WO2020007341A1 - 一种衣物处理装置的控制方法 - Google Patents

一种衣物处理装置的控制方法 Download PDF

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Publication number
WO2020007341A1
WO2020007341A1 PCT/CN2019/094699 CN2019094699W WO2020007341A1 WO 2020007341 A1 WO2020007341 A1 WO 2020007341A1 CN 2019094699 W CN2019094699 W CN 2019094699W WO 2020007341 A1 WO2020007341 A1 WO 2020007341A1
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WIPO (PCT)
Prior art keywords
atomization
drying
clothes
laundry
humidity value
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2019/094699
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English (en)
French (fr)
Inventor
赵志强
许升
吕佩师
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Drum Washing Machine Co Ltd
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Qingdao Haier Drum Washing Machine Co Ltd
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Publication date
Application filed by Qingdao Haier Drum Washing Machine Co Ltd filed Critical Qingdao Haier Drum Washing Machine Co Ltd
Priority to JP2021500221A priority Critical patent/JP7204870B2/ja
Publication of WO2020007341A1 publication Critical patent/WO2020007341A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F33/00Control of operations performed in washing machines or washer-dryers 
    • D06F33/50Control of washer-dryers characterised by the purpose or target of the control
    • D06F33/52Control of the operational steps, e.g. optimisation or improvement of operational steps depending on the condition of the laundry
    • D06F33/65Control of the operational steps, e.g. optimisation or improvement of operational steps depending on the condition of the laundry of conditioning or finishing phases, e.g. for smoothing or removing creases
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F33/00Control of operations performed in washing machines or washer-dryers 
    • D06F33/50Control of washer-dryers characterised by the purpose or target of the control
    • D06F33/52Control of the operational steps, e.g. optimisation or improvement of operational steps depending on the condition of the laundry
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F58/00Domestic laundry dryers
    • D06F58/32Control of operations performed in domestic laundry dryers 
    • D06F58/34Control of operations performed in domestic laundry dryers  characterised by the purpose or target of the control
    • D06F58/36Control of operational steps, e.g. for optimisation or improvement of operational steps depending on the condition of the laundry
    • D06F58/44Control of operational steps, e.g. for optimisation or improvement of operational steps depending on the condition of the laundry of conditioning or finishing, e.g. for smoothing or removing creases
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2103/00Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
    • D06F2103/02Characteristics of laundry or load
    • D06F2103/08Humidity
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2103/00Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
    • D06F2103/28Air properties
    • D06F2103/32Temperature
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2103/00Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
    • D06F2103/28Air properties
    • D06F2103/34Humidity
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2105/00Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
    • D06F2105/38Conditioning or finishing, e.g. control of perfume injection
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2105/00Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
    • D06F2105/38Conditioning or finishing, e.g. control of perfume injection
    • D06F2105/40Conditioning or finishing, e.g. control of perfume injection using water or steam
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2105/00Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
    • D06F2105/52Changing sequence of operational steps; Carrying out additional operational steps; Modifying operational steps, e.g. by extending duration of steps
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2105/00Systems or parameters controlled or affected by the control systems of washing machines, washer-dryers or laundry dryers
    • D06F2105/62Stopping or disabling machine operation
    • 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

Definitions

  • the present invention relates to the technical field of laundry washing, drying, and care processing, and in particular, to a method for controlling a laundry processing device.
  • the raw materials of clothing are fibers, and the fibers are composed of linear macromolecules.
  • the linear macromolecules are freely arranged, especially the loosely arranged amorphous region. Water molecules will enter the micro-gap of this region, causing the fibers to expand and stretch, and the clothing After washing and drying, the fibers remain crimped.
  • hydrophilic fibers the original shape disappears after washing, the durability and effect of ironing and setting are worse, such as cotton, wool, silk, viscose fibers; hydrophobic fibers, the original shape after washing
  • the stability is better, and the durability and effect of ironing and setting are better, such as chemical fiber (polyester, acrylic, etc.).
  • the invention mainly solves the problem of wrinkles of the clothes washed by the existing washing machine or the clothes dried by the dryer, and realizes the structure of the clothes without wrinkles, so as to improve the user experience.
  • an object of the present invention is to provide a method for controlling a clothes treatment device. Specifically, the following technical solutions are adopted:
  • the laundry treatment device includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • An atomizing module configured to generate atomized water and pass into the inside of the processing cylinder assembly
  • the control method includes:
  • the laundry processing device executes a drying program, and / or a steam washing program, and / or an air washing program, and / or a deodorizing program, when the humidity of the clothes reaches a set humidity value, the atomization module is controlled to generate atomized water to enter. Atomize the laundry in the processing drum assembly.
  • the laundry processing device sets a first humidity value, and during the drying process of the laundry processing device, when the laundry humidity value reaches the first humidity value, controlling the fogging process after drying is performed, the drying
  • the post-atomization process includes controlling the atomization module to start to generate atomized water and enter the treatment cylinder assembly to perform atomization on the laundry.
  • the laundry treatment device sets a second humidity value, controls the atomization module to be activated, generates atomized water and enters the treatment cylinder assembly to perform atomization treatment on the laundry, and when the laundry humidity value reaches the second humidity value, the laundry is dried
  • the post-atomization process ends, the control atomization module is turned off, and the drying process ends;
  • the laundry treatment device controls the atomization module to be turned off after a set time T1 is started, the atomization process after drying is ended, the atomization module is controlled to be closed, and the drying process is ended.
  • the atomization module is controlled to start, the drying drying heating module is controlled to be turned off, and the drying air circulation ring device is kept turned on until the drying and drying objects reach the cooling temperature, then The atomizing module is controlled, the drying air circulation device is turned off, and the drying process ends.
  • the laundry processing device sets a third humidity value, and during the drying process of the laundry processing device, when the laundry humidity value reaches the third humidity value, controlling the fogging process during drying is controlled, the drying
  • the medium atomization process includes controlling the atomization module to start to generate atomized water and enter the treatment cylinder assembly to perform atomization treatment on the laundry.
  • the laundry treatment device sets a fourth humidity value, controls the atomization module to start, generates atomized water and enters the treatment cylinder assembly to perform atomization treatment on the laundry, and when the laundry humidity value reaches the fourth humidity value, the laundry is dried
  • the middle atomization process is ended, the control atomization module is closed, and the drying process is ended;
  • the laundry processing device controls the atomization module to be turned off after being started for a set time T2, and then controls the atomization module to be turned off, and the atomization process during the drying process ends.
  • the drying and heating module is controlled to be turned off, the drying air circulation ring device is kept on, and the drying process is suspended;
  • the drying heating module is controlled to be turned on, the drying air circulation ring device is kept on, and the drying process is continued.
  • the atomization module is controlled to start to generate atomized water and enter the processing drum assembly to perform the atomization treatment on the laundry.
  • the laundry processing device sets a fifth humidity value, and controls the atomization module to turn off when the laundry humidity value reaches the fifth humidity value.
  • the drying process is controlled after the atomizing module is turned off, and the drying process and / or the drying process are performed during the drying process. process.
  • the atomization module includes an atomization water storage device and an atomization generating device, and the atomization water storage device has an atomization water storage cavity for storing atomization water, and a communication with the treatment cylinder assembly.
  • the atomizing water output end, the atomizing generating device is arranged on the atomizing water storage cavity, and the energy output end of the atomizing generating device acts on the atomized water in the atomizing water storage cavity to transform it into water mist and pass through
  • the atomized water output end enters the processing drum assembly for atomizing the clothes;
  • the laundry treatment device controls whether the atomization water is generated by controlling the on / off of the atomization generating device.
  • atomization is controlled according to the laundry humidity value for a specific stage of the laundry.
  • the module starts to atomize the clothes.
  • the atomization process can achieve fiber absorption. Under the condition that the humidity increase is extremely effective, the friction between the fibers can be reduced, the deformation and plasticity of the fabric can be increased, and the shape can be formed without wrinkles.
  • FIG. 1 is a flowchart of a method for controlling a clothes processing apparatus according to a first embodiment of the present invention
  • FIG. 2 is a second flowchart of a method for controlling a clothes processing apparatus according to Embodiment 1 of the present invention
  • FIG. 3 is a third flowchart of a method for controlling a clothes processing apparatus according to Embodiment 1 of the present invention.
  • FIG. 4 is a schematic diagram of a clothes treating device according to a second embodiment of the present invention.
  • FIG. 5 is a top view of a clothes treating apparatus according to a second embodiment of the present invention (removing the upper surface);
  • FIG. 6 is a top view of a clothes treating apparatus according to a second embodiment of the present invention (removing the upper surface);
  • FIG. 7 is a schematic structural diagram of a second atomized water storage device according to the embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram 1 of a three-atomization water storage device according to the embodiment of the present invention.
  • FIG. 9 is a second structural schematic diagram of an atomized water storage device according to a third embodiment of the present invention.
  • FIG. 10 is a third schematic structural diagram of an atomized water storage device according to the third embodiment of the present invention.
  • the clothes processing apparatus of this embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomizing module is used for generating atomized water and passing into the inside of the processing cylinder assembly.
  • the laundry processing device executes a drying program, and / or a steam washing program, and / or an air washing program, and / or a deodorizing program, when the humidity of the clothes reaches a set humidity value, the atomization module is controlled to generate atomized water to enter. Atomize the laundry in the processing drum assembly.
  • the fog is controlled according to the laundry humidity value for a specific stage of the laundry.
  • the atomization module starts to atomize the clothes.
  • the atomization treatment can realize the fiber absorption of water. Under the condition that the humidity increase is extremely effective, the friction between the fibers can be reduced, the deformation and plasticity of the fabric can be increased, and the shape can be formed without wrinkles.
  • the method for controlling a clothes processing device in this embodiment includes: setting the first humidity value on the clothes processing device, and when the clothes processing device executes a drying process, when the clothes humidity value reaches the first humidity value, Controlling and executing the post-drying atomization process, the post-drying atomization process includes controlling the atomization module to start and generate atomized water to enter the processing drum assembly to perform the atomization treatment on the laundry.
  • the setting of the first humidity value in this embodiment indicates that the drying clothes are already in the final stage of drying, that is, the cooling stage of the clothes after the drying is completed.
  • This embodiment controls the activation of the atomization module after the drying is completed to ensure the drying process.
  • a certain micron-level water mist is entered, preferably 0.5-30 ⁇ m.
  • the water cooling method is used to achieve rapid cooling and drying, and the setting is improved compared with the existing air cooling rate.
  • the clothing processing device described in this embodiment sets a second humidity value, controls the atomization module to start, generates atomized water and enters the processing drum assembly to perform the atomization treatment on the clothing.
  • the clothing humidity value reaches the second humidity value, then After drying, the process of atomization is finished, the control of the atomization module is turned off, and the drying process ends; the setting of the second humidity value can prevent the excessive humidity of the atomization process from affecting the drying effect.
  • the humidity value of the clothing reaches the second humidity value, it indicates that the clothing Optimum humidity after drying.
  • the laundry processing device controls the atomization module to be turned off after a set time T1 is started, the atomization process after drying is ended, the atomization module is controlled to be turned off, and the drying process is ended; the set time T1 on the one hand ensures that the laundry is performed Cooling, on the one hand, prevents excessive humidity caused by physical and chemical treatment. It can be obtained by experimental testing and stored for different types of washing machines or clothes dryers.
  • the atomization module is controlled to start, the drying and heating module is turned off, and the drying air circulation device is maintained. Turn on until the drying object reaches the cooling temperature, then control the atomization module and drying air circulation device to close, and the drying process ends.
  • the method for controlling a clothes processing device in this embodiment includes: setting the third humidity value on the clothes processing device, and when the clothes processing device executes a drying process, when the clothes humidity value reaches the third humidity value, Control and execute the atomization process during drying, which includes controlling the atomization module to start to generate atomized water into the processing drum assembly to perform the atomization process on the laundry.
  • the laundry processing device controls the logic during drying to ensure that the atomization module is activated during the drying process, so that the atomized water enters the clothes processing drum, and the micron-level water mist penetrates the fiber gap quickly, and the fiber absorbs water. Under the condition that the humidity increase is extremely effective, the friction between the fibers is reduced, the deformation plasticity of the fabric is increased, and then the drying is performed, and the molding is good without wrinkles.
  • This embodiment is directed to the drying process.
  • the atomization module is also controlled to perform the atomization process of the clothes, so that the clothes after drying are well formed without wrinkles.
  • the laundry processing device sets a fourth humidity value
  • the atomization module is controlled to generate atomized water to enter the processing drum assembly to perform atomization treatment on the laundry.
  • the humidity value of the laundry reaches the fourth humidity value
  • the atomization processing process is ended during drying, and the atomization module is controlled to close and dry.
  • the process of atomizing during the drying process is finished; the setting of the fourth humidity value can prevent the excessive humidity of the atomizing process from affecting the drying effect.
  • the humidity value of the clothes reaches the fourth humidity value, it indicates that the optimal humidity of the clothes during the drying process can be effective. Remove wrinkles.
  • the laundry processing device controls the atomization module to be turned off after being started for a set time T2, and then controls the atomization module to be turned off, and the atomization process during the drying process ends.
  • Set time T2 to ensure that the laundry reaches the optimal humidity after the atomization treatment to effectively remove wrinkles. It can be obtained by experimental testing and stored for different types of washing machines or dryers.
  • the drying heating module is controlled to be turned off, the drying air circulation loop device is kept on, and the drying is suspended Dry process
  • the drying heating module is controlled to be turned on, the drying air circulation ring device is kept on, and the drying process is continued.
  • a washing machine or a clothes dryer with a steam washing program, an air washing program, and a deodorizing program control the atomization module to start the atomization process on the clothes in the steam washing program, the air washing program, and the deodorizing program.
  • the atomization module is controlled to generate atomized water and enter the processing drum assembly.
  • the clothing is atomized, and the clothing processing device sets a fifth humidity value.
  • the atomization module is controlled to be turned off.
  • control logic is used when the washing machine or clothes dryer dries the clothes to remove odors, because the clothes entering are dry clothes, and the first choice is to start the ultrasonic atomizing water first, so that the moisture of the clothes fiber is absorbed and stretched, and the friction between the fibers is achieved Reduce, increase the deformation plasticity of the fabric, and then dry, good shape, no wrinkles. This saves time, saves energy, and has a good deodorizing effect.
  • the humidity value of the clothes when the humidity value of the clothes reaches a fifth humidity value, controlling the atomization module to perform a drying process after the misting module is turned off, and performing the post-drying mist during the drying process Atomization and / or atomization during drying.
  • the setting of the fifth humidity value can avoid the excessive humidity of the atomization process from affecting the drying effect.
  • the laundry humidity value reaches the fifth humidity value, it indicates that the laundry is in the optimal humidity during the drying process, which can effectively remove wrinkles.
  • the atomization module includes an atomization water storage device and an atomization generating device, and the atomization water storage device has an atomization water storage chamber for storing atomization water and a communication with a treatment barrel assembly.
  • the atomizing water output end, the atomizing generating device is arranged on the atomizing water storage cavity, and the energy output end of the atomizing generating device acts on the atomized water in the atomizing water storage cavity to transform it into water mist and pass through
  • the atomized water output end enters the processing drum assembly for atomizing the clothes;
  • the laundry treatment device controls whether the atomization water is generated by controlling the on / off of the atomization generating device.
  • the humidity of the laundry can be detected by a humidity sensor or an infrared sensor, and the laundry processing device controls the opening and closing of the atomizing module according to the detected humidity value.
  • the clothes treating apparatus of this embodiment may be a washing machine or a clothes dryer having a drying function, a steam washing function, an air washing function, and / or a deodorizing function.
  • a clothing processing device in this embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomization module 200 includes an atomization water storage device 201 and an atomization generating device.
  • the atomization water storage device 201 has an atomization water storage cavity 2011 for storing atomization water and a mist communication with a treatment barrel assembly.
  • Atomized water output terminal 2016, the atomization generating device is disposed outside the atomized water storage chamber 201, and the energy output terminal of the atomization generating device 201 acts on the atomized water in the atomized water storage chamber 2011 to convert it into water
  • the mist enters the processing drum assembly through the atomizing water output terminal 2016 for the atomizing treatment of the laundry.
  • the clothing processing device of this embodiment generates water mist through the atomization module 200, and passes the water mist into the processing drum assembly to perform the clothing atomization treatment. After the atomization treatment, the clothes have no wrinkles, no odor, and have greatly improved. User experience.
  • the atomization generating device 201 in this embodiment may adopt various methods.
  • the atomization generating device 201 may act on water to generate water mist by using ultrasonic, mechanical vibration, static electricity, high voltage, and the like.
  • the atomization generating device described in this embodiment is an ultrasonic atomization generator, and the ultrasonic atomization generator includes an ultrasonic vibration end; and the atomized water storage device 201 atomizes and stores water.
  • the outer wall of the cavity is provided with an installation opening 2015 for installing an ultrasonic vibration end.
  • the ultrasonic vibration end is in contact with the atomizing water in the atomized water storage cavity, and the high frequency resonance of the ultrasonic vibration end breaks up the liquid water molecular structure to generate water mist.
  • the ultrasonic vibrating end described in this embodiment includes an atomizing vibrating piece 205 and a vibrating piece holder 206 on which the atomizing vibrating piece 205 is installed.
  • the vibrating piece holder 206 is sealed and installed at the installation opening 2015 of the atomized water storage device.
  • the atomizing vibrating piece 205 is disposed in the installation port 2015 and is in contact with the atomizing water in the atomizing water storage cavity.
  • the vibrating piece holder 206 of this embodiment is a tubular structure, and the tubular structure is sealedly connected to the mounting port 2015.
  • a sealing ring 207 is provided between the tubular structure and the mounting port.
  • the ultrasonic atomization generator uses electronic high-frequency oscillation (the oscillation frequency is 1.7MHz or 2.4MHz, which exceeds the human hearing range, and the electronic oscillation has no harm to humans and animals).
  • the molecular structure of liquid water breaks up to produce a naturally flowing water mist.
  • the water is atomized into 1-100 micron ultrafine particles, which are uniform, without heating or adding any chemical reagents. Compared with the heating atomization method, the energy saving is 90%.
  • a large amount of negative ions will be released during the atomization process, which will cause an electrostatic reaction with the smoke and dust floating in the air, causing it to precipitate, and it can also effectively remove formaldehyde. , Carbon monoxide, bacteria and other harmful substances, make clothing care experience better.
  • the atomized water storage device 201 further has an air inlet end 2013 and an atomized water inlet end 2017 for atomizing water entering, and the air inlet end 2013 is located in the atomizing water storage cavity. Above the highest water storage level.
  • the atomized water inlet end 2017 of this embodiment realizes the introduction of external water sources into the atomized water storage cavity 2011 of the atomized water storage device 201, and the inlet end 2013 realizes the introduction of airflow to the atomized water storage device 201 of the atomized water storage device 201 In the water chamber 2011, the airflow impacts the water mist and better carries the water mist from the atomized water output end 2016 into the processing cylinder assembly.
  • the airflow source of the air intake end 2013 of this embodiment may be provided by a fan alone. As shown in FIG. 6, the air intake end 2013 of this embodiment is connected to a separately provided atomizing fan 900, and the atomizing fan 900 is connected to the main of the clothes treating device.
  • the control board is electrically connected, and the opening and closing of the atomizing fan 900 is controlled by the main control board.
  • the airflow source of the air intake end 2013 of this embodiment may also be obtained according to the working mode of the laundry processing device.
  • the laundry processing device of this embodiment has a drying function
  • the laundry processing device includes The drying air duct 602 is connected to the processing cylinder component, and the air intake end 2013 is connected to the drying air duct 602.
  • the drying wind in the drying air duct is directly used as a wind source for driving the water mist.
  • the structure is simple, the overall cost is low, and it has broad market value.
  • a fan 605 for driving the flow of the drying air is provided in the drying air duct 602, and the connection between the air inlet end 2013 and the drying air duct 602 is located downstream of the fan 605; thus, the fan 605 can drive the drying wind into the atomized water storage device 201.
  • the drying air duct 602 is further provided with a heating pipe 601 for heating the drying air.
  • the connection between the air inlet end 2013 and the drying air duct 602 is located between the heating pipe 601 and the fan 605. between.
  • the fan 605 in this embodiment includes a motor 604 and a fan blade 603, and the motor 604 is energized.
  • the fan blade 603 rotates at a high speed and can exhaust gas to the air duct where the heating pipe 601 is installed, and attract the gas flow at the bottom of the outer cylinder To the fan blade 603. Continue the above process to achieve continuous high-temperature gas inside the outer cylinder and dry clothes.
  • the atomized water output end 2016 of the atomized water storage device 201 is communicated with the cylinder component through a drying air duct 602.
  • the drying air duct 602 has a drying air outlet end which is in communication with the cylinder component and is used to pass hot drying air into the cylinder component.
  • the atomized water of the atomized water storage device 201 The connection between the output end 2016 and the drying air duct is located between the heating pipe 601 and the drying air outlet.
  • the laundry processing device is a washer-dryer.
  • the washer-dryer includes a water inlet valve 800 and a detergent box 500.
  • the water inlet valve 800 has an atomization connection with the atomization water storage device 201.
  • the water inlet terminal 2017 is connected to the atomized water inlet control terminal and the detergent box water inlet control terminal that is connected to the detergent box 500.
  • This embodiment is based on the improvement of the water inlet valve 800 of the washer-dryer, and realizes the dual-channel water inlet control of the detergent box 500 and the atomized water storage device 201. The structure is simpler and the integrated control is easier.
  • the clothes treating device is a clothes dryer
  • the clothes dryer includes a water inlet valve
  • the output end of the water inlet valve is connected to the atomized water inlet end of the atomized water storage device, and the water inlet valve
  • the water inlet is connected to a water source.
  • the water inlet control of the atomized water storage device is implemented by adding a water inlet valve to the clothes dryer. The atomization process is added during the drying process, so that the dried clothes are wrinkle-free, more flat, and the user experience is improved.
  • the laundry processing device is a washing machine.
  • the washing machine includes a water inlet valve and a detergent box.
  • the water inlet valve has atomized water inlet which is in communication with the atomized water inlet end of the atomized water storage device.
  • a control terminal and a detergent box water inlet control terminal connected with the detergent box;
  • the washing machine includes an outer cylinder and an inner cylinder disposed in the outer cylinder.
  • the atomized water output end of the atomized water storage device is in communication with the external cylinder.
  • the air inlet end of the atomized water storage device is connected to the atomized storage device. Atomizing fan blowing in the water cavity.
  • the atomized water storage device 201 includes a casing 2014 having an opening chamber and a cover 2012 covering the opening of the casing 2014, and the cover 2012 and the casing 2014 Together, they form the atomized water storage cavity 2011.
  • the atomized water inlet end 2017 is an atomized water inlet provided on the cover
  • the atomized water output end 2016 is an atomized water outlet provided on a side wall of the casing 2014.
  • the air inlet end 2013 is an air inlet provided on the side wall of the casing 2014.
  • the atomized water output port and the air inlet are both located above the highest water level in the atomized water storage cavity 2011.
  • the The atomized water output port is opposite to the air inlet, so that the water mist can be better discharged from the atomized water output port under the action of the air flow.
  • the mounting opening 2015 is provided on the bottom wall of the housing 2014.
  • the bottom wall of the housing 2014 is in a high-to-low transition setting, and the mounting opening 2015 is provided at the lowest position of the bottom wall of the housing. .
  • the ultrasonic atomizing generator of this embodiment is connected to a power board of a washing machine through a power line.
  • the control panel can control the start and stop of the ultrasonic atomization generator.
  • a liquid level sensor may be further provided inside the atomized water storage cavity 2011 of the atomized water storage device 201 to prevent damage to the ultrasonic atomization generator caused by excessive overflow or low water level.
  • the atomizing water storage device 201 has a water overflow port, and the ultrasonic atomizing generator has its own minimum starting water level detection.
  • Two water level control probes are fastened to the inner wall of the atomized water storage chamber 2011 of the atomized water storage device 201, and are arranged at a certain distance and then vertically extend the atomized water storage device 201. At a certain height outside, only the two probes can be started in water, so as to control the minimum water level of the atomized solution.
  • the power and working circuit of the ultrasonic atomizer are separately installed in an engineering plastic case.
  • the output current will supply power to the ultrasonic vibration terminal through the wire.
  • the ultrasonic atomizer has an automatic protection function when the water is cut off. When the water level is lower than the water level switch or the water level probe, the ultrasonic atomizer will automatically stop working.
  • this embodiment further uses a washing machine with a drying function as an example for further description:
  • the washing machine of this embodiment has a casing 100, which is composed of an upper panel, a side panel bottom plate, and the like.
  • the bottom plate of the casing 100 is firmly connected with a foot 400 to support the entire washing machine.
  • An outer cylinder is suspended inside the casing 100, and an inner cylinder is disposed inside.
  • the outer cylinder has an upper suspension part, which is hung on a side panel of the washing machine or a reinforcing beam through a suspension spring.
  • the outer cylinder is connected to and supported by the bottom plate by a lower connecting portion through a damper.
  • the casing 100 has at least one atomizing module 200 therein.
  • the front panel has at least two covers that can be opened. They are the cover of the washing box and the cover of the atomizing module. Open the cover of the washing box to put detergent, softener, bleach, etc. into the washing box; open the cover of the atomizing module, and consumers can add perfume, fluffing agents and other clothing care to the atomizing water storage device 201 Supplies.
  • the water mist can be used to enhance the aroma and fluffy of the steam-treated clothes after heating, and the effect is better.
  • the washing box 500 and the atomizing module 200 are placed at two corners of the washing machine, respectively, and the idle space between the outer cylinder and the casing is fully utilized.
  • the water inlet valve 800 controls at least one water inlet valve to enter the detergent box 500 through the water inlet pipe 501 of the washing box. At least one water inlet valve controls the water inlet through the atomizing water inlet pipe 203 to enter the atomizing water storage device 201.
  • the drying air duct is connected to a front upper part of the outer cylinder or the window mat through a hose, and a rear end is connected to a rear bottom of the outer cylinder through a hose, thereby realizing the entire hot air circulation of the outer cylinder.
  • a heating tube is provided in the drying air duct.
  • a fan which is arranged in the air duct.
  • This embodiment also provides a method for controlling a laundry processing device.
  • the laundry processing device controls the operation of the atomizing module during the drying process, the steam washing process, or the air washing process, and the atomizing module generates water mist. Enter into the processing drum assembly to perform laundry atomization. In this way, after the user selects a washing program on the touch panel, the drying, steam washing, and air washing programs are selected. In the process, the atomizing module works. The water mist treats the clothes to remove odors and no wrinkles.
  • a clothing processing apparatus of this embodiment includes:
  • the processing drum assembly the laundry to be processed is contained in the processing drum assembly;
  • the atomization module 200 includes an atomization water storage device 201 and an atomization generating device.
  • the atomization water storage device 201 has an atomization water storage cavity 2011 for storing atomization water and a mist communication with a treatment barrel assembly.
  • the atomized water output terminal 2016, the atomization generating device is disposed outside the atomized water storage cavity 2011, and the energy output terminal of the atomization generator 2011 acts on the atomized water in the atomized water storage cavity 2011 to transform it into water Mist and enter the treatment cylinder assembly through the atomizing water output terminal 2016 for atomizing the clothes;
  • a water blocking member As well as a water blocking member, it is provided in the atomized water storage cavity 2011 for blocking water from entering the atomized water output end 2016.
  • the clothing processing device of this embodiment generates water mist through the atomization module 200, and passes the water mist into the processing drum assembly to perform the clothing atomization treatment. After the atomization treatment, the clothes have no wrinkles, no odor, and have greatly improved. User experience.
  • a water blocking member is provided in the atomized water storage cavity 2011, and the water blocking member can block the non-atomized water from entering the atomized water output terminal 2016 and discharged, thereby ensuring the atomization treatment effect of the laundry.
  • the atomized water output end 2016 described in this embodiment is an atomized water output port opened on the side wall of the atomized water storage cavity 2011, and the water blocking member has a cover that can cover the atomized water output port.
  • the blocking surface blocks water from entering the atomized water output port, and at least one side of the blocking surface is spaced from the inner wall of the atomized water storage chamber so that water mist can enter the atomized water output port.
  • the water blocking member is a water blocking plate 207, and a lower end of the water blocking plate 207 is inclinedly disposed in the atomized water storage cavity 2011 toward the atomized water output port. At least one side of the water blocking plate 207 is spaced from the inner wall of the atomized water storage cavity 2011, and the side of the water blocking plate 207 facing the atomized water is a blocking surface; the water mist generated in the atomized water storage cavity is The space between the water blocking plate and the inner wall of the atomized water storage cavity enters the atomized water output port, and the unatomized water carried in the water mist is blocked by the blocking surface of the water blocking plate and slides down along the blocking surface.
  • the atomized water output port described in this embodiment is disposed on a side wall of the atomized water storage cavity, the lower end of the water blocking plate 207 is connected below the atomized water output port, and the upper end of the water blocking plate 207 Extending obliquely upward away from the outlet of the atomized water, the upper end of the water blocking plate is spaced from the top wall of the atomized water storage cavity;
  • the upper end of the water blocking plate 207 is connected to the top wall of the atomized water storage cavity 2011, and the lower end of the water blocking plate 207 extends obliquely downward near the atomized water output port.
  • the side walls of the atomized water storage cavity below the water outlet are arranged at intervals.
  • the water blocking member is a water blocking cover 208.
  • the water blocking cover 208 covers an atomized water outlet.
  • the inner wall of the atomized water storage cavity on the periphery of the water outlet is arranged at intervals, and the outer surface of the water blocking cover 208 is a blocking surface;
  • the interval enters the atomized water output port, and the non-atomized water carried in the water mist is blocked by the blocking surface of the water shield 208 and slides down along the blocking surface.
  • the water shield 208 has an open internal chamber, and the open end of the water shield covers the atomized water output port, and at least a partial edge of the open end and the inner wall of the atomized water storage chamber on the outer periphery of the atomized water output port.
  • the water retaining cover is a conical cover or a circular truncated cover.
  • the water blocking member is a water collecting tank baffle 209 having a water collecting tank 2091, and one end of the water collecting tank baffle 209 is provided at an atomized water output port. On the lower side wall of the atomized water storage cavity, the other end extends into the atomized water storage cavity, and a water outlet 2092 is opened on the bottom wall of the water collection tank.
  • the water collecting tank baffle 209 is formed by partially bending a flat plate-like structure, and the bent portion forms a water collecting tank 2091; preferably, one end of the water collecting tank baffle 209 is connected to the atomizing water output port. The lower end and the other end extend horizontally, and the extended end of the baffle of the water collecting tank extends obliquely upward toward the top wall of the atomized water storage chamber and is spaced apart from the top wall of the water storage tank; U-shaped groove formed by partial bending.

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  • Engineering & Computer Science (AREA)
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Abstract

一种衣物处理装置的控制方法,衣物处理装置包括:处理筒组件,待处理衣物容置于处理筒组件内;雾化模块(200),用于产生雾化水并通入所述的处理筒组件内部;所述的控制方法包括:衣物处理装置执行烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,当衣物湿度达到设定湿度值时控制雾化模块(200)启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。在烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,根据衣物湿度值针对衣物的特定阶段,控制雾化模块(200)启动对衣物进行雾化处理,雾化处理可以实现纤维吸水,实现纤维之间摩擦力减少,增加面料的变形可塑性,成型好,无褶皱。

Description

一种衣物处理装置的控制方法 技术领域
本发明涉及衣物洗、干、护理处理技术领域,具体地,涉及一种衣物处理装置的控制方法。
背景技术
衣物在经过洗涤后,尤其是水洗后,一般会发生褶皱、变形等现象,此时需要熨烫使衣物恢复原有形状。
衣物原材料都是纤维,纤维微观上都是线性高分子组成,线性高分子都是自由排列,尤其是排列松散的无定型区,水分子会进入该区的微隙,使得纤维膨胀伸展,而衣物洗涤干燥后,纤维保持卷曲状态。
根据纤维特性,亲水性纤维,水洗后,原有形状消失,熨烫定型的持久性和效果要差些,如棉,毛,丝,黏胶纤维;疏水性纤维,水洗后,原有形状稳定性较好,熨烫定型的持久性和效果也要好些,如化纤(涤纶,腈纶等等)。
由于上述机理,导致现有的洗衣机洗涤完成,进行烘干后;或者衣物直接干燥后,衣物都是皱皱巴巴,非常难看。
本发明主要解决现有洗衣机洗完的衣物或者干衣机烘干完的衣物皱皱巴巴的问题,实现衣物挺括,无褶皱,以提升用户的使用体验。
有鉴于此,特提出本发明。
发明内容
为了解决上述问题,本发明的发明目的是提供一种衣物处理装置的控制方法,具体地,采用了如下的技术方案:
一种衣物处理装置的控制方法,衣物处理装置包括:
处理筒组件,待处理衣物容置于处理筒组件内;
雾化模块,用于产生雾化水并通入所述的处理筒组件内部;
所述的控制方法包括:
衣物处理装置执行烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,当衣物湿度达到设定湿度值时控制雾化模块启动产生雾化水进入到处理筒组件内对 衣物进行雾化处理。
进一步地,所述的衣物处理装置设置第一湿度值,衣物处理装置执行烘干程序过程中,当衣物湿度值达到第一湿度值时,控制执行烘干后雾化处理过程,所述烘干后雾化处理过程包括控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。
进一步地,所述衣物处理装置设置第二湿度值,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,当衣物湿度值达到第二湿度值时,则烘干后雾化处理过程结束,控制雾化模块关闭,烘干程序结束;
或者,所述衣物处理装置控制雾化模块启动一设定时间T1后关闭,则烘干后雾化处理过程结束,控制雾化模块关闭,烘干程序结束。
进一步地,当衣物湿度值达到第一湿度值时,衣物烘干完成,控制雾化模块启动,控制烘干烘干加热模块关闭、烘干循风环装置保持开启直至烘烘干物达到冷却温度,则控制雾化模块、烘干风循环装置关闭,烘干程序结束。
进一步地,所述的衣物处理装置设置第三湿度值,衣物处理装置执行烘干程序过程中,当衣物湿度值达到第三湿度值时,控制执行烘干中雾化处理过程,所述烘干中雾化处理过程包括控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。
进一步地,所述衣物处理装置设置第四湿度值,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,当衣物湿度值达到第四湿度值时,则烘干中雾化处理过程结束,控制雾化模块关闭,烘干中雾化处理过程结束;
或者,所述衣物处理装置控制雾化模块启动一设定时间T2后关闭,则控制雾化模块关闭,烘干中雾化处理过程结束。
进一步地,当所述衣物处理装置在执行烘干中雾化处理过程中,控制烘干加热模块关闭、烘干循风环装置保持开启,暂停烘干过程;
当所述衣物处理装置执行的烘干中雾化处理过程结束后,控制烘干加热模块开启、烘干循风环装置保持开启,继续烘干过程。
进一步地,衣物执行蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,所述的衣物处理装置设置第五湿度值,当衣物湿度值达到第五湿度值时,控制雾化模块关闭。
进一步地,当衣物湿度值达到第五湿度值时,控制雾化模块关闭后执行烘干过程,所述烘干过程中执行所述烘干后雾化处理过程和/或烘干中雾化处理过程。
进一步地,所述雾化模块,包括雾化储水装置和雾化发生装置,所述雾化储水装置具 有用于储放雾化用水的雾化储水腔和与处理筒组件相连通的雾化水输出端,所述雾化发生装置设置在雾化储水腔的上,雾化发生装置的能量输出端作用于雾化储水腔内的雾化用水使其转变为水雾并经由雾化水输出端进入到处理筒组件内进行衣物雾化处理;
所述衣物处理装置通过控制雾化发生装置的开启/关闭以控制雾化水是否生成。
本发明衣物处理装置的控制方法,在烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,根据衣物湿度值针对衣物的特定阶段,控制雾化模块启动对衣物进行雾化处理,雾化处理可以实现纤维吸水,在潮湿度增加极为有效的情况下,实现纤维之间摩擦力减少,增加面料的变形可塑性,成型好,无褶皱。
附图说明
图1本发明实施例一衣物处理装置的控制方法流程图一;
图2本发明实施例一衣物处理装置的控制方法流程图二;
图3本发明实施例一衣物处理装置的的控制方法流程图三;
图4本发明实施例二衣物处理装置的原理示意图;
图5本发明实施例二衣物处理装置的俯视图一(去除上台面);
图6本发明实施例二衣物处理装置的俯视图二(去除上台面);
图7本发明实施例二雾化储水装置的结构示意图;
图8本发明实施例三雾化储水装置的结构示意图一;
图9本发明实施例三雾化储水装置的结构示意图二;
图10本发明实施例三雾化储水装置的结构示意图三。
具体实施方式
下面结合附图对本发明的一种衣物处理装置的控制方法进行详细描述:
实施例一
如图1-图3所示,本实施例的衣物处理装置包括:
处理筒组件,待处理衣物容置于处理筒组件内;
雾化模块,用于产生雾化水并通入所述的处理筒组件内部。
本实施例衣物处理装置的控制方法包括:
衣物处理装置执行烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,当衣物湿度达到设定湿度值时控制雾化模块启动产生雾化水进入到处理筒组件内对 衣物进行雾化处理。
本实施例衣物处理装置的控制方法,在烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,根据衣物湿度值针对衣物的特定阶段,控制雾化模块启动对衣物进行雾化处理,雾化处理可以实现纤维吸水,在潮湿度增加极为有效的情况下,实现纤维之间摩擦力减少,增加面料的变形可塑性,成型好,无褶皱。
针对具有烘干功能的洗衣机或者干衣机,在烘干程序中控制雾化模块启动对衣物进行雾化处理,具体方法如下:
如图1所示,本实施例衣物处理装置的控制方法包括:所述的衣物处理装置设置第一湿度值,衣物处理装置执行烘干程序过程中,当衣物湿度值达到第一湿度值时,控制执行烘干后雾化处理过程,所述烘干后雾化处理过程包括控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。
本实施例的第一湿度值的设置表征烘干衣物已经处于烘干的最后阶段,即烘干完成后的衣物冷却阶段,本实施例在烘干完成控制雾化模块启动,确保烘干程序的最后阶段进入了一定微米级别水雾,优选的是0.5-30μm,实现最后冷却时,通过水冷方式,实现快速冷却干燥,定型,较现有风冷却速率提升,定型更好,无褶皱。
本实施例在烘干程序的最后阶段控制雾化模块启动时,实现衣物的定型冷却,但是同时需要对于雾化量进行控制,以免衣物湿度值过大影响烘干效果。因此,本实施例所述衣物处理装置设置第二湿度值,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,当衣物湿度值达到第二湿度值时,则烘干后雾化处理过程结束,控制雾化模块关闭,烘干程序结束;第二湿度值的设置可避免雾化处理湿度过大影响烘干效果,当衣物湿度值达到第二湿度值表征衣物处于烘干后的最佳湿度。
或者,所述衣物处理装置控制雾化模块启动一设定时间T1后关闭,则烘干后雾化处理过程结束,控制雾化模块关闭,烘干程序结束;设定时间T1一方面确保衣物进行冷却,一方面防止物化处理导致湿度过大,可根据不同型号的洗衣机或者干衣机由实验测试得到并存储调用。
本实施例所述衣物处理装置的控制方法,当衣物湿度值达到第一湿度值时,衣物烘干完成,控制雾化模块启动,控制烘干烘干加热模块关闭、烘干循风环装置保持开启直至烘烘干物达到冷却温度,则控制雾化模块、烘干风循环装置关闭,烘干程序结束。
针对具有烘干功能的洗衣机或者干衣机,在烘干程序中控制雾化模块启动对衣物进行雾化处理,在上述基础上做出进一步的改进,具体方法如下:
如图2所示,本实施例衣物处理装置的控制方法包括:所述的衣物处理装置设置第三湿度值,衣物处理装置执行烘干程序过程中,当衣物湿度值达到第三湿度值时,控制执行烘干中雾化处理过程,所述烘干中雾化处理过程包括控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。本实施例衣物处理装置在进行烘干时控制逻辑,确保烘干过程中雾化模块启动,实现雾化水进入衣物处理筒,实现微米级别的水雾快速穿透纤维间隙,实现纤维吸水,在潮湿度增加极为有效的情况下,实现纤维之间摩擦力减少,增加面料的变形可塑性,再进行烘干,成型好,无褶皱。
本实施例针对烘干程序,在烘干程序的过程中也控制雾化模块执行衣物雾化处理,从而使得烘干后的衣物成型好,无褶皱。
为了实现雾化模块对衣物的雾化处理达到除褶皱的效果,同时减小对烘干过程的影响,本实施例所述衣物处理装置的控制方法,所述衣物处理装置设置第四湿度值,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,当衣物湿度值达到第四湿度值时,则烘干中雾化处理过程结束,控制雾化模块关闭,烘干中雾化处理过程结束;第四湿度值的设置可避免雾化处理湿度过大影响烘干效果,当衣物湿度值达到第四湿度值表征衣物处于烘干过程中的最佳湿度,可以有效的去除褶皱。
或者,所述衣物处理装置控制雾化模块启动一设定时间T2后关闭,则控制雾化模块关闭,烘干中雾化处理过程结束。设定时间T2确保衣物在雾化处理后达到最佳湿度以有效去除褶皱,可根据不同型号的洗衣机或者干衣机由实验测试得到并存储调用。
进一步地,本实施例所述衣物处理装置的控制方法,当所述衣物处理装置在执行烘干中雾化处理过程中,控制烘干加热模块关闭、烘干循风环装置保持开启,暂停烘干过程;
当所述衣物处理装置执行的烘干中雾化处理过程结束后,控制烘干加热模块开启、烘干循风环装置保持开启,继续烘干过程。
针对具有蒸汽洗程序、空气洗程序、除异味程序的洗衣机或者干衣机,在蒸汽洗程序、空气洗程序、除异味程序中控制雾化模块启动对衣物进行雾化处理,具体方法如下:
本实施例所述衣物处理装置的控制方法,衣物执行蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,所述的衣物处理装置设置第五湿度值,当衣物湿度值达到第五湿度值时,控制雾化模块关闭。
本实施例洗衣机或者干衣机烘干消除衣物异味时控制逻辑,因为进入的就是干燥的衣物,进而首选的先启动超声波雾化水,首先实现衣物纤维水分吸湿,舒展,实现纤维之间 摩擦力减少,增加面料的变形可塑性,再进行烘干,成型好,无褶皱。这样节约时间,节约能源,除异味效果好。
进一步地,本实施例所述衣物处理装置的控制方法,当衣物湿度值达到第五湿度值时,控制雾化模块关闭后执行烘干过程,所述烘干过程中执行所述烘干后雾化处理过程和/或烘干中雾化处理过程。第五湿度值的设置可避免雾化处理湿度过大影响烘干效果,当衣物湿度值达到第五湿度值表征衣物处于烘干过程中的最佳湿度,可以有效的去除褶皱。
本实施例所述雾化模块,包括雾化储水装置和雾化发生装置,所述雾化储水装置具有用于储放雾化用水的雾化储水腔和与处理筒组件相连通的雾化水输出端,所述雾化发生装置设置在雾化储水腔的上,雾化发生装置的能量输出端作用于雾化储水腔内的雾化用水使其转变为水雾并经由雾化水输出端进入到处理筒组件内进行衣物雾化处理;
所述衣物处理装置通过控制雾化发生装置的开启/关闭以控制雾化水是否生成。
本实施例的控制方法中可通过湿度传感器或红外传感器等来检测衣物的湿度,衣物处理装置根据检测的湿度值对应控制雾化模块的开启、关闭。
本实施例的衣物处理装置可以为具有烘干功能、和/或蒸汽洗功能、和/或空气洗功能、和/或除异味功能的的洗衣机或者干衣机。
实施例二
如图4-图7所示,本实施例的一种衣物处理装置,包括:
处理筒组件,待处理衣物容置于处理筒组件内;
雾化模块200,包括雾化储水装置201和雾化发生装置,所述雾化储水装置201具有用于储放雾化用水的雾化储水腔2011和与处理筒组件相连通的雾化水输出端2016,所述雾化发生装置设置在雾化储水腔201的外部,雾化发生装置201的能量输出端作用于雾化储水腔2011内的雾化用水使其转变为水雾并经由雾化水输出端2016进入到处理筒组件内进行衣物雾化处理。
本实施例的衣物处理装置通过雾化模块200生成水雾,将水雾通入处理筒组件内进行衣物雾化处理,经过雾化处理后的衣物无褶皱、误无异味,极大的提升了用户的使用体验。
本实施例的雾化发生装置201可以采用多种方式,雾化发生装置201可采用超声波、机械振动、静电、高压等形式作用于水生成水雾。
作为本实施例的一种实施方式,本实施例所述的雾化发生装置为超声波雾化发生器,超声波雾化发生器包括超声波振动端;所述雾化储水装置201的雾化储水腔的外壁上开设用于安装超声波振动端的安装口2015,超声波振动端与雾化储水腔内的雾化用水接触,超声波振动端高频谐振将液态水分子结构打散产生水雾。
进一步地,本实施例所述的超声波振动端包括雾化振动片205以及安装雾化振动片205的振动片支架206,所述的振动片支架206密封安装在雾化储水装置的安装口2015上,所述的雾化振动片205设置在所述安装口2015内与雾化储水腔内的雾化用水接触。
具体地,本实施例的振动片支架206为管状结构,管状结构与安装口2015密封连接,所述管状结构与安装口之间设置密封圈207。
由于超声波雾化装置随着市场的发展技术越来越成熟,价格也越来越便宜,更利于在衣物处理装置上进行市场推广。
超声波雾化发生器利用电子高频震荡(振荡频率为1.7MHz或2.4MHz,超过人的听觉范围,该电子振荡对人体及动物绝无伤害),通过陶瓷雾化振动片的高频谐振,将液态水分子结构打散而产生自然飘逸的水雾,水雾化为1—100微米的超微粒子,均匀,不需加热或添加任何化学试剂。与加热雾化方式比较,能源节省了90%,另外在雾化过程中将释放大量的负离子,其与空气中漂浮的烟雾、粉尘等产生静电式反应,使其沉淀,同时还能有效去除甲醛、一氧化碳、细菌等有害物质,使的衣物护理体验更佳。
作为本实施的一种实施方式,所述雾化储水装置201还具有进气端2013和用于雾化用水进入的雾化水进入端2017,所述进气端2013位于雾化储水腔的最高储水液位之上。本实施例的雾化水进入端2017实现将外部水源引入到雾化储水装置201的雾化储水腔2011内,进气端2013实现将气流引入到雾化储水装置201的雾化储水腔2011内,气流冲击水雾更好的携带水雾由雾化水输出端2016排出进入到处理筒组件内。
本实施例的进气端2013的气流来源可以单独由风机提供,如图6所示,本实施例的进气端2013连接单独设置的雾化风机900,雾化风机900与衣物处理装置的主控制板电连接,通过主控板控制雾化风机900的开闭。
如图5所示,本实施例的进气端2013的气流来源也可以根据衣物处理装置的工作方式获取,当本实施例的衣物处理装置具有烘干功能时,即所述衣物处理装置包括与处理筒组件相连通的烘干风道602,所述的进气端2013与烘干风道602相连通。本实施例根据衣物处理装置具有烘干功能的工作方式,直接利用烘干风道内的烘干风用作驱动水雾的风源,结构简单,整体成本较低,具有广阔的市场价值。
优选地,所述的烘干风道602内设置用于驱动烘干风流动的风机605,所述的进气端2013与烘干风道602的连接处位于风机605的下游位置;这样,风机605可驱动烘干风进入到雾化储水装置201内。
进一步优选地,所述的烘干风道602内还设置有用于加热烘干风的加热管601,所述的 进气端2013与烘干风道602的连接处位于加热管601与风机605之间。
本实施例所述风机605包含电机604和扇叶603,电机604通电,所述扇叶603高速旋转,可以将气体排至安装有加热管601的风道处,吸引外筒后面底部的气体流至扇叶603处。继续循环上述过程,实现外筒内部持续高温气体,实现衣物干燥。
作为本实施的一种实施方式,所述雾化储水装置201的雾化水输出端2016通过烘干风道602与筒体组件相连通。
优选地,所述的烘干风道602具有与筒体组件相连通用于向筒体组件内通入热烘干风的烘干风出风端,所述雾化储水装置201的雾化水输出端2016与烘干风道的连接处位于加热管601与烘干风出风端之间。
作为本实施的一种实施方式,所述衣物处理装置为洗衣干衣机,洗衣干衣机包括进水阀800和洗涤剂盒500,进水阀800具有与雾化储水装置201的雾化水进入端2017相连通的雾化进水控制端和与洗涤剂盒500相连通的洗涤剂盒进水控制端。本实施例基于洗衣干衣机的进水阀800改进,实现了洗涤剂盒500和雾化储水装置201双路进水控制,结构更为简单,更易进行集成控制。
作为本实施的一种实施方式,所述的衣物处理装置为干衣机,干衣机包括进水阀,进水阀的输出端连通雾化储水装置的雾化水进入端,进水阀的进水端外接水源。本实施例针对干衣机增加进水阀实现雾化储水装置的进水控制,通过烘干过程中加入雾化过程,使得烘干的衣物无褶皱,更平整,提升用户使用体验。
作为本实施的一种实施方式,所述衣物处理装置为洗衣机,洗衣机包括进水阀和洗涤剂盒,进水阀具有与雾化储水装置的雾化水进入端相连通的雾化进水控制端和与洗涤剂盒相连通的洗涤剂盒进水控制端;
洗衣机包括外筒和设置在外筒内的内筒,所述雾化储水装置的雾化水输出端与外筒相连通,所述雾化储水装置的进气端连接用于向雾化储水腔内吹风的雾化风机。
作为本实施的一种实施方式,所述雾化储水装置201包括具有开口腔室的壳体2014和盖装在壳体2014的开口上的盖体2012,所述盖体2012与壳体2014共同围合形成所述雾化储水腔2011。
所述的雾化水进入端2017为设置在盖体上的雾化水进入口,所述的雾化水输出端2016为设置在壳体2014侧壁上的雾化水输出口,所述的进气端2013为设置在壳体2014侧壁上的进气口,所述的雾化水输出口、进气口均位于雾化储水腔2011内最高水位之上,优选地,所述的雾化水输出口与进气口相对设置,这样,水雾可更好在气流作用下由雾化水输出口 排出。
所述安装口2015设置在壳体2014的底壁上,优选地,所述壳体2014的底壁呈由高向低的过渡设置,所述安装口2015设置在壳体底壁的最低位置处。
本实施例的超声波雾化发生器通过电源线连接至洗衣机电源板上。控制面板可以控制所述超声波雾化发生器的开停。
作为本实施例的一种实施方式,所述雾化储水装置201的雾化储水腔2011内部还可以设置液位传感器,防止水位过高外溢或者水位过低导致超声波雾化发生器损坏。
优选的,雾化储水装置201具有溢水口,超声波雾化发生器自带最低启动水位检测。
优选的是采用探针检测最低水位,两根水位控制探针紧固在雾化储水装置201的雾化储水腔2011内壁上,并按一定距离排列再垂直伸出雾化储水装置201外一定高度,只有这两个探针都在水中,才可以启动,都以便控制被雾化溶液的最低水位。
超声波雾化发生器电源和工作电路都单独装在一个工程塑料壳内,当该装置的由洗衣机控制器控制电源驱动板供电,输出电流会通过导线给超声波振动端供电工作。
超声波雾化发生器具有断水自动保护功能,当水位低于水位开关或者水位探针时,超声波雾化发生器会自动停止工作。
如图4及图5所示,本实施例以具有烘干功能的洗衣机为例进行进一步说明:
本实施例洗衣机具有外壳100,有上面板、侧面板底板等组成。
外壳100的底板紧固连接有底脚400,支撑整个洗衣机。
外壳100内部悬挂有外筒,内部有内筒。
外筒有上悬挂部,通过悬挂弹簧挂在洗衣机侧面板或者加强梁上。
外筒由下连接部,通过阻尼器连接在底板上并由其支撑。
所述壳体100内至少具有一个雾化模块200。
前面板至少有两个可以打开的盖板。分别为洗涤盒盖板和雾化模块盖板。打开洗涤盒盖板可以向洗涤盒中投放洗涤剂、柔顺剂、漂白剂等;打开雾化模块盖板,消费者可以向雾化储水装置201内添加增香剂、衣物蓬松剂等衣物护理用品。使得水雾经加热为蒸汽处理衣物实现增香、蓬松,效果更佳。
所述洗涤盒500和雾化模块200放置位置分别为洗衣机的两个边角上,充分利用外筒与壳体之间的闲置空间。
进水阀800,至少一个进水阀控制进水经过洗涤盒进水管501进入洗涤剂盒500。至少一个进水阀控制进水经过雾化进水管203进入雾化储水装置201内。
烘干风道,所述烘干风道通过软管连接至外筒或者窗垫的前面上部,后端通过软管连接至外筒的后面底部,进而可以实现外筒整个的热风循环。
加热管,所述加热管设在所述烘干风道内。
风机,所述风机设在所述风道内。
本实施例同时提供一种衣物处理装置的控制方法,所述的衣物处理装置在执行烘干程序、或者蒸汽洗程序、或者空气洗程序过程中,控制雾化模块工作,雾化模块生成水雾进入到处理筒组件内进行衣物雾化处理。这样,用户在触控面板上选择洗涤程序时加选了烘干、蒸汽洗、空气洗程序后,在此过程中具有雾化模块工作,水雾对衣物处理,实现除去异味,无褶皱。
实施例三
如图4-图6及图8-图10所示,本实施例的一种衣物处理装置,包括:
处理筒组件,待处理衣物容置于处理筒组件内;
雾化模块200,包括雾化储水装置201和雾化发生装置,所述雾化储水装置201具有用于储放雾化用水的雾化储水腔2011和与处理筒组件相连通的雾化水输出端2016,所述雾化发生装置设置在雾化储水腔2011的外部,雾化发生装置2011的能量输出端作用于雾化储水腔2011内的雾化用水使其转变为水雾并经由雾化水输出端2016进入到处理筒组件内进行衣物雾化处理;
以及挡水部件,设置在雾化储水腔2011内用于阻挡水进入雾化水输出端2016。
本实施例的衣物处理装置通过雾化模块200生成水雾,将水雾通入处理筒组件内进行衣物雾化处理,经过雾化处理后的衣物无褶皱、误无异味,极大的提升了用户的使用体验。
本实施例在雾化储水腔2011内设置挡水部件,所述的挡水部件可以阻挡未雾化的水进入到雾化水输出端2016并排出,从而确保衣物的雾化处理效果。
具体地,本实施例所述的雾化水输出端2016为开设在雾化储水腔2011侧壁上的雾化水输出口,所述的挡水部件具有可覆盖住雾化水输出口的阻挡面以阻挡水进入雾化水输出口,阻挡面的至少一侧边与雾化储水腔内壁间隔设置使得水雾能由此进入到雾化水输出口。
如图8所示,作为本实施例的一种实施方式,所述的挡水部件为挡水板207,挡水板207的下端朝向雾化水输出口倾斜的设置在雾化储水腔2011内,挡水板207的至少一侧边与雾化储水腔2011内壁间隔设置,挡水板207朝向雾化用水的一侧为阻挡面;所述雾化储水腔内产生的水雾由挡水板与雾化储水腔内壁之间的间隔处进入雾化水输出口,水雾中携带的未雾化水受到挡水板的阻挡面的阻挡并沿阻挡面滑落。
具体地,本实施例所述的雾化水输出口设置在雾化储水腔的侧壁上,所述挡水板207的下端连接在雾化水输出口的下方,挡水板207的上端朝着远离雾化水输出口的斜上方延伸,挡水板的上端与雾化储水腔的顶壁间隔设置;
或者,所述挡水板207的上端连接在雾化储水腔2011的顶壁上,挡水板207的下端朝着靠近雾化水输出口的斜下方延伸,挡水板207的下端与雾化水输出口下方的雾化储水腔的侧壁间隔设置。
如图9所示,作为本实施例的一种实施方式,所述的挡水部件为挡水罩208,挡水罩208覆盖住雾化水输出口,挡水罩208的边缘至少部分与雾化水输出口外周的雾化储水腔内壁间隔设置,挡水罩208的外表面为阻挡面;所述雾化储水腔内产生的水雾由挡水罩208与雾化储水腔内壁之间的间隔处进入雾化水输出口,水雾中携带的未雾化水受到挡水罩208的阻挡面的阻挡并沿阻挡面滑落。
具体地,所述挡水罩208具有开口的内部腔室,挡水罩的开口端罩住雾化水输出口,且开口端的至少局部边沿与雾化水输出口外周的雾化储水腔内壁间隔设置;
优选地,所述的挡水罩为圆锥形罩体或者圆台形罩体。
如图10所示,作为本实施例的一种实施方式,所述的挡水部件为具有集水槽2091的集水槽挡板209,所述集水槽挡板209的一端设置在雾化水输出口下方的雾化储水腔侧壁雾上,另一端向雾化储水腔内延伸,所述集水槽的底壁上开设落水口2092。
具体地,所述集水槽挡板209由平整板状结构局部弯折形成,所述弯折部形成集水槽2091;优选地,所述集水槽挡板209的一端连接在雾化水输出口的下方,另一端水平延伸,所述集水槽挡板的延伸末端朝向雾化储水腔顶壁向上倾斜延伸,且与雾化储水腔顶壁间隔设置;所述集水槽为由集水槽挡板局部弯折形成的U型槽。
以上所述仅是本发明的较佳实施例而已,并非对本发明作任何形式上的限制,虽然本发明已以较佳实施例揭露如上,然而并非用以限定本发明,任何熟悉本专利的技术人员在不脱离本发明技术方案范围内,当可利用上述提示的技术内容作出些许更动或修饰为等同变化的等效实施例,但凡是未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何简单修改、等同变化与修饰,均仍属于本发明方案的范围内。

Claims (10)

  1. 一种衣物处理装置的控制方法,衣物处理装置包括:
    处理筒组件,待处理衣物容置于处理筒组件内;
    雾化模块,用于产生雾化水并通入所述的处理筒组件内部;
    其特征在于,所述的控制方法包括:
    衣物处理装置执行烘干程序、和/或蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,当衣物湿度达到设定湿度值时控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。
  2. 根据权利要求1所述衣物处理装置的控制方法,其特征在于,所述的衣物处理装置设置第一湿度值,衣物处理装置执行烘干程序过程中,当衣物湿度值达到第一湿度值时,控制执行烘干后雾化处理过程,所述烘干后雾化处理过程包括控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。
  3. 根据权利要求2所述衣物处理装置的控制方法,其特征在于,所述衣物处理装置设置第二湿度值,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,当衣物湿度值达到第二湿度值时,则烘干后雾化处理过程结束,控制雾化模块关闭,烘干程序结束;
    或者,所述衣物处理装置控制雾化模块启动一设定时间T1后关闭,则烘干后雾化处理过程结束,控制雾化模块关闭,烘干程序结束。
  4. 根据权利要求2或3所述衣物处理装置的控制方法,其特征在于,当衣物湿度值达到第一湿度值时,衣物烘干完成,控制雾化模块启动,控制烘干加热模块关闭、烘干循风环装置保持开启直至烘烘干物达到冷却温度,则控制雾化模块、烘干风循环装置关闭,烘干程序结束。
  5. 根据权利要求1-4任意一项所述衣物处理装置的控制方法,其特征在于,所述的衣物处理装置设置第三湿度值,衣物处理装置执行烘干程序过程中,当衣物湿度值达到第三湿度值时,控制执行烘干中雾化处理过程,所述烘干中雾化处理过程包括控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理。
  6. 根据权利要求5所述衣物处理装置的控制方法,其特征在于,所述衣物处理装置设置第四湿度值,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,当衣物湿度值达到第四湿度值时,则烘干中雾化处理过程结束,控制雾化模块关闭,烘干中雾化处理过程结束;
    或者,所述衣物处理装置控制雾化模块启动一设定时间T2后关闭,则控制雾化模块关 闭,烘干中雾化处理过程结束。
  7. 根据权利要求5或6所述衣物处理装置的控制方法,其特征在于,当所述衣物处理装置在执行烘干中雾化处理过程中,控制烘干加热模块关闭、烘干循风环装置保持开启,暂停烘干过程;
    当所述衣物处理装置执行的烘干中雾化处理过程结束后,控制烘干加热模块开启、烘干循风环装置保持开启,继续烘干过程。
  8. 根据权利要求1-7任意一项所述衣物处理装置的控制方法,其特征在于,衣物执行蒸汽洗程序、和/或空气洗程序、和/或除异味程序过程中,控制雾化模块启动产生雾化水进入到处理筒组件内对衣物进行雾化处理,所述的衣物处理装置设置第五湿度值,当衣物湿度值达到第五湿度值时,控制雾化模块关闭。
  9. 根据权利要求8所述衣物处理装置的控制方法,其特征在于,当衣物湿度值达到第五湿度值时,控制雾化模块关闭后执行烘干过程,所述烘干过程中执行所述烘干后雾化处理过程和/或烘干中雾化处理过程。
  10. 根据权利要求1-9任意一项所述衣物处理装置的控制方法,其特征在于,所述雾化模块,包括雾化储水装置和雾化发生装置,所述雾化储水装置具有用于储放雾化用水的雾化储水腔和与处理筒组件相连通的雾化水输出端,所述雾化发生装置设置在雾化储水腔的上,雾化发生装置的能量输出端作用于雾化储水腔内的雾化用水使其转变为水雾并经由雾化水输出端进入到处理筒组件内进行衣物雾化处理;
    所述衣物处理装置通过控制雾化发生装置的开启/关闭以控制雾化水是否生成。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119777114A (zh) * 2025-01-02 2025-04-08 Tcl家用电器(合肥)有限公司 一种除菌控制方法、控制装置、衣物处理设备及存储介质

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113605037B (zh) * 2020-10-26 2024-11-05 松下家电(中国)有限公司 衣物护理设备的控制方法
CN114438712B (zh) * 2020-11-03 2025-09-23 青岛海尔洗涤电器有限公司 一种衣物处理装置的控制方法
CN113512867A (zh) * 2021-04-30 2021-10-19 中山东菱威力电器有限公司 一种多功能热泵干衣机及其控制方法
CN115323739A (zh) * 2021-05-10 2022-11-11 青岛海尔滚筒洗衣机有限公司 一种干衣机的喷雾控制方法及干衣机
CN115679624B (zh) * 2021-07-26 2025-11-11 漳州灿坤实业有限公司 衣物护理机及其拉力调整方法与含水量控制方法
CN115787247A (zh) * 2021-09-10 2023-03-14 青岛海尔洗涤电器有限公司 衣物处理设备的衣物处理方法
CN114645439B (zh) * 2022-04-15 2023-03-28 珠海格力电器股份有限公司 一种干衣设备及其控制方法和控制装置
CN115491888A (zh) * 2022-10-10 2022-12-20 Tcl家用电器(合肥)有限公司 干衣机的控制方法和干衣机

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003326079A (ja) * 2002-05-14 2003-11-18 Matsushita Electric Ind Co Ltd 洗濯乾燥機
JP2010051664A (ja) * 2008-08-29 2010-03-11 Sharp Corp 乾燥機
CN101713133A (zh) * 2008-09-29 2010-05-26 松下电器产业株式会社 洗涤烘干机
US20150176193A1 (en) * 2013-12-19 2015-06-25 Mabe, S.A. De C.V. Intelligent electronic system for removing wrinkles on textile clothes and method for carrying out said wrinkle removal
CN106811911A (zh) * 2015-12-02 2017-06-09 青岛海尔智能技术研发有限公司 滚筒式洗衣机及其控制方法

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06233898A (ja) * 1992-12-15 1994-08-23 Toshiba Corp 衣類乾燥機
JP4499769B2 (ja) 2007-09-05 2010-07-07 パナソニック株式会社 ドラム式洗濯乾燥機
DE102010027991A1 (de) * 2010-04-20 2011-10-20 Henkel Ag & Co. Kgaa Dosiersystem zur Verwendung in Verbindung mit einem wasserführenden Haushaltsgerät wie eine Waschmaschine, Spülmaschine, Wäschetrockner oder dergleichen
JP5655872B2 (ja) 2013-01-23 2015-01-21 三菱電機株式会社 衣類メンテナンス装置
CN206052421U (zh) * 2016-08-19 2017-03-29 四川飞洁洗涤设备制造有限公司 烘干机喷淋装置
CN107541900B (zh) * 2017-09-20 2020-12-25 青岛科技大学 家用衣物清洗机

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003326079A (ja) * 2002-05-14 2003-11-18 Matsushita Electric Ind Co Ltd 洗濯乾燥機
JP2010051664A (ja) * 2008-08-29 2010-03-11 Sharp Corp 乾燥機
CN101713133A (zh) * 2008-09-29 2010-05-26 松下电器产业株式会社 洗涤烘干机
US20150176193A1 (en) * 2013-12-19 2015-06-25 Mabe, S.A. De C.V. Intelligent electronic system for removing wrinkles on textile clothes and method for carrying out said wrinkle removal
CN106811911A (zh) * 2015-12-02 2017-06-09 青岛海尔智能技术研发有限公司 滚筒式洗衣机及其控制方法

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119777114A (zh) * 2025-01-02 2025-04-08 Tcl家用电器(合肥)有限公司 一种除菌控制方法、控制装置、衣物处理设备及存储介质

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