WO2022110447A1 - 衣物护理机及衣物护理机的温度控制方法 - Google Patents

衣物护理机及衣物护理机的温度控制方法 Download PDF

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Publication number
WO2022110447A1
WO2022110447A1 PCT/CN2020/139791 CN2020139791W WO2022110447A1 WO 2022110447 A1 WO2022110447 A1 WO 2022110447A1 CN 2020139791 W CN2020139791 W CN 2020139791W WO 2022110447 A1 WO2022110447 A1 WO 2022110447A1
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WIPO (PCT)
Prior art keywords
assembly
sub
care machine
inner tank
equipment compartment
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PCT/CN2020/139791
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English (en)
French (fr)
Inventor
王世宇
Original Assignee
广州视源电子科技股份有限公司
广州易家智能电子科技有限公司
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Publication of WO2022110447A1 publication Critical patent/WO2022110447A1/zh

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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
    • D06F58/00Domestic laundry dryers
    • D06F58/10Drying cabinets or drying chambers having heating or ventilating means
    • 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
    • D06F58/20General details of domestic laundry dryers 
    • 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
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/24Condensing arrangements
    • 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
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/26Heating arrangements, e.g. gas heating equipment
    • 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
    • D06F58/20General details of domestic laundry dryers 
    • D06F58/26Heating arrangements, e.g. gas heating equipment
    • D06F58/263Gas heating equipment
    • 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
    • D06F58/38Control of operational steps, e.g. for optimisation or improvement of operational steps depending on the condition of the laundry of drying, e.g. to achieve the target humidity

Definitions

  • the present application relates to the field of clothing care, and in particular, to a clothing care machine and a temperature control method for the clothing care machine.
  • the main functions of the clothing care machine are ironing, drying, deodorization, and sterilization.
  • a compressor or a PTC heater is often used to heat the inner tank of the clothes care machine to dry the clothes in the inner tank. Since the condenser and evaporator of the compressor are in the same air duct, the heat of the condenser easily enters the inner tank through the air duct, thus affecting the drying temperature in the inner tank.
  • the present application provides a clothing care machine and a temperature control method for the clothing care machine.
  • the condenser and the evaporator air ducts are separated from each other, the air flow in the condenser and the evaporator do not interfere with each other, and the air flow in the evaporator can avoid drying in the bladder. effect of drying temperature.
  • the application provides a clothing care machine, comprising: a cabinet body and a heat pump system, the cabinet body includes a shell, an inner tank and an equipment compartment, and the inner tank and the equipment compartment are located in the shell;
  • the equipment compartment includes multiple sub-equipment compartments that are isolated from each other.
  • the heat pump system includes a compressor, a condensing component and an evaporating component.
  • the condensing component and the evaporating component are located in different sub-equipment compartments. Both the condensing component and the evaporating component are connected to the compressor. The component is communicated with the evaporation component.
  • the sub-equipment compartment corresponding to the evaporation component has an evaporative air inlet and an evaporative air outlet arranged at intervals. Both the evaporative air inlet and the evaporative air outlet are connected to the inner tank.
  • the air inlet and the condensing air outlet, the condensing air inlet and the condensing air outlet are all communicated with the outer side of the housing.
  • the present application provides a clothing care machine
  • the housing has a plurality of partitions, and any two of the partitions, the inner wall of the housing and the bottom wall of the inner container enclose a sub-equipment compartment.
  • the present application provides a clothing care machine, wherein the plurality of sub-equipment compartments include a first sub-equipment compartment and a second sub-equipment compartment arranged at intervals;
  • the first sub-equipment compartment has a first accommodating cavity, the evaporation component is located in the first accommodating cavity, and both the evaporation air inlet and the evaporation air outlet are communicated with the first accommodating cavity;
  • the present application provides a clothes care machine
  • the evaporation assembly includes an evaporator and a rotatable first wind wheel
  • the evaporator is communicated with the compressor
  • the evaporation air outlet is located above the first wind wheel
  • the first wind wheel A wind wheel is adjacent to the evaporator
  • the first wind wheel rotates to generate suction, so that the hot and humid gas in the inner tank enters the first accommodating cavity through the evaporation air inlet, and enters the inner chamber through the evaporator, the first wind wheel and the evaporation air outlet in turn. gall.
  • the present application provides a clothes care machine
  • the condensing assembly includes a condenser and a rotatable second wind wheel
  • the evaporator and the compressor are both communicated with the condenser
  • the condenser is located at the condensation air inlet and the first Between the two wind turbines, the condensing air inlet is located on the side of the casing, and the condensing air outlet is located on the bottom surface of the casing.
  • the present application provides a clothes care machine, further comprising a dual-shaft driving member, the dual-shaft driving member is located between the first sub-equipment compartment and the second sub-equipment compartment, and two of the bi-axial driving members
  • the output shafts are respectively connected with the first wind wheel and the second wind wheel to drive the first wind wheel and the second wind wheel to rotate synchronously.
  • the present application provides a clothes care machine, the detector is arranged in the evaporation air outlet, and the heater is arranged in the evaporation air inlet.
  • the present application provides a clothing care machine, further comprising a boiler and a water supply assembly for supplying water to the boiler, the boiler is used for vaporizing water into water vapor, and the boiler is communicated with the first sub-equipment compartment to allow water vapor to enter the bladder; and/or,
  • waste water collection assembly which is communicated with the first sub-equipment chamber to collect waste water generated by the evaporation assembly.
  • the present application also provides a temperature control method for a clothes care machine.
  • the method is applied to the clothes care machine.
  • the care machine includes a cabinet body and a heat pump system.
  • the cabinet body includes a shell, an inner tank and an equipment compartment. in vivo;
  • control the heater When the temperature is lower than the preset value, control the heater to turn on to heat the gas entering the inner tank;
  • FIG. 1 is a schematic structural diagram 1 of a clothing care machine in the related art
  • FIG. 2 is a schematic structural diagram 2 of a clothing care machine in the related art
  • FIG. 3 is a schematic structural diagram of a clothing care machine provided by an embodiment of the present application.
  • Fig. 5 is the partial enlarged view of A place in Fig. 4;
  • 700-water supply assembly 710-clean water tank; 720-first water pump;
  • FIG. 1 is a first structural schematic diagram of a clothing care machine in the related art
  • FIG. 2 is a second structural schematic diagram of the clothing care machine in the related art.
  • a compressor or a PTC heater is often used to heat the inner tank of the laundry care machine, so as to dry the clothes in the inner tank.
  • the present application provides a clothes care machine, the condenser and the evaporator air ducts are separated from each other, the air flow in the condenser and the evaporator do not interfere with each other, and the influence of the air flow in the evaporator on the drying temperature in the bladder is avoided. .
  • FIG. 3 is a schematic structural diagram of the clothes care machine provided by the embodiment of the application
  • FIG. 4 is a side view of the clothes care machine provided by the embodiment of the application
  • FIG. 5 is a partial enlarged view of A in FIG. 4 .
  • the laundry care machine provided by the embodiment of the present application includes a cabinet 100 and a heat pump system 200
  • the cabinet 100 includes a housing 110 , an inner tank 120 and an equipment compartment 130
  • the inner tank 120 and the equipment compartment 130 is located within housing 110 .
  • the equipment compartment 130 includes a plurality of mutually isolated sub-equipment compartments
  • the heat pump system 200 includes a compressor 210, a condensing assembly 220 and an evaporation assembly 230, and the compressor 210, the condensing assembly 220 and the evaporation assembly 230 are located in different sub-equipment compartments respectively.
  • the heat pump system 200 may include a compressor 210, a condensing assembly 220, and an evaporating assembly 230. Both the condensing assembly 220 and the evaporating assembly 230 communicate with the compressor 210 through pipes, and the condensing assembly 220 communicates with the evaporating assembly 230 through pipes.
  • a low-temperature damp-heat gas (30° C.-50° C.) is formed inside the inner tank 120 , and the humid-heat gas is condensed on the heat pump system 200 . The gas is thus discharged into the inner tank 120 to dry the clothes in the inner tank 120 at a low temperature.
  • the specific process of condensation of the hot and humid gas on the heat pump system 200 is as follows: under the driving of the compressor 210, the refrigerant in the vapor state flows in the pipeline, from the compressor 210 to the condensing component 220, The refrigerant is simultaneously subjected to the high pressure of the compressor 210, and the refrigerant changes from a vapor state to a liquid state and releases heat. The heat exchange is performed through the condensing assembly 220, and the condensing assembly 220 generates heat. The refrigerant in liquid state flows into the evaporating assembly 230, and the refrigerant in liquid state evaporates in the evaporating assembly 230.
  • a plurality of mutually isolated sub-equipment compartments are arranged in the equipment compartment 130, that is, each sub-equipment compartment is disconnected from each other, and the condensing assembly 220 and the The evaporation assemblies 230 are respectively located in different sub-equipment compartments. In this way, the condensing assembly 220 and the evaporation assembly 230 are isolated to prevent the high temperature around the condensing assembly 220 from affecting the evaporation assembly 230 .
  • the sub-equipment compartment corresponding to the evaporation assembly 230 has an evaporative air inlet 231 and an evaporative air outlet 232 arranged at intervals.
  • the hot and humid gas enters the sub-equipment compartment corresponding to the evaporation component 230 through the evaporation air inlet 231 , and the dried low-temperature gas enters the inner tank 110 through the evaporation air outlet 232 .
  • the sub-equipment compartment corresponding to the condensing assembly 220 has a condensing air inlet 221 and a condensing air outlet 222 arranged at intervals.
  • the low-temperature gas around the clothes care machine passes through, and the condensing air inlet 221 enters the sub-equipment compartment corresponding to the condensing assembly 220 and takes away the condensing assembly 220.
  • the heat in the corresponding sub-equipment compartment is discharged out of the casing 100 through the condensation air outlet 222, thereby cooling the condensation component 220 (wherein, the flow direction of the gas in the condensation component 220 is the direction of the dotted arrow in FIG. 4).
  • the condensation assembly 220 and the evaporation assembly 230 are placed in different sub-equipment compartments, and the sub-equipment compartments are isolated from each other and not communicated with each other. Therefore, while the condensing water is condensed by the evaporating assembly 230, the condensing assembly 220 dissipates heat, and the gases in the condensing assembly 220 and the evaporating assembly 230 do not affect each other. Avoid high temperatures around the condensing assembly 220 from affecting the evaporation assembly 230 .
  • the casing 110 has a plurality of partitions, and any two of the partitions, the inner wall of the casing 110 and the bottom wall of the inner tank 120 enclose the sub-equipment compartment.
  • the separators may include a plurality of first separators 111a and a plurality of second separators 111b.
  • the two first partitions 111a, the inner side wall of the casing 110 and the inner bottom wall of the casing 110 enclose a sub-equipment compartment for accommodating the condensing assembly 220, wherein the condensing air inlet 221 may be located on the side wall of the casing 110 , and the condensation air outlet 222 may be located on the bottom wall of the casing 110 .
  • the three second partitions 111b and the bottom wall of the inner container 120 enclose a sub-equipment compartment for accommodating the evaporation assembly 230 , wherein the evaporation air inlet 231 and the evaporation air outlet 232 may be located on the bottom wall of the inner container 120 .
  • the parts other than the sub-equipment compartment for accommodating the condensation assembly 220 and the sub-equipment compartment for accommodating the evaporation assembly 230 may constitute a sub-equipment compartment for accommodating the compressor 210 or other components of the foreign body care machine.
  • an adaptive partition design of the sub-equipment compartment is performed according to the structure of the internal components of the foreign body care machine, which is not limited in this embodiment.
  • the plurality of sub-equipment compartments include a first sub-equipment compartment 131 and a second sub-equipment compartment 132 arranged at intervals.
  • the first sub-equipment compartment 131 has a first accommodating cavity, the evaporation assembly 230 is located in the first accommodating cavity, and both the evaporation air inlet 231 and the evaporation air outlet 232 communicate with the first accommodating cavity. That is, the three second partitions 111b and the bottom wall of the inner tank 120 enclose the first sub-equipment compartment 131 for accommodating the evaporation assembly 230 .
  • the second sub-equipment compartment 132 has a second accommodating cavity, the condensing assembly 220 is located in the second accommodating cavity, and both the condensing air inlet 221 and the condensing air outlet 222 communicate with the second accommodating cavity. That is, the two first partitions 111 a , the inner side wall of the casing 110 and the inner bottom wall of the casing 110 enclose the second sub-equipment compartment 132 for accommodating the condensing assembly 220 .
  • the other spaces of the equipment bay 130 form a third sub-equipment bay 133 , wherein the compressor 210 may be located in the third sub-equipment bay 133 .
  • the evaporation assembly 230 includes an evaporator 233 and a rotatable first wind wheel 234, the evaporator 233 is communicated with the compressor 210, the evaporation air outlet 232 is located above the first wind wheel 234, A wind wheel 234 is adjacent to the evaporator 233, and the first wind wheel 234 rotates to generate suction, so that the hot and humid gas in the inner tank 120 enters the first accommodating cavity through the evaporation air inlet 232, and passes through the evaporator 233 and the first wind wheel in turn. 234 and the evaporative air outlet 232 enter the inner tank 120 .
  • the condensing assembly 220 may include a condenser 223 and a rotatable second wind wheel 224, the evaporator 233 and the compressor 210 are both communicated with the condenser 223, and the condenser 223 is located between the condensation air inlet 221 and the second wind wheel 224, and the condenser
  • the air inlet 221 is located on the side surface of the casing 110
  • the condensation air outlet 222 is located on the bottom surface of the casing 110 .
  • the second wind wheel 224 rotates to generate suction, so that the air outside the clothes care machine enters the second accommodating cavity of the second sub-equipment compartment 132 through the condensing air inlet 221, cools the condenser 223, and then condenses out The tuyere 222 is discharged out of the laundry care machine.
  • the laundry care machine provided in the embodiment of the present application further includes a dual-shaft driving member 300, and the dual-shaft driving member 300 is located between the first sub-equipment compartment 131 and the second sub-equipment compartment 132.
  • the two output shafts of the shaft driving member 300 are respectively connected with the first wind wheel 234 and the second wind wheel 224 to drive the first wind wheel 234 and the second wind wheel 224 to rotate synchronously.
  • the dual-axis driving member 300 may be a dual-axis motor, and the dual-axis motor may be located in the third sub-equipment compartment 133 .
  • the biaxial motor has two coaxially arranged drive shafts, the two drive shafts extend toward opposite sides of the biaxial motor respectively, and one of the drive shafts is connected to the first wind wheel 234 and the other is connected to the second wind wheel 224 .
  • the shaft motor rotates, the first wind wheel 234 and the second wind wheel 224 are driven to rotate synchronously by the two synchronously rotating drive shafts. That is, the first wind wheel 234 and the second wind wheel 224 are simultaneously driven to rotate synchronously by one motor, which is compact in structure, saves space and saves cost.
  • the clothes care machine provided by the embodiments of the present application further includes a controller (not shown in the figure), a detector 400 and a heater 500 for heating
  • the device 500 is used to heat the temperature of the gas entering the inner tank 120 through the evaporation outlet 232, the detector 400 is used to detect the temperature of the inner tank 120, and the controller is used to control the heater 500 when the temperature of the inner tank 120 is lower than the preset value.
  • the heater 500 is controlled to be turned off.
  • the heater 500 may be a PTC heater or a resistance wire heater.
  • the detector 400 is disposed in the evaporation air outlet 232 , thereby improving the accuracy of the detector 400 in detecting the temperature of the inner container 120 .
  • the heater 500 is disposed in the evaporation air inlet 231 , thereby ensuring that the gas is heated before entering the inner tank 120 .
  • the clothes care machine provided in this embodiment of the present application further includes a boiler 600 and a water supply assembly 700 for supplying water to the boiler 600, where the boiler 600 is used to vaporize water into steam, the boiler 600 and the first sub-equipment warehouse 131 connected to allow water vapor to enter the inner pot 120 .
  • the water supply assembly 700 may include a water purification tank 710 and a first water pump 720 , and the water purification tank 710 and the boiler 600 are connected through the first water pump 720 .
  • the clean water tank 710 is used to hold water
  • the first water pump 720 is used to pump the water in the clean water tank 710 into the boiler 600 .
  • the first water pump 720 may be located in the clean water tank 710, thereby saving space.
  • the first water pump 720 can also be located outside the clean water tank 710, so that the water clean tank 710 can hold more water.
  • the laundry care machine further includes a waste water collection assembly 800 that communicates with the first sub-equipment compartment 131 to collect waste water generated by the evaporation assembly 230 .
  • the waste water collection assembly 800 may include a waste water tank 810 and a second water pump 820 connected to the waste water tank 810 , and the second water pump 820 is in communication with the first sub-equipment bay 131 .
  • the second water pump 820 may be located in the waste water tank 810, thereby saving space.
  • the second water pump 820 can also be located outside the waste water tank 810 , so that more waste water can be collected in the waste water tank 810 .
  • the water supply assembly 700 and the waste water collection assembly 800 may be located in the third sub-equipment compartment 133 .
  • FIG. 6 is a flowchart of a temperature control method for a laundry care machine provided by an embodiment of the present application. Referring to FIG. 6 , an embodiment of the present application further provides a temperature control method for a clothes care machine, wherein the clothes care machine is the clothes care machine provided in the above embodiments.
  • the laundry care machine may include a cabinet 100 and a heat pump system 200 .
  • the cabinet 100 includes a casing 110 , an inner container 120 and an equipment compartment 130 , and the inner container 120 and the equipment compartment 130 are located in the casing 110 .
  • the equipment compartment 130 includes a plurality of mutually isolated sub-equipment compartments.
  • the heat pump system 200 includes a compressor 210, a condensing assembly 220 and an evaporation assembly 230.
  • the compressor 210, the condensing assembly 220 and the evaporation assembly 230 are located in different sub-equipment compartments, respectively.
  • Both the component 220 and the evaporating component 230 communicate with the compressor 210
  • the condensing component 220 communicates with the evaporating component 230
  • the sub-equipment compartment corresponding to the evaporating component 230 has an evaporative air inlet 231 and an evaporative air outlet 232 arranged at intervals.
  • the air outlets 232 are all communicated with the inner tank 110 , and the sub-equipment compartment corresponding to the condensing assembly 220 has a condensing air inlet 221 and a condensing air outlet 222 arranged at intervals.
  • the detector 400 is used to detect the temperature of the inner pot 120 , and the detector 400 is disposed in the evaporation air outlet 232 , thereby improving the accuracy of the detector 400 in detecting the temperature of the inner pot 120 .
  • the heater 500 is used to heat the temperature of the gas entering the inner tank 120 through the evaporation air outlet 232 .
  • the first water pump 720 is activated, and the first water pump 720 pumps the water in the water purification tank 710 into the boiler 600 quantitatively, and the boiler 600 starts to heat to generate water vapor.
  • the clothes in the gallbladder 120 are cared for, and the folds of the clothes are activated, stretched and smoothed through the penetration of water vapor.
  • the biaxial driving member 300 and the compressor 210 start to operate successively.
  • the biaxial driving member 300 drives the first wind wheel 234 and the second wind wheel 224 to rotate synchronously.
  • 701 enters the first accommodating cavity of the first sub-equipment chamber 131, passes through the evaporator 233 in the first accommodating cavity and condenses on the surface of the evaporator 233, and the dried gas after the moisture is separated out passes through the first wind wheel 234,
  • the heater 500 (when the temperature of the inner tank 120 is greater than or equal to the preset value, the heater 500 is not activated, and the dried gas after the moisture is separated out is then blown into the inner tank 120 through the first wind wheel 234 ) after heating and heating, the air outlet is released from the evaporation outlet.
  • the temperature control method of the clothing care machine provided by the embodiment of the present application can effectively compensate the temperature in the inner tank 120 by detecting the temperature of the gas in the inner tank 120 of the clothing care machine, so it can be used for clothes of different materials.
  • the corresponding temperature adjustment can effectively reduce the damage caused by high-end fabric care and drying.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)

Abstract

本申请提供一种衣物护理机及衣物护理机的温度控制方法,衣物护理机包括:柜体和热泵***,柜体包括壳体、内胆和设备仓;设备仓包括多个子设备仓,热泵***包括压缩机、冷凝组件和蒸发组件,冷凝组件和蒸发组件分别位于不同的子设备仓内,冷凝组件和蒸发组件均与压缩机连通,冷凝组件与蒸发组件连通,蒸发组件对应的子设备仓具有蒸发进风口和蒸发出风口,蒸发进风口和蒸发出风口均与内胆连通,冷凝组件对应的子设备仓具有冷凝进风口和冷凝出风口,冷凝进风口和冷凝出风口均与壳体的外侧连通。本申请提供的衣物护理机,冷凝器和蒸发器风道相互分开,冷凝器和蒸发器内的气流互不干扰,避免蒸发器内的气流对胆内的烘干温度的影响。

Description

衣物护理机及衣物护理机的温度控制方法
本申请要求于2020年11月27日提交中国专利局、申请号为CN202011363597.8、发明名称为“衣物护理机及衣物护理机的温度控制方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及衣物护理领域,尤其涉及一种衣物护理机及衣物护理机的温度控制方法。
背景技术
随着人们生活品质的提高,人们对衣物护理的需求也日益趋向个性化和多元化,针对衣物清洗、护理的要求也越来越高。衣物护理机的主要有熨烫、烘干、去味、除菌等功能。
在对衣物进行烘干时,常使用压缩机或者PTC加热器对衣物护理机的内胆进行加热,以烘干内胆中的衣物。由于压缩机的冷凝器和蒸发器在同一风道内,冷凝器的热量容易经风道进入内胆内,从而影响内胆内的烘干温度。
发明内容
本申请提供一种衣物护理机及衣物护理机的温度控制方法,冷凝器和蒸发器风道相互分开,冷凝器和蒸发器内的气流互不干扰,避免蒸发器内的气流对胆内的烘干温度的影响。
本申请提供一种衣物护理机,包括:柜体和热泵***,柜体包括壳体、内胆和设备仓,内胆和设备仓位于壳体内;
设备仓包括多个相互隔离的子设备仓,热泵***包括压缩机、冷凝组件和蒸发组件,冷凝组件和蒸发组件分别位于不同的子设备仓内,冷凝组件和蒸发组件均与压缩机连通,冷凝组件与蒸发组件连通,蒸发组件对应的子设备仓具有间隔设置的蒸发进风口和蒸发出风口,蒸发进风口和蒸发出风口均与内胆连通,冷凝组件对应的子设备仓具有间隔设置的冷凝进风口和冷凝出风口,冷凝进风口和冷凝出风口均与壳体的外侧连通。
作为一种可选的方式,本申请提供一种衣物护理机,壳体内具有多个 隔板,隔板、壳体的内壁和内胆的底壁任意两者围成子设备仓。
作为一种可选的方式,本申请提供一种衣物护理机,多个子设备仓包括间隔设置的第一子设备仓和第二子设备仓;
第一子设备仓具有第一容纳腔,蒸发组件位于第一容纳腔内,蒸发进风口和蒸发出风口均与第一容纳腔连通;
第二子设备仓具有第二容纳腔,冷凝组件位于第二容纳腔内,冷凝进风口和冷凝出风口均与第二容纳腔连通。
作为一种可选的方式,本申请提供一种衣物护理机,蒸发组件包括蒸发器和可旋转的第一风轮,蒸发器与压缩机连通,蒸发出风口位于第一风轮的上方,第一风轮与蒸发器相邻,第一风轮旋转产生吸力,以使内胆内的湿热气体经蒸发进风口进入第一容纳腔,依次经蒸发器、第一风轮和蒸发出风口进入内胆。
作为一种可选的方式,本申请提供一种衣物护理机,冷凝组件包括冷凝器和可旋转的第二风轮,蒸发器和压缩机均与冷凝器连通,冷凝器位于冷凝进风口和第二风轮之间,冷凝进风口位于壳体的侧面,冷凝出风口位于壳体的底面。
作为一种可选的方式,本申请提供一种衣物护理机,还包括双轴驱动件,双轴驱动件位于第一子设备仓和第二子设备仓之间,双轴驱动件的两个输出轴分别与第一风轮和第二风轮连接,以驱动第一风轮和第二风轮同步旋转。
作为一种可选的方式,本申请提供一种衣物护理机,还包括控制器、检测器和加热器,加热器用于加热经蒸发出风口进入内胆的气体的温度,检测器用于检测内胆内气体的温度,控制器用于在内胆内气体的温度小于预设值时,控制加热器开启,或者在内胆内气体的温度大于或等于预设值时,控制加热器关闭。
作为一种可选的方式,本申请提供一种衣物护理机,检测器设置于蒸发出风口内,加热器设置于蒸发进风口内。
作为一种可选的方式,本申请提供一种衣物护理机,还包括锅炉和用于为锅炉供水的供水组件,锅炉用于将水汽化为水蒸气,锅炉与第一子设备仓连通,以使水蒸气进入内胆;和/或,
还包括废水收集组件,废水收集组件与第一子设备仓连通,以收集蒸发组件产生的废水。
本申请还提供了一种衣物护理机的温度控制方法,方法应用在衣物护理机上,护理机包括柜体和热泵***,柜体包括壳体、内胆和设备仓,内胆和设备仓位于壳体内;
设备仓包括多个相互隔离的子设备仓,热泵***包括压缩机、冷凝组件和蒸发组件,冷凝组件和蒸发组分别位于不同的子设备仓内,蒸发组件对应的子设备仓具有加热器;
方法包括以下步骤:
将具有水蒸汽的内胆内的气体抽至设备仓;
启动热泵***,以将设备仓内的气体抽至内胆内;
检测内胆内气体的温度;
当温度小于预设值时,控制加热器开启,以加热进入内胆内的气体;
当内胆内气体的温度大于或等于预设值时,控制加热器关闭。
本申请提供的衣物护理机及衣物护理机的温度控制方法,通过将冷凝组件和蒸发组件放置于不同的子设备仓,且各子设备仓相互隔离,彼此之间互不连通。由此,在进行蒸发组件凝结冷凝水的同时,冷凝组件散热,冷凝组件和蒸发组件内的气体不会相互影响。避免位于冷凝组件周围的高温影响蒸发组件。
附图说明
为了更清楚地说明本申请实施例或相关技术中的技术方案,下面将对实施例或相关技术描述中所需要使用的附图作以简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为相关技术中衣物护理机的结构示意图一;
图2为相关技术中衣物护理机的结构示意图二;
图3为本申请实施例提供的衣物护理机的结构示意图;
图4为本申请实施例提供的衣物护理机的侧视图;
图5为图4中A处的局部放大图;
图6为本申请实施例提供的衣物护理机的温度控制方法的流程图。
附图标记说明:
100-柜体;110-壳体;111a-第一隔板;111b-第二隔板;120-内胆;130-设备仓;131-第一子设备仓;132-第二子设备仓;133-第三子设备仓;
200-热泵***;210-压缩机;220-冷凝组件;221-冷凝进风口;222-冷凝出风口;223-冷凝器;224-第二风轮;230-蒸发组件;231-蒸发进风口;232-蒸发出风口;233-蒸发器;234-第一风轮;
300-双轴驱动件;
400-检测器;
500-加热器;
600-锅炉;
700-供水组件;710-净水箱;720-第一水泵;
800-废水收集组件;810-废水箱;820-第二水泵;
900-PTC加热器。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请的实施例中的附图,对本申请实施例中的技术方案进行更加详细的描述。在附图中,自始至终相同或类似的标号表示相同或类似的部件或具有相同或类似功能的部件。所描述的实施例是本申请一部分实施例,而不是全部的实施例。下面通过参考附图描述的实施例是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。下面结合附图对本申请的实施例进行详细说明。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应作广义理解,例如,可以使固定连接,也可以是通过中间媒介间接相连,可以是两个元件内部的连通或者两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
在本申请的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或者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 描述本申请和简化描述,而不是指示或者暗示所指的装置或者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申请的限制。
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”、“第三”(如果存在)是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本申请的实施例例如能够以除了在这里图示或描述的那些以外的顺序实施。
此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、***、产品或维护工具不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或维护工具固有的其它步骤或单元。
衣物护理机的主要有熨烫、烘干、去味、除菌等功能。现有的衣物护理机,在衣物护理机的内部进行蒸汽喷雾,蒸汽进入衣物深层抚平皱纹;再通过吹风,快速烘干衣物。图1为相关技术中衣物护理机的结构示意图一;图2为相关技术中衣物护理机的结构示意图二。参见图1和图2所示,在对衣物进行烘干时,常使用压缩机或者PTC加热器对衣物护理机的内胆进行加热,以烘干内胆中的衣物。图1中,由于压缩机的冷凝器223和蒸发器233在同一风道内,冷凝器223的热量容易经风道进入内胆120内,从而影响内胆120内的烘干温度。
图2中,PTC加热器900多为外排式,也就是说,内胆120内的湿热气体经PTC加热器900进行加热干燥,在送入至内胆120内,最后经衣物护理机的顶部排出。此时,需要将内胆120内的温度升高到50℃以上才能进行有效烘干,采用PTC加热器900的衣物护理机的工作流程为:在衣物上喷蒸汽,然后PTC加热器900会产生50℃~60℃的热气体来烘干衣物,然而羊毛、丝绸、皮革等娇贵的面料,适合的烘干温度在35℃~45℃,温度升高,会直接导致面料纤维组织受损,出现褪色、***等不可修复的损害。其中,图1和图2中箭头的方向表示气体的流动方便。
基于此,本申请提供了一种衣物护理机,冷凝器和蒸发器风道相互分 开,冷凝器和蒸发器内的气流互不干扰,避免蒸发器内的气流对胆内的烘干温度的影响。
图3为本申请实施例提供的衣物护理机的结构示意图;图4为本申请实施例提供的衣物护理机的侧视图;图5为图4中A处的局部放大图。参见图3至图5所示,本申请实施例提供的衣物护理机,包括柜体100和热泵***200,柜体100包括壳体110、内胆120和设备仓130,内胆120和设备仓130位于壳体110内。
其中,设备仓130包括多个相互隔离的子设备仓,热泵***200包括压缩机210、冷凝组件220和蒸发组件230,压缩机210、冷凝组件220和蒸发组件230分别位于不同的子设备仓内,冷凝组件220和蒸发组件230均与压缩机210连通,冷凝组件220与蒸发组件230连通,蒸发组件230对应的子设备仓具有间隔设置的蒸发进风口231和蒸发出风口232,蒸发进风口231和蒸发出风口232均与内胆110连通,冷凝组件220对应的子设备仓具有间隔设置的冷凝进风口221和冷凝出风口222,冷凝进风口221和冷凝出风口222均与壳体100的外侧连通。
在一实施例中,衣物护理机的主体结构主要有壳体110、内胆120和设备仓130等部分构成。其中,壳体110用于支撑内胆120和设备仓130,内胆120内用于悬挂衣物,设备仓130内可以容纳热泵***200,为了便于悬挂衣物且节省空降,内胆120可以位于设备仓130的上方。柜体100的一个侧壁安装可开闭的柜门,以便于用于在内胆120内取放衣物。
通过热泵***200衣物进行烘干处理。在一实施例中,热泵***200可以包括压缩机210、冷凝组件220和蒸发组件230,冷凝组件220和蒸发组件230均通过管道与压缩机210连通,冷凝组件220与蒸发组件230通过管道连通。内胆120内衣物进行约100℃水蒸汽熨烫后,在内胆120内部形成低温的湿热气体(30℃~50℃),湿热气体经过热泵***200上进行凝露,析出水分后形成干燥低温气体,从而在排入内胆120内,以对内胆120内的衣物进行低温烘干。
在一实施例中,湿热气体经过热泵***200上进行凝露具体过程为:在压缩机210的驱动下,蒸气状态下的制冷剂在管道内流动,从压缩机210到流至冷凝组件220,制冷剂同时受到压缩机210的高压力作用,制冷剂 由蒸气的状态变成液态状态并放出热量。通过冷凝组件220进行热交换,冷凝组件220产生热量。液体状态的制冷剂流入蒸发组件230,液体状态的制冷剂在蒸发组件230内蒸发,由液体变成气体为吸热的过程,蒸发组件230的温度降低,导致蒸发组件230周围的温度较低,湿热气体经过蒸发组件230时,气体中含有的水气会冷凝为水,形成干燥的气体,干燥气体从而在排入内胆120内,以对内胆120内的衣物进行低温烘干(其中,蒸发组件230中气体的流动方向为图4中实线箭头的方向)。在压缩机210动力的驱动下,蒸气状态的制冷剂又回到压缩机210,然后被驱动到冷凝组件220去,达到不断循环制热制冷的目的。在上述过程中,此冷凝组件220周围的温度比较高。
为了避免热泵***200内的冷凝组件220和蒸发组件230相互影响,在本申请中,在设备仓130内设置多个相互隔离的子设备仓,即各子设备仓互不连通,冷凝组件220和蒸发组件230分别位于不同的子设备仓内。由此,以隔离冷凝组件220和蒸发组件230,避免位于冷凝组件220周围的高温影响蒸发组件230。
在本申请中,蒸发组件230对应的子设备仓具有间隔设置的蒸发进风口231和蒸发出风口232,蒸发进风口231和蒸发出风口232均与内胆110连通,内胆110中的低温的湿热气体经蒸发进风口231进入蒸发组件230对应的子设备仓,干燥后的低温气体经蒸发出风口232进入内胆110。冷凝组件220对应的子设备仓具有间隔设置的冷凝进风口221和冷凝出风口222,衣物护理机周围的低温气体经,冷凝进风口221进入冷凝组件220对应的子设备仓,带走冷凝组件220对应的子设备仓内的热量,并从冷凝出风口222排出壳体100外,从而为冷凝组件220降温(其中,冷凝组件220中气体的流动方向为图4中虚线箭头的方向)。
本申请实施例提供的衣物护理机,通过将冷凝组件220和蒸发组件230放置于不同的子设备仓,且各子设备仓相互隔离,彼此之间互不连通。由此,在进行蒸发组件230凝结冷凝水的同时,冷凝组件220散热,冷凝组件220和蒸发组件230内的气体不会相互影响。避免位于冷凝组件220周围的高温影响蒸发组件230。
在本申请中,壳体110内具有多个隔板,隔板、壳体110的内壁和内 胆120的底壁任意两者围成子设备仓。隔板可以包括多个第一隔板111a和多个第二隔板111b。
如本申请的附图5所示,两块第一隔板111a、壳体110的内侧壁以及壳体110的内底壁围成用于容纳冷凝组件220的子设备仓,其中,冷凝进风口221可以位于壳体110的侧壁,冷凝出风口222可以位于壳体110的底壁。三块第二隔板111b和内胆120的底壁围成用于容纳蒸发组件230的子设备仓,其中,蒸发进风口231和蒸发出风口232可以位于内胆120的底壁。容纳冷凝组件220的子设备仓和容纳蒸发组件230的子设备仓之外的部分可以构成用于容纳压缩机210或异物护理机其他器件的子设备仓。在一实施例中,根据异物护理机内部器件的结构进行适应性的子设备仓的分隔设计,本实施例在此不做限定。
请继续参见图3至图5所示,本申请实施例提供的衣物护理机,多个子设备仓包括间隔设置的第一子设备仓131和第二子设备仓132。
第一子设备仓131具有第一容纳腔,蒸发组件230位于第一容纳腔内,蒸发进风口231和蒸发出风口232均与第一容纳腔连通。即三块第二隔板111b和内胆120的底壁围成用于容纳蒸发组件230的第一子设备仓131。
第二子设备仓132具有第二容纳腔,冷凝组件220位于第二容纳腔内,冷凝进风口221和冷凝出风口222均与第二容纳腔连通。即两块第一隔板111a、壳体110的内侧壁以及壳体110的内底壁围成用于容纳冷凝组件220的第二子设备仓132。
设备仓130的其他空间形成第三子设备仓133,其中,压缩机210可以位于第三子设备仓133内。
下面,对于蒸发组件230和冷凝组件220的结构进行说明。
本申请实施例提供的衣物护理机,蒸发组件230包括蒸发器233和可旋转的第一风轮234,蒸发器233与压缩机210连通,蒸发出风口232位于第一风轮234的上方,第一风轮234与蒸发器233相邻,第一风轮234旋转产生吸力,以使内胆120内的湿热气体经蒸发进风口232进入第一容纳腔,依次经蒸发器233、第一风轮234和蒸发出风口232进入内胆120。
冷凝组件220可以包括冷凝器223和可旋转的第二风轮224,蒸发器233和压缩机210均与冷凝器223连通,冷凝器223位于冷凝进风口221 和第二风轮224之间,冷凝进风口221位于壳体110的侧面,冷凝出风口222位于壳体110的底面。由此,第二风轮224旋转产生吸力,以使衣物护理机外部的气体经冷凝进风口221进入第二子设备仓132的第二容纳腔内,对冷凝器223进行冷却,然后经冷凝出风口222排出衣物护理机外。
此外,为了节省空间和节省成本,本申请实施例提供的衣物护理机,还包括双轴驱动件300,双轴驱动件300位于第一子设备仓131和第二子设备仓132之间,双轴驱动件300的两个输出轴分别与第一风轮234和第二风轮224连接,以驱动第一风轮234和第二风轮224同步旋转。
在一实施例中,双轴驱动件300可以为双轴电机,双轴电机可以位于第三子设备仓133内。双轴电机具有两个同轴设置的驱动轴,两个驱动轴分别朝向双轴电机相对两侧延伸,且一个驱动轴连接第一风轮234,另一个驱动轴连接第二风轮224,双轴电机旋转时,通过两个同步旋转的驱动轴以驱动第一风轮234和第二风轮224同步旋转。即通过一个电机同时驱动第一风轮234和第二风轮224同步旋转,结构紧凑、节省空间和节省成本。
不同材质的衣物需要不同的烘干温度,因此,在一些实施例中,本申请实施例提供的衣物护理机,还包括控制器(图中未示出)、检测器400和加热器500,加热器500用于加热经蒸发出风口232进入内胆120的气体的温度,检测器400用于检测内胆120的温度,控制器用于在内胆120的温度小于预设值时,控制加热器500开启,或者在内胆120的温度大于或等于预设值时,控制加热器500关闭。
其中,加热器500可以为PTC加热器或电阻丝加热器。
可以理解的是,预设值根据用户的需求进行设置,示例性的,烘干羊毛、丝绸、皮革等娇贵的面料时,预设温度可以为35℃~45℃。如烘干其他面料的衣物,预设温度可以为50℃~60℃。由此,可以在室温的情况下,对内胆120内温度进行有效的补偿,故可以为不同材质的衣物进行更宽的温度调节,可以更有效的减少高档面料护理和烘干时带来的损伤。
在一实施例中,检测器400设置于蒸发出风口232内,由此,提高检测器400检测内胆120的温度的准确性。加热器500设置于蒸发进风口231内,由此,保证气体进入内胆120之前,对气体进行加热。
可选的,本申请实施例提供的衣物护理机,还包括锅炉600和用于为锅炉600供水的供水组件700,锅炉600用于将水汽化为水蒸气,锅炉600与第一子设备仓131连通,以使水蒸气进入内胆120。其中,供水组件700可以包括净水箱710和第一水泵720,净水箱710和锅炉600通过第一水泵720连接。净水箱710用于盛水,第一水泵720用于将净水箱710内的水抽至锅炉600内。
在一实施例中,第一水泵720可以位于净水箱710内,由此,节省空间。第一水泵720也可以位于净水箱710外,这样,净水箱710内可以盛放更多的水。
在一些实施例中,衣物护理机还包括废水收集组件800,废水收集组件800与第一子设备仓131连通,以收集蒸发组件230产生的废水。在一实施例中,废水收集组件800可以包括废水箱810和与废水箱810连接的第二水泵820,第二水泵820与第一子设备仓131连通。其中,第二水泵820可以位于废水箱810内,由此,节省空间。第二水泵820也可以位于废水箱810外,这样,废水箱810内可以收集更多的废水。
其中,供水组件700和废水收集组件800可以位于第三子设备仓133内。
图6为本申请实施例提供的衣物护理机的温度控制方法的流程图。参见图6所示,本申请实施例还提供了一种衣物护理机的温度控制方法,其中,衣物护理机为上述实施例中提供的衣物护理机。
其中,衣物护理机可以包括柜体100和热泵***200,柜体100包括壳体110、内胆120和设备仓130,内胆120和设备仓130位于壳体110内。
设备仓130包括多个相互隔离的子设备仓,热泵***200包括压缩机210、冷凝组件220和蒸发组件230,压缩机210、冷凝组件220和蒸发组件230分别位于不同的子设备仓内,冷凝组件220和蒸发组件230均与压缩机210连通,冷凝组件220与蒸发组件230连通,蒸发组件230对应的子设备仓具有间隔设置的蒸发进风口231和蒸发出风口232,蒸发进风口231和蒸发出风口232均与内胆110连通,冷凝组件220对应的子设备仓具有间隔设置的冷凝进风口221和冷凝出风口222,冷凝进风口221和冷 凝出风口222均与壳体100的外侧连通。
检测器400用于检测内胆120的温度,检测器400设置于蒸发出风口232内,由此,提高检测器400检测内胆120的温度的准确性。加热器500用于加热经蒸发出风口232进入内胆120的气体的温度,加热器500设置于蒸发进风口231内,由此,保证气体进入内胆120之前,对气体进行加热。
本申请实施例提供的衣物护理机的温度控制方法,包括以下步骤:
S101、将具有水蒸汽的内胆120内的气体抽至衣物护理机的设备仓130。
在一实施例中,启动第一水泵720,第一水泵720将净水箱710中的水定量抽入锅炉600中,锅炉600开始加热产生水蒸汽,水蒸汽进入内胆120内,并对内胆120内的衣物进行护理,通过水蒸汽的渗透,使衣物的褶皱得以活化舒展抚平。
S102、启动衣物护理机的热泵***200,以将设备仓130内的气体抽至内胆120内。
锅炉600停止运行后,双轴驱动件300和压缩机210开始先后运行,双轴驱动件300驱动第一风轮234和第二风轮224同步旋转,内胆120内的湿热气体由冷凝进风口701进入第一子设备仓131的第一容纳腔,通过第一容纳腔内的蒸发器233并在蒸发器233表面进行凝露,析出水分后干燥的气体再通过第一风轮234后,经过加热器500(内胆120的温度大于或等于预设值时,不启动加热器500,析出水分后干燥的气体再通过第一风轮234吹至内胆120内)升温加热后由蒸发出风口232吹至内胆120内,由此,往复循环,逐渐将内胆120内的湿气冷凝成水,由第二水泵820排除到废水箱810中,同时冷凝器223产生的热量,由第二风轮224从冷凝进风口221吸入的冷风不断带走,并通过冷凝出风口222吹出壳体110外。
S103、检测衣物护理机的内胆120内气体的温度。
S104、当温度小于预设值时,控制衣物护理机的加热器500开启,以加热进入内胆120内的气体。
S105、当内胆120内气体的温度大于或等于预设值时,控制加热器500关闭。
需要说明的是,S104和S105为并且步骤,没有先后顺序,也可以先执行S105,在执行S104。
本申请实施例提供的衣物护理机的温度控制方法,通过检测衣物护理机的内胆120内气体的温度,对内胆120内温度进行有效的补偿,故可以为不同材质的衣物进行与之相对应的温度调节,有效的减少高档面料护理和烘干时带来的损伤。
最后应说明的是:以上各实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述各实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的范围。

Claims (10)

  1. 一种衣物护理机,其中,包括:柜体和热泵***,所述柜体包括壳体、内胆和设备仓,所述内胆和所述设备仓位于所述壳体内;
    所述设备仓包括多个相互隔离的子设备仓,所述热泵***包括压缩机、冷凝组件和蒸发组件,所述冷凝组件和所述蒸发组件分别位于不同的所述子设备仓内,所述冷凝组件和所述蒸发组件均与所述压缩机连通,所述冷凝组件与所述蒸发组件连通,所述蒸发组件对应的所述子设备仓具有间隔设置的蒸发进风口和蒸发出风口,所述蒸发进风口和所述蒸发出风口均与所述内胆连通,所述冷凝组件对应的所述子设备仓具有间隔设置的冷凝进风口和冷凝出风口,所述冷凝进风口和所述冷凝出风口均与所述壳体的外侧连通。
  2. 根据权利要求1所述的衣物护理机,其中,所述壳体内具有多个隔板,所述隔板、所述壳体的内壁和所述内胆的底壁任意两者围成所述子设备仓。
  3. 根据权利要求1所述的衣物护理机,其中,多个所述子设备仓包括间隔设置的第一子设备仓和第二子设备仓;
    所述第一子设备仓具有第一容纳腔,所述蒸发组件位于所述第一容纳腔内,所述蒸发进风口和所述蒸发出风口均与所述第一容纳腔连通;
    所述第二子设备仓具有第二容纳腔,所述冷凝组件位于所述第二容纳腔内,所述冷凝进风口和所述冷凝出风口均与所述第二容纳腔连通。
  4. 根据权利要求3所述的衣物护理机,其中,所述蒸发组件包括蒸发器和可旋转的第一风轮,所述蒸发器与所述压缩机连通,所述蒸发出风口位于所述第一风轮的上方,所述第一风轮与所述蒸发器相邻,所述第一风轮旋转产生吸力,以使所述内胆内的湿热气体经所述蒸发进风口进入所述第一容纳腔,依次经所述蒸发器、所述第一风轮和所述蒸发出风口进入所述内胆。
  5. 根据权利要求4所述的衣物护理机,其中,所述冷凝组件包括冷凝器和可旋转的第二风轮,所述蒸发器和所述压缩机均与所述冷凝器连通,所述冷凝器位于所述冷凝进风口和所述第二风轮之间,所述冷凝进风口位于所述壳体的侧面,所述冷凝出风口位于所述壳体的底面。
  6. 根据权利要求5所述的衣物护理机,其中,还包括双轴驱动件,所述双轴驱动件位于所述第一子设备仓和所述第二子设备仓之间,所述双轴驱动件的两个输出轴分别与所述第一风轮和所述第二风轮连接,以驱动所述第一风轮和所述第二风轮同步旋转。
  7. 根据权利要求1至6任一项所述的衣物护理机,其中,还包括控制器、检测器和加热器,所述加热器用于加热经所述蒸发出风口进入所述内胆内的气体的温度,所述检测器用于检测所述内胆内气体的温度,所述控制器用于在所述内胆内气体的温度小于预设值时,控制所述加热器开启,或者在所述内胆内气体的温度大于或等于预设值时,控制所述加热器关闭。
  8. 根据权利要求7所述的衣物护理机,其中,所述检测器设置于所述蒸发出风口内,所述加热器设置于所述蒸发进风口内。
  9. 根据权利要求3至6任一项所述的衣物护理机,其中,还包括锅炉和用于为所述锅炉供水的供水组件,所述锅炉用于将水汽化为水蒸气,所述锅炉与所述第一子设备仓连通,以使所述水蒸气进入所述内胆;和/或,
    还包括废水收集组件,所述废水收集组件与所述第一子设备仓连通,以收集蒸发组件产生的废水。
  10. 一种衣物护理机的温度控制方法,其中,所述方法应用在衣物护理机上,护理机包括柜体和热泵***,所述柜体包括壳体、内胆和设备仓,所述内胆和所述设备仓位于所述壳体内;
    所述设备仓包括多个相互隔离的子设备仓,所述热泵***包括压缩机、冷凝组件和蒸发组件,所述冷凝组件和所述蒸发组件分别位于不同的所述子设备仓内,所述蒸发组件对应的所述子设备仓具有加热器;
    所述方法包括以下步骤:
    将具有水蒸汽的所述内胆内的气体抽至所述设备仓;
    启动所述热泵***,以将所述设备仓内的气体抽至所述内胆内;
    检测所述内胆内气体的温度;
    当所述温度小于预设值时,控制所述加热器开启,以加热进入所述内胆内的气体;
    当所述内胆内气体的温度大于或等于预设值时,控制所述加热器关闭。
PCT/CN2020/139791 2020-11-27 2020-12-27 衣物护理机及衣物护理机的温度控制方法 WO2022110447A1 (zh)

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