Method for controlling a clothing processing device, clothing processing device and readable storage medium

JP2025527818A5Pending Publication Date: 2025-10-14NANJING ROBOROCK INNOVATION TECH CO LTD
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Patent Information

Application Number
JP2025512728
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-01-17
Filing Date
2023-05-26
Publication Date
2025-10-14

AI Technical Summary

Technical Problem

Drying devices in laundry treatment devices often malfunction or are inaccurately controlled, affecting the drying process and reducing its effectiveness.

Method used

A method for controlling a clothing treatment device that includes monitoring temperatures near the air outlets and passages, adjusting the operating state of the drying device, and outputting prompt information when predetermined temperature thresholds are reached, utilizing components like moisture absorption and dehumidification rotating disks, heating modules, and heat exchange modules to ensure accurate drying control.

Benefits of technology

Enables timely and accurate detection of drying abnormalities, allowing for precise adjustment of the drying process to improve its effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a method for controlling a clothing processing device, a clothing processing device, and a readable storage medium, the clothing processing device comprising a clothing storage device, a moisture absorption and dehumidification passage, and a drying device, the moisture absorption and dehumidification passage communicating with the clothing storage device, the drying device disposed in the moisture absorption and dehumidification passage, the drying device including at least one of a moisture absorption and dehumidification rotating disk, a heating module, and a heat exchange module, the drying device acquiring, when in operation, the temperature near the clothing storage device and / or the air outlet of the moisture absorption and dehumidification passage, the air outlet having an air inlet and / or an air outlet, the drying device adjusting the operating state of the drying device and / or outputting an abnormality prompt when the temperature near the clothing storage device and / or the air outlet of the moisture absorption and dehumidification passage reaches a predetermined temperature threshold, the present application realizing abnormality detection, timely and accurately detecting drying abnormalities, adjusting the operating state of the drying device to improve precise control of the drying process, and ultimately improving drying efficiency.
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Description

[Technical Field]

[0001] (Related Applications) This application claims priority to Chinese Patent Application No. 202211057592.1 filed on August 31, 2022, PCT International Patent Application No. PCT / CN2022 / 116242 filed on August 31, 2022, and PCT International Patent Application No. PCT / CN2023 / 072661 filed on January 17, 2023, the entire contents of which are incorporated herein by reference.

[0002] (Technical field) The present application relates to the field of home appliances technology, and in particular to a method for controlling a clothing treatment device, a clothing treatment device and a readable storage medium. [Background technology]

[0003] The laundry treatment device can perform various processes for the treatment of clothes, such as washing, rinsing, ironing, and drying, and has become a commonly used home appliance that is now widespread in millions of households.

[0004] In the related art, the clothes treatment device has a problem that the drying device is abnormal or inaccurately controlled when drying clothes, which easily affects the drying process and reduces the drying effect. Summary of the Invention [Problem to be solved by the invention]

[0005] In view of this, the present application provides a method for controlling a clothing treatment device, a clothing treatment device and a readable storage medium, which can realize abnormality detection, timely and accurately manifest drying abnormality situations, adjust the operating state of the drying device to realize accurate control of the drying process, and ultimately improve the drying effect. [Means for solving the problem]

[0006] In a first aspect, an embodiment of the present application provides a method for controlling a clothing treatment device, the clothing treatment device comprising a clothing storage device, a moisture absorption and dehumidification passage and a drying device, the moisture absorption and dehumidification passage is in communication with the clothing storage device, the drying device is disposed in the moisture absorption and dehumidification passage, the drying device includes at least one of a moisture absorption and dehumidification rotating disk, a heating module and a heat exchange module, the method includes:

[0007] When the drying device is in an operating state, a temperature near an air opening of the clothing storage device and / or the moisture absorption / dehumidification passage is acquired, the air opening having an air inlet and / or an air outlet; When the temperature near the air outlet of the clothing storage device and / or the moisture absorption / dehumidification passage reaches a predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output.

[0008] According to the above method of the embodiment of the present application, it further has the following additional technical features:

[0009] In the above technical solution, optionally, the moisture absorption and dehumidification passage includes a moisture absorption passage and a regeneration passage, the drying device includes at least two of a moisture absorption and dehumidification rotating disk, a heating module, and a heat exchange module, a portion of the moisture absorption and dehumidification rotating disk is located in the moisture absorption passage and a portion is located in the regeneration passage, the heating module and / or the heat exchange module is located in the regeneration passage, the moisture absorption and dehumidification rotating disk is used to absorb moisture from the circulating airflow in the moisture absorption passage, the heating module is used to heat the moisture absorption and dehumidification rotating disk in the regeneration passage to desorb moisture from the moisture absorption and dehumidification rotating disk, and the heat exchange module is used to heat the dehumidified airflow formed by the moisture desorption, and when the temperature near the air opening of the moisture absorption and dehumidification passage reaches a predetermined temperature threshold, adjusting the operating state of the drying device and / or outputting abnormal prompt information specifically includes: When the temperature near the air outlet of the heat exchange module reaches a predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output.

[0010] In any one of the above technical solutions, optionally, the heat exchange module includes a condensation module, and when the temperature near the air outlet of the heat exchange module reaches a predetermined temperature threshold, adjusting the operating state of the drying device and / or outputting abnormal prompt information specifically includes: When the condensation air inlet temperature near the condensation air inlet of the condensation module reaches a predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output.

[0011] In any one of the above technical solutions, optionally, the predetermined temperature threshold includes a first temperature threshold, and adjusting the operating state of the drying device when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold specifically includes: When the condensing air inlet temperature reaches a first temperature threshold, the heating power of the heating module is reduced within a first time period.

[0012] In any one of the above technical solutions, when the condensing air inlet temperature reaches a first temperature threshold, selectively turn off the heating module and keep the regenerative fan of the condensing module and / or the drying device in an operating state; Here, the regeneration fan of the drying device is provided in the regeneration passage and is used to form a regeneration airflow in the regeneration passage.

[0013] In any one of the above technical solutions, optionally, a first temperature threshold is used to determine the presence of a water film on the filtration structure of the clothing treatment device, and the heating module is turned off and the condensation module and / or the regeneration fan of the drying device are kept operating during a first period to destroy the water film.

[0014] In any one of the above technical solutions, optionally, the predetermined temperature threshold includes a second temperature threshold, and the second temperature threshold is greater than the first temperature threshold. When the condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold, adjusting the operating state of the drying device specifically includes: When the condensing air inlet temperature reaches a second temperature threshold, the clothing treatment device is controlled to transition to a forced cooling mode, which includes at least one of controlling the heating module to turn off and controlling the condensing module and the dryer regenerative fan to activate during a second period.

[0015] In any one of the above technical solutions, optionally outputting abnormal prompt information when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches a predetermined temperature threshold, specifically includes: When the condensing air inlet temperature reaches the second temperature threshold, an abnormal prompt information of the rotating disk abnormality is output.

[0016] In any one of the above technical solutions, optionally, the predetermined temperature threshold value includes a first predetermined change amount threshold value, and adjusting the operating state of the drying device when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold value specifically includes: If the change in the condensing air inlet temperature within a first predetermined period is equal to or less than a first predetermined change threshold, the heating module is turned off.

[0017] In any one of the above technical solutions, optionally outputting abnormal prompt information when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches a predetermined temperature threshold, specifically includes: If the change in the condensed air inlet temperature within a first predetermined period is equal to or less than a first predetermined change threshold, abnormality prompt information is output to indicate that the heating device is abnormal.

[0018] In any one of the above technical solutions, optionally, the clothing treatment device further comprises an air inlet duct and an air outlet duct, the clothing storage device is provided with an air inlet and an air outlet, the air inlet of the clothing storage device is connected to the moisture absorption and dehumidification passage through the air inlet duct, and the air outlet of the clothing storage device is connected to the moisture absorption and dehumidification passage through the air outlet duct; the predetermined temperature thresholds include a third temperature threshold and a fourth temperature threshold, where the third temperature threshold is less than the fourth temperature threshold; Specifically, adjusting the operating state of the drying device when the temperature near the air outlet of the clothing storage device reaches a predetermined temperature threshold includes: When the air inlet temperature near the air inlet of the clothing storage device reaches a third temperature threshold, the heating power of the heating module of the drying device is increased to a first target power, and when the air inlet temperature near the air inlet of the clothing storage device reaches a fourth temperature threshold, the heating power of the heating module of the drying device is decreased to a second target power, so that the air outlet temperature near the air outlet of the clothing storage device is within the target temperature range.

[0019] In any one of the above technical solutions, optionally, adjusting the operating state of the drying device includes turning off the heating module of the drying device, i.e., obtaining the temperature near the air outlet of the clothing storage device and / or the condensation module, and turning off the heating module of the drying device when the temperature near the air outlet reaches a predetermined temperature threshold.

[0020] In any one of the above technical solutions, optionally, the predetermined temperature thresholds include a fifth temperature threshold, a sixth temperature threshold, a seventh temperature threshold and a second predetermined change amount threshold, where the seventh temperature threshold is greater than the first temperature threshold and less than the second temperature threshold; Turning off the heating module of the drying device when the temperature near the air outlet reaches a predetermined temperature threshold specifically includes: Turning off the heating module of the drying device when the condensed air outlet temperature near the condensed air outlet of the condensing module reaches a sixth temperature threshold; or Turning off the heating module of the dryer when the condensing air inlet temperature of the condensing module reaches a seventh temperature threshold; or If the change in the air outlet temperature of the clothing storage device within a second predetermined period is equal to or greater than a second predetermined change threshold, the heating module of the drying device is turned off.

[0021] In any one of the above technical solutions, optionally, the method further includes: After the heating module is turned off, the moisture absorption and dehumidification rotating disk, the condensation module, the circulation fan of the dryer, and the regeneration fan of the dryer are kept in operation; Here, the circulation fan of the drying device is provided in the moisture absorption passage and is used to form a circulating airflow between the clothing storage device and the moisture absorption passage.

[0022] In any one of the above technical solutions, optionally, the method further includes: When the air inlet temperature of the clothing storage device reaches an eighth temperature threshold, the moisture absorption and dehumidification rotating disk, the condensation module, the dryer circulation fan, and the dryer regeneration fan are turned off.

[0023] In any one of the above technical solutions, optionally, before adjusting the operating state of the drying device, the method further includes: and when the air outlet temperature of the clothing storage device reaches a fifth temperature threshold, the clothing storage device is rotated and a first weighing process is performed to obtain a first weight value; A drying time is generated based on the first weight value.

[0024] In any one of the above technical solutions, optionally, the method further includes: If the dryer is in operation, obtain the rotation speed of the fan of the dryer; When the rotation speed is equal to or less than a predetermined rotation speed threshold, the operation of the drying device is controlled to stop, and the fan of the drying device includes at least one of a circulation fan and / or a regeneration fan.

[0025] In any one of the above technical solutions, optionally, the method further includes: If the rotation speed is equal to or lower than the predetermined rotation speed threshold, abnormality prompt information is output to indicate that the fan is abnormal.

[0026] In any one of the above technical solutions, optionally, before the operation of the drying device, the method further includes: Determine whether to perform a second weighing process according to a predetermined drying mode, and if the second weighing process is performed, control the clothing storage device to rotate and obtain a second weight value; If the second weight value is equal to or greater than the predetermined weight threshold, the clothing storage device is controlled to rotate and perform a dehydration process.

[0027] In any one of the above technical solutions, optionally, the clothing treatment device further includes a temperature measurement sensor, which is used to obtain the temperature of the clothing storage device and / or the temperature near the air outlet of the moisture absorption and dehumidification passage.

[0028] In any one of the above technical solutions, optionally, the method further includes: Obtaining correspondence data between the resistance value of the temperature measurement sensor and the detected temperature value; The correspondence data is compared with the standard resistance-temperature correspondence data of the temperature measurement sensor, and if the correspondence data does not match the standard resistance-temperature correspondence data, prompt information is output to the effect that the temperature measurement sensor is abnormal.

[0029] In any one of the above technical solutions, optionally, the temperature measurement sensors include a first sensor, a second sensor, a third sensor, and a fourth sensor; Here, the first sensor is provided near the condensed air inlet of the condensation module of the drying device and is used to obtain the condensed air inlet temperature of the condensation module, the second sensor is provided near the condensed air outlet of the condensation module of the drying device and is used to obtain the condensed air outlet temperature of the condensation module, the third sensor is provided at any position near the drum bottom of the outer cylinder of the clothing treatment device or near the air flow outlet of the clothing storage device and is used to obtain the air outlet temperature of the clothing storage device, and the fourth sensor is provided near the air inlet duct of the clothing treatment device and is used to obtain the air inlet temperature of the clothing storage device.

[0030] In a second aspect, an embodiment of the present application provides a clothing treatment device, the clothing treatment device comprising a clothing storage device, a moisture absorbing and dehumidifying passage, a drying device, a memory and a processor, wherein the moisture absorbing and dehumidifying passage is in communication with the clothing storage device, the drying device is provided in the moisture absorbing and dehumidifying passage, the drying device includes at least one of a moisture absorbing and dehumidifying rotating disk, a heating module and a heat exchange module, a program or instructions are stored in the memory, the processor is connected to the memory, and when the processor executes the program or instructions, the steps of the method of the first aspect are realized.

[0031] In a third aspect, an embodiment of the present application provides an electronic device, the electronic device comprising a processor and a memory, the memory storing a program or instructions executable by the processor, the program or instructions implementing the steps of the method of the first aspect when executed by the processor.

[0032] In a fourth aspect, an embodiment of the present application provides a readable storage medium having stored thereon a program or instructions that, when executed by a processor, implements the steps of the method of the first aspect.

[0033] In a fifth aspect, an embodiment of the present application provides a chip, the chip comprising a processor and a communication interface, the communication interface coupled to the processor, the processor being used to execute programs or instructions to implement the method of the first aspect.

[0034] In the embodiment of the present application, when the clothing treatment device dries clothes, abnormality detection is realized based on the temperature near the air outlet of the clothing storage device and / or the moisture absorption and dehumidification passage, and the drying abnormality situation is timely and accurately detected, so that the operating state of the drying device can be adjusted to realize accurate control of the drying process, and ultimately improve the drying effect.

[0035] The above description is only an outline of the technical solution of the present application. In order to make the technical means of the present application more clearly understood and implemented in accordance with the content of the specification, and to make the above and other objectives, features and advantages of the present application more obvious and easily comprehensible, specific embodiments of the present application will be described below. [Brief explanation of the drawings]

[0036] The accompanying drawings described herein are used to further understand the present application and constitute a part of the present application, and the schematic examples of the present application and the description thereof are used to interpret the present application and are not to be construed as unduly limiting the present application. [Figure 1] 1 shows a schematic structural diagram of a clothing treatment device according to an embodiment of the present application. [Figure 2] 2 shows a structural schematic diagram of a clothing treatment device according to an embodiment of the present application. [Figure 3] 3 shows a structural schematic diagram of a clothing treatment device according to an embodiment of the present application. [Figure 4] 4 shows a schematic structural diagram of a clothing treatment device according to an embodiment of the present application. [Figure 5] 1 is a schematic flowchart of a method for controlling a clothes treatment device according to an embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION

[0037] The technical solutions of the embodiments of the present application will be clearly described below in conjunction with the accompanying drawings of the embodiments of the present application, but obviously, the described embodiments are only some of the embodiments of the present application, not all of the embodiments, and other embodiments obtained by those skilled in the art based on the embodiments of the present application shall all be included in the protection scope of the present application.

[0038] Terms such as "first" and "second" in the specification and claims of this application are used to distinguish between similar objects and do not describe a particular order or priority. The data used in this manner may be interchanged as appropriate, since the embodiments of this application may be implemented in an order other than that illustrated or described herein. The objects distinguished by "first" and "second" are generally of the same type, and the number of objects is not limited; for example, the first object may be one or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the related objects before and after are in an "or" relationship.

[0039] DETAILED DESCRIPTION OF THE INVENTION The following detailed description, in conjunction with the accompanying drawings, of the method for controlling a clothing treatment device, the clothing treatment device and the readable storage medium provided by the embodiments of the present application according to specific embodiments and their application scenarios.

[0040] The present application provides a clothing treatment device, which is used for washing, rinsing, ironing, drying, etc. of clothing. The clothing treatment device includes, but is not limited to, a washing machine, a dryer, a combination washing and drying machine, etc. The structure of the clothing treatment device provided by the embodiment of the present application is shown in Figures 1 to 4.

[0041] Although the clothing treatment device of the embodiments of this application will be described using a side-opening type clothing treatment device as an example, the clothing treatment device of the embodiments of this application can be applied to any type of clothing treatment device, including, but not limited to, side-opening type drum washing machines, top-opening type drum washing machines, wave washing machines, agitator washing machines, and small (mini) washing machines.

[0042] The garment storage device 101 may be provided as a drum. The drum consists of an inner cylinder and an outer cylinder, the inner cylinder is used to store the garments to be processed and rotates under the action of an inner cylinder driving motor, and the outer cylinder is fixed to the body by a suspension. A door body 102 is opened at a position corresponding to the garment storage device 101 on the housing 103 of the garment processing device 100, and the door body 102 is pivotally connected to the housing 103. The opening and closing of the door body 102 may be controlled manually by a user or with the aid of an electronic controller.

[0043] As shown in Figures 1 and 2, the clothing processing device 100 includes a drying device 105 for drying clothing in a clothing storage device 101, and the drying device 105 is located above the clothing storage device 101. The relative positions of the clothing storage device 101 and the drying device 105 are not fixed, and they may be arranged facing each other vertically or front to back.

[0044] In the embodiment of the present application, the drying device 105 includes a moisture absorption and dehumidification passage, a circulation fan 1501 , a moisture absorption and dehumidification rotating disk 1502 , a moisture absorption and dehumidification driving unit 1503 and a regenerative fan 1504 .

[0045] As shown in Figures 2 and 3, the passage air inlet 1508 (i.e., the first air inlet) of the moisture absorption and dehumidification passage is connected to the air outlet duct 104 of the clothing storage device 101 via a flexible tube 1509, and the passage air outlet 1507 (i.e., the first air outlet) of the moisture absorption and dehumidification passage is connected to the air inlet duct (not shown in the figures) of the clothing storage device 101 via a connecting member 106.

[0046] 2 and 3, the clothing storage device 101 has an airflow inlet and an airflow outlet, the airflow inlet being the air inlet of the clothing storage device 101, and the airflow outlet being the air outlet of the clothing storage device 101. The airflow inlet on the clothing storage device 101 communicates with the passage air outlet 1507 of the drying device 105 via an air inlet duct, and the airflow outlet on the clothing storage device 101 communicates with the passage air inlet 1508 via an air outlet duct 104.

[0047] As shown in FIG. 4, the moisture absorption and dehumidification passage includes a moisture absorption passage 1510 (i.e., moisture absorption space) and a regeneration passage 1511 (i.e., dehumidification space), and a circulation fan 1501 is located in the moisture absorption passage and is used to form a circulating airflow between the clothing storage device 101 and the moisture absorption passage, and a regeneration fan 1504 is located in the regeneration passage and is used to form a dehumidification flow in the regeneration passage.

[0048] A part of the moisture absorbing and dehumidifying rotary disk 1502 is located in the moisture absorbing passage, and the other part is located in the regenerating passage, and the circulating airflow in the moisture absorbing passage and the dehumidifying airflow in the regenerating passage all flow through the moisture absorbing and dehumidifying rotary disk 1502 .

[0049] According to some embodiments, the moisture absorbing / dehumidifying rotating disk 1502 is provided with a moisture absorbent for absorbing moisture. The moisture absorbent may be a material having moisture absorption properties, such as zeolite, modified / synthetic zeolite, molecular sieve (including, but not limited to, zeolite molecular sieve, A / X / Y type molecular sieve, ZSM molecular sieve, Beta molecular sieve, etc.), polymeric moisture absorbent, alkali metal silica aluminate (13X molecular sieve), lithium chloride, silica gel, modified silica gel, activated alumina, etc. Here, polymeric moisture absorbent, also called polymeric adsorbent, has a lower regeneration temperature than conventional silica gel, activated carbon, and molecular sieve adsorbents.

[0050] In one embodiment, the moisture absorbing / dehumidifying rotating disk 1502 may be made of porous materials such as zeolites, molecular sieves, metal organic framework (MOF) materials, covalent organic frameworks (COFs), nanocarbons, silica, etc.

[0051] In one embodiment, the moisture-absorbing / dehumidifying rotating disk 1502 may be a honeycomb or corrugated rotating disk carrying a moisture absorbent, which adsorbs and desorbs absorbed water vapor and can be repeatedly desorbed and regenerated. In one embodiment, the moisture-absorbing / dehumidifying rotating disk 1502 is made of an inorganic / organic fiber support (such as ceramic, glass fiber, MOFs, COFs, or cordierite). The fiber support is coated with a moisture absorbent such as a molecular sieve, which is uniformly distributed between and on the surface of the fiber support to adsorb moisture in the airflow. The molecular sieve may be a single-crystal molecular sieve or a mixed-crystal molecular sieve, such as an A-type molecular sieve, an X / Y-type molecular sieve, a ZSM molecular sieve, or a Beta molecular sieve. The moisture absorption and dehumidification driving unit 1503 is used to drive the moisture absorption and dehumidification rotating disk 1502 to rotate relative to the moisture absorption path and the regeneration path. The moisture absorption and dehumidification driving unit 1503 may be a driving motor. During the rotation of the moisture absorption and dehumidification rotating disk 1502, the moisture in the circulating airflow is absorbed and the moisture is discharged as a dehumidification flow. That is, the circulating airflow and the dehumidification flow simultaneously flow through the moisture absorption and dehumidification rotating disk 1502. As shown in FIG. 4 , the area flowing through the circulating airflow is the moisture absorption path 1510, and the area flowing through the dehumidification flow is the regeneration path 1511. When the moisture absorption and dehumidification rotating disk 1502 rotates to the moisture absorption path 1510, it performs the moisture absorption function, and when the moisture absorption and dehumidification rotating disk 1502 rotates to the regeneration path 1511, it performs the dehumidification function.

[0052] According to some embodiments, as shown in FIG. 3 , the drying device 105 may further include a heating module 1505 and a heat exchange module provided in the regeneration passage 1511. The heating module 1505 covers at least a portion of the regeneration passage 1511 of the hygroscopic and dehumidifying rotating disk 1502 and is used to heat the hygroscopic and dehumidifying rotating disk 1502 in the regeneration passage 1511 and desorb moisture absorbed by the hygroscopic and dehumidifying rotating disk 1502, and the heat exchange module is used to exchange heat with the dehumidified stream formed by moisture desorption.

[0053] In one embodiment, the heat exchange module in the drying device 105 may not be present, and the moist air may be directly discharged outside the drying device or outside the clothing storage device after heating. In one embodiment, the heating module 1505 in the drying device 105 may also not be present, and the moisture absorbing and dehumidifying rotating disk 1502 may be provided with a low-temperature desorption material, such as a polymer material, and based on the moisture absorbing material with low-temperature desorption performance, high-temperature heating is not required. The moisture desorption of the moisture absorbing and dehumidifying rotating disk 1502 can be achieved by a cooling means such as a fan air outlet.

[0054] In one embodiment, the heat exchange module includes a condensing module 1506, which is used to condense the dehumidified air flowing out of the regeneration passage 1511 and dry the dehumidified air flow. Specifically, the condensing module 1506 has a condensed air inlet (i.e., a second air inlet). In one embodiment, the condensing module 1506 has a housing formed with the condensing air inlet, and the airflow heated by the heating module 1505 passes through the regeneration passage 1511 and then enters the condensing module 1506 through the condensed air inlet. The condensing module 1506 further has a condensed air outlet (i.e., a second air outlet). In one embodiment, the housing of the condensing module 1506 is further provided with a condensed air outlet, which is connected to the air inlet of the regeneration fan 1504, so that the regeneration passage 1511 forms a closed loop.

[0055] According to some embodiments, the drying device 105 further includes an upper housing and a lower housing that cover and secure the components of the drying device 105, forming the drying device 105 as an integrated module.

[0056] According to some embodiments, the upper and lower housings of the drying device 105 may be separate housings corresponding to a single component of the drying device 105, or may be an integrated housing corresponding to multiple components of the drying device 105. As shown in Fig. 4, the lower housing 1600 is provided with a first mounting portion 1601 for mounting the circulation fan 1501, a second mounting portion 1602 for mounting the moisture absorbing and dehumidifying rotating disk 1502, a third mounting portion 1603 for mounting the regenerative fan 1504, and a fourth mounting portion 1604 for mounting the condensation module 1506. The upper housing of the drying device 105 is a separate housing and includes an upper housing 1701 for mounting the circulation fan 1501, an upper housing 1702 for mounting the moisture absorbing and dehumidifying rotating disk 1502, and an upper housing 1703 for mounting the condensation module 1506.

[0057] 2 and 3, the passage air inlet 1508 of the moisture absorption and dehumidification passage communicates with the air outlet duct 104 of the clothing storage device 101 via a flexible tube 1509 (e.g., a corrugated hose). According to some embodiments, the air outlet duct 104 is provided with a filtering structure (e.g., a filter mesh) for filtering out dust and clothing lint. Furthermore, the connecting member 106 may communicate with the air inlet duct of the clothing storage device 101 via a flexible tube. Since there is no direct rigid connection between the drying device 105 and the clothing storage device 101, vibrations of the clothing storage device 101 during operation are prevented from being transmitted to the drying device 105 (especially the moisture absorption and dehumidification rotating disk 1502), thereby improving the stability and reliability of the drying device 105.

[0058] Under the action of the circulation fan 1501, a circulating air current is formed between the moisture absorption passage and the clothing storage device 101. Specifically, under the action of the circulation fan 1501, the air current in the clothing storage device 101 passes through the air outlet duct 104 and the flexible tube 1509 in order to enter the passage air inlet 1508, and then enters the air inlet of the circulation fan 1501. The air current flows out from the air outlet of the circulation fan 1501 to the underside of the moisture absorption and dehumidification rotating disk 1502, passes through the moisture absorption and dehumidification rotating disk 1502, reaches the upper side of the moisture absorption and dehumidification rotating disk 1502, flows through the upper space of the moisture absorption and dehumidification rotating disk 1502 (corresponding to the moisture absorption passage), and enters the clothing storage device 101 via the passage air outlet 1507 and the connecting member 106.

[0059] Under the operation of the regeneration fan 1504, the regeneration fan 1504 connects the heating module 1505 and the condensing module 1506, forming a dehumidified airflow in the regeneration passage. In one embodiment, under the operation of the regeneration fan 1504, the dehumidified airflow enters the air inlet of the regeneration fan 1504, passes through the regeneration fan 1504, and then enters the heating module 1505 through the air outlet of the regeneration fan 1504. The heating module 1505 is located above the regeneration passage 1511. After entering the heating module 1505, the dehumidified airflow passes from top to bottom through the hygroscopic dehumidifying rotating disk 1502, desorbing moisture from the hygroscopic dehumidifying rotating disk 1502. The desorbed moisture enters the regeneration passage 1511 together with the dehumidified airflow, and then flows into the condensing module 1506 through its condensed air inlet. The condensed air outlet of the condensing module 1506 connects to the air inlet of the regeneration fan 1504, forming a closed loop in the regeneration passage. The dehumidified airflow after condensation by the condensation module 1506 flows back into the air inlet of the regeneration fan 1504, and circulates in the regeneration path. The closed-loop regeneration path can prevent the dehumidified airflow from interacting with the external environment of the clothing treatment device 100, and reduce the impact on the external environment, such as the impact on the external air humidity.

[0060] The laundry processing process of the laundry processing device 100 will now be described.

[0061] The clothing treatment device 100 can perform operations including one or more of a washing operation and a drying operation. The washing operation may include a washing stage, a rinsing stage, and a spin-drying stage, and the drying operation may include a heat-drying stage and a cooling stage.

[0062] In one embodiment, compared to the clothing processing process of clothing processing devices in the related art, the embodiment of the present application can avoid the impact on subsequent abnormality detection by omitting the thermal dehydration step during the dehydration step and the pre-heating step during the drying operation.

[0063] Here, the heat drying stage is used to heat and dry the clothes in the clothing storage device 101. The moist airflow in the clothing storage device 101 continuously flows through the moisture absorbing and dehumidifying rotating disk 1502, which absorbs moisture in the moist airflow and transports dry airflow to the clothing storage device 101 until the heating and drying is completed. During the heat drying stage, the clothing treatment device is in a stable operation stage. Stable operation mainly reflects that the difference between the temperature near the airflow outlet and the temperature near the airflow inlet of the clothing storage device 101 is within a stable change range, for example, the difference between the temperature near the airflow outlet (or the temperature inside the clothing storage device 101) and the temperature near the airflow inlet is within a temperature range of 18 to 30°C. Here, the temperature detection near the airflow outlet may be set to detect one or more temperature points in the temperature field near the airflow outlet, the temperature detection within the clothing storage device 101 may be set to detect one or more temperature points in the temperature field within the clothing storage device 101, and the temperature detection near the airflow inlet may be set to detect one or more temperature points in the temperature field near the airflow inlet.

[0064] The cooling stage is used to cool the clothes in the clothes containment apparatus 101 to ensure a good feel of the dry clothes.

[0065] During the drying operation, there is a problem that abnormal situations or inaccurate control of the drying device are likely to occur, which will affect the drying process and reduce the drying effect.

[0066] Therefore, the present application provides a method for controlling the above-mentioned clothing treatment device, as shown in FIG. 5, the method includes the following steps: Step 501: When the drying device is in operation, obtain the temperature near the air outlet of the clothing storage device and / or the moisture absorption / dehumidification passage, the air outlet having an air inlet and / or an air outlet; Step 502: When the temperature of the clothing storage device and / or the temperature near the air outlet of the moisture absorption / dehumidification passage reaches a predetermined temperature threshold, adjust the operating state of the drying device and / or output abnormal prompt information.

[0067] In this embodiment, when the drying device is in operation, i.e., during the drying operation, the temperature near the air outlet of the clothing storage device and / or the moisture absorption and dehumidification passage is obtained, and the operating state of the drying device is adjusted and / or abnormality prompt information is output based on the temperature near the air outlet of the clothing storage device and / or the moisture absorption and dehumidification passage.

[0068] Specifically, the air vent has an air inlet and / or an air outlet, and adjusts the operating status of the drying device and / or outputs abnormal prompt information according to at least one of the air inlet and / or air outlet of the clothing storage device and the air inlet and / or air outlet of the moisture absorption and dehumidification passage.

[0069] In one embodiment, when the air inlet and / or air outlet of the clothing storage device reaches a predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output; in another embodiment, when the air inlet and / or air outlet of the moisture absorption and dehumidification passage reaches a predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output; in yet another embodiment, when the air inlet and / or air outlet of the clothing storage device reaches one predetermined temperature threshold and the air inlet and / or air outlet of the moisture absorption and dehumidification passage reaches another predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output.

[0070] In the embodiment of the present application, when the clothing treatment device dries clothes, abnormality detection is realized according to the temperature near the air outlet of the clothing storage device and / or the moisture absorption and dehumidification passage, and the drying abnormality situation is timely and accurately detected, so that the operating state of the drying device can be adjusted to realize accurate control of the drying process, and ultimately improve the drying effect.

[0071] In one embodiment of the present application, the moisture absorption and dehumidification passage includes a moisture absorption passage and a regeneration passage, and the drying device includes a moisture absorption and dehumidification rotating disk, a heating module, and a heat exchange module, a portion of the moisture absorption and dehumidification rotating disk is located in the moisture absorption passage and a portion of the moisture absorption and dehumidification rotating disk is located in the regeneration passage, the heating module and the heat exchange module are located in the regeneration passage, the moisture absorption and dehumidification rotating disk is used to absorb moisture from the circulating air flow in the moisture absorption passage, the heating module heats the moisture absorption and dehumidification rotating disk in the regeneration passage to desorb moisture from the moisture absorption and dehumidification rotating disk, the heat exchange module heats the dehumidified air flow formed by moisture desorption, and the heat exchange module includes a condensation module, an air cooling module, etc. When the temperature near the air outlet of the moisture absorption and dehumidification passage reaches a predetermined temperature threshold, adjusting the operating state of the drying device and / or outputting abnormal prompt information specifically includes: When the temperature near the air outlet of the heat exchange module reaches a predetermined temperature threshold, the operating state of the drying device is adjusted and / or abnormal prompt information is output.

[0072] In this embodiment, the heat exchange module is used to heat exchange the dehumidified air flow formed by moisture desorption. Experiments have shown that the temperature near the air inlet and / or air outlet of the heat exchange module can more accurately characterize the operating state of the drying device and abnormal drying conditions. Therefore, by determining whether the temperature near the air inlet of the heat exchange module has reached a predetermined temperature threshold and determining whether to adjust the operating state of the drying device and / or output abnormality prompt information according to the determination result, abnormal drying conditions can be detected in a timely and accurate manner, and the operating state of the drying device can be adjusted to achieve accurate control of the drying process.

[0073] In one embodiment of the present application, the heat exchange module includes a condensation module, and adjusting the operating state of the drying device and / or outputting abnormal prompt information when the temperature near the air outlet of the heat exchange module reaches a predetermined temperature threshold specifically includes: adjusting the operating state of the drying device and / or outputting abnormal prompt information when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches a predetermined temperature threshold.

[0074] In this embodiment, the heat exchange module includes a condensing module having a condensed air outlet and a condensed air inlet, and the air flowing out of the regeneration passage enters the condensing module through the condensed air inlet, is condensed by the condensing module, and then enters the heating module through the condensed air outlet via the regeneration fan to dry the dehumidified air flow.

[0075] The condensed air inlet temperature near the condensed air inlet of the condensing module is acquired, and when the condensed air inlet temperature reaches a predetermined temperature threshold, it indicates that an abnormal drying situation has occurred or that the drying judgment conditions have been met, and adjusts the operating state of the drying device and / or outputs abnormal prompt information, thereby improving the drying effect of clothes.

[0076] In one embodiment of the present application, the predetermined temperature threshold includes a first temperature threshold, and adjusting the operating state of the drying device when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold specifically includes: reducing the heating power of the heating module within a first period when the condensing air inlet temperature reaches the first temperature threshold.

[0077] In this embodiment, the predetermined temperature threshold includes a first temperature threshold. If the increase in the condensing air inlet temperature is equal to or greater than the first temperature threshold, it indicates that the condensing air inlet temperature is high. At this time, an abnormal situation may occur, so the heating power of the heating module is reduced and maintained for a first period to resolve the abnormal situation, and after the first period, the heating power of the heating module is restored.

[0078] In one embodiment, if the increase in the condensing air inlet temperature is equal to or greater than the first temperature threshold, the heating power of the heating module is reduced to 0 W and maintained for 5 minutes, after which the heating power of the heating module is restored, thereby resolving the abnormal situation.

[0079] In one embodiment of the present application, when the condensing air inlet temperature reaches a first temperature threshold, the heating module is turned off, and the condensing module and / or the regeneration fan of the drying device are kept in an operating state, where the regeneration fan of the drying device is provided in the regeneration passage and is used to form the regeneration airflow in the regeneration passage.

[0080] In this embodiment, when the condensation air inlet temperature is equal to or greater than the first temperature threshold, the heating module is turned off while the condensation module and / or the regeneration fan of the drying device are still kept operating, and the operation of the condensation module and / or the regeneration fan quickly cools the clothing treatment device and prevents the clothing treatment device from overheating.

[0081] In one embodiment, a first temperature threshold included in the predetermined temperature thresholds is used to determine the presence of a water film on the filtration structure of the clothing treatment device, and the heating module is turned off and the regeneration fan of the condensation module and / or dryer device is kept operating for a first period of time to destroy the water film.

[0082] In this embodiment, a filtering structure for filtering out dust and clothing lint is provided in the air outlet duct of the clothing treatment device, and when a water film exists in the filtering structure, the condensed air inlet temperature is equal to or higher than a first temperature threshold, so that the heating module is turned off and the condensation module and / or the regeneration fan are kept in operation for a first period to destroy the water film and eliminate the impact of the water film of the filtering structure on the drying operation.

[0083] The first temperature threshold is set in the range of 70°C to 120°C, preferably 80°C to 100°C. For example, if the rise in the condensing air inlet temperature is 80°C or more, it indicates that the condensing air inlet temperature is high, and at this time, there may be a water film in the filtering structure. In this case, the heating power of the heating module is reduced to 0W, and at the same time, the condensing module and / or the regenerative fan are kept in operation for 5 minutes to achieve the purpose of destroying the water film.

[0084] In the embodiment of the present application, a method is proposed to detect the water film abnormality of the filtration structure and eliminate the abnormal situation, thereby ensuring the reliability of the drying operation.

[0085] Furthermore, if the condensed air inlet temperature is still above the first temperature threshold after the method for detecting and resolving the water film anomaly in the filtration structure has been performed a predicted number of times (e.g., three times), the abnormality is ignored and the drying device continues to operate to determine whether there is another abnormality. If the condensed air inlet temperature is still above the first temperature threshold after the heating module has been turned off a predicted number of times, it may be due to another abnormality rather than a water film anomaly, and the drying device continues to operate to determine whether there is another abnormality or whether the drying determination condition is met depending on the subsequent temperature.

[0086] In one embodiment of the present application, the predetermined temperature threshold includes a second temperature threshold, which is greater than the first temperature threshold, and adjusting the operating state of the drying device when the condensed air inlet temperature near the condensed air inlet of the condensing module reaches the predetermined temperature threshold specifically includes: when the condensed air inlet temperature reaches the second temperature threshold, controlling the clothing treatment device to enter a forced cooling mode, and the forced cooling mode includes at least one of controlling the heating module to turn off and controlling the regenerative fans of the condensing module and the drying device to start for a second period.

[0087] In this embodiment, the predetermined temperature threshold further includes a second temperature threshold, which is greater than the first temperature threshold, and the second temperature threshold is set in the range of 70°C to 120°C, preferably 100°C to 120°C.

[0088] If the condensing air inlet temperature is equal to or greater than the second temperature threshold, it indicates that the condensing air inlet temperature is high. This may indicate an abnormal situation where the humidifying / dehumidifying rotating disk does not rotate. To ensure the safety of the drying device, forced cooling is performed to resolve the abnormal situation. The forced cooling mode includes turning off the heating module and / or controlling the condensing module and regeneration fan to run for a second period, e.g., 3 minutes.

[0089] As described above, by performing forced cooling after confirming that an abnormal situation has occurred, the clothing treatment device can be cooled, and after cooling for a certain period of time, the entire clothing treatment device can be turned off to prevent the device from overheating.

[0090] In one embodiment of the present application, outputting abnormal prompt information when the condensing air inlet temperature near the condensing air inlet of the condensing module reaches a predetermined temperature threshold specifically includes: when the condensing air inlet temperature reaches a second temperature threshold, outputting abnormal prompt information of a rotating disk abnormality.

[0091] In this embodiment, if the condensed air inlet temperature is equal to or higher than the second temperature threshold, it is determined that the humidifying and dehumidifying rotating disk does not rotate, and an abnormality prompt is output to notify the user that the rotating disk is abnormal, prompting the user to perform maintenance. Here, the abnormality prompt can be output by sound, light, or text, but is not limited to these.

[0092] In one embodiment of the present application, the predetermined temperature threshold includes a first predetermined change threshold, and adjusting the operating state of the drying device when the condensed air inlet temperature near the condensed air inlet of the condensing module reaches the predetermined temperature threshold specifically includes: turning off the heating module when the change in the condensed air inlet temperature within a first predetermined period is less than or equal to the first predetermined change threshold.

[0093] In this embodiment, if the temperature change amount of the condensed air inlet temperature within a fixed time is abnormal, i.e., if the change amount of the condensed air inlet temperature within a first predetermined period is less than a first predetermined change amount threshold, an abnormal drying situation occurs, indicating, for example, that an abnormal situation of the heating device has occurred, and in this case, the heating module is turned off to stop drying.

[0094] For example, if the increase in the condensed air inlet temperature is less than 5°C within 10 minutes, it is determined that the heating module is abnormal, and the heating module is turned off to achieve accurate control of the drying process.

[0095] In one embodiment of the present application, when the condensation air inlet temperature near the condensation air inlet of the condensing module reaches a predetermined temperature threshold, outputting abnormal prompt information specifically includes the following: if the change in the condensation air inlet temperature within a first predetermined period is less than or equal to a first predetermined change threshold, outputting abnormal prompt information indicating that the heating device is abnormal.

[0096] In this embodiment, if the change in the condensed air inlet temperature within a first predetermined period is less than or equal to the first predetermined change threshold, it indicates that an abnormality has occurred in the heating device, and the heating module is turned off while outputting abnormal prompt information indicating that the heating device is abnormal, thereby urging the user to perform maintenance.

[0097] In one embodiment of the present application, the clothing treatment device further comprises an air inlet duct and an air outlet duct, the clothing storage device is provided with an air inlet and an air outlet, the air inlet of the clothing storage device is connected to the moisture absorption and dehumidification passage through the air inlet duct, and the air outlet of the clothing storage device is connected to the moisture absorption and dehumidification passage through the air outlet duct; the predetermined temperature thresholds include a third temperature threshold and a fourth temperature threshold, where the third temperature threshold is less than the fourth temperature threshold; Specifically, adjusting the operating state of the drying device when the temperature near the air outlet of the clothing storage device reaches a predetermined temperature threshold includes: When the air inlet temperature near the air inlet of the clothing storage device reaches a third temperature threshold, the heating power of the heating module of the drying device is increased to a first target power, and when the air inlet temperature near the air inlet of the clothing storage device reaches a fourth temperature threshold, the heating power of the heating module of the drying device is decreased to a second target power, so that the air outlet temperature near the air outlet of the clothing storage device is within the target temperature range.

[0098] This embodiment provides a dynamic heating method during drying operation. Specifically, during drying operation, if the air inlet temperature near the air inlet of the clothing storage device is below a third temperature threshold, the heating power of the heating module is increased, and if the air inlet temperature near the air inlet of the clothing storage device is above a fourth temperature threshold, the heating power of the heating module is decreased, thereby fluctuating the heating power of the heating module within a predetermined heating power range and controlling the air outlet temperature near the air outlet of the clothing storage device to be within a target temperature range.

[0099] Here, the third temperature threshold is a predetermined minimum temperature value near the air inlet of the clothing storage device, and the fourth temperature threshold is a predetermined maximum temperature value near the air inlet of the clothing storage device, where the predetermined minimum temperature value may be set to 60°C to 75°C, the predetermined maximum temperature value may be set to 76°C to 85°C, and the target temperature range may be set to 50±3°C. For example, in one embodiment, when the air inlet temperature of the clothing storage device is below 75°C, the heating power of the heating module is increased, and when the air inlet temperature of the clothing storage device is above 80°C, the heating power of the heating module is decreased.

[0100] In one embodiment, the heating module varies within a predetermined heating power range of 600W to 1400W to maintain the clothing container's air outlet temperature within a range of 50±3°C. For example, when the clothing container's air inlet temperature is below 75°C, the heating module's heating power is controlled to 1400W, and when the clothing container's air inlet temperature is above 80°C, the heating module's heating power is controlled to 600W. In an embodiment of the present application, the heating module can operate between 600W and 1400W according to a waveform such as a sine wave, a square wave, or a sawtooth wave.

[0101] The above control method allows the air outlet temperature in the vicinity of the air outlet of the clothing storage device to be maintained at as constant a level as possible.

[0102] At the same time, the hygroscopic and dehumidifying rotating disks in the regeneration path can have high regeneration efficiency. Specifically, when the heating module operates at a high heating power (e.g., 1400W), the temperature of the hygroscopic and dehumidifying rotating disks in the regeneration path and the temperature of the dehumidifying stream are increased, allowing the hygroscopic and dehumidifying rotating disks in the regeneration path to have high regeneration efficiency. When the heating module operates at a low heating power (e.g., 600W), the temperature of the hygroscopic and dehumidifying rotating disks in the regeneration path and the temperature of the dehumidifying stream are decreased, while the regeneration efficiency of the hygroscopic and dehumidifying rotating disks in the regeneration path can also be reduced to some extent.

[0103] In other words, by varying the heating module between high and low heating power, the temperature inside the clothing storage device or the temperature near the air outlet during the drying operation can be maintained while maintaining a balance in the regeneration efficiency of the moisture absorbing and dehumidifying rotating disk.

[0104] In one embodiment of the present application, adjusting the operating state of the drying device includes: turning off the heating module of the drying device, i.e., obtaining the temperature near the air outlet of the clothing storage device and / or the condensation module, and turning off the heating module of the drying device when the temperature near the air outlet reaches a predetermined temperature threshold.

[0105] In this embodiment, the heating module of the drying device can be turned on or off according to the temperature near the air inlet of the clothing storage device and / or the air inlet of the condensation module, i.e., the heating drying stage is terminated. Specifically, when the temperature near the air inlet of the clothing storage device and / or the air inlet of the condensation module reaches a predetermined temperature threshold, the heating module is turned off, thereby realizing precise control of the drying process and improving the drying effect.

[0106] In one embodiment of the present application, the predetermined temperature thresholds include a fifth temperature threshold, a sixth temperature threshold, a seventh temperature threshold, and a second predetermined change amount threshold, where the seventh temperature threshold is greater than the first temperature threshold and less than the second temperature threshold; Turning off the heating module of the drying device when the temperature near the air outlet reaches a predetermined temperature threshold specifically includes: Turning off the heating module of the drying device when the condensed air outlet temperature near the condensed air outlet of the condensing module reaches a sixth temperature threshold; or Turning off the heating module of the dryer when the condensing air inlet temperature of the condensing module reaches a seventh temperature threshold; or If the change in the air outlet temperature of the clothing storage device within a second predetermined period is equal to or greater than a second predetermined change threshold, the heating module of the drying device is turned off.

[0107] In this embodiment, three methods are provided to determine the end of the heating and drying stage, and the heating module is turned off when any one of the three drying determination methods is met. The three methods are as follows: Method (1): Obtain the condensed air outlet temperature near the condensed air outlet of the condensing module. If the condensed air outlet temperature is equal to or greater than a sixth temperature threshold, the heating and drying phase ends, the heating module is turned off, and the cooling phase begins. The sixth temperature threshold is the normal temperature near the condensed air outlet during drying, which ranges from 75°C to 80°C and may generally be set to 80°C.

[0108] Method (2): Obtain the condensed air inlet temperature near the condensed air inlet of the condensing module. If the condensed air inlet temperature is equal to or greater than a seventh temperature threshold, the heating and drying phase ends, the heating module is turned off, and the cooling phase begins. The seventh temperature threshold is the normal temperature near the condensed air outlet during drying, which ranges from 85°C to 90°C and may generally be set to 90°C.

[0109] The judgment logic of methods (1) and (2) is executed only when the air outlet temperature near the air outlet of the clothing storage device is heated to 45°C or higher. If the dryness judgment is started before reaching 45°C, it will affect the detection of some dryness abnormality information. For example, if the condensed air inlet temperature is 100°C or higher, abnormality information that determines that the moisture absorbing and dehumidifying rotating disk does not rotate cannot be detected.

[0110] Method (3): Obtain the air outlet temperature near the air outlet of the clothing storage device, and if the change in the air outlet temperature within a second predetermined period is equal to or greater than a second predetermined change threshold, determine that the heating and drying phase has ended, enter the cooling phase, and turn off the heating module. For example, determine the change in the air outlet temperature of the clothing storage device over a 10-minute period, and if the change is greater than 4°C, determine that the drying phase has ended and turn off the heating module.

[0111] In this embodiment, a method for determining whether the heating and drying stage has ended is provided, which allows for more timely and accurate determination of whether the heating and drying stage has ended, and enables the heating module to be turned off in a timely manner when the heating and drying stage has ended. On the one hand, this avoids the occurrence of a situation where the heating module stops even though the clothes are not dry, and on the other hand, it avoids irreversible damage to the clothes caused by excessive heating and drying.

[0112] In one embodiment of the present application, the method further includes: after turning off the heating module, maintaining the moisture absorption and dehumidification rotating disk, the condensation module, the circulation fan of the drying device and the regenerative fan of the drying device in an operating state, wherein the circulation fan of the drying device is located in the moisture absorption passage and is used to form a circulating airflow between the clothing storage device and the moisture absorption passage.

[0113] In one embodiment, after the heating module is turned off, the drying operation enters the cooling phase, and the humidifying and dehumidifying rotating disk, condensation module, circulation fan, and regeneration fan of the drying device are kept running. That is, when the heating and drying phase ends, the heating module stops operating, but the humidifying and dehumidifying driving unit does not stop operating, and the humidifying and dehumidifying rotating disk continues to operate for a third period. The length of the third period can be set independently or according to the specific circumstances of different drying operations, or the humidifying and dehumidifying driving unit can be turned off after the cooling phase ends.

[0114] In this embodiment, when the heating and drying stage is completed, the operation of the heating module can be stopped, and the cooling stage of the drying operation can be quickly started.The operation of the moisture absorption and dehumidification driving unit is not stopped, and the moisture absorption and dehumidification rotating disk continues to rotate, quickly dissipating the residual heat in the heating module and quickly cooling the hot airflow, thereby shortening the time for the cooling stage.

[0115] In this embodiment, when the heating and drying stage is completed, the circulation fan that forms a circulating airflow passing between the clothing storage device and the moisture absorption passage of the drying device continues to operate, realizing airflow circulation between the clothing storage device and the drying device and accelerating the cooling speed of the clothing in the clothing storage device, while the regeneration fan that forms a regeneration airflow passing through the regeneration passage continues to operate, transporting the dry regeneration airflow to the regeneration passage and carrying and discharging the high-temperature humid airflow generated in the regeneration passage, thereby accelerating the cooling speed of the clothing in the clothing storage device.

[0116] In one embodiment, when the heated drying stage is completed, the regeneration fan continues to operate at a higher power to transport more dry regeneration airflow to the regeneration passage, carry and discharge the hot humid airflow generated in the regeneration passage, and accelerate the cooling rate of the clothes in the clothing storage device.

[0117] In one embodiment of the present application, the method further includes: turning off the moisture absorption and dehumidification rotating disk, the condensation module, the circulation fan of the dryer, and the regeneration fan of the dryer when the air inlet temperature of the clothing storage device reaches an eighth temperature threshold.

[0118] In this embodiment, if the air inlet temperature near the air inlet of the clothing storage device is equal to or lower than the eighth temperature threshold during the cooling phase, it is determined that the cooling phase has ended. At this time, the drying operation has already ended, so if there are no other operations, the entire clothing treatment device machine can be turned off. The eighth temperature threshold is set to 50°C to 55°C. For example, if the air inlet temperature near the air inlet of the clothing storage device is equal to or lower than 55°C, it is determined that the cooling phase has ended, and the moisture absorption and dehumidification rotating disk, the condensation module, the circulation fan and the regeneration fan of the drying device are turned off.

[0119] In one embodiment of the present application, before adjusting the operating state of the drying device, the method further includes: when the air outlet temperature of the clothing storage device reaches a fifth temperature threshold, rotating the clothing storage device, performing a first weighing process to obtain a first weight value, and generating a drying time based on the first weight value.

[0120] In this embodiment, the moisture content of the clothes weighed in the previous period is unknown, and a certain time is required to resolve the abnormal situation (e.g., the water film of the filtration structure is broken), which may result in an inaccurate drying time. Therefore, the drying time is calibrated. Specifically, when the air outlet temperature of the clothes storage device is heated to a temperature equal to or higher than the fifth temperature threshold, the clothes are weighed and the drying time is calibrated, and the calibrated drying time is displayed on the display interface of the clothes processing device.

[0121] In this way, an appropriate drying time is obtained and the accuracy of the drying operation is improved.

[0122] In one embodiment, whether to perform the first weighing process is determined according to a predetermined drying mode. The predetermined drying mode may be a mode in which a drying time is not set by default, including an automatic mode under simple drying operation, in which the first weighing process is performed and the drying time is calibrated according to the obtained first weight value.

[0123] For modes in which the drying time is set by default, such as the wash drying mode or the fixed time drying mode under simple drying operation, the drying time calibration process may be canceled once the drying time has been set.

[0124] In one embodiment of the present application, the method further includes: when the drying device is in an operating state, obtaining a rotation speed of a fan of the drying device, and controlling the operation of the drying device to stop if the rotation speed is equal to or less than a predetermined rotation speed threshold, wherein the fan of the drying device includes at least one of a circulation fan and / or a regeneration fan.

[0125] In this embodiment, when the drying device is in operation, the rotation speed of the fan of the drying device is detected, and the fan includes a circulation fan provided in the moisture absorption passage and / or a regeneration fan provided in the regeneration passage.

[0126] If the rotation speed of the fan is below a predetermined rotation speed threshold, it indicates that the fan has failed, and the operation of the drying device is controlled to stop. For example, if the rotation speed of the circulation fan is below 1000 rpm, or if the rotation speed of the regeneration fan is below 1000 rpm, the operation of the drying device is controlled to stop.

[0127] In this way, abnormality detection and abnormality control of the fan of the drying device can be realized, improving the reliability of the drying operation.

[0128] In one embodiment of the present application, the method further includes: when the rotation speed is lower than a predetermined rotation speed threshold, outputting abnormal prompt information that the fan is abnormal.

[0129] In this embodiment, when the rotation speed of the fan is lower than the predetermined rotation speed threshold, it indicates that the fan has failed, and at this time, the abnormal prompt information indicating that the fan is abnormal is output to notify the user that the drying operation cannot be performed normally. For example, the fan failure prompt information can be displayed on the display interface of the clothing processing device, and at the same time, a jingling sound can be output from the buzzer, thereby achieving the purpose of prompting the user in a timely manner.

[0130] In one embodiment of the present application, before operating the drying device, the method further includes: determining whether to perform a second weighing process according to a predetermined drying mode; if the second weighing process is performed, controlling the clothing storage device to rotate and obtain a second weight value; and if the second weight value is greater than or equal to a predetermined weight threshold, controlling the clothing storage device to rotate and perform a dehydration process.

[0131] The operating process of the laundry treatment device includes a spin-drying step, which includes at least a first spin-drying step after a rinsing step during a washing operation. In one embodiment, a second spin-drying step may be performed before a heated drying step during a drying operation.

[0132] Specifically, after the first spin and drain, a second weighing process is performed to obtain a second weight value of the clothes in the clothes storage device and determine whether the second weight value is equal to or greater than a predetermined weight threshold. If the weight is equal to or less than the predetermined weight threshold, the second spin is not performed and the system enters the heat-drying stage. If the second weight value is equal to or greater than the predetermined weight threshold, the system executes a second spin, spins the clothes, sorts them, and then enters the heat-drying stage. This shortens the clothes processing time and saves some energy while still ensuring effective clothes processing.

[0133] Furthermore, in one embodiment, it may be determined whether to perform a second spin-drying operation according to a predetermined drying mode. The predetermined drying mode may be a mode in which a drying time is not set by default, including an automatic mode under a simple drying operation, in which a second weighing process is performed and whether to perform a second spin-drying operation is determined according to the obtained second weight value.

[0134] For modes where the drying time is set by default, such as the wash dry mode or the fixed time drying mode under simple dry operation, there is no need to perform a secondary metering given that the drying time has been set.

[0135] In one embodiment of the present application, before the second spin-drying, the heating module is not activated, i.e., the thermal spin-drying is cancelled from the drying operation in the related art, to avoid interference with subsequent abnormality detection.

[0136] In one embodiment of the present application, the clothing treatment device further comprises a temperature measurement sensor, which is used to obtain the temperature of the clothing storage device and / or the temperature near the air opening of the moisture absorption and dehumidification passage.

[0137] In this embodiment, the clothing treatment device further includes a temperature measurement sensor, which is used to detect and acquire the temperature near the air inlet of the clothing storage device and / or the temperature near the air inlet of the moisture absorption and dehumidification passage. The temperature measurement sensor includes a temperature sensor, a temperature and humidity sensor, etc.

[0138] By accurately detecting the temperature near the air inlet of the clothing storage device and / or the temperature near the air inlet of the moisture absorption / dehumidification passage, it is possible to accurately determine abnormal conditions in the drying operation and accurately control the drying device.

[0139] In one embodiment of the present application, the method further includes: obtaining correspondence data between the resistance value of the temperature measurement sensor and the detected temperature value; obtaining the correspondence data and standard resistance temperature correspondence data of the temperature measurement sensor; and outputting prompt information indicating that the temperature measurement sensor is abnormal if the correspondence data and the standard resistance temperature correspondence data do not match.

[0140] This embodiment provides a method for determining whether a temperature sensor is abnormal by obtaining actual correspondence data between the resistance value of the temperature sensor and the detected temperature value, comparing the actual correspondence data with pre-stored standard resistance-temperature correspondence data of the temperature sensor, and outputting a prompt to the user that the temperature sensor is abnormal if the actual correspondence data does not match the standard resistance-temperature correspondence data.

[0141] In this way, it is possible to avoid inaccuracies in the subsequent determination of an abnormality in the drying and the control of the drying device due to an abnormal temperature measurement by the temperature measurement sensor, thereby improving the reliability of the drying operation.

[0142] In one embodiment of the present application, the temperature measurement sensors include a first sensor, a second sensor, a third sensor, and a fourth sensor, wherein the first sensor is provided near the condensed air inlet of the condensation module of the drying device and is used to obtain the condensed air inlet temperature of the condensation module, the second sensor is provided near the condensed air outlet of the condensation module of the drying device and is used to obtain the condensed air outlet temperature of the condensation module, the third sensor is provided at any position near the drum bottom of the outer cylinder of the clothing treatment device or near the air flow outlet of the clothing storage device and is used to obtain the air outlet temperature of the clothing storage device, and the fourth sensor is provided near the air inlet duct of the clothing treatment device and is used to obtain the air inlet temperature of the clothing storage device.

[0143] In this embodiment, as shown in FIG. 3, the temperature measurement sensor includes a first sensor 107, which is installed near the condensed air inlet of the condensing module of the drying device and is used to obtain the condensed air inlet temperature of the condensing module, and realizes drying abnormality determination and control of the operating state of the drying device according to the condensed air inlet temperature.

[0144] Specifically, if the condensed air inlet temperature is equal to or higher than a first temperature threshold (e.g., 80°C), it is determined that a water film exists in the filtration structure of the clothing treatment device, and at this time, the heating module is turned off and the condensation module and / or regeneration fan are operated for a first period to destroy the water film.

[0145] If the condensed air inlet temperature is equal to or greater than the seventh temperature threshold (for example, 90°C), it is determined that the condition for ending the heating and drying stage is met, and the heating module is turned off.

[0146] If the condensing air inlet temperature is equal to or higher than a second temperature threshold (e.g., 100°C), it is determined that an abnormal situation exists in which the moisture absorbing and dehumidifying rotating disk does not rotate, and at this time, the heating module is turned off and / or the condensing module and the regenerating fan are activated for a second period, and abnormal prompt information is output to indicate that the rotating disk is abnormal.

[0147] If the change in the condensed air inlet temperature within a first predetermined period is less than or equal to the first predetermined change threshold, it is determined that an abnormality exists in the heating device, and in this case, the heating module is turned off, drying is stopped, and abnormal prompt information is output indicating that the heating device is abnormal.

[0148] The temperature measurement sensor further includes a second sensor, which is disposed near the condensed air outlet of the condensing module of the drying device and is used to obtain the condensed air outlet temperature of the condensing module, and controls the operating state of the drying device according to the condensed air outlet temperature. Specifically, if the condensed air outlet temperature is equal to or higher than a sixth temperature threshold (e.g., 80°C), it is determined that the condition for terminating the heating and drying stage is met, and the heating module is turned off.

[0149] As shown in Figure 2, the temperature measurement sensor further includes a third sensor, which is arranged within the target installation area 108, which is arranged at any position near the drum bottom of the outer cylinder of the clothing treatment device and near the air flow outlet of the clothing storage device, and the third sensor is used to obtain the air outlet temperature of the clothing storage device and control the operating state of the drying device according to the air outlet temperature of the clothing storage device.

[0150] Specifically, when the air outlet temperature of the clothing storage device is equal to or higher than a fifth temperature threshold (e.g., 45°C), the clothing storage device is rotated, a first weighing process is performed, and the drying time is calibrated based on the obtained first weight value.

[0151] If the change in the air outlet temperature of the clothing storage device within the second predetermined period is equal to or greater than the second predetermined change threshold, it is determined that the end condition for the heating and drying stage is met, and the heating module is turned off.

[0152] 3, the temperature measurement sensor further includes a fourth sensor 109, which is disposed near the air inlet duct of the clothing treatment device and is used to obtain the air inlet temperature of the clothing storage device and control the operating state of the drying device according to the air inlet temperature of the clothing storage device. Specifically, when the air inlet temperature of the clothing storage device is below a third temperature threshold (e.g., 75°C), the heating power of the heating module is increased; when the air inlet temperature near the air inlet of the clothing storage device is above a fourth temperature threshold (e.g., 80°C), the heating power of the heating module is decreased, so that the air outlet temperature of the clothing storage device is within the target temperature range.

[0153] In one embodiment of the present application, in the heating and drying stage, the condensed water and cooling water are intermittently discharged after being dried, and in the heating and drying stage, the condensed water is turned on intermittently. In another embodiment, in the heating and drying stage, the condensed water is turned on continuously to improve condensation efficiency and shorten drying time.

[0154] An embodiment of the present application provides a clothing treatment device, which comprises a clothing storage device, a moisture absorbing and dehumidifying passage, a drying device, a memory and a processor, wherein the moisture absorbing and dehumidifying passage is connected to the clothing storage device, the drying device is provided in the moisture absorbing and dehumidifying passage, the drying device includes at least one of a moisture absorbing and dehumidifying rotating disk, a heating module and a heat exchange module, a program or instruction is stored in the memory, and the processor is connected to the memory, and when the processor executes the program or instruction, each step of the method embodiment for controlling the above clothing treatment device is realized and similar technical effects can be achieved, so in order to avoid duplication, they will not be repeated here.

[0155] The memory is used to store software programs and various data. The memory mainly includes a first storage area for storing programs or instructions and a second storage area for storing data, where the first storage area stores application programs or instructions required for the operating system and at least one function (e.g., audio playback function, image playback function, etc.). Furthermore, the memory may include volatile memory or nonvolatile memory, or may include both volatile and nonvolatile memory. Here, the nonvolatile memory may be read-only memory (ROM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), or flash memory. Volatile memory may be random access memory (RAM), static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct Rambus random access memory (DRRAM). Memory in embodiments of the present application includes, but is not limited to, these and any other suitable types of memory.

[0156] The processor may include one or more processing units, and optionally, the processor integrates an application processor and a modem processor, where the application processor mainly processes operations related to the operating system, user interface, application programs, etc., and the modem processor mainly processes wireless communication signals, such as a baseband processor, etc. It should be understood that the modem processor may not be integrated into the processor.

[0157] The embodiments of the present application further provide a readable storage medium, in which a program or instruction is stored, and when the program or instruction is executed by a processor, each step of the method embodiment for controlling the above-mentioned garment processing device can be realized and similar technical effects can be achieved, and in order to avoid redundant description, it will not be repeated here.

[0158] The embodiments of the present application further provide a chip, which includes a processor and a communication interface, and the communication interface is coupled to the processor, and the processor executes a program or instruction, which is used to realize each step of the method embodiment for controlling the above-mentioned clothing processing device, and can achieve similar technical effects, which will not be repeated here to avoid redundant description.

[0159] It should be understood that the chips referred to in the embodiments of this application may also be referred to as system level chips, system chips, chip systems, or system-on-chips.

[0160] It should be noted that, as used herein, the terms "comprise," "include," and any other variants thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus consisting of a set of elements includes not only those elements but also other elements not expressly listed or inherent in such process, method, article, or apparatus. Absent more limitations, an element defined by the phrase "comprises a" does not exclude the presence of other identical elements in the process, method, article, or apparatus consisting of that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but also includes performing functions substantially simultaneously or in reverse order depending on such functionality. For example, it should be noted that methods described may be performed in a different order than described, and various steps may be added, omitted, or combined. Furthermore, features described with reference to some embodiments may be combined in other embodiments.

[0161] Although examples of the present application have been described above in conjunction with the accompanying drawings, the present application is not limited to the above-mentioned specific embodiments, which are merely illustrative and not limiting, and it is understood that a person skilled in the art can make many modifications according to the teachings of the present application without departing from the spirit and scope of the claims of the present application, all of which shall be included in the scope of protection of the present application. [Explanation of symbols]

[0162] 100 Clothes treatment device 101 Clothing storage device 102 Door body 103 Housing 104 Air outlet duct 105 Drying equipment 106 Connecting member 107 First Sensor 108 Target installation area for the third sensor 109 4th Sensor 1501 Circulation Fan 1502 Moisture absorption and dehumidification rotating disk 1503 Moisture absorption and dehumidification drive unit 1504 Regenerated Fan 1505 Heating Module 1506 Condensation Module 1507 Passage air outlet 1508 Passage air inlet 1509 Flexible Tube 1510 Moisture absorption passage 1511 Regeneration passage 1600 Lower Housing 1601 First mounting part 1602 Second mounting part 1603 Third mounting part 1604 4th mounting part 1701 Circulation Fan Upper Housing 1702 Upper housing of the moisture absorption / dehumidification rotating disk 1703 Condensation Module Upper Housing

Claims

1. 1. A method for controlling a clothing treatment device comprising a clothing storage device, a moisture absorption and dehumidification passage, and a drying device, wherein the moisture absorption and dehumidification passage is in communication with the clothing storage device, the drying device is disposed in the moisture absorption and dehumidification passage, and the drying device includes at least one of a moisture absorption and dehumidification rotating disk, a heating module, and a heat exchange module, comprising: When the drying device is in an operating state, acquiring a temperature of the clothing storage device and / or a temperature near an air opening of the moisture absorption and dehumidification passage; A method for controlling a clothing processing device, characterized in that it includes adjusting the operating state of the drying device and / or outputting abnormal prompt information when the temperature near the air outlet of the clothing storage device and / or the moisture absorption and dehumidification passage reaches a predetermined temperature threshold.

2. the moisture absorbing and dehumidifying passage includes a moisture absorbing passage and a regenerating passage, the drying device includes at least two of a moisture absorbing and dehumidifying rotary disk, a heating module, and a heat exchange module, a portion of the moisture absorbing and dehumidifying rotary disk is located in the moisture absorbing passage and a portion of the rotary disk is located in the regenerating passage, the heating module and / or the heat exchange module is located in the regenerating passage, the moisture absorbing and dehumidifying rotary disk is used to absorb moisture from the circulating airflow in the moisture absorbing passage, the heating module is used to heat the moisture absorbing and dehumidifying rotary disk in the regenerating passage to desorb moisture from the moisture absorbing and dehumidifying rotary disk, and the heat exchange module is used to exchange heat with the dehumidified airflow formed by moisture desorption, adjusting the operating state of the drying device and / or outputting abnormal prompt information when the temperature near the air opening of the moisture absorption and dehumidification passage reaches a predetermined temperature threshold; The method for controlling a clothing processing device as described in claim 1, characterized in that it includes adjusting the operating state of the drying device and / or outputting abnormal prompt information when the temperature near the air outlet of the heat exchange module reaches a predetermined temperature threshold.

3. The heat exchange module includes a condensation module, and when the temperature near the air outlet of the heat exchange module reaches a predetermined temperature threshold, adjusting the operating state of the drying device and / or outputting abnormal prompt information is The method for controlling a clothing processing device according to claim 2, further comprising adjusting the operating state of the drying device and / or outputting abnormal prompt information when the condensation air inlet temperature near the condensation air inlet of the condensation module reaches a predetermined temperature threshold.

4. The predetermined temperature threshold includes a first temperature threshold, and adjusting the operating state of the drying device when a condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold; 4. The method of claim 3, further comprising reducing the heating power of the heating module for a first period of time when the condensing air inlet temperature reaches the first temperature threshold.

5. Adjusting the operating state of the drying device comprises: turning off the heating module and maintaining the condensing module and / or the dryer regenerative fan in operation when the condensing air inlet temperature reaches the first temperature threshold; a regeneration fan of the drying device is provided in the regeneration passage and is used to form a regeneration airflow in the regeneration passage; or The method for controlling a clothing treatment device described in claim 4, characterized in that the first temperature threshold is used to determine the presence of a water film on the filtration structure of the clothing treatment device, and includes turning off the heating module and operating the condensation module and / or the regeneration fan of the drying device during a first period to destroy the water film.

6. The predetermined temperature threshold includes a second temperature threshold, and the second temperature threshold is greater than the first temperature threshold. When the condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold, adjusting the operating state of the drying device is performed. When the condensing air inlet temperature reaches the second temperature threshold, the clothing treatment device is controlled to transition to a forced cooling mode, the forced cooling mode including at least one of controlling the heating module to be turned off and controlling the condensing module and the regenerative fan of the drying device to be activated during a second period; outputting abnormal prompt information when the condensation air inlet temperature near the condensation air inlet of the condensation module reaches a predetermined temperature threshold; The method for controlling a clothing processing device as described in claim 4, further comprising outputting abnormal prompt information indicating that the moisture absorption and dehumidification rotating disk is abnormal when the condensation air inlet temperature reaches the second temperature threshold.

7. The predetermined temperature threshold includes a first predetermined change amount threshold, and adjusting the operating state of the drying device when a condensing air inlet temperature near the condensing air inlet of the condensing module reaches the predetermined temperature threshold; turning off the heating module when a change in the condensing air inlet temperature within a first predetermined period is equal to or less than the first predetermined change threshold; outputting abnormal prompt information when the condensation air inlet temperature near the condensation air inlet of the condensation module reaches a predetermined temperature threshold; The method for controlling a clothing processing device as described in claim 3 further includes outputting abnormal prompt information indicating that the heating device is abnormal when the change in the condensed air inlet temperature within a first predetermined period is less than the first predetermined change threshold.

8. The clothing treatment device further includes an air inlet duct and an air outlet duct, the clothing storage device is provided with an air inlet and an air outlet, the air inlet of the clothing storage device is connected to the moisture absorption and dehumidification passage through the air inlet duct, and the air outlet of the clothing storage device is connected to the moisture absorption and dehumidification passage through the air outlet duct; the predetermined temperature thresholds include a third temperature threshold and a fourth temperature threshold, the third temperature threshold being lower than the fourth temperature threshold; adjusting the operating state of the drying device when the temperature near the air outlet of the clothing storage device reaches a predetermined temperature threshold; 2. The method for controlling a clothing processing device of claim 1, further comprising increasing the heating power of the heating module of the drying device to a first target power when the air inlet temperature near the air inlet of the clothing storage device reaches the third temperature threshold, and decreasing the heating power of the heating module of the drying device to a second target power when the air inlet temperature near the air inlet of the clothing storage device reaches a fourth temperature threshold.

9. adjusting the operating state of the drying device includes turning off a heating module of the drying device; the predetermined temperature thresholds include a fifth temperature threshold, a sixth temperature threshold, a seventh temperature threshold, and a second predetermined change amount threshold, the seventh temperature threshold being greater than the first temperature threshold and less than the second temperature threshold; turning off the heating module of the drying device when the temperature near the air outlet reaches a predetermined temperature threshold; Turning off the heating module of the drying device when the condensed air outlet temperature near the condensed air outlet of the condensing module reaches a sixth temperature threshold; or Turning off the heating module of the drying device when the condensing air inlet temperature of the condensing module reaches a seventh temperature threshold; or The method for controlling a clothing processing device as described in claim 6, further comprising turning off the heating module of the drying device when the change in the air outlet temperature of the clothing storage device within a second predetermined period is greater than or equal to the second predetermined change threshold.

10. After the heating module is turned off, the moisture absorption and dehumidification rotating disk, the condensation module, the circulation fan of the drying device, and the regeneration fan of the drying device are kept in operation; The circulation fan of the drying device is provided in the moisture absorption passage and is used to form a circulating airflow between the clothing storage device and the moisture absorption passage; The method for controlling a clothing treatment device as described in claim 9, further comprising turning off the moisture absorbing and dehumidifying rotating disk, the condensation module, the circulation fan of the drying device, and the regeneration fan of the drying device when the air inlet temperature of the clothing storage device reaches an eighth temperature threshold.

11. When the air outlet temperature of the clothing storage device reaches a fifth temperature threshold, the clothing storage device is rotated, a first weighing process is performed to obtain a first weight value, a drying time is generated based on the first weight value, and it is determined whether to perform a second weighing process according to a predetermined drying mode, and when the second weighing process is performed, the clothing storage device is controlled to rotate to obtain a second weight value, and if the second weight value is equal to or greater than a predetermined weight threshold, the clothing storage device is controlled to rotate to perform a dehydration process, or The method for controlling a clothing processing device described in claim 9 further includes, when the drying device is in an operating state, obtaining the rotation speed of the fan of the drying device, and controlling the operation of the drying device to stop if the rotation speed is below a predetermined rotation speed threshold, the fan of the drying device including at least one of a circulation fan and / or a regeneration fan, and, when the rotation speed is below the predetermined rotation speed threshold, outputting abnormal prompt information indicating that the fan is abnormal.

12. The method for controlling a clothing processing device according to claim 1, characterized in that the clothing processing device further comprises a temperature measurement sensor, and the temperature measurement sensor is used to obtain the temperature of the clothing storage device and / or the temperature near the air outlet of the moisture absorption and dehumidification passage.

13. The temperature measurement sensor includes a first sensor, a second sensor, a third sensor, and a fourth sensor; The first sensor is used to be installed near the condensation air inlet of the condensation module of the drying device to obtain the condensation air inlet temperature of the condensation module, the second sensor is used to be installed near the condensation air outlet of the condensation module of the drying device to obtain the condensation air outlet temperature of the condensation module, the third sensor is used to be installed at any position near the drum bottom of the outer cylinder of the clothing treatment device or near the air flow outlet of the clothing treatment device to obtain the air outlet temperature of the clothing treatment device, and the fourth sensor is used to be installed near the air inlet duct of the clothing treatment device to obtain the air inlet temperature of the clothing treatment device, The method for controlling the laundry treatment device includes: acquiring correspondence data between the resistance value of the temperature measurement sensor and the detected temperature value; The method for controlling a clothing processing device according to claim 12, further comprising: comparing the correspondence data with standard resistance-temperature correspondence data of the temperature measurement sensor; and outputting prompt information indicating that the temperature measurement sensor is abnormal if the correspondence data does not match the standard resistance-temperature correspondence data.

14. A clothing processing device comprising a clothing storage device, a moisture absorption and dehumidification passage, a drying device, a memory, and a processor, The moisture absorption and dehumidification passage is in communication with the clothing storage device, and the drying device is provided in the moisture absorption and dehumidification passage, and the drying device includes at least one of a moisture absorption and dehumidification rotating disk, a heating module, and a heat exchange module; a program or instruction stored in said memory; A clothing processing device characterized in that the processor is connected to the memory, and when the processor executes the program or instructions, it realizes the steps of the method for controlling a clothing processing device described in any one of claims 1 to 13.

15. A non-transitory computer-readable storage medium having a program or instruction stored thereon, A non-transitory computer-readable storage medium, characterized in that when the program or instructions are executed by a processor, the processor performs the steps of the method for controlling a clothing processing device according to any one of claims 1 to 13.