17,自来水随之通过超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,进水完毕正负压调控装置5开启果蔬清洗系统20开始喷淋清洗果蔬,并使电磁阀B1开通A1抽气管路(抽气泵进气口a→A1→B1→A1→真空超氧舱抽气回气口c),同时开启抽气泵2开始抽真空至适度负压,果蔬上沾染的污物在负压中都会膨胀,污物中的空气逸出,使污物附着力减弱或从果蔬上脱落,提高了洗净效率,缩短了洗涤进程,超氧水在清洗过程中直接杀灭果蔬表皮上的细菌病毒微生物,分解表皮上污垢中的有机物使其溶入水中,提高洗净度加速洗净过程,同时负压促使果蔬组织内的农药重金属等残留和挥发性代谢物乙烯乙醛乙醇等有害气体逸出,为超氧水快速清洗和深度降解农残以及分解乙烯等有害气体创造了有利环境,超氧水清洗适当时间后正负压智能调控装置5发出指令,用清水喷淋将果蔬清洗干净
    Figure PCTCN2021079845-appb-100010
    (4)、果蔬清洗后排水程序: 清洗适当时间需排水时,正负压智能调控装置5发出指令,使电磁阀B20、B21、B22开通相应排水管路(①无需排水泵无需分解超氧时直接排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A23→B22→A22→下水道
    Figure PCTCN2021079845-appb-100011
    ②需排水泵排水并需分解超氧时排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道
    Figure PCTCN2021079845-appb-100012
    ;③需排水泵排水无需分解超氧时排水管路为:果蔬清洗系统出水口F→A26→A20→B20→A23→B22→A22→下水道),直接排水或开启排水泵16或再开启超氧分解器6.7,将废水分解后排入下水道
    Figure PCTCN2021079845-appb-100013
    (5)、真空自洁无菌放置程序:使用完毕后关闭机门1.2,正负压智能调控装置5开启烘干热风,吹干真空超氧舱1-6内部特别是洗碗烘干系统19和果蔬清洗系统20,然后开启抽气泵2并开通抽气管路抽气,抽出真空超氧舱1-6内的超氧余气,并使洗碗烘干系统19、果蔬清洗系统20和舱内设备均处于适度真空中,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损空置,延长电器使用寿命
    Figure PCTCN2021079845-appb-100014
    (6)、正负压模块组合智能家居模式:智能正负压洗碗和果蔬清洗机可按照模块功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器以及模块柜有机组合为功能齐全的智能正负压模块组合家居,不但可以和超氧水洗油烟机共享共用进水泵17、排水泵16、超氧发生混水器6.6和超氧分解器6.7,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使洗碗和果蔬清洗机更加高能高效、低耗宜用。
  9. 一种智能超氧水洗油烟机,其特征在于,包括机体7;所述机体7的下半部分为密封防水超氧舱1-7,上半部分为设备烟管舱21;所述密封防水超氧舱1-7包括:三角形舱体1.1、密封防水舱门1.2;所述密封防水舱门1.2即为超氧水洗油烟机的机门,所述舱门1.2与舱体1.1之间设置有密封防水机构1.7;所述密封防水机构1.7包括锁环1.71、锁舌1.72、气密垫圈1.73和舱门合页1.74;所述锁环1.71与锁舌1.72动配合,舱门关闭时锁舌1.72伸入锁环1.71锁住舱门1.2,当密封防水超氧舱1-7内喷淋清洗时由密封垫圈1.73保持密封;所述密封防水超氧舱1-7内部设置安装有电机风轮组合22、自动旋转喷淋球23、集油排水槽24,正面还安装有触控屏与手机APP监控系统12;所述设备烟管舱21内安装有超氧智能清洗系统和抽油烟控制机构26;所述智能超氧清洗系统包括:超氧智能调控装置5.1、进水泵17、排水泵16、超氧发生混水器6.6、超氧分解器6.7、水加热装置27、去油污剂添加器28;所述进水泵17的进水口r安装有进水管道A14并接通自来水源,所述进水泵17的出水口u处安装有进水管道A15,所述进水管道A15的中部安装有水加热装置27和电磁阀B15,另一端通过电磁阀B15分为3路,分别接通超氧发生混水器6.6的进水口k、去油污剂添加器28的进水口z和电磁阀B16;所述超氧发生混水器6.6的出水口q安装有进水管道A16,所述进水管道A16的中部安装有电磁阀B16,另一端伸入密封防水超氧舱1-7连接至喷淋管道A30,所述喷淋管道A30上安装有至少1个自动旋转喷淋球23,所述喷淋球的轴线与中间一圈喷淋孔的轴线呈45 度角,喷出水流时喷淋球23自动旋转;所述去油污剂添加器28的出水口l处安装有进水管道A17,所述进水管道A17的中部安装有电磁阀B17,另一端接通进水管道A15再连通电磁阀B16;所述排水泵16的进水口w处安装有进水管道A20,所述排水管道A20的中部安装有电磁阀B20,另一端伸入真空超氧舱1-7底部的集油排水槽24中形成排水口L;所述排水泵16的出水口p处安装有排水管道A21,所述排水管道A21的中部安装有电磁阀B21,另一端接通超氧分解器6.7的进水口g,所述超氧分解器6.7的出水口m安装有排水管道A22,所述排水管道A22的中部安装有电磁阀B22,另一端接通下水道;所述电磁阀B21还安装有排水管道A24并连接至电磁阀B22,在无需分解超氧时由排水泵16直接排水;所述进水泵17、排水泵16、超氧发生混水器6.6、超氧分解器6.7、水加热装置27、去油污剂添加器28、抽油烟控制机构26、触控屏与手机APP监控系统12和电磁阀B1至B22,均接入超氧智能调控装置5.1。
  10. 一种智能超氧水洗油烟机的操作方法,其特征在于,所述方法包括:(1)抽油烟程序:启动油烟机时密封防水舱门1.2打开进风抽烟,停止工作时密封舱门1.2关闭;(2)、自清洗程序:超氧智能调控装置5.1发出指令,使电磁阀B15、B16、B17开通相应进水管道(①需超氧水清洗时进水管路为:A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→超氧发生混水器进水口k→出水口q→A16→B16→A16→A30→自动旋转喷淋球23
    Figure PCTCN2021079845-appb-100015
    ②需去油污剂清洗时进水管路为:A14→进水泵进水口r→出水口u→A15→ 水加热装置→A15→B15→A15→去油污剂添加器进水口z→出水口l→A17→B17→A17→A15→B16→A16→A30→自动旋转喷淋球23;③无需超氧水亦无需去油污剂清洗时进水管路为A14→进水泵进水口r→出水口u→A15→水加热装置→A15→B15→A15→B16→A16→A30→自动旋转喷淋球23),并开启进水泵17,自来水随之通过水加热装置27、超氧发生混水器6.6与其生产的超氧快速混合为适当浓度的超氧水进入真空超氧舱1-6,通过自动旋转喷淋球23,对机箱内各个部位包括电机风轮组合22全面喷淋清洗,先喷淋适当温度的超氧热水高效分解去除油污,再用去油污剂混合热水喷淋,再用干净的热水喷淋,直至全部清洗干净,清洗后的污水下流汇集到机箱最下部的集油排水槽24内,需排水时超氧智能调控装置5.1发出指令,使电磁阀B20、B21、B22开通相应排水管路(①需分解超氧时排水管路为:集油排水槽排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A21→超氧分解器进水口g→出水口m→A22→B22→A22→下水道;②无需分解超氧时排水管路为:集油排水槽排水口L→A20→B20→A20→排水泵进水口w→出水口p→A21→B21→A24→B22→A22→下水道),并开启排水泵16,将水排放至下水道;(3)吹干放置程序,清洗后超氧智能调控装置5.1指令开启油烟机将机箱内部完全吹干然后关机放置,防止锈蚀;(4)、开机保护功能:当使用人开机时,空气便立即从身旁流向真空超氧舱内并从排烟管29排出,所以根本接触不到任何超氧;(5)、模块组合智能家居模式:智能超氧水洗油烟机可按照模块功能设计制造,既作为一项单独的发明权利 独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他电器以及模块柜有机组合为功能齐全的智能模块组合家居,不但可以和洗碗果蔬清洗机共享共用进水泵17、排水泵16、超氧发生混水器6.6和超氧分解器6.7,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使智能抽油烟机更加高能高效、低耗宜用。
  11. 一种智能正负压烤箱空气炸锅微波炉,其特征在于,包括机体7,所述机体7内设有:智能正负压系统、烧烤系统30、空气炸锅系统31、微波系统32和触控屏与手机APP监控系统12;所述智能正负压系统,包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5;所述正负压舱1,根据烤箱空气炸锅和微波炉的特定要求设计为微波真空高压舱1-8;所述微波真空高压舱1-8,包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压烤箱空气炸锅微波炉的机门;所述微波真空高压舱1-8的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当微波真空高压舱1-8内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在微波真空高压舱1-8的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持微波真空高压舱1-8的密封性能
    Figure PCTCN2021079845-appb-100016
    ;所述微波真空高压舱1-8内部设置安装有烧烤系统30、空气炸锅系统31、微波系统32、压力传感器C1、负压传感器C2;所述微波真空高压舱1-8 外部安装有抽气泵2、充气泵3、正负压智能调控装置5、触控屏与手机APP监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入微波真空高压舱1-8内形成其抽气回气口c,所述抽气泵2的出气口b安装有出气管道A2并通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入微波真空高压舱1-8内,形成充气进气口f;所述充气泵3的进气口e安装有进气管道A4并通大气;所述抽气泵2、充气泵3、压力传感器C1、负压传感器C2、烧烤系统30、空气炸锅系统31、微波系统32和触控屏与手机APP监控系统12,均接入正负压智能调控装置5。
  12. 一种智能正负压烤箱空气炸锅微波炉的操作方法,其特征在于,所述方法包括:(1)、真空烹饪程序:正负压智能调控装置5开启电磁阀B1和抽气泵2,通过抽气管道A1将微波真空高压舱1-8抽为适度真空,在真空中烹饪食物因食材膨胀所以别有风味,例如开启空气炸锅系统在适当真空中烤制薯条、蛋糕等等更加松软可口;(2)、高压烹饪程序;正负压智能调控装置5开启电磁阀B3和充气泵3,高压气流通过充气管道A3进入微波真空高压舱1-8,在高压中烹饪食物因调料容易渗入食材所以特别入味并别有风味,而且易熟节能;(3)、真空放置程序:不使用时将微波真空高压舱1-8抽为适度真空,烧烤微波系统及电路零件处在真空状态下,无菌无尘无污染保持洁净利于健康,无氧化不生锈无损耗保存延长电器的使用寿命;(4)、正负压模块组合智能家居模式:正负压烤箱空气炸锅微波炉可按照模块 功能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他电器以及模块柜有机组合为功能齐全的智能模块组合家居,不但可以共享共用智能正负压系统,而且外观形状和色彩基本统一、整齐合谐符合流行趋势,使智能烤箱空气炸锅微波炉更加高能高效、低耗宜用。
  13. 一种智能正负压保鲜车厢(集装箱),其特征在于,包括厢(箱)体7;所述厢(箱)体7内设置有智能正负压系统、制冷系统8,触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压保鲜车厢(集装箱)的特定要求设计为厢(箱)式真空高压舱1-9;所述厢(箱)式真空高压舱1-9包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压保鲜车厢的车厢门;所述厢(箱)式真空高压舱1-9的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当厢(箱)式真空高压舱1-9内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在厢(箱)式真空高压舱1-9的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持厢(箱)式真空高压舱1-9的密封性能
    Figure PCTCN2021079845-appb-100017
    所述厢(箱)式真空高压舱1-9的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置 6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入厢(箱)式真空高压舱1-9内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入厢(箱)式真空高压舱1-9内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入厢(箱)式真空高压舱1-9内形成其循环回气口j;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入厢(箱)式真空高压舱1-9内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道A10,所述空气制水管道A10和过滤水箱 11-1的进水口y相连通;厢(箱)式真空高压舱1-9内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出厢(箱)式真空高压舱1-9后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入厢(箱)式真空高压舱1-9,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13伸入厢(箱)式真空高压舱1-9内,与蒸发器风冷组合8.1连通;所述的触控屏与手机监控系统12,包括:触控屏12.1、手机APP12.2、无线防雾摄像装置12.4,所述的无线防雾摄像装置12.4安装在厢(箱)体7内外部需监控位置;所述厢(箱)式真空高压舱1-9的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、超氧发生器6.2、负离子发生6.3、气触媒控释器6.4、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;所述厢(箱)式真空高压舱1-9内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、触控屏12-1、无线防雾摄像装置12-4、压 力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9、水位传感器C10和电磁阀B1至B12,均接入正负压智能调控装置5。
  14. 一种智能正负压保鲜车厢(集装箱)的操作方法,其特征在于,所述方法包括:(1)、真空除害除热清洁程序:需保鲜运输的生鲜货物装进厢(箱)式真空高压舱1-9后,关闭舱门1.2,触动舱门开关1.8或者由驾驶员手动开启,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(厢式真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2-超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将厢(箱)式真空高压舱1-9抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走果蔬肉鱼自带热量、细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持厢(箱)式真空高压舱1-9内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬 的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使厢(箱)式真空高压舱1-9内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、和B4开通A3、A4充气管路(大气进气→A4→空气滤清器→A4→B4→A4→充气泵进气口e→出气口d→A3→B3→A3→真空高压舱充气进气口f),并开启充气泵3对厢(箱)式真空高压舱1-9适当加压至0.01KPa~10MPa之间,适当正压的超氧对厢(箱)式真空高压舱1-9中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用;(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管路并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7以及B2开通A3、A9、A6、A7气调充气管路(充气泵出气口d→A3→A9→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→真空高压舱气调进气口i)并开启充气泵3,带动气流经过气调装置8.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压舱 1-9,同时使电磁阀B3、B5、B4开通气调循环管路(真空高压舱1-9循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器6.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,厢(箱)式真空高压舱1-9内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、开门即排保护程序:如果超氧杀菌消毒或气调贮藏期间有人打开车厢门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至超氧分解器6.7分解后排出,由于空气是从人身旁流向厢(箱)式真空高压舱1-9内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害
    Figure PCTCN2021079845-appb-100018
    (6)、空气制水程序,抽气泵2从厢(箱)式真空高压舱1-9内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→A9→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),带动车厢外空气进入空气制水装置11制水;(7)低温贮藏辅助保鲜程序:开机后,正负压智能调控装置5即开启制冷系统8,通过制冷管道A13连通蒸发器风冷组合8.1,通过温度传感控制器C9 的反馈和控制,为厢(箱)式真空高压舱1-9提供相应低温,并辅助正负压系统为贮藏物品保鲜
    Figure PCTCN2021079845-appb-100019
    (8)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过触控屏12.1和手机APP12.2实时操纵监控正负压保鲜车厢(集装箱)的实时状态,使保鲜车厢(集装箱)能智能的按照设定程序和即时指令高效低耗安全的实现功能;所述的触控屏12.1或手机APP12.2会显示和提醒厢内温度、湿度、气体浓度和贮藏物品装入时间以及保质期等信息,使用人可在驾驶室或车厢外远程监测和操纵,非常方便;以上程序均由正负压系统自动操控并在触控屏与手机监控系统12设置为快捷键模式远近程操控。
  15. 一种智能正负压保鲜仓库,其特征在于,包括库体7;所述库体7内设置有智能正负压系统、制冷系统8,触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压保鲜仓库的特定要求设计为仓储式真空高压舱1-10;所述仓储式真空高压舱1-10包括:舱体1.1、舱门1.2、机械气密机构1.3、舱内外密封联通器1.4;所述舱门1.2即为正负压保鲜仓库的库门;所述仓储式真空高压舱1-10的舱门1.2与舱体1.1之间设置有机械气密机构1.3;所述机械气密机构1.3包括锁环1.31、锁舌1.32和气密垫圈1.33;所述锁环1.31与锁舌1.32动配合,舱门关闭时锁舌1.32伸入锁环1.31锁住舱门,当仓储式真空高压舱1-10内形成正负气压时均由气密垫圈1.33保持密封;所述舱内外管线联控器1.4固定设置在仓储式真空高压舱1-10的后部,进出舱内 外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持仓储式真空高压舱1-10的密封性能
    Figure PCTCN2021079845-appb-100020
    所述仓储式真空高压舱1-10的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入仓储式真空高压舱1-10内形成其抽气回气口c;所述抽气泵2的出气口b处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入仓储式真空高压舱1-10内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入仓储式真空高压舱1-10内形成其循环回气口j;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11的进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述 气调出气管道A7中部安装有电磁阀B7,另一端伸入仓储式真空高压舱1-10内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;仓储式真空高压舱1-10内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出仓储式真空高压舱1-10后中部安装有电磁阀B11,另一端与过滤水箱11.1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入仓储式真空高压舱1-10,与加湿器6.5的进水口R相连通;所述制冷系统8安装有制冷循环管道A13,所述制冷循环管道A13伸入仓储式真空高压舱1-10内,与蒸发器风冷组合8.1连通;所述的触控屏与手机监控系统12,包括:触控屏12.1、手机APP12.2、防雾摄像装置12.3,所述的防雾摄像装置12.3安装在库体7内外部需监控位置;所述仓储式真空高压舱1-10的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、超氧发生器6.2、负离子发生6.3、气触媒控释器6.4、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9;所述仓储式真空高压舱1-10内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、超氧发生器6.2、负离子发生器6.3、气触媒控释器 6.4、加湿器6.5、超氧分解器6.7、制冷系统8、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感器C9、水位传感器C10和电磁阀B1至B12均接入正负压智能调控装置5。
  16. 一种智能正负压保鲜仓库的操作方法,其特征在于,所述方法包括:(1)、真空除害除热清洁程序:需贮藏的生鲜货物运进仓储式真空高压舱1-10后,关闭舱门1.2,触动舱门开关1.8或者由仓库保管员手动开启,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2-超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),并开启抽气泵2将仓储式真空高压舱1-10抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走果蔬肉鱼自带热量、细菌微生物和舱内污浊空气,真空促使果蔬组织内的挥发性代谢物乙烯乙醛乙醇等有害气体逸出并被抽走,同时以负压抑制残留细菌的繁殖,减少了果蔬病害衰老的隐患;(2)、减压加湿贮藏程序:正负压智能调控装置5根据预设程序的压力标准和负压传感器C2的实时反馈,通过开启或关闭抽气泵2维持仓储式真空高压舱1-10内适当的负压低氧低温环境,降低果蔬呼吸强度,抑制乙烯的生物合成,推迟叶绿素的分解,抑制类胡萝卜素和番茄红素的合成,减缓淀粉的水解、糖的增加和酸 的消耗等过程,从而延缓果蔬的成熟衰老,同时开启加湿器6.5提高舱内湿度,防止果蔬水分逸出,更长时间维持果蔬的新鲜状态;(3)、超氧加压杀菌降解程序:正负压智能调控装置5根据程序设置和传感器C3、C4、C6回馈,适时发出指令开启超氧发生器6.2、负氧离子发生器6.3以及加湿器6.5,使仓储式真空高压舱1-10内的超氧、湿度及负氧离子达到所需标准,同时使电磁阀B3、和B4开通A3、A4充气管路(大气进气→A4→空气滤清器→A4→B4→A4→充气泵进气口e→出气口d→A3→B3→A3→真空高压舱充气进气口f),并开启充气泵3对真空高压舱1-10适当加压至0.01KPa~10MPa之间),适当正压的超氧对仓储式真空高压舱1-10中果蔬肉鱼杀菌消毒抗霉并降解农残及果蔬代谢呼吸出的乙烯等气体,影响果蔬中酶的活性,防止果蔬的褐变软化,延缓了果蔬衰老,适当高压还阻止了果蔬肉鱼内水分逸出,而且湿气在正压下更容易向果蔬肉鱼渗透补充因冷藏和负压等流失的水分,负氧离子则使湿气的水分子团尺寸更小更便于果蔬肉鱼吸收,还具有抑制生物组织代谢、降低呼吸强度、减慢酶的活性和一定的杀菌及净化作用,超氧在正压下可渗透到果蔬肉鱼的更深内部更好的发挥杀菌消毒作用;(4)、气调加压贮藏程序:正负压智能调控装置5根据程序设置或传感器回馈,适时开通抽气管道并开启抽气泵2和超氧分解器6.7,将分解和杀菌消毒降解后的污浊空气抽出舱外,然后使电磁阀B3、B6、B7以及B2开通A3、A9、A6、A7气调充气管路(充气泵出气口d→A3→A9→A6→B6→A6→气调装置进气口t→出气口s→A7→B7→A7→真空高压舱气调进气口i)并开启充气泵 3,带动气流经过气调装置6.1的中空纤维膜,氧气分离出去,高氮低氧气体进入真空高压舱1-10,同时使电磁阀B3、B5、B4开通气调循环管路(真空高压舱循环回气口j→A3→B3→A5→B5→A5→B4→A4→充气泵进气口e→充气泵出气口d),同时开启加湿器8.5,直至舱内气调气体浓度、空气湿度和正气压均达气调加压贮藏标准,仓储式真空高压舱1-10内形成适当比例的富氮贫氧环境并保持适当正压和适当湿度,有效控制贮藏果蔬的呼吸速率,同时防止无氧呼吸和二氧化碳中毒,延缓了衰老进程,防止贮藏果蔬品质降低及风味流失,正压湿气保持和补充果蔬水分,最大限度的维持果蔬新鲜度;(5)、开门即排保护程序:如果超氧杀菌消毒或气调贮藏期间有人打开仓库门,则舱门开关立即反馈,正负压智能调控装置5立即操纵停止超氧或气调程序,同时开通抽气管路并启动抽气泵2,将超氧或高氮低氧气体迅速抽至超氧分解器6.7分解后排出,由于空气是从人身旁流向仓储式真空高压舱1-10内补充抽气负压,所以使用人接触不到超氧和高氮低氧的气体而免受其害
    Figure PCTCN2021079845-appb-100021
    (6)、空气制水程序,抽气泵2从仓储式真空高压舱1-10内抽出的湿润废气进入超氧分解器6.7将超氧分解后进入空气制水装置11,水气冷凝并经过滤成为饮用标准纯净水,为加湿器6.5提供不间断水源,充气泵3空闲时,智能调控装置5亦可启动充气泵3并使电磁阀B3、B2开通空气制水充气管路(充气泵出气口d→A3→A9→B2→A2→空气制水装置进气口h→出气口n→A2→排入大气),带动仓库外空气进入空气制水装置11制水;(7)低温贮藏辅助保鲜程序:开机后,正负压智能调控装置5即开启制冷 系统8,通过制冷管道A13连通蒸发器风冷组合8.1,通过温度传感控制器C9的反馈和控制,为仓储式真空高压舱1-10提供相应低温,并辅助正负压系统为贮藏物品保鲜;(8)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过触控屏和手机APP实时操纵监控正负压保鲜仓库的实时状态,使保鲜仓库能智能的按照设定程序和即时指令高效低耗安全的实现功能;所述的触控屏12.1或手机APP12.2会显示和提醒库内温度、湿度、气体浓度和贮藏物品入库时间以及保质期等信息,使用人可远近程监测和操纵,非常方便;以上程序均由正负压系统自动操控并在触控屏与手机监控系统12设置为快捷键模式远近程操控。
  17. 一种智能正负压模块柜,其特征在于,包括柜体7;所述柜体7内设置有智能正负压系统、制冷加热系统8.3、触控屏与手机监控系统12;所述智能正负压系统包括正负压舱1、抽气泵2、充气泵3、正负压智能调控装置5和正负压气流搭载物发生处理器;所述正负压舱1按照智能正负压模块柜的特定要求设计为模块式真空高压舱1-11;所述模块式真空高压舱1-11包括:舱体1.1、舱门1.2、气动气密机构1.5、舱内外密封联通器1.4、气动舱门开关1.8;所述舱门1.2即为正负压模块柜的柜门;所述模块式真空高压舱1-11的舱门1.2与舱体1.1之间设置有气动气密机构1.5;所述气动气密机构1.5包括气动密封锁舌1.51和一体制作在密封锁舌1.51后部的密封锁舌伸缩气囊1.52;所述一体机构的密封锁舌1.51和密封锁舌伸缩气囊1.52共设置有4个,均为长条形,分别按装在舱体1.1门 框的4条边框内设置的4个舱体气密槽1.11内,舌体截面外层部分为密封橡胶,内部为耐弯折金属芯;所述密封锁舌折叠伸缩气囊1.52为充气即可伸长的折叠式橡胶气囊,气囊后部设置有充气插座1.53;所述充气插座1.53内插入有充气插头1.54,所述充气插头1.54共设置有4个,分别安装连通在方环形的气密机构充气支管道A8.1的四条边的4个边管道各自的中点部位,所述气动方环形充气管道A8.1的顶边管道与充气管道A8垂直连接,并通过电磁阀B5和管道A3以及电磁阀B3与充气泵3出气口d连通,关闭舱门时,舱门1.2触碰到气动舱门开关1.8,充气泵3随即启动为密封锁舌折叠伸缩气囊1.52充气使其伸长、并且连带推动密封锁舌1.51从舱体气密槽1.11向外伸出,并伸入其对面对应位置设置的舱门气密槽1.21内,从而锁定并密封舱门,使用人打开舱门时通过气动舱门开关1.8为密封锁舌折叠伸缩气囊1.52放气,使密封锁舌1.51缩回以便打开舱门;所述舱内外密封联通器1.4固定设置在模块式真空高压舱1-11的后部,进出舱内外的所有管道和电路,均连接至舱内外密封联通器1.4并通过其出入,以保持模块式真空高压舱1-11的密封性能
    Figure PCTCN2021079845-appb-100022
    所述模块式真空高压舱1-11的外部安装有抽气泵2、充气泵3、正负压智能调控装置5、气调装置6.1、超氧分解器6.7、空气滤清器6.8、制冷加热系统8.3、空气制水装置11、过滤水箱11.1、气动舱门开关1.8、触控屏与手机监控系统12;所述抽气泵2的进气口a处安装有抽气管道A1,所述抽气管道A1的中部安装有电磁阀B1,另一端伸入模块式真空高压舱1-11内形成其抽气回气口c;所述抽气泵2的出气口b 处安装有排气管道A2,所述排气管道A2中部安装有超氧分解器6.7和电磁阀B2,另一端接通空气制水装置11的进气口h,经过空气制水装置11后从其出气口n通大气;所述充气泵3的出气口d处安装有充气管道A3,所述充气管道A3中部安装有电磁阀B3,另一端伸入模块式真空高压舱1-11内,形成其充气进气口f;所述充气泵3的进气口e处安装有进气管道A4,所述进气管道A4中部安装有电磁阀B4和空气滤清器6.8,另一端通大气;所述电磁阀B4还连接有循环管道A5,所述循环管道A5中部安装有电磁阀B5,另一端接通电磁阀B3,再通过充气管道A3伸入模块式真空高压舱1-11内形成其循环回气口j;所述电磁阀B5还连接有气密机构充气管道A8,所述气密机构充气管道A8通过电磁阀B5再通过充气管道A3连通充气泵3的出气口d,所述充气管道A8的另一端连接至方环形充气管道A8.1的顶边管道,所述方环形充气管道A8.1的四边管道相互连通,其中点部位均连接有充气插头1.54,所述充气插头1.54均插入连接至与其对应的充气插座1.53;所述充气管道A3还连接有空气制水充气管道A9,所述空气制水充气管道A9连接至电磁阀B2通过排气管道A2连通空气制水装置11进气口h;所述气调装置6.1的进气口t处安装有气调进气管道A6,所述气调进气管道A6中部安装有电磁阀B6,另一端连接至充气管道A3,然后连通充气泵3的出气口d,所述气调装置6.1的出气口s处安装有气调出气管道A7,所述气调出气管道A7中部安装有电磁阀B7,另一端伸入模块式真空高压舱1-11内形成其气调进气口i;所述空气制水装置11的出水口x安装有空气制水管道 A10,所述空气制水管道A10和过滤水箱11-1的进水口y相连通;模块式真空高压舱1-11内产生的冷凝水流入安装在其舱内底部的冷凝水集水盒11.2的进水口Y,所述冷凝水集水盒11.2的另一进水口N安装有除湿冷凝水管道A31,所述除湿冷凝水管道A31的另一端连接在除湿装置的冷凝水排水口H处;所述冷凝水集水盒11.2的出水口M处安装有冷凝水管道A11,所述冷凝水管道A11伸出模块式真空高压舱1-11后中部安装有电磁阀B11,另一端与过滤水箱11-1的进水口v相连通,过滤水箱11.1的出水口o安装有加湿水管道A12,所述加湿水管道A12中部安装有电磁阀B12,另一端伸入模块式真空高压舱1-11,与加湿器8.5的进水口R相连通;所述制冷加热系统8.3安装有循环管道A13,所述循环管道A13伸入模块式真空高压舱1-11内,与热交换器8.4连通;所述的触控屏与手机监控系统12,包括:柜门触控屏12.1、手机APP12.2、高清防雾摄像装置12.3,所述的高清防雾摄像装置12.3安装在柜体7内外需监控位置;所述模块式真空高压舱1-11的内部设置安装有正负压气流搭载物发生处理器和传感器,包括:加湿器6.5、空气消毒灭菌装置6.9、空气过滤清新装置6.10、除湿装置6.11、冷凝水集水盒11.2、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10、空气颗粒物传感器C11;所述模块式真空高压舱1-11内部和外部安装的所有气流搭载物发生处理器、传感器、电磁阀和设备装置包括:抽气泵2、充气泵3、气调装置6.1、 加湿器6.5、超氧分解器6.7、空气消毒灭菌装置6.9、空气过滤清新装置6.10、除湿装置6.11、制冷加热系统8.3、热交换器8.4、空气制水装置11、过滤水箱11.1、触控屏与手机监控系统12、柜门触控屏12.1、高清防雾摄像装置12.3、压力传感器C1、负压传感器C2、超氧传感器C3、负氧离子传感器C4、二氧化氯传感器C5、湿度传感器C6、氧气传感器C7、氮气传感器C8、温度传感控制器C9、水位传感控制器C10、空气颗粒物传感器C11和电磁阀B1至B12均接入正负压智能调控装置5。
  18. 一种智能正负压模块柜的操作方法,其特征在于,因智能正负压模块柜具备真空、高压、恒温、恒湿、恒压、无菌、无尘环境,可置放和安装多种物品与设备,如餐具、厨具、家电等,其操作方法包括:(1)、真空除害清洁程序:将餐具、厨具、小家电、小物品放入模块式真空高压舱1-11后,关闭舱门1.2时触动舱门开关1.8,正负压智能调控装置5即发出指令:使电磁阀B1、B2开通A1、A2抽气管路(真空高压舱抽气回气口c→A1→B1→A1→抽气泵5进气口a→出气口b→A2→超氧分解器进气口g→出气口m→A2→B2→A2→空气制水装置进气口h→出气口n→排入大气),并开启抽气泵2将模块式真空高压舱1-11抽为适度真空(﹣0.01KPa~﹣0.09MPa),抽走部分细菌微生物和舱内污浊空气,清洁空气和空间;(2)、消毒杀菌程序:正负压智能调控装置5发出指令开启开启空气消毒灭菌装置6.9,所述空气消毒灭菌装置6.9包括:超氧发生器和紫外线消毒灯等,可根据不同消毒要求设置选用,对舱内环境和物品 消毒杀菌;(3)、特定条件无菌无损贮存程序:不同类别不同配置的模块柜可提供真空、高压、恒温、恒湿、恒压、无菌、无尘等特定贮存环境,满足各类不同的贮存需求,如餐具厨具小家电小物品均可超氧消毒后真空贮存,书画文件古玩文物高档衣物可真空低氧无尘贮存,或者用特定气调气体贮存,或者恒温、恒湿、恒压贮存;(4)、酒水吧多用途展示性冷藏:包装食品、饮料酒类、水果干果、糖果糕点等多种食品物品,均可采用透明柜门展示性冷藏储存;(5)、远近程操纵监控功能:所述的触控屏与手机监控系统12可通过WIFI和手机APP远近程实时操纵监控正负压模块柜的实时状态,使模块柜能智能的按照设定程序和即时指令高效低耗的实现功能;所述的高清防雾摄像装置12.3实时拍摄冰箱内物品状况,箱门触控屏12.1或手机
    APP12.2会显示和提醒生产时间、价格、保质期、生产厂家等商品信息和购买商场、网店信息,自动记录分析整理本冰箱存入取出物品时间数量频次喜好等等大数据并进行智能分析,然后在手机APP12.2上及时提醒或直接将建议购买商品推送到手机APP12.2和箱门触屏12.1上供使用人方便的选择购买;所述的高清防雾摄像装置12.3除了实时监控录制外,还特别要在冰箱门关闭过程中,从远离箱体的位置开始,随着箱门1.2关闭移动、自动连拍数张冰箱内物品全景照片,或同时自动录制小视频,供使用者在手机APP中查看,或近程时无需打开箱门不泄真空不降温度、即可在箱门触控屏中随时查看最后一次关门前和关门过程中、光线好视野大的冰箱内物品全景照片或视频;(6)、正负压模块组合智能家居模式:智能正负压模块柜按照模块功 能设计制造,既作为一项单独的发明权利独立生产使用,又可在触控屏与手机APP监控系统12的操控下与其他正负压电器和模块柜有机组合为功能齐全的智能正负压模块组合家居,不但模块柜本身高能高效低耗宜用,还可以共享共用其他正负压电器和模块柜的智能正负压系统、制冷系统、空气制水装置,而且外观形状和色彩基本统一、整齐合谐符合流行趋势。
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