WO2022083322A1 - 一种洗碗机、洗碗机的控制方法、装置及存储介质 - Google Patents

一种洗碗机、洗碗机的控制方法、装置及存储介质 Download PDF

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Publication number
WO2022083322A1
WO2022083322A1 PCT/CN2021/116523 CN2021116523W WO2022083322A1 WO 2022083322 A1 WO2022083322 A1 WO 2022083322A1 CN 2021116523 W CN2021116523 W CN 2021116523W WO 2022083322 A1 WO2022083322 A1 WO 2022083322A1
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WIPO (PCT)
Prior art keywords
water
inlet pipe
water inlet
water tank
salt
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Application number
PCT/CN2021/116523
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English (en)
French (fr)
Inventor
汪春节
张林峰
林青辉
刘瑶
杨洋
施国志
姚智力
郭名威
鄢贵祥
张宇
张长春
王潇睿
Original Assignee
珠海格力电器股份有限公司
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Filing date
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Application filed by 珠海格力电器股份有限公司 filed Critical 珠海格力电器股份有限公司
Publication of WO2022083322A1 publication Critical patent/WO2022083322A1/zh

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    • 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
    • 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
    • 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
    • A47L15/0021Regulation of operational steps within the washing processes, e.g. optimisation or improvement of operational steps depending from the detergent nature or from the condition of the crockery
    • A47L15/0036Steam or sterilizing phases
    • 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
    • A47L15/4229Water softening arrangements
    • 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
    • A47L15/4238Arrangements to sterilize or disinfect dishes or washing liquids by using electrolytic cells
    • 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
    • A47L15/4246Details of the tub
    • 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
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/46Treatment of water, waste water, or sewage by electrochemical methods
    • C02F1/461Treatment of water, waste water, or sewage by electrochemical methods by electrolysis
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L2601/00Washing methods characterised by the use of a particular treatment
    • A47L2601/06Electrolysed water

Definitions

  • the present disclosure relates to the technical field of electrical equipment, and in particular, to a dishwasher, a control method, device and storage medium for the dishwasher.
  • the embodiments of the present disclosure provide a dishwasher, a control method, device and storage medium for the dishwasher, so as to solve the problem that the dishwasher does not have a disinfection and sterilization function or has a poor disinfection and sterilization function.
  • an embodiment of the present disclosure provides a dishwasher, comprising:
  • the chamber structure is provided with a water tank chamber inside;
  • a salt water generating device communicated with the water tank chamber
  • an electrolysis assembly which is arranged inside the water tank chamber and is suitable for electrolyzing the brine generated by the brine generating device;
  • the inner tank is communicated with the water tank chamber and is suitable for placing tableware to be cleaned.
  • salt water for electrolysis is generated by a salt water generating device, the salt water can be electrolyzed in the water tank to form hypochlorite, and the electrolyte with high oxidizing property enters the inner tank, which is harmful to the tableware in the inner tank. , The bowl basket in the inner tank, the side wall, the fruits and vegetables in the inner tank, etc. are cleaned, so that the full-scale disinfection operation of the inner tank can be realized.
  • the salt water generating device includes a salt water storage device and a water inlet pipe; the water inlet pipe is in communication with the first water inlet of the water tank chamber; the salt water storage device It is suitable for storing salt water and communicates with the second water inlet of the water tank chamber through a water tank salt water inlet pipe.
  • the salt water generating device further includes a softening device located between the water inlet pipe and the water tank chamber, the softening device and the The water inlet pipe is communicated with the softening device water inlet pipe, and communicated with the water tank chamber through the water tank soft water inlet pipe.
  • a first switch is provided on the water inlet pipe/the water inlet pipe of the softening device, and the water inlet pipe of the softening device/the water tank soft water is provided
  • a first flow detection device is arranged on the water inlet pipe.
  • the water inlet of the salt water storage device is communicated with the water inlet pipe through the salt water storage water inlet pipe, and in the salt water storage water inlet pipe/the water inlet pipe
  • a second switch is arranged on the water pipe, and a second flow detection device is arranged on the salt water inlet pipe of the water tank.
  • a first metering pump is provided on the brine water inlet pipe of the water tank.
  • the water inlet pipe is communicated with the softening device water inlet pipe and the brine storage water inlet pipe through a first three-way valve.
  • a second metering pump is provided in a common part of the electrolyte discharge pipe and the brine water inlet pipe of the water tank.
  • a first communication pipeline is provided between the water tank soft water inlet pipe and the water tank salt water inlet pipe, and the first communication pipe is A third switch is provided on the pipeline.
  • the dishwasher further comprises: an air outlet, the air outlet is provided on the water tank chamber.
  • the dishwasher further includes: a controller, the controller is connected to the first switch, the second switch, the third switch, the first flow detection device, the second flow The detection device, the first metering pump, and the second metering pump are connected in communication.
  • the brine storage device is in communication with the softening device, the brine storage device being adapted to activate the softening agent in the softening device.
  • an embodiment of the present disclosure provides a method for controlling a dishwasher.
  • the dishwasher includes a chamber structure, a salt water generating device, an electrolysis assembly, and an inner tank, wherein a water tank is provided inside the chamber structure.
  • the salt water generating device is communicated with the water tank chamber;
  • the electrolysis assembly is arranged inside the water tank chamber and is suitable for electrolyzing the salt water generated by the salt water generating device;
  • the water tank chamber is connected and is suitable for placing tableware to be cleaned. It is characterized in that, the control method of the dishwasher includes:
  • Controlling the electrolysis assembly to electrolyze the brine in the water tank chamber to obtain an electrolyte
  • the electrolyte solution is discharged into the inner tank for sterilization.
  • the salt water generating device is used to inject salt water into the water tank chamber, and the electrolysis assembly is controlled to perform sterilization on the salt water in the water tank chamber.
  • the electrolyte contains highly oxidizing hypochlorite, which can clean the tableware in the inner tank, the baskets in the inner tank, the side walls, the fruits and vegetables in the inner tank, etc., so as to realize All-round disinfection of the inner tank.
  • the salt water generating device when the salt water generating device includes a salt water storage device and a water inlet pipe, the water inlet pipe communicates with the first water inlet of the water tank chamber; the salt water storage device The device is suitable for storing salt water, and when the device is communicated with the second water inlet of the water tank chamber through a water tank salt water inlet pipe, the use of the salt water generating device to inject salt water into the water tank chamber includes:
  • a second preset amount of salt water is injected into the water tank chamber through the water tank chamber salt water inlet pipe.
  • the salt water generating device when the salt water generating device further includes a softening device located between the water inlet pipe and the water tank chamber, the softening device is connected to the The water inlet pipe is communicated with the water inlet pipe of the softening device, and is communicated with the water tank chamber through the water tank soft water inlet pipe.
  • the injection of a first preset amount of water into the water tank chamber through the water inlet pipe includes:
  • a first preset amount of soft water is injected into the water tank chamber through the water inlet pipe, the softening device water inlet pipe and the water tank soft water inlet pipe.
  • the first preset amount is injected into the water tank chamber through the water inlet pipe, the softening device water inlet pipe and the water tank soft water inlet pipe
  • the soft water is injected into the water tank chamber with a second preset amount of salt water through the water tank salt water inlet pipe, including:
  • a first preset amount of soft water is injected into the water tank chamber through the water inlet pipe, the softening device water inlet pipe and the water tank soft water inlet pipe, and a second amount of soft water is injected into the water tank chamber through the water tank brine water inlet pipe
  • a preset amount of brine is carried out at the same time;
  • inject a second preset amount of salt water into the water tank chamber through the water tank salt water inlet pipe and inject the first preset amount into the water tank chamber through the water inlet pipe, the softening device water inlet pipe and the water tank soft water inlet pipe A preset amount of soft water is performed sequentially.
  • the fourth embodiment of the second aspect when a first switch is provided on the water inlet pipe/the water inlet pipe of the softening device and the water inlet pipe 11 of the softening device/the water inlet pipe of the softening device is provided with a first switch
  • the first flow detection device When the first flow detection device is provided on the water tank soft water inlet pipe, the first preset amount of soft water is injected into the water tank chamber through the water inlet pipe, the softening device water inlet pipe and the water tank soft water inlet pipe, including:
  • the amount of water detected by the first flow detection device is acquired, and when the amount of water reaches the first preset amount, the first switch is turned off.
  • the salt water storage water inlet pipe/the A second switch is arranged on the water inlet pipe
  • the second preset amount of salt water is injected into the water tank chamber through the water tank salt water inlet pipe
  • the amount of salt water detected by the second flow detection device is acquired, and when the amount of salt water reaches the second preset amount, the second switch is turned off.
  • the water tank cavity is fed through the water tank salt water inlet pipe to the water tank cavity.
  • the chamber is injected with a second preset amount of saline comprising:
  • the dishwasher when the dishwasher further includes a second metering pump, the second metering pump is arranged between the electrolyte discharge pipe and the water tank salt water inlet pipe.
  • the discharging of the electrolyte into the inner tank includes:
  • the second metering pump is controlled to reverse, and the electrolyte in the water tank chamber is discharged into the inner tank.
  • the method when the water inlet of the salt water storage device is communicated with the water inlet pipe through the salt water storage water inlet pipe and the brine storage water inlet pipe/the When a second switch is provided on the water inlet pipe, after the second preset amount of salt water is injected into the water tank chamber through the water tank salt water inlet pipe 19, the method further includes:
  • the first communication pipe when a first communication pipeline is provided between the water tank soft water inlet pipe and the water tank salt water inlet pipe, the first communication pipe
  • the first communication pipe When a third switch is arranged on the road and a metering pump is arranged on the water tank salt water inlet pipe, the first preset amount of water is injected into the water tank chamber through the softening device water inlet pipe and the water tank soft water inlet pipe.
  • Soft water injecting a second preset amount of salt water into the water tank chamber through the water tank salt water inlet pipe includes:
  • an embodiment of the present disclosure provides a control device for a dishwasher, the dishwasher includes a chamber structure, a salt water generating device, an electrolysis assembly and an inner tank, wherein a water tank is provided inside the chamber structure
  • the salt water generating device is communicated with the water tank chamber;
  • the electrolysis assembly is arranged inside the water tank chamber and is suitable for electrolyzing the salt water generated by the salt water generating device;
  • the water tank chamber is connected and suitable for placing tableware to be cleaned, and it is characterized in that the control device of the dishwasher includes:
  • a pretreatment module when receiving a disinfection instruction, injecting saline into the tank chamber using the saline generating device;
  • an electrolysis module configured to control the electrolysis assembly to electrolyze the solution in the water tank chamber to obtain an electrolyte
  • the sterilization module when the electrolysis is completed, discharges the electrolyte into the inner tank for sterilization.
  • embodiments of the present disclosure provide a computer-readable storage medium storing computer instructions, the computer instructions being configured to cause the computer to execute the second aspect or the second aspect The control method of the washing machine described in any one of the embodiments of .
  • Fig. 1 is the first concrete structure schematic diagram of dishwasher
  • FIG. 2 is a schematic diagram of a second specific structure of the dishwasher
  • FIG 3 is an enlarged view of the dishwasher shown in Figure 1;
  • Fig. 4 is an enlarged view of the dishwasher shown in Fig. 2;
  • FIG. 5 is a schematic diagram of a third specific structure of the dishwasher.
  • FIG. 6 is a schematic flowchart of a method for controlling a dishwasher in Embodiment 2 of the present disclosure
  • FIG. 7 is a schematic structural diagram of a dishwasher control device according to Embodiment 3 of the present disclosure.
  • an embodiment of the present disclosure provides a dishwasher.
  • the dishwasher includes a chamber structure, a salt water generating device, an electrolysis assembly 17 and an inner tank 1, wherein a water tank chamber is arranged inside the chamber structure; the salt water generating device is communicated with the water tank chamber; the electrolysis The assembly 17 is arranged inside the water tank chamber, and is suitable for electrolyzing the salt water generated by the salt water generating device; the inner tank 1 communicates with the water tank chamber and is suitable for placing tableware to be washed.
  • the chamber structure itself is not limited too much: as an embodiment, the chamber structure itself can adopt a water tank; as another embodiment, the chamber structure itself adopts the integration of the respirator and the water tank structure.
  • the chamber structure itself when the chamber structure itself is a water tank, the salt water generated by the salt water generating device will enter the water tank; when the chamber structure adopts the integrated structure of the respirator and the water tank, the salt water generated by the salt water generating device will enter the breathing apparatus. in the water tank inside the appliance.
  • the structure of the electrolysis assembly 17 itself is not limited, as long as the electrolysis operation of the salt water itself can be realized. Meanwhile, the installation method of the electrolysis assembly 17 in the water tank or the respirator is not limited too much, as long as stable installation is achieved.
  • the electrolysis assembly 17 is provided with at least a pair of electrolytic sheets, and the pair of electrolytic sheets are respectively connected to the positive and negative electrodes of the power supply. of disinfectant.
  • Electrolyte itself is made of titanium material, which is extremely inert and corrosion-resistant, and then a thinner coating of more inert and corrosion-resistant ruthenium and iridium materials is applied to the outer layer of titanium electrolyzer, which can effectively reduce or even avoid
  • Other metal materials such as stainless steel, copper, etc.
  • the dishwasher further includes a box body, the cavity structure acts on the box body, and the box body includes an inner container 1 and a door suitable for closing the inner container 1, so
  • the chamber structure is suitable for acting on at least one of the inner container 1 and the door body. That is to say, the water tank can be directly arranged on the inner tank 1, or the water tank can be arranged on the door body; as other embodiments, the respirator is arranged on the inner tank 1, or the respirator is arranged on the door body. In this embodiment, no matter which setting method is adopted, a waterway connecting between the box body and the chamber structure needs to be arranged;
  • the salt water for electrolysis is generated by the salt water generating device, the salt water can realize the electrolysis of the salt water itself in the water tank, and form high-value hypochlorite ions, and the salt water with high oxidation will enter the inner tank
  • cleaning operations are performed on the tableware in the inner pot 1, the baskets in the inner pot 1, the side walls, the fruits and vegetables in the inner pot 1, etc., so that the all-round disinfection operation of the inner pot 1 can be realized.
  • the working principle of the dishwasher itself is as follows:
  • the structure of the salt water generating device itself is not limited, as long as it is a device capable of generating salt water.
  • the salt water generating device itself may be a structure capable of generating salt water and clean water at the same time.
  • the salt water generating device includes a salt water storage device 9 and a water inlet pipe 6, the water inlet pipe 6 communicates with the first water inlet of the water tank chamber and is configured to provide clean water for the water tank chamber; the salt water storage device 9 is adapted to store salt water, communicates with the second water inlet of the tank chamber through a tank salt water inlet pipe 19, and is arranged to supply the tank chamber with salt water.
  • the salt water generating device further includes a softening device 8 located between the water inlet pipe 6 and the water tank chamber.
  • the softening device 8 and the water inlet pipe 6 are communicated with the water inlet pipe 11 of the softening device and communicate with the water tank chamber. It is communicated through the soft water inlet pipe 18 of the water tank.
  • the concentration of available chlorine in the produced disinfectant is generally 200mg/L-300mg/L.
  • the concentration of salt water in the water tank needs to be within a certain range, which can be referred to as the first concentration range. Therefore, it is necessary to control the amount of soft water and salt water injected into the water tank, so that the first concentration range can be obtained after the soft water and the salt water are mixed in the water tank.
  • a first switch is provided on the water inlet pipe 6/the water inlet pipe 11 of the softening device, and a first switch is provided on the water inlet pipe 11 of the softening device/the soft water inlet pipe of the water tank.
  • the water pipe 18 is provided with a first flow detection device 14 .
  • the water inlet of the salt water storage device 9 is communicated with the water inlet pipe 6 through the salt water storage water inlet pipe 20, and the salt water storage water inlet pipe 20/the water inlet pipe 6 is provided with a second switch, and a second flow detection device 23 is provided on the salt water inlet pipe 19 of the water tank; the following technical solution can also be adopted: a first metering pump 13 is provided on the salt water inlet pipe 19 of the water tank .
  • the water inlet pipe 6 is communicated with the softening device water inlet pipe 11 and the brine storage water inlet pipe 20 through the first three-way valve 10 .
  • the first switch and the second switch are the same switch, that is, the water inlet pipe solenoid valve 7 in Figures 1 to 5 .
  • the second metering pump 25 is disposed in the common part of the electrolyte discharge pipe 15 and the water tank brine water inlet pipe 19. After reversing, the saturated brine is pumped into the water tank and the electrolyte 22 in the water tank is drained to the inner tank 1.
  • the dishwasher further includes a vent hole disposed on the water tank chamber, so as to discharge the gas generated during electrolysis, such as hydrogen gas and chlorine gas, so as to maintain the pressure balance inside the water tank.
  • a vent hole disposed on the water tank chamber, so as to discharge the gas generated during electrolysis, such as hydrogen gas and chlorine gas, so as to maintain the pressure balance inside the water tank.
  • the brine storage device 9 communicates with the softening device 8 , and the brine storage device 9 is adapted to activate the softening agent in the softening device 8 . That is to say, the brine storage device 9 and the softening device 8 together constitute the water softener 12 with a self-activating function.
  • the dishwasher further includes a controller, the controller is connected to the first switch, the second switch, the third switch, the first flow detection device 14 , the second flow detection device 23 and the first metering pump 13 Communication connections.
  • the dishwasher of the embodiment of the present disclosure further includes a basket and tableware 2 , a spray arm 3 , a washing pump 4 and a water cup 5 .
  • salt water for electrolysis is generated by a salt water generating device.
  • the salt water can be electrolyzed in the water tank to form hypochlorite, and the electrolyte 22 with high oxidizing property enters the inner tank 1, which is harmful to the inner tank 1.
  • the tableware in the inner pot 1, the bowl basket, the side wall, the fruits and vegetables in the inner pot 1, etc. are cleaned, so that the all-round disinfection operation of the inner pot 1 can be realized.
  • Embodiment 2 of the present disclosure provides a method for controlling a dishwasher.
  • the dishwasher includes a chamber structure, a salt water generating device, an electrolysis assembly 17 and an inner tank 1, wherein a water tank chamber is provided inside the chamber structure.
  • the salt water generating device is communicated with the water tank chamber;
  • the electrolysis assembly 17 is arranged inside the water tank chamber and is suitable for electrolyzing the salt water generated by the salt water generating device;
  • the chambers of the water tank are connected and are suitable for placing tableware to be cleaned.
  • FIG. 2 is a schematic flowchart of a method for controlling a dishwasher according to Embodiment 2 of the present disclosure. As shown in FIG. 2 , the method for controlling a dishwasher according to Embodiment 2 of the present disclosure includes the following steps:
  • the brine generating device may generate brine for electrolysis.
  • the salt used is NaCl, which is non-toxic and stable in nature, is not prone to deterioration, and is convenient for storage and electrolytic disinfection operations.
  • the structure of the salt water generating device itself is not limited, as long as it is a device capable of generating salt water.
  • the brine generating device itself may be a structure that can accommodate both sodium chloride and clean water.
  • the salt water generating device includes a salt water storage device 9 and a water inlet pipe 6, the water inlet pipe 6 communicates with the first water inlet of the water tank chamber and is configured to provide clean water for the water tank chamber;
  • the salt water storage device 9 is suitable for storing salt water, communicates with the second water inlet of the water tank chamber through a water tank salt water inlet pipe 19, and is configured to provide salt water for the water tank chamber.
  • the concentration of available chlorine in the produced disinfectant is generally 200mg/L-300mg/L.
  • the concentration of salt water in the water tank needs to be within a certain range, which can be referred to as the first concentration range.
  • using the salt water generating device to inject salt water into the water tank chamber includes: injecting a first preset amount of water into the water tank chamber through the water inlet pipe 6; A second preset amount of saline is injected into the tank chamber.
  • the first preset amount of water and the second preset amount of brine can be mixed in the water tank chamber to obtain brine with a first concentration range, thereby ensuring the safety and reliability of electrolysis and the stability of effective content.
  • concentration of the brine stored in the brine storage device 9 is greater than the first concentration range.
  • the brine stored in the brine storage device 9 is saturated brine.
  • the softening device 8 may be used to soften the water added to the water tank. In some areas, the hardness of the water in the external water source is high. The water in the water source is softened by the softening device 8 and then added to the water tank, which can prolong the service life of the electrolysis assembly 17, and can also make the dishwasher treat the cleaning substances. The cleaning effect is cleaner, and it can also prevent the pipes of the dishwasher from being blocked.
  • the salt water generating device further includes a softening device 8 located between the water inlet pipe 6 and the water tank chamber
  • the softening device 8 and the water inlet pipe 6 are communicated with the water inlet pipe 11 of the softening device, and communicate with the water inlet pipe 11 of the softening device.
  • the water tank chamber is communicated through the water tank soft water inlet pipe 18
  • the injection of a first preset amount of water into the water tank chamber through the water inlet pipe 6 includes: the softening device water inlet pipe 11 and the water tank soft water
  • the water inlet pipe 18 injects a first preset amount of soft water into the water tank chamber.
  • the injection sequence of soft water and salt water is not limited. Specifically, a first preset amount of soft water is injected into the water tank chamber through the water inlet pipe 6 , the softening device water inlet pipe 11 and the water tank soft water inlet pipe 18 , and the water tank is fed to the water tank through the water tank brine water inlet pipe 19 .
  • the chamber can be injected with the second preset amount of saline in the following three ways.
  • the first embodiment inject a first preset amount of soft water into the water tank chamber through the water inlet pipe 6 , the softening device water inlet pipe 11 and the water tank soft water inlet pipe 18 and pass the water tank brine water inlet pipe 19
  • the injection of a second preset amount of saline into the tank chamber is performed simultaneously.
  • the second embodiment the first preset amount of soft water is injected into the water tank chamber through the water inlet pipe 6, the softening device water inlet pipe 11 and the water tank soft water inlet pipe 18 and the salt water inlet pipe of the water tank 19
  • the injection of a second preset amount of saline into the tank chamber is performed sequentially.
  • the third embodiment inject a second preset amount of salt water into the water tank chamber through the water tank salt water inlet pipe 19 and send the water to the water tank chamber through the water inlet pipe 6 , the softening device water inlet pipe 11 and the water tank soft water inlet pipe 18
  • the first preset amount of soft water is injected into the water tank chamber sequentially.
  • the first preset amount of soft water is injected into the water tank chamber through the water inlet pipe 6, the softening device water inlet pipe 11 and the water tank soft water inlet pipe 18, including: Turn on the first switch to conduct the water inlet pipe 6 and the water inlet pipe 11 of the softening device.
  • the water pipe 18 is injected into the water tank chamber; the water volume detected by the first flow detection device 14 is obtained, and when the water volume reaches the first preset volume, the first switch is turned off.
  • the salt water storage water inlet pipe 20 As a specific implementation for injecting salt water into the water tank, when the water inlet of the salt water storage device 9 is communicated with the water inlet pipe 6 through the salt water storage water inlet pipe 20, the salt water storage water inlet pipe 20/the water inlet pipe 6 There is a second switch on it, and when a second flow detection device 23 is provided on the water tank salt water inlet pipe 19, the second preset amount of water is injected into the water tank chamber through the water tank salt water inlet pipe 19.
  • the brine includes: opening the second switch to conduct the water inlet pipe 6 and the brine storage inlet pipe 20, and injecting water into the brine storage device 9, and the brine in the brine storage device 9 enters the brine through the water tank.
  • the water pipe 19 is injected into the water tank chamber; the brine amount detected by the second flow detection device 23 is obtained, and when the brine amount reaches the second preset amount, the second switch is turned off.
  • the first metering pump 13 when the first metering pump 13 is provided on the water tank salt water inlet pipe 19, the first metering pump 13 is injected into the water tank chamber through the water tank salt water inlet pipe 19.
  • Two preset amounts of salt water include: turning on the first metering pump 13; acquiring the salt water volume detected by the first metering pump 13, and when the salt water volume reaches the second preset volume, turning off the first metering pump 13 A metering pump 13 .
  • the second pre-treatment is injected into the water tank chamber through the water tank salt water inlet pipe 19 .
  • the method further includes: turning on the second switch to conduct the salt water storage water inlet pipe 20 , and injecting water into the salt water storage device 9 .
  • the above scheme of injecting soft water and salt water into the water tank adopts the method of automatically injecting saturated salt water, and uses a metering pump to extract (preferably a series of pumps such as peristaltic pumps, diaphragm pumps, and plunger pumps) salt water, or use it with water pressure.
  • the high-precision flowmeter performs salt water extraction, which solves the problem of automatic salt water injection during electrolysis operation; through automatic injection, it can eliminate the influence of the amount of salt and the complete dissolution of salt caused by each manual injection of salt, which affects the effect of electrolysis. Problem (available chlorine content cannot be guaranteed).
  • the discharging of the electrolyte 22 into the inner tank 1 includes: controlling the reverse rotation of the first metering pump 13 to discharge the electrolyte 22 in the water tank chamber to In the inner tank 1.
  • the saturated brine can be pumped into the water tank and discharged to the inner tank 1 by the forward and reverse rotation of the water pump.
  • first injecting salt water into the water tank and then injecting soft water the following technical solution can be adopted: when a first connection is provided between the water tank soft water inlet pipe 18 and the water tank salt water inlet pipe 19
  • a third switch is provided on the pipeline, the first communication pipeline, and a metering pump is provided on the salt water inlet pipe 19 of the water tank, the water inlet pipe 11 through the softening device and the soft water inlet pipe 18 of the water tank are connected to each other.
  • the first preset amount of soft water is injected into the water tank chamber, and the second preset amount of salt water is injected into the water tank chamber through the water tank brine water inlet pipe 19 , including: turning on the metering pump; acquiring the metering pump detection When the amount of brine reaches the second preset amount, the metering pump is turned off; the first switch is turned on to conduct the water inlet pipe 11 of the softening device, and water enters the softening device in sequence.
  • the water pipe 11, the softening device 8 and the water tank soft water inlet pipe 18 are injected into the water tank chamber; the water volume detected by the first flow detection device 14 is obtained, and when the water volume reaches the first and third presets When the amount is reached, close the first switch, wherein the third preset amount is the sum of the first preset amount and the second preset amount; open the third switch and the metering pump to make all the The water of the soft water inlet pipe 18 of the water tank flows into the salt water storage device 9 .
  • Electrolyzed water disinfection is to use strong oxidizing substances such as hypochlorite, hypochlorous acid or other ions produced by the re-electrolysis of salt solution to effectively kill bacteria and viruses.
  • the solenoid valve 7 of the water inlet pipe is opened, and the first three-way valve 10 opens the softening device water inlet pipe 11 leading to the softening device 8 (for example, the resin softening chamber), and a certain amount of X
  • the external inlet water is softened by the softening device 8, passes through the first flow detection device 14, and then enters the water tank through the water tank soft water inlet pipe 18.
  • the first metering pump 13 is pumped in the brine storage device 9 (such as a saturated brine cavity).
  • a certain amount of Y saturated brine enters the water tank, and the soft water and saturated brine are mixed together to form brine in the first concentration range.
  • the amount of saturated brine Y should be the minimum value as far as possible under the premise of satisfying the first concentration range.
  • the brine of the first concentration range is electrolyzed, a large amount of gas is generated and discharged through the exhaust port 21 of the water tank. After the electrolysis is completed, the electrolyte 22 is obtained.
  • the solenoid valve 16 of the electrolyte discharge pipe is opened, and the electrolyte 22 is discharged into the inner tank 1. , sterilize the basket and tableware 2 through a predetermined washing program.
  • the solenoid valve 7 of the inlet pipe is opened, and the first three-way valve 10 opens the brine storage inlet pipe 20 leading to the brine storage device 9 to fill the brine storage device 9 with water.
  • the solenoid valve 7 of the water inlet pipe is opened, and the first three-way valve 10 is opened to open the water inlet pipe 11 of the softening device leading to the softening device 8 (for example, the resin softening water chamber), and a certain amount X external water is softened by the softening device 8 and then passes through the first flow detection device 14 and then enters the water tank through the water tank soft water inlet pipe 18.
  • the softening device 8 for example, the resin softening water chamber
  • the first three-way valve 10 opens and leads to the salt water storage device 9 (for example, the brine storage inlet pipe 20 of the saturated brine chamber) is fed into the brine storage device 9, and the saturated brine of a certain amount Z inside it passes through the second flow detection device 23 and then enters the water tank through the water tank brine inlet pipe 19.
  • Soft water Mixed with saturated brine to make brine in the first concentration range. Since the extracted saturated brine is hard water, it will cause certain damage to the electrolysis assembly 17 for long-term use. Therefore, on the premise that the brine meets the requirements of the first concentration range, the amount of saturated brine Z should be minimized as much as possible.
  • the solenoid valve 7 of the water inlet pipe is opened, and the first three-way valve 10 is opened to open the water inlet pipe 11 of the softening device leading to the softening device 8 (for example, the resin softening water chamber), and a certain amount of X external water inlet pipe 11 is opened.
  • the water is softened by the softening device 8, passes through the first flow detection device 14, and then enters the water tank through the water tank soft water inlet pipe 18.
  • the water inlet pipe solenoid valve 7 is closed.
  • the second three-way valve 24 opens the channel leading to the brine storage device 9 (such as the saturated brine cavity), so that the brine water inlet pipe 19 of the water tank is connected, and the second metering pump 25 pumps (the impeller rotates forward) a certain amount X of saturated brine to the water tank In the middle, the second metering pump 25 is turned off, and the soft water is mixed with the saturated brine to prepare the brine in the first concentration range. Since the extracted saturated brine is hard water, it will cause certain damage to the electrolysis assembly 17 for long-term use. Therefore, on the premise that the brine meets the requirements of the first concentration range, the amount of saturated brine Z should be minimized as much as possible.
  • the brine storage device 9 such as the saturated brine cavity
  • the second three-way valve 24 opens the channel leading to the inner tank 1 to conduct the electrolyte discharge pipe 15.
  • the second metering pump 25 discharges the electrolyte 22 into the inner tank 1 (the impeller is reversed), and sterilizes the tableware through a predetermined washing program.
  • the solenoid valve 7 of the inlet pipe is opened, and the first three-way valve 10 opens the brine storage inlet pipe 20 leading to the brine storage device 9 to fill the brine storage device 9 with water.
  • the present disclosure provides a control device for a dishwasher, the dishwasher includes a chamber structure, a salt water generating device, an electrolysis assembly and an inner tank, wherein the chamber structure is internally arranged There is a water tank chamber; the salt water generating device is communicated with the water tank chamber; the electrolysis assembly is arranged inside the water tank chamber, and is suitable for electrolyzing the salt water generated by the salt water generating device; the inner tank It communicates with the water tank chamber and is suitable for placing tableware to be washed.
  • the control device for a dishwasher according to Embodiment 3 of the present disclosure includes: a pretreatment module 30 , an electrolysis module 32 and a disinfection module 34 .
  • the pre-processing module 30 when receiving a disinfection instruction, injects salt water into the water tank chamber by using the salt water generating device.
  • the electrolysis module 32 is configured to control the electrolysis assembly to electrolyze the solution in the water tank chamber to obtain an electrolytic solution.
  • the disinfection module 34 when the electrolysis is completed, discharges the electrolyte into the inner tank for disinfection.
  • control device of the dishwasher can be understood by referring to the corresponding descriptions and effects in the embodiments shown in Figs. 1 to 6 , and details are not repeated here.
  • Embodiments of the present disclosure also provide a dishwasher, which may include a processor and a memory, wherein the processor and the memory may be connected by a bus or in other ways.
  • the processor may be a central processing unit (Central Processing Unit, CPU).
  • the processor can also be other general-purpose processors, digital signal processors (Digital Signal Processor, DSP), application specific integrated circuit (Application Specific Integrated Circuit, ASIC), Field-Programmable Gate Array (Field-Programmable Gate Array, FPGA) or other Chips such as programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, or a combination of the above types of chips.
  • DSP Digital Signal Processor
  • ASIC Application Specific Integrated Circuit
  • FPGA Field-Programmable Gate Array
  • FPGA Field-Programmable Gate Array
  • the memory as a non-transitory computer-readable storage medium, can be configured to store non-transitory software programs, non-transitory computer-executable programs, and modules, such as programs corresponding to the method for controlling a dishwasher in an embodiment of the present disclosure Instructions/modules (eg, preprocessing module 30, electrolysis module 32, and sterilization module 34 described in FIG. 3).
  • the processor executes various functional applications and data processing of the processor by running the non-transitory software programs, instructions and modules stored in the memory, that is, the control method of the dishwasher in the above method embodiment is implemented.
  • the memory may include a storage program area and a storage data area, wherein the storage program area may store an operating system and an application program required by at least one function; the storage data area may store data created by the processor, and the like. Additionally, the memory may include high-speed random access memory, and may also include non-transitory memory, such as at least one magnetic disk storage device, flash memory device, or other non-transitory solid state storage device. In some embodiments, the memory may optionally include memory located remotely from the processor, such remote memory being connectable to the processor via a network. Examples of such networks include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
  • the one or more modules are stored in the memory, and when executed by the processor, execute the control method of the dishwasher in the embodiment shown in FIGS. 1-6 .
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a flash memory (Flash Memory), a hard disk (Hard) Disk Drive, abbreviation: HDD) or solid-state drive (Solid-State Drive, SSD), etc.; the storage medium may also include a combination of the above-mentioned types of memories.

Abstract

一种洗碗机、洗碗机的控制方法、装置及存储介质,其中洗碗机包括腔室结构、盐水发生装置、电解组件(17)和内胆(1),其中腔室结构内部设置有水箱腔室;盐水发生装置与水箱腔室连通;电解组件(17)设置在水箱腔室内部,适于对盐水发生装置生成的盐水进行电解操作;内胆(1)与水箱腔室连通,适于放置待清洗餐具。洗碗机的控制方法包括:当接收到消毒指令时,利用盐水发生装置向水箱腔室注入盐水(S101);控制电解组件(17)对水箱腔室中的盐水进行电解,得到电解液(S102);当电解完成时,将电解液排至内胆(1)中进行消毒(S103)。电解液中包含高氧化性的次氯酸根,可以对内胆中的餐具、内胆中的碗篮、侧壁、内胆中的水果蔬菜等进行清洗操作,从而可以实现对内胆全方位的消毒操作。

Description

一种洗碗机、洗碗机的控制方法、装置及存储介质
本公开要求于2020年10月23日提交中国专利局、申请号为202011148998.1、发明名称为“一种洗碗机、洗碗机的控制方法、装置及存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本公开中。
技术领域
本公开涉及电器设备技术领域,具体涉及一种洗碗机、洗碗机的控制方法、装置及存储介质。
背景技术
目前洗碗机大多数是利用高温进行消毒,所谓高温煮洗消毒实际上只是用温度不高于80摄氏度的热水进行冲洗餐具,达不到真正意义上的高温除菌标准,而且由于洗碗机的冲洗原理,不停反复的冲刷餐具将细菌及病毒等冲洗干净,而不是真正的将细菌及病毒灭活,所以存在冲刷不干净和不彻底的情况,洗碗机内部(管道、缝隙等)长时间放置滋生细菌的情况,产生难闻的异味,严重影响用户的体验和售后评价。
发明内容
有鉴于此,本公开实施例提供了一种洗碗机、洗碗机的控制方法、装置及存储介质,以解决洗碗机不具备消毒杀菌功能或消毒杀菌功能较差的问题。
根据第一方面,本公开实施例提供了一种洗碗机,包括:
腔室结构,内部设置有水箱腔室;
盐水发生装置,与所述水箱腔室连通;
电解组件,设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;
内胆,与所述水箱腔室连通,适于放置待清洗餐具。
本公开实施例提供的洗碗机,通过盐水发生装置产生电解用的盐水,盐水在水箱中电解可以形成次氯酸根,具有高氧化性的电解液进入到内胆中,对内胆中的餐具、内胆中的碗篮、侧壁、内胆中的水果蔬菜等进行清洗操作,从而可以实现对内胆全方位的消毒操作。
结合第一方面,在第一方面第一实施方式中,所述盐水发生装置包括盐水存储装置和进水管;所述进水管与所述水箱腔室的第一进水口连通;所述盐水存储装置适于存储盐水,与所述水箱腔室的第二进水口通过水箱盐水进水管连通。
结合第一方面第一实施方式,在第一方面第二实施方式中,所述盐水发生装置还包括位于所述进水管与所述水箱腔室之间的软化装置,所述软化装置与所述进水管通过软化装置进水管连通,与所述水箱腔室通过水箱软水进水管连通。
结合第一方面第二实施方式,在第一方面第三实施方式中,在所述进水管/所述软化装置进水管上设有第一开关且在所述软化装置进水管/所述水箱软水进水管上设有第一流量检测装置。
结合第一方面第二实施方式,在第一方面第四实施方式中,所述盐水存储装置的进水口与所述进水管通过盐水存储进水管连通,在所述盐水存储进水管/所述进水管上设有第二开关,且在所述水箱盐水进水管上设有第二流量检测装置。
结合第一方面第四实施方式,在第一方面第五实施方式中,在所述水箱盐水进水管上设有第一计量泵。
结合第一方面第四实施方式,在第一方面第六实施方式中,所述进水管与所述软化装置进水管和所述盐水存储进水管通过第一三通阀连通。
结合第一方面,在第一方面第七实施方式中,第二计量泵,所述第二计量泵设置在电解液排出管与所述水箱盐水进水管的公共部分。
结合第一方面第四实施方式,在第一方面第八实施方式中,在所述水箱软水进水管和所述水箱盐水进水管之间设有第一连通管路,且在所述第一连通管路上设有第三开关。
结合第一方面,在第一方面第九实施方式中,洗碗机还包括:排气口,所述排气口设置在所述水箱腔室上。
结合第一方面,在第一方面第十实施方式中,洗碗机还包括:控制器,所述控制器与第一开关、第二开关、第三开关、第一流量检测装置、第二流量检测装置、第一计量泵、第二计量泵通信连接。
结合第一方面,在第一方面第十实施方式中,所述盐水存储装置与所述软化装置连通,所述盐水存储装置适于活化所述软化装置中的软化剂。
根据第二方面,本公开实施例提供了一种洗碗机的控制方法,所述洗碗机包括腔室结构、盐水发生装置、电解组件和内胆,其中所述腔室结构内部设置有水箱腔室;所述盐水发生装置与所述水箱腔室连通;所述电解组件设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆与所述水箱腔室连通,适于放置待清洗餐具,其特征在于,所述洗碗机的控制方法包括:
当接收到消毒指令时,利用所述盐水发生装置向所述水箱腔室注入盐水;
控制所述电解组件对所述水箱腔室中的盐水进行电解,得到电解液;
当所述电解完成时,将所述电解液排至所述内胆中进行消毒。
本公开实施例提供的洗碗机的控制方法,当接收到消毒指令时,利用所述盐水发生装置向所述水箱腔室注入盐水,控制所述电解组件对所述水箱腔室中的盐水进行电解,得到电解液,电解液中包含高氧化性的次氯酸根,可以对内胆中的餐具、内胆中的碗篮、侧壁、内胆中的水果蔬菜等进行清洗操作,从而可以实现对内胆全方位的消毒操作。
结合第二方面,在第二方面第一实施方式中,当所述盐水发生装置包括盐水存储装置和进水管,所述进水管与所述水箱腔室的第一进水口连通;所述盐水存储装置适于存储盐水,与所述水箱腔室的第二进水口通过水箱盐水进水管连通时,所述利用所述盐水发生装置向所述水箱腔室注入盐水包括:
通过所述进水管向所述水箱腔室注入第一预设量的水;
通过所述水箱腔室盐水进水管向所述水箱腔室注入第二预设量的盐水。
结合第二方面第一实施方式,在第二方面第二实施方式中,当所述盐水发生装置还包括位于所述进水管与所述水箱腔室之间的软化装置,所述软化装置与所述进水管通过软化装置进水管连通,与所述水箱腔室通过水箱软水进水管连通,所述通过所述进水管向所述水箱腔室注入第一预设量的水包括:
通过所述进水管、所述软化装置进水管和所述水箱软水进水管向所述水箱腔室注入第一预设量的软水。
结合第二方面第二实施方式,在第二方面第三实施方式中,所述通过所述进水管、所述软化装置进水管和水箱软水进水管向所述水箱腔室注入第一预设量的软水,通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水包括:
通过所述进水管、所述软化装置进水管和所述水箱软水进水管向所述水箱腔室注入第一预设量的软水和通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水同时进行;
或,通过所述进水管、所述软化装置进水管和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水和通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水依次进行;
或,通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水和通过所述进水管、软化装置进水管和所述水箱软水进水管向所述水箱腔室注入第一预设量的软水依次进行。
结合第二方面第二实施方式,在第二方面第四实施方式中,当在所述进水管/所述软化装置进水管上设有第一开关且在所述软化装置进水管11/所述水箱软水进水管上设有第一流量检测装置时,所述通过所述进水管、软化装置进水管和所述水箱软水进水管向所述水箱腔室注入第一预设量的软水,包括:
打开所述第一开关导通所述进水管和所述软化装置进水管,水依次经过所述进水管、所述软化装置进水管、所述软化装置和所述水箱软水进水管注入所述水箱腔室;
获取所述第一流量检测装置检测到的水量,当所述水量达到所述第一预设量时,关闭所述第一开关。
结合第二方面第二实施方式,在第二方面第五实施方式中,当所述盐水存储装置的进水口与所述进水管通过盐水存储进水管连通,在所述盐水存储进水管/所述进水管上设有第二开关,且在所述水箱盐水进水管上设有第二流量检测装置时,所述通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水包括:
打开所述第二开关导通所述进水管和所述盐水存储进水管,将水注入所述盐水存储装置,所述盐水存储装置中的盐水通过所述水箱盐水进水管注入所述水箱腔室;
获取所述第二流量检测装置检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述第二开关。
结合第二方面第二实施方式,在第二方面第六实施方式中,当在所述水箱盐水进水管上设有第一计量泵时,所述通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水包括:
打开所述第一计量泵;
获取所述第一计量泵检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述第一计量泵。
结合第二方面第二实施方式,在第二方面第七实施方式中,当洗碗机还包括第二计量泵,所述第二计量泵设置在电解液排出管与所述水箱盐水进水管的公共部分,所述将所述电解液排至所述内胆中包括:
控制所述第二计量泵反转,将所述水箱腔室中的电解液排至所述内胆中。
结合第二方面第二实施方式,在第二方面第八实施方式中,当所述盐水存储装置的进水口与所述进水管通过盐水存储进水管连通且在所述盐水 存储进水管/所述进水管上设有第二开关时,在通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水之后,还包括:
打开所述第二开关导通所述进水管和所述盐水存储进水管,将水注入所述盐水存储装置。
结合第二方面第二实施方式,在第二方面第九实施方式中,当在所述水箱软水进水管和所述水箱盐水进水管之间设有第一连通管路、所述第一连通管路上设有第三开关且在所述水箱盐水进水管上设有计量泵时,所述通过所述软化装置进水管和所述水箱软水进水管向所述水箱腔室注入第一预设量的软水,通过所述水箱盐水进水管向所述水箱腔室注入第二预设量的盐水包括:
打开所述计量泵;
获取所述计量泵检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述计量泵;
打开所述第一开关导通所述软化装置进水管,水依次经过所述软化装置进水管、所述软化装置和所述水箱软水进水管注入所述水箱腔室;
获取所述第一流量检测装置检测到的水量,当所述水量达到所述第一第三预设量时,关闭所述第一开关,其中所述第三预设量为所述第一预设量与所述第二预设量的和;
打开所述第三开关和所述计量泵使所述水箱软水进水管的水流入所述盐水存储装置。
根据第三方面,本公开实施例提供了一种洗碗机的控制装置,所述洗碗机包括腔室结构、盐水发生装置、电解组件和内胆,其中所述腔室结构内部设置有水箱腔室;所述盐水发生装置与所述水箱腔室连通;所述电解组件设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆与所述水箱腔室连通,适于放置待清洗餐具,其特征在于,洗碗机的控制装置包括:
预处理模块,当接收到消毒指令时,利用所述盐水发生装置向所述水 箱腔室注入盐水;
电解模块,被设置为控制所述电解组件对所述水箱腔室中的溶液进行电解,得到电解液;
消毒模块,当所述电解完成时,将所述电解液排至所述内胆中进行消毒。
根据第四方面,本公开实施例提供了一种计算机可读存储介质,所述计算机可读存储介质存储有计算机指令,所述计算机指令被设置为使所述计算机执行第二方面或者第二方面的任意一种实施方式中所述的洗衣机的控制方法。
附图说明
通过参考附图会更加清楚的理解本公开的特征和优点,附图是示意性的而不应理解为对本公开进行任何限制,在附图中:
图1为洗碗机第一种具体结构示意图;
图2为洗碗机第二种具体结构示意图;
图3为图1所示洗碗机的放大图;
图4为图2所示洗碗机的放大图;
图5为洗碗机第三种具体结构示意图;
图6为本公开实施例2洗碗机控制方法的流程示意图;
图7为本公开实施例3洗碗机控制装置的结构示意图;
附图说明:
1、内胆;2、碗篮及餐具;3、喷臂;4、洗涤泵;5、水杯;6、进水管;7、进水管电磁阀;8、软化装置;9、盐水存储装置;10、第一三通阀;11、软化装置进水管;12、软水器;13、第一计量泵;14、第一流量检测装置;15、电解液排出管;16、电解液排出管电磁阀;17、电解组件;18、水箱软水进水管;19、水箱盐水进水管;20、盐水存储进水管;21、排气口;22、电解液;23、第二流量检测装置;24、第二三通阀;25、第二计量泵;30、预处理模块;32、电解模块;34、消毒模块。
具体实施方式
下面将结合附图对本公开的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
在本公开的描述中,需要说明的是,术语“中心”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本公开和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本公开的限制。此外,术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本公开的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连通”应做广义理解,例如,可以是固定连通,也可以是可拆卸连通,或一体地连通;可以是机械连通,也可以是电连通;可以是直接相连,也可以通过中间媒介间接相连,还可以是两个元件内部的连通,可以是无线连通,也可以是有线连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本公开中的具体含义。
此外,下面所描述的本公开不同实施方式中所涉及的技术特征只要彼此之间未构成冲突就可以相互结合。
实施例1
如图1至图5所示,本公开实施例提供了一种洗碗机。该洗碗机包括腔室结构、盐水发生装置、电解组件17和内胆1,其中所述腔室结构内部设置有水箱腔室;所述盐水发生装置与所述水箱腔室连通;所述电解组件17设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆1与所述水箱腔室连通,适于放置待清洗餐具。
在本公开实施例中,对于腔室结构自身不进行过多限定:作为一种实施方式,腔室结构自身可以采用水箱;作为另一种实施方式,腔室结构自 身采用呼吸器与水箱的一体化结构。相对应的,当腔室结构自身为水箱时,盐水发生装置产生的盐水将进入到水箱中;当腔室结构采用呼吸器与水箱的一体化结构时,盐水发生装置产生的盐水将进入到呼吸器内部的水箱中。
在本公开实施例中,对电解组件17自身的结构不进行限定,只要是可以实现对盐水自身的电解操作即可。同时,对电解组件17在水箱或者呼吸器中的安装方式不进行过多限定,只要实现稳定安装即可。示例的,电解组件17中设置有至少一对电解片,一对电解片分别与电源的正负极连接,在通电状态下可对水箱中的氯化钠溶液进行电解,从而产生具有次氯酸根的消毒水。电解片本身采用本身具有极其惰性和耐腐蚀性的钛材料,然后在钛电解片外层覆盖一层较薄的更加惰性和耐腐蚀的钌、铱材料的涂层,如此可有效的降低甚至避免电解片使用其他金属材料(如:不锈钢、铜等)而产生腐蚀失效的问题。
在本公开实施例中,洗碗机还包括箱体,所述腔室结构作用在所述箱体上,所述箱体包括内胆1及适于封闭所述内胆1的门体,所述腔室结构适于作用在所述内胆1和所述门体的至少一个上。也就是说,水箱可以直接设置在内胆1上,或者水箱设置在门体上;作为其他的实施方式,呼吸器设置在内胆1上,或者呼吸器设置在门体上。本实施例中,不管采用哪种设置方式,均需要设置联通箱体与腔室结构之间的水路;
在本公开实施例中,通过盐水发生装置产生电解用的盐水,盐水在水箱中可以实现对盐水自身的电解,并形成高价的次氯酸盐离子,具有高氧化性的盐水将进入到内胆1中,对内胆1中的餐具、内胆1中的碗篮、侧壁、内胆1中的水果蔬菜等进行清洗操作,从而可以实现对内胆1全方位的消毒操作。
本公开实施例中,洗碗机自身的工作原理如下:
阴极:2Cl --2e=Cl 2
阳极:2H 2O+2e -=H 2+2OH -
总反应:2Cl -+2H 2O=H 2+Cl 2+2OH -
氯气与水之间将发生歧化反应:Cl 2+H 2O=HCl+HClO,产生的HClO自身 具有一定氧化性,从而实现对细菌和病毒的杀灭作用。
本公开实施例中,对盐水发生装置自身的结构不进行限定,只要是能够产生盐水的设备即可。作为可选的实施方式,盐水发生装置自身可以是可同时产生盐水和清水的结构。例如,所述盐水发生装置包括盐水存储装置9和进水管6,所述进水管6与所述水箱腔室的第一进水口连通,被设置为为水箱腔室提供清水;所述盐水存储装置9适于存储盐水,与所述水箱腔室的第二进水口通过水箱盐水进水管19连通,被设置为为水箱腔室提供盐水。
在某些地区,外界水源中的水硬度偏高,水源中的水经过软化装置8进行软化处理后加入到水箱中,可以延长电解组件17的使用寿命。因此盐水发生装置还包括位于所述进水管6与所述水箱腔室之间的软化装置8,所述软化装置8与所述进水管6通过软化装置进水管11连通,与所述水箱腔室通过水箱软水进水管18连通。
为了达到更好的杀菌和消毒效果,所产生的消毒液中有效氯浓度含量一般为200mg/L-300mg/L。为了保证消毒液中的有效氯含量保持在上述范围内,需要水箱中盐水的浓度在某一范围内,可称为第一浓度范围。因此需要对控制注入水箱中的软水量和盐水量,由此可使在水箱中软水和盐水混合后得到第一浓度范围。
为了确定注入水箱中的软水量,可以采用如下技术方案:在所述进水管6/所述软化装置进水管11上设有第一开关且在所述软化装置进水管11/所述水箱软水进水管18上设有第一流量检测装置14。
为了确定注入水箱的盐水量,可以采用如下技术方案:所述盐水存储装置9的进水口与所述进水管6通过盐水存储进水管20连通,在所述盐水存储进水管20/所述进水管6上设有第二开关,且在所述水箱盐水进水管19上设有第二流量检测装置23;还可以采用如下技术方案:在所述水箱盐水进水管19上设有第一计量泵13。需要说明的是,所述进水管6与所述软化装置进水管11和所述盐水存储进水管20通过第一三通阀10连通。当第一开关和第二开关均设置在进水管6上时,所述第一开关和第二开关为同一 开关,即图1~图5中的进水管电磁阀7。
作为一个具体的实施方式,还包括第二计量泵25,所述第二计量泵25设置在电解液排出管15与所述水箱盐水进水管19的公共部分,可以通过第二加量泵的正反转完成饱和盐水抽入水箱和将水箱中的电解液22排至内胆1。
作为具体的实施方式,洗碗机还包括设置在水箱腔室上的排气孔,以将排出电解时产生的气体,例如氢气、氯气,从而维持水箱内部的压力平衡。
作为具体的实施方式,所述盐水存储装置9与所述软化装置8连通,所述盐水存储装置9适于活化所述软化装置8中的软化剂。也就是说,盐水存储装置9和软化装置8共同构成具有自活化功能的软水器12。
在本公开实施例中,洗碗机还包括控制器,所述控制器与第一开关、第二开关、第三开关、第一流量检测装置14、第二流量检测装置23和第一计量泵13通信连接。
如图1~图5所示,本公开实施例的洗碗机除上述部件外,还包括碗篮及餐具2、喷臂3、洗涤泵4和水杯5。
本公开实施例提供的洗碗机,通过盐水发生装置产生电解用的盐水,盐水在水箱中电解可以形成次氯酸根,具有高氧化性的电解液22进入到内胆1中,对内胆1中的餐具、内胆1中的碗篮、侧壁、内胆1中的水果蔬菜等进行清洗操作,从而可以实现对内胆1全方位的消毒操作。
实施例2
本公开实施例2提供了一种洗碗机的控制方法,所述洗碗机包括腔室结构、盐水发生装置、电解组件17和内胆1,其中所述腔室结构内部设置有水箱腔室;所述盐水发生装置与所述水箱腔室连通;所述电解组件17设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆1与所述水箱腔室连通,适于放置待清洗餐具。图2为本公开实施例2洗碗机控制方法的流程示意图,如图2所示,本公开实施例2的洗碗机的控制方法包括以下步骤:
S101:当接收到消毒指令时,利用盐水发生装置向水箱腔室注入盐水。
在本公开实施例中,盐水发生装置可以产生电解用的盐水。示例的,采用的盐为NaCl,其自身无毒且性质稳定,不易发生变质,方便进行保存及进行电解消毒操作。
本公开实施例中,对盐水发生装置自身的结构不进行限定,只要是能够产生盐水的设备即可。在一些实施方式中,盐水发生装置自身可以是可同时放入氯化钠和清水的结构。在一些实施方式中,所述盐水发生装置包括盐水存储装置9和进水管6,所述进水管6与所述水箱腔室的第一进水口连通,被设置为为水箱腔室提供清水;所述盐水存储装置9适于存储盐水,与所述水箱腔室的第二进水口通过水箱盐水进水管19连通,被设置为为水箱腔室提供盐水。
一般情况下,为了达到更好的杀菌和消毒效果,所产生的消毒液中有效氯浓度含量一般为200mg/L-300mg/L。为了保证消毒液中的有效氯含量保持在上述范围内,需要水箱中盐水的浓度在某一范围内,可称为第一浓度范围。基于此,利用所述盐水发生装置向所述水箱腔室注入盐水包括:通过所述进水管6向所述水箱腔室注入第一预设量的水;通过所述水箱腔室盐水进水管6向所述水箱腔室注入第二预设量的盐水。由此可以将第一预设量的水和第二预设量的盐水在水箱腔室中混合得到第一浓度范围的盐水,从而可以保证电解的安全可靠性及有效率含量的稳定性。可以理解的,所述盐水存储装置9中存储的盐水的浓度大于第一浓度范围,示例的,所述盐水存储装置9中存储的盐水为饱和盐水。
在一些实施方式中,在本公开实施例中,可以利用软化装置8对加入到水箱中的水进行软化处理。在某些地区,外界水源中的水硬度偏高,水源中的水经过软化装置8进行软化处理后加入到水箱中,可以延长电解组件17的使用寿命,并且还可以使得洗碗机对待清洗物质的清洗效果更洁净,还可以使得洗碗机的管道不宜堵塞。具体的,当所述盐水发生装置还包括位于所述进水管6与所述水箱腔室之间的软化装置8,所述软化装置8与所述进水管6通过软化装置进水管11连通,与所述水箱腔室通过水箱软水进 水管18连通,所述通过所述进水管6向所述水箱腔室注入第一预设量的水包括:通过所述软化装置进水管11和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水。通过在洗碗机中加入软化装置8,解决了电解盐水时不能使用硬水的问题。
需要说明的是,在本公开实施例中,对于软水和盐水的注入顺序不做限定。具体的,通过所述进水管6、所述软化装置进水管11和水箱软水进水管18向所述水箱腔室注入第一预设量的软水,通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水可以采用以下三种实施方式。
第一种实施方式:通过所述进水管6、所述软化装置进水管11和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水和通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水同时进行。
第二种实施方式:通过所述进水管6、所述软化装置进水管11和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水和通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水依次进行。
第三种实施方式:通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水和通过所述进水管6、软化装置进水管11和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水依次进行。
作为向水箱注入软水的一种具体实施方式,当在所述进水管6/所述软化装置进水管11上设有第一开关且在所述软化装置进水管11/所述水箱软水进水管18上设有第一流量检测装置14时,所述通过所述进水管6、软化装置进水管11和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水,包括:打开所述第一开关导通所述进水管6和所述软化装置进水管11,水依次经过所述进水管6、所述软化装置进水管11、所述软化装置8和所述水箱软水进水管18注入所述水箱腔室;获取所述第一流量检测装置14检测到的水量,当所述水量达到所述第一预设量时,关闭所述第一开关。
作为向水箱注入盐水的一种具体实施方式,当所述盐水存储装置9的进水口与所述进水管6通过盐水存储进水管20连通,在所述盐水存储进水 管20/所述进水管6上设有第二开关,且在所述水箱盐水进水管19上设有第二流量检测装置23时,所述通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水包括:打开所述第二开关导通所述进水管6和所述盐水存储进水管20,将水注入所述盐水存储装置9,所述盐水存储装置9中的盐水通过所述水箱盐水进水管19注入所述水箱腔室;获取所述第二流量检测装置23检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述第二开关。
作为向水箱注入盐水的另一种具体实施方式,当在所述水箱盐水进水管19上设有第一计量泵13时,所述通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水包括:打开所述第一计量泵13;获取所述第一计量泵13检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述第一计量泵13。在一些实施方式中,当所述盐水存储装置9的进水口与所述进水管6通过盐水存储进水管20连通时,在通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水之后,还包括:打开所述第二开关导通所述盐水存储进水管20,将水注入所述盐水存储装置9。
上述向水箱中注入软水和盐水的方案,采用自动投放饱和食盐水的方式,使用计量泵泵抽取(优选的蠕动泵、隔膜泵、柱塞泵等一系列泵)盐水,或者利用水压配合使用高精度的流量计进行盐水抽取,解决了电解操作时盐水自动投放的问题;通过自动投放,可以消除每次手动投放盐带来的因盐量多量少和盐溶解是否完全,影响电解效果的问题(有效氯含量不能得到保证)。
作为向内胆1注入电解液22的一种具体实施方式,当所述内胆1与所述水箱腔室的出水口通过电解液排出管15连通且所述第一计量泵13设置在所述电解液排出管15上时,所述将所述电解液22排至所述内胆1中包括:控制所述第一计量泵13反转,将所述水箱腔室中的电解液22排至所述内胆1中。
上述在电解液排出管15上设置第二计量泵25(例如水泵)的方案,可以利用水泵的正反转即可将饱和盐水抽入水箱和排至内胆1。
示例的,作为向水箱先注入盐水再注入软水的一种具体的实施方式,可以采用以下技术方案:当在所述水箱软水进水管18和所述水箱盐水进水管19之间设有第一连通管路、所述第一连通管路上设有第三开关且在所述水箱盐水进水管19上设有计量泵时,所述通过所述软化装置进水管11和所述水箱软水进水管18向所述水箱腔室注入第一预设量的软水,通过所述水箱盐水进水管19向所述水箱腔室注入第二预设量的盐水包括:打开所述计量泵;获取所述计量泵检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述计量泵;打开所述第一开关导通所述软化装置进水管11,水依次经过所述软化装置进水管11、所述软化装置8和所述水箱软水进水管18注入所述水箱腔室;获取所述第一流量检测装置14检测到的水量,当所述水量达到所述第一第三预设量时,关闭所述第一开关,其中所述第三预设量为所述第一预设量与所述第二预设量的和;打开所述第三开关和所述计量泵使所述水箱软水进水管18的水流入所述盐水存储装置9。
S102:控制电解组件17对水箱腔室中的盐水进行电解,得到电解液22。
示例的,可以在电极片上通入12V~24V的直流电压,然后在水箱中电解10min-40min(根据加盐量和电流密度大小的不同,电解时间不同),最终会产生所需有效氯浓度的消毒液。采用电解水消毒是利用盐溶液再电解后产生的如次氯酸盐、次氯酸或其他离子等具有强氧化性的物质对细菌和病毒进行强效灭杀。
S103:当电解完成时,将电解液22排至内胆1中进行消毒。
盐水在水箱中电解后可以形成高价的次氯酸盐根,具有高氧化性的电解液22将通过溢流口和贯穿孔进入到内胆1中,对内胆1中的餐具、内胆1中的碗篮、侧壁等、内胆1中的水果蔬菜等进行清洗操作,从而可以实现对内胆1全方位的消毒操作。
为了更加详细的说明洗碗机的控制方法,与上述图1~图5相对应,下面分别给出洗碗机的三种具体的控制方法。
如图1和图3所示,在准备进行电解程序时,进水管电磁阀7打开,第一三通阀10打开通向软化装置8(例如树脂软水腔)的软化装置进水管 11,一定量X外部进水通过软化装置8被软化后经过第一流量检测装置14再通过水箱软水进水管18后进入水箱,与此同时第一计量泵13在盐水存储装置9(例如饱和盐水腔)中抽取一定量Y的饱和盐水进入水箱,软水与饱和盐水混合在一起配成第一浓度范围的盐水。因抽取的饱和盐水为硬水,对电解组件17长期使用有一定的损害,所以在满足第一浓度范围的前提下,饱和盐水Y的量尽量取最小值。当第一浓度范围的盐水被电解时产生大量的气体通过水箱的排气口21排出,电解完成后得到电解液22,电解液排出管电磁阀16打开,将电解液22排至内胆1中,通过预定的洗涤程序对碗篮及餐具2进行消毒。当盐水存储装置9中的盐水被抽取一定量后,进水管电磁阀7打开,第一三通阀10打开通向盐水存储装置9的盐水存储进水管20向盐水存储装置9补满水。
如图2和图4所示,在准备进行电解程序时,进水管电磁阀7打开,第一三通阀10打开通向软化装置8(例如树脂软水腔)的软化装置进水管11,一定量X外部进水通过软化装置8被软化后经过第一流量检测装置14再通过水箱软水进水管18后进入水箱,当软水全部进入水箱后,第一三通阀10打开通向盐水存储装置9(例如饱和盐水腔)的盐水存储进水管20,向盐水存储装置9中通入水,将其中内部的一定量Z的饱和盐水通过第二流量检测装置23后再通过水箱盐水进水管19进入水箱,软水与饱和盐水混合在一起配成第一浓度范围的盐水。因抽取的饱和盐水为硬水,对电解组件17长期使用有一定的损害,所以盐水在满足第一浓度范围要求的前提下,饱和盐水Z的量尽量取最小值。满足第一浓度范围要求的电解液22被电解时产生大量的气体通过水箱的排气口21排出,电解完成后,电解液排出管电磁阀16打开,将电解排至内胆1中,通过预定的洗涤程序对餐具进行消毒。
如图5所示,在准备进行电解程序时,进水管电磁阀7打开,第一三通阀10打开通向软化装置8(例如树脂软水腔)的软化装置进水管11,一定量X外部进水通过软化装置8被软化后经过第一流量检测装置14再通过水箱软水进水管18后进入水箱,当软水全部进入水箱后,进水管电磁阀7 关闭。第二三通阀24打开通向盐水存储装置9(例如饱和盐水腔)的通道,使得水箱盐水进水管19导通,第二计量泵25抽取(叶轮正转)一定量X的饱和盐水到水箱中,关闭第二计量泵25,软水与饱和盐水混合在一起配成第一浓度范围的盐水。因抽取的饱和盐水为硬水,对电解组件17长期使用有一定的损害,所以盐水在满足第一浓度范围要求的前提下,饱和盐水Z的量尽量取最小值。满足第一浓度要求的盐水被电解时产生大量的气体通过水箱的排气口21排出,电解完成后,第二三通阀24打开通向内胆1的通道使电解液排出管15导通,第二计量泵25将电解液22排出至内胆1中(叶轮反转),通过预定的洗涤程序对餐具进行消毒。当盐水存储装置9中的盐水被抽取一定量后,进水管电磁阀7打开,第一三通阀10打开通向盐水存储装置9的盐水存储进水管20向盐水存储装置9补满水。
实施例3
与本公开实施例2相对应,本公开提供了一种洗碗机的控制装置,所述洗碗机包括腔室结构、盐水发生装置、电解组件和内胆,其中所述腔室结构内部设置有水箱腔室;所述盐水发生装置与所述水箱腔室连通;所述电解组件设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆与所述水箱腔室连通,适于放置待清洗餐具。图7为本公开实施例3洗碗机控制装置的结构示意图,如图7所示,本公开实施例3的洗碗机的控制装置包括:预处理模块30、电解模块32及消毒模块34。
具体的,预处理模块30,当接收到消毒指令时,利用所述盐水发生装置向所述水箱腔室注入盐水。
电解模块32,被设置为控制所述电解组件对所述水箱腔室中的溶液进行电解,得到电解液。
消毒模块34,当所述电解完成时,将所述电解液排至所述内胆中进行消毒。
上述洗碗机的控制装置具体细节可以对应参阅图1至图6所示的实施 例中对应的相关描述和效果进行理解,此处不再赘述。
实施例4
本公开实施例还提供了一种洗碗机,该洗碗机可以包括处理器和存储器,其中处理器和存储器可以通过总线或者其他方式连接。
处理器可以为中央处理器(Central Processing Unit,CPU)。处理器还可以为其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等芯片,或者上述各类芯片的组合。
存储器作为一种非暂态计算机可读存储介质,可被设置为存储非暂态软件程序、非暂态计算机可执行程序以及模块,如本公开实施例中的洗碗机的控制方法对应的程序指令/模块(例如,图3所述的预处理模块30、电解模块32及消毒模块34)。处理器通过运行存储在存储器中的非暂态软件程序、指令以及模块,从而执行处理器的各种功能应用以及数据处理,即实现上述方法实施例中的洗碗机的控制方法。
存储器可以包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需要的应用程序;存储数据区可存储处理器所创建的数据等。此外,存储器可以包括高速随机存取存储器,还可以包括非暂态存储器,例如至少一个磁盘存储器件、闪存器件、或其他非暂态固态存储器件。在一些实施例中,存储器可选包括相对于处理器远程设置的存储器,这些远程存储器可以通过网络连接至处理器。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。
所述一个或者多个模块存储在所述存储器中,当被所述处理器执行时,执行如图1-6所示实施例中的洗碗机的控制方法。
上述洗碗机具体细节可以对应参阅图1至图6所示的实施例中对应的相关描述和效果进行理解,此处不再赘述。
本领域技术人员可以理解,实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)、随机存储记忆体(Random Access Memory,RAM)、快闪存储器(Flash Memory)、硬盘(Hard Disk Drive,缩写:HDD)或固态硬盘(Solid-State Drive,SSD)等;所述存储介质还可以包括上述种类的存储器的组合。
虽然结合附图描述了本公开的实施例,但是本领域技术人员可以在不脱离本公开的精神和范围的情况下作出各种修改和变型,这样的修改和变型均落入由所附权利要求所限定的范围之内。

Claims (24)

  1. 一种洗碗机,包括:
    腔室结构,内部设置有水箱腔室;
    盐水发生装置,与所述水箱腔室连通;
    电解组件(17),设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;
    内胆(1),与所述水箱腔室连通,适于放置待清洗餐具。
  2. 根据权利要求1所述的洗碗机,其中,所述盐水发生装置包括盐水存储装置(9)和进水管(6);
    所述进水管(6)与所述水箱腔室的第一进水口连通;
    所述盐水存储装置(9)适于存储盐水,与所述水箱腔室的第二进水口通过水箱盐水进水管(19)连通。
  3. 根据权利要求2所述的洗碗机,其中,所述盐水发生装置还包括位于所述进水管(6)与所述水箱腔室之间的软化装置(8),所述软化装置(8)与所述进水管(6)通过软化装置进水管(11)连通,与所述水箱腔室通过水箱软水进水管(18)连通。
  4. 根据权利要求3所述的洗碗机,其中:在所述进水管(6)/所述软化装置进水管(11)上设有第一开关且在所述软化装置进水管(11)/所述水箱软水进水管(18)上设有第一流量检测装置(14)。
  5. 根据权利要求3所述的洗碗机,其中:所述盐水存储装置(9)的进水口与所述进水管(6)通过盐水存储进水管(20)连通,在所述盐水存储进水管(20)/所述进水管(6)上设有第二开关,且在所述水箱盐水进水管(19)上设有第二流量检测装置(23)。
  6. 根据权利要求5所述的洗碗机,其中:在所述水箱盐水进水管(19)上设有第一计量泵(13)。
  7. 根据权利要求5所述的洗碗机,其中,所述进水管(6)与所述软化装置进水管(11)和所述盐水存储进水管(20)通过第一三通阀(10) 连通。
  8. 根据权利要求1所述的洗碗机,其中,还包括第二计量泵(25),所述第二计量泵(25)设置在电解液排出管(15)与所述水箱盐水进水管(19)的公共部分。
  9. 根据权利要求5所述的洗碗机,其中,在所述水箱软水进水管(18)和所述水箱盐水进水管(19)之间设有第一连通管路,且在所述第一连通管路上设有第三开关。
  10. 根据权利要求1所述的洗碗机,其中,还包括:排气口(21),所述排气口(21)设置在所述水箱腔室上。
  11. 根据权利要求1所述的洗碗机,其中,还包括:
    控制器,所述控制器与第一开关、第二开关、第三开关、第一流量检测装置(14)、第二流量检测装置(23)、第一计量泵(13)、第二计量泵(25)通信连接。
  12. 根据权利要求3~11任一项所述的洗碗机,其中,所述盐水存储装置(9)与所述软化装置(8)连通,所述盐水存储装置(9)适于活化所述软化装置(8)中的软化剂。
  13. 一种洗碗机的控制方法,所述洗碗机包括腔室结构、盐水发生装置、电解组件(17)和内胆(1),其中所述腔室结构内部设置有水箱腔室;所述盐水发生装置与所述水箱腔室连通;所述电解组件(17)设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆(1)与所述水箱腔室连通,适于放置待清洗餐具,所述洗碗机的控制方法包括:
    当接收到消毒指令时,利用所述盐水发生装置向所述水箱腔室注入盐水;
    控制所述电解组件(17)对所述水箱腔室中的盐水进行电解,得到电解液;
    当所述电解完成时,将所述电解液排至所述内胆(1)中进行消毒。
  14. 根据权利要求13所述的控制方法,其中,当所述盐水发生装置包 括盐水存储装置(9)和进水管(6),所述进水管(6)与所述水箱腔室的第一进水口连通;所述盐水存储装置(9)适于存储盐水,与所述水箱腔室的第二进水口通过水箱盐水进水管(19)连通时,所述利用所述盐水发生装置向所述水箱腔室注入盐水包括:
    通过所述进水管(6)向所述水箱腔室注入第一预设量的水;
    通过所述水箱腔室盐水进水管(6)向所述水箱腔室注入第二预设量的盐水。
  15. 根据权利要求14所述的控制方法,其中,当所述盐水发生装置还包括位于所述进水管(6)与所述水箱腔室之间的软化装置(8),所述软化装置(8)与所述进水管(6)通过软化装置进水管(11)连通,与所述水箱腔室通过水箱软水进水管(18)连通,所述通过所述进水管(6)向所述水箱腔室注入第一预设量的水包括:
    通过所述进水管(6)、所述软化装置进水管(11)和所述水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水。
  16. 根据权利要求15所述的控制方法,其中,所述通过所述进水管(6)、所述软化装置进水管(11)和水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水,通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水包括:
    通过所述进水管(6)、所述软化装置进水管(11)和所述水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水和通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水同时进行;
    或,通过所述进水管(6)、所述软化装置进水管(11)和所述水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水和通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水依次进行;
    或,通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水和通过所述进水管(6)、软化装置进水管(11)和所述水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水依次进行。
  17. 根据权利要求15所述的控制方法,其中,当在所述进水管(6)/ 所述软化装置进水管(11)上设有第一开关且在所述软化装置进水管(11)/所述水箱软水进水管(18)上设有第一流量检测装置(14)时,所述通过所述进水管(6)、软化装置进水管(11)和所述水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水,包括:
    打开所述第一开关导通所述进水管(6)和所述软化装置进水管(11),水依次经过所述进水管(6)、所述软化装置进水管(11)、所述软化装置(8)和所述水箱软水进水管(18)注入所述水箱腔室;
    获取所述第一流量检测装置(14)检测到的水量,当所述水量达到所述第一预设量时,关闭所述第一开关。
  18. 根据权利要求15所述的控制方法,其中,当所述盐水存储装置(9)的进水口与所述进水管(6)通过盐水存储进水管(20)连通,在所述盐水存储进水管(20)/所述进水管(6)上设有第二开关,且在所述水箱盐水进水管(19)上设有第二流量检测装置(23)时,所述通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水包括:
    打开所述第二开关导通所述进水管(6)和所述盐水存储进水管(20),将水注入所述盐水存储装置(9),所述盐水存储装置(9)中的盐水通过所述水箱盐水进水管(19)注入所述水箱腔室;
    获取所述第二流量检测装置(23)检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述第二开关。
  19. 根据权利要求15所述的控制方法,其中,当在所述水箱盐水进水管(19)上设有第一计量泵(13)时,所述通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水包括:
    打开所述第一计量泵(13);
    获取所述第一计量泵(13)检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述第一计量泵(13)。
  20. 根据权利要求15所述的控制方法,其中,当洗碗机还包括第二计量泵(25),所述第二计量泵(25)设置在电解液排出管(15)与所述水箱盐水进水管(19)的公共部分,所述将所述电解液排至所述内胆(1)中 包括:
    控制所述第二计量泵(25)反转,将所述水箱腔室中的电解液排至所述内胆(1)中。
  21. 根据权利要求15所述的控制方法,其中,当所述盐水存储装置(9)的进水口与所述进水管(6)通过盐水存储进水管(20)连通且在所述盐水存储进水管(20)/所述进水管(6)上设有第二开关时,在通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水之后,还包括:
    打开所述第二开关导通所述进水管(6)和所述盐水存储进水管(20),将水注入所述盐水存储装置(9)。
  22. 根据权利要求17所述的控制方法,其中,当在所述水箱软水进水管(18)和所述水箱盐水进水管(19)之间设有第一连通管路、所述第一连通管路上设有第三开关且在所述水箱盐水进水管(19)上设有计量泵时,所述通过所述软化装置进水管(11)和所述水箱软水进水管(18)向所述水箱腔室注入第一预设量的软水,通过所述水箱盐水进水管(19)向所述水箱腔室注入第二预设量的盐水包括:
    打开所述计量泵;
    获取所述计量泵检测到的盐水量,当所述盐水量达到所述第二预设量时,关闭所述计量泵;
    打开所述第一开关导通所述软化装置进水管(11),水依次经过所述软化装置进水管(11)、所述软化装置(8)和所述水箱软水进水管(18)注入所述水箱腔室;
    获取第一流量检测装置(14)检测到的水量,当所述水量达到第三预设量时,关闭所述第一开关,其中所述第三预设量为所述第一预设量与所述第二预设量的和;
    打开所述第三开关和所述计量泵使所述水箱软水进水管(18)的水流入所述盐水存储装置(9)。
  23. 一种洗碗机的控制装置,所述洗碗机包括腔室结构、盐水发生装置、电解组件(17)和内胆(1),其中所述腔室结构内部设置有水箱腔室; 所述盐水发生装置与所述水箱腔室连通;所述电解组件(17)设置在所述水箱腔室内部,适于对所述盐水发生装置生成的盐水进行电解操作;所述内胆(1)与所述水箱腔室连通,适于放置待清洗餐具,洗碗机的控制装置包括:
    预处理模块,当接收到消毒指令时,利用所述盐水发生装置向所述水箱腔室注入盐水;
    电解模块,被设置为控制所述电解组件(17)对所述水箱腔室中的溶液进行电解,得到电解液;
    消毒模块,当所述电解完成时,将所述电解液排至所述内胆(1)中进行消毒。
  24. 一种计算机可读存储介质,所述计算机可读存储介质存储有计算机指令,所述计算机指令被设置为使所述计算机执行权利要求13-22中任一项所述的洗碗机的控制方法。
PCT/CN2021/116523 2020-10-23 2021-09-03 一种洗碗机、洗碗机的控制方法、装置及存储介质 WO2022083322A1 (zh)

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