Clothes treatment device, water supply control method, and computer-readable storage medium

JP2025528493A5Pending Publication Date: 2025-10-21NANJING ROBOROCK INNOVATION TECH CO LTD
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Patent Information

Application Number
JP2025513028
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-01-17
Filing Date
2023-05-26
Publication Date
2025-10-21

AI Technical Summary

Technical Problem

Conventional laundry treatment devices face issues with water films forming on filter nets during drying, which reduce airflow and affect drying effectiveness, and water flow into the clothes storage device can wet the clothes.

Method used

A dual water supply system with separate lines for cleaning the filter net and ensuring airflow, where the first line cleans the filter net during a separate stage before drying and the second line supplies water during the final drying stage to prevent water film formation.

Benefits of technology

Effectively cleans the filter net while maintaining good drying performance by preventing water film formation, ensuring safe operation and extending component life.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application provides a clothing treatment device, a water supply control method, and a computer-readable storage medium, the method including: performing a first process in a first water supply stage, the first process including supplying water to a clothing storage device via a filter wire through a second water supply line; and performing a second process in a second water supply stage, the second water supply stage being subsequent to the first water supply stage and including supplying water to the clothing storage device only through the first water supply line. This technical solution effectively cleans the filter wire in the first water supply stage, and in the second water supply stage, i.e., the final water supply stage before drying, water is supplied through the first water supply line rather than the second water supply line, thereby avoiding the formation of a water film due to the flow of water through the filter wire. This not only achieves effective cleaning of the filter wire, but also protects the drying effect from the influence of the water film, maintains the safe operation of many components, including the fan, and extends the service life of the components.
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Description

[Technical Field]

[0001] (Related Applications) This application claims priority to Chinese Patent Application No. 202222310919.3 filed on August 31, 2022, PCT International Application Nos. PCT / CN2022 / 116142 and PCT / CN2022 / 116387 filed on August 31, 2022, and PCT International Application No. PCT / CN2023 / 072664 filed on January 17, 2023, the entire contents of which are incorporated herein by reference.

[0002] (Technical field) The present application relates to the technical field of household electrical appliances, and in particular to a clothes treating device, a water supply control method, and a computer-readable storage medium. [Background technology]

[0003] With the continuous improvement of manufacturing technology and the increasing demands in people's daily lives, clothing processing machines have spread to thousands of homes and become one of the most commonly used home appliances. Currently, clothing processing machines are used to realize various processing processes of clothes, such as washing, rinsing, ironing, and drying.

[0004] In conventional laundry treatment devices, when water is poured into the laundry container, the water flows through the filter net, which filters out lint and other impurities generated during drying. While the water flow has a cleaning effect on the filter net, it also tends to form a water film on the surface of the filter net. When the laundry treatment device dries, the water film affects the airflow area of ​​the filter net, reducing the drying airflow and affecting the drying effect.

[0005] Furthermore, when the filter net is washed after drying, the water flow is likely to flow into the clothes storage device, wetting the clothes, which also affects the drying effect.

[0006] Therefore, how to effectively clean the filter net while ensuring good drying effect at the same time has become a technical problem to be solved. Summary of the Invention [Problem to be solved by the invention]

[0007] SUMMARY OF THE INVENTION The object of the present application is to provide a clothes treatment device, a water supply control method and a computer-readable storage medium for effectively cleaning a filter net while ensuring good drying effect. [Means for solving the problem]

[0008] In a first aspect, an embodiment of the present application provides a clothes treatment device, a garment receiving device for receiving the garments to be treated; a clothing treatment cassette communicating with the clothing storage device for storing a clothing treatment agent to be dispensed into the clothing storage device; a first water supply line communicating with the clothing storage device via the clothing treatment agent cassette for supplying water to the clothing storage device; a drying device in communication with the garment receiving device for drying the airflow directed from the garment receiving device; a filter tether in communication with the garment storage apparatus and the drying apparatus for filtering the airflow; a second water supply line communicating with the clothing storage apparatus through the filter line for supplying water to the clothing storage apparatus through the filter line; and a water supply control unit connected to the first water supply line and the second water supply line, which performs a first process and a second process, respectively, at a first water supply stage and a second water supply stage of a clothing treatment process, the first water supply stage being before the second water supply stage, the first process including supplying water to the clothing storage device via the second water supply line, and the second process including supplying water to the clothing storage device only via the first water supply line.

[0009] Furthermore, the clothing processing device The apparatus further includes an operation data collection unit for collecting operation data of the clothing processing device, the operation data including at least one of a first load weight of the clothing storage device, pulse information of a motor of the clothing processing device, an internal image of the clothing storage device, and a user operation command; The water supply control unit is further connected to the operation data collection unit and is used to acquire operation data from the operation data collection unit, execute the first processing when the operation data satisfies a predetermined condition in the first water supply stage, and execute the second processing when the operation data satisfies a predetermined condition in the second water supply stage.

[0010] Furthermore, the operation data collection unit a gravity sensor provided at the bottom of the clothing storage device, connected to the water supply controller, and used to collect a first load weight of the clothing storage device and transmit the first load weight to the water supply controller; The water supply control unit is further used to determine that the predetermined condition is satisfied when the first load weight is lower than a predetermined weight threshold.

[0011] Furthermore, the clothing processing device a motor used to provide energy to the laundry treatment device; The operation data collection unit a Hall sensor provided within a magnetic field coverage range of the motor, connected to the water supply control unit, and used to generate pulse information in response to a magnetic field change of the motor and transmit the pulse information to the water supply control unit; The water supply control unit is further used to determine a second load weight of the clothing storage device based on the pulse information and a predetermined mapping relationship, and to determine that the predetermined condition is met when the second load weight is lower than a predetermined weight threshold, and the predetermined mapping relationship is used to reflect the correlation between the pulse information and the second load weight of the clothing storage device.

[0012] Furthermore, the operation data collection unit an image sensor provided on the door body of the clothing storage device, connected to the water supply control unit, and used to collect an internal image of the clothing storage device and transmit the internal image to the water supply control unit; The water supply control unit is further used to determine that the specified condition is met when the clothes to be processed are not recognized in the internal image and / or when the water level in the clothes storage device in the internal image is lower than a first specified water level.

[0013] Furthermore, the operation data collection unit a touch operation unit connected to the water supply control unit, used to acquire a user touch operation, generate a user operation command based on the user touch operation, and transmit the user operation command to the water supply control unit; The water supply control unit is further used to determine that the predetermined condition is satisfied if the user operation command is user selection information for a predetermined laundry treatment mode.

[0014] Additionally, the first process further includes supplying water to the garment containment apparatus via the first water supply line.

[0015] Furthermore, the operation data collection unit a water level sensor provided in the clothing storage device, connected to the water supply control unit, and used to collect water level information of the clothing storage device and transmit the water level information to the water supply control unit; The first water supply stage includes a washing stage, and in the washing stage, when the water level indicated by the water level information reaches a second predetermined water level or when the operation of the first water supply pipe reaches a first length of time, the water supply of the first water supply pipe is stopped and the water supply of the second water supply pipe is started.

[0016] Furthermore, the first water supply step further includes an initial rinsing step, and the first process is executed when the water level is lower than a third predetermined water level during the washing step and / or the initial rinsing step.

[0017] Furthermore, the second water supply stage includes a final rinse stage, and when the final rinse stage is entered, water supply to the first water supply line is started, and when the amount of water supplied this time reaches a specified amount or the water supply time reaches a second length of time, water supply to the first water supply line is stopped.

[0018] Furthermore, in the final rinse stage, when the water level is lower than a fourth predetermined water level, water supply through the first water supply pipe is started.

[0019] Furthermore, the first water supply pipe is a first water supply switch for opening and closing the first water supply line; the water supply control unit is connected to the first water supply switch and is used to control the opening and closing of the first water supply switch; The second water supply pipe is a second water supply switch for opening and closing the second water supply line; The water supply control unit is connected to the second water supply switch and is used to control the opening and closing of the second water supply switch.

[0020] In a second aspect, an embodiment of the present application provides a water supply control method applicable to the laundry treatment device according to the first aspect, the water supply control method including: a first water supply stage performing a first process, the first process including supplying water to the garment storage device through a second water supply line via a filter; A second process is performed in a second water supply stage, said second water supply stage being subsequent to said first water supply stage, said second process including supplying water to said garment containing apparatus only via said first water supply line.

[0021] Furthermore, the water supply control method further includes: Collecting operation data of the clothing treatment device, the operation data including at least one of a first load weight of the clothing treatment device, pulse information of a motor of the clothing treatment device, an internal image of the clothing treatment device, and a user operation command; performing a first treatment in the first water supply stage includes: Execute the first process when the operation data satisfies a predetermined condition in the first water supply stage; performing a second treatment in the second water supply stage includes: Execute the second process when the operational data satisfies a predetermined condition in the second water supply stage; Here, the predetermined condition is: the first load weight is less than a predetermined weight threshold; the second load weight determined based on the pulse information and the predetermined mapping relationship is lower than a predetermined weight threshold; the garment to be processed has been recognized in the internal image; The water level of the clothing storage device in the internal image is lower than a first predetermined water level; and The user operation command includes at least one of user selection information for a predetermined clothing processing mode.

[0022] Furthermore, the first process further includes: Water is supplied to the clothing storage device through the first water supply line, and during the first water supply stage, the ratio of the total water supply time of the first water supply line to the total water supply time of the second water supply line is equal to or greater than zero.

[0023] Furthermore, the water supply control method further includes: During the first water supply stage, the first water supply line is controlled to stop supplying water for a third length of time.

[0024] Furthermore, the water supply control method further includes: In the first water supply stage, when the number of water supplies through the first water supply pipeline is at least two, the time interval between at least one pair of adjacent water supplies in the at least two times is set as the third time length.

[0025] Furthermore, the water supply control method further includes: In the first water supply stage, when the water supply time of the first water supply pipe reaches a fourth time length, a clothing treatment agent dispensing operation is performed on the clothing treatment agent cassette, and the end timing of the clothing treatment agent dispensing operation is earlier than the end timing of the water supply of the first water supply pipe in the first water supply stage.

[0026] Furthermore, performing a first treatment in the first water supply stage includes: During the washing stage of the first water supply stage, when water is supplied through the first water supply pipe, if it is detected that the water level in the clothing storage device has reached a second predetermined water level or that the operation of the first water supply pipe has reached a first length of time, the water supply through the first water supply pipe is stopped and the water supply through the second water supply pipe is started.

[0027] Furthermore, the water supply control method further includes: The water supply time of the first water supply line in the washing stage is set to a fifth time length, and the water supply time of the second water supply line in the washing stage is set to a sixth time length, the fifth time length being greater than the sixth time length.

[0028] Furthermore, the first water supply stage further includes an initial rinse stage, which is after the washing stage, and the ratio of the water supply time of the first water supply line in the initial rinse stage to the water supply time of the second water supply line in the initial rinse stage is greater than or equal to 0.

[0029] Furthermore, performing a first treatment in the first water supply stage includes: The first process is performed when the water level is lower than a third predetermined water level during the washing step and / or the initial rinsing step.

[0030] Furthermore, performing a second treatment in the second water supply stage includes: When the final rinse stage of the second water supply stage is started, water supply to the first water supply line is started; When the current water supply amount reaches a designated amount or the water supply time reaches a second length of time, the water supply through the first water supply pipe is stopped.

[0031] Furthermore, performing a second treatment in the second water supply stage includes: In the final rinse stage, when the water level is lower than a fourth predetermined water level, water supply through the first water supply pipe line is started.

[0032] In a third aspect, an embodiment of the present application provides a computer-readable storage medium having a computer program stored thereon, the computer program being executed by a processor to implement the method according to the second aspect.

[0033] In the above technical solution, in order to effectively clean the filter net and at the same time ensure good drying effect, water is supplied through the second water supply line in the first water supply stage, and in the second water supply stage, i.e., the final water supply stage before drying, water is supplied through the first water supply line instead of the second water supply line.

[0034] Specifically, in the first water supply stage, water is supplied to the clothes container via the second water supply line, and the water flows through the filter wire, effectively cleaning lint and other impurities from the filter wire. Next, before the drying process, the dryer must supply water to the clothes container via the second water supply line, otherwise the water will not flow through the filter wire. In this way, no water film will form on the filter wire, the air permeability area of ​​the filter wire will not change, and the circulating air will pass through the filter wire normally, without affecting the drying effect.

[0035] Therefore, the water supply process of the laundry treatment device is divided into a first water supply stage and a second water supply stage. The first water supply stage is a water supply stage with a long interval from the drying process, and the second water supply stage is a final water supply stage before the drying process.

[0036] The first water supply stage takes a long time from the drying process, and even if a water film is formed when water is supplied through the second water supply pipe, the water film breaks in a short time, so it does not affect the passage of circulating gas after a long time and does not adversely affect the drying effect.

[0037] In the second water supply stage, the time from the drying process is short, and if a water film remains formed by supplying water through the second water supply line, the water film will still be present when the circulating air passes through. Therefore, in the second drying stage, water is supplied only through the first water supply line. The water flow in the first water supply line does not flow through the filter net, so a water film does not form on the filter net, and the circulating air can pass through the filter net without any obstruction, which does not affect the drying effect.

[0038] The above technical solution effectively cleans the filter net in the first water supply stage, and then in the second water supply stage (i.e., the final water supply stage before drying), water is supplied through the first water supply line rather than the second water supply line, avoiding the formation of a water film due to the flow of water through the filter net. This not only ensures effective cleaning of the filter net, but also protects the drying effect from the water film, maintains the safe operation of many components including the fan, and extends the service life of those components. [Brief explanation of the drawings]

[0039] The accompanying drawings herein are incorporated in and constitute a part of this specification, illustrate embodiments pertaining to the present disclosure, and, together with the description, serve to explain the principles of the present disclosure. Obviously, the accompanying drawings described below are merely some embodiments of the present disclosure, and those skilled in the art can derive other drawings based on these accompanying drawings without creative work. [Figure 1] 1 is a schematic diagram illustrating a clothing treatment device according to an embodiment of the present application. [Figure 2] 1 is a schematic diagram illustrating the relative positions of a drying device and a clothing storage device according to an embodiment of the present application; [Figure 3] FIG. 3 is a top view showing the drying device in FIG. 2. [Figure 4] FIG. 3 is a three-dimensional view showing the drying device in FIG. 2. [Figure 5] 1 is a schematic diagram illustrating a mesh structure of a filtration mesh according to an embodiment of the present application; [Figure 6] 1 is a schematic diagram showing an inclined filter mesh in an air outlet duct according to an embodiment of the present application; [Figure 7] FIG. 2 is a schematic diagram showing a clothes treating device according to another embodiment of the present application. [Figure 8] 2 is a schematic diagram showing the control logic of a water supply control unit according to an embodiment of the present application. [Figure 9] 1 is a flow chart illustrating a water supply control method according to an embodiment of the present application. [Figure 10]FIG. 1 is a schematic diagram illustrating a camera mounting position according to an embodiment of the present application. DETAILED DESCRIPTION OF THE INVENTION

[0040] Hereinafter, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. However, obviously, the described embodiments are only some embodiments of the present application, not all embodiments. Typically, the components of the embodiments of the present application described and illustrated in the accompanying drawings herein can be arranged and designed in various different forms. Therefore, the detailed description of the embodiments of the present application provided below in the accompanying drawings does not limit the scope of protection of the present application, but is intended to show only specific embodiments of the present application, and features included in different embodiments can be combined with each other. Based on the embodiments of the present application, other embodiments obtained by those skilled in the art without creative work (including new embodiments formed by combining features included in different embodiments with each other) are all included in the scope of protection of the present application.

[0041] It should be noted that in the following accompanying drawings, like reference numerals and letters indicate like items, so once an item is defined in one accompanying drawing, further definition and explanation are unnecessary in the subsequent accompanying drawings. At the same time, in the description of this application, terms such as "first", "second", etc. are used only to distinguish the description, and are not to be understood as indicating or implying relative importance.

[0042] The embodiment of the present application provides a clothing processing device 1000, which is used to process clothing, such as washing, rinsing, ironing, and drying. The clothing processing device 1000 includes, but is not limited to, a washing machine, a dryer, an all-in-one washer-dryer washing machine, etc. Note that, in the accompanying drawings of the present application, a side-opening all-in-one washer-dryer washing machine is used as an example to describe the clothing processing device 1000 of the embodiment of the present application, but the clothing processing device 1000 of the embodiment of the present application may be any clothing processing device, including, but not limited to, a side-opening drum washing machine, a top-opening drum washing machine, a wave washing machine, an agitator washing machine, a mini washing machine, etc.

[0043] An embodiment of the present application provides a clothes treatment device 1000, which includes a clothes storage device 1100, a clothes treatment cassette 1200, a first water supply line 1300, a drying device 1400, a filter mesh 1500, a second water supply line 1600 and a water supply control unit 1700.

[0044] The garment storage device 1100 is used to store garments to be processed, including but not limited to garments to be washed, rinsed, ironed, dried, etc. The garment storage device 1100 includes but is not limited to a storage cylinder, a storage basket, a drum, etc.

[0045] In one embodiment of the present application, as shown in FIG. 1, a door body 1110 is opened at a position corresponding to the clothing storage device 1100 on the housing 1800 of the clothing processing device 1000, and the door body 1110 is pivotally connected to the housing 1800, and the opening and closing of the door body 1110 may be manually controlled by a user or may be controlled with the aid of an electronic controller including (but not limited to) a touch operation unit.

[0046] The clothing treatment agent cassette 1200 communicates with the clothing storage device 1100 and is used to store clothing treatment agents to be dispensed into the clothing storage device 1100. Here, the clothing treatment agent cassette 1200 may be mounted to the clothing storage device 1100 by an active connection such as a slide rail connection or a pivot connection. The clothing treatment agent cassette 1200 may include a plurality of holding grooves capable of holding clothing treatment agents.

[0047] In one embodiment of the present application, the multiple retention grooves are each used to contain different types of laundry treatment products, including, but not limited to, detergent, laundry powder, fabric softener, disinfectant, bleaching powder, bleach, etc.

[0048] In one embodiment of the present application, in order to quickly and effectively dispense different clothing treatment agents, the multiple holding grooves have different flow path lengths, flow path cross-sectional widths, groove surface materials, groove bottom inclination angles, groove side inclination angles, etc. for different clothing treatment agents.

[0049] The first water supply line 1300 communicates with the clothing storage apparatus 1100 via the clothing treatment agent cassette 1200 and is used to supply water to the clothing storage apparatus 1100. The first water supply line 1300 includes one or more water supply passages, at least one of which is connected to the water inlet end of the clothing treatment agent cassette 1200. Water flows from the water inlet end of the clothing treatment agent cassette 1200 through the water supply passage into the clothing treatment agent cassette 1200, and then flows from the water outlet end of the clothing treatment agent cassette 1200 into the clothing storage apparatus 1100, which is connected to the clothing treatment agent cassette 1200. In this manner, not only can water be supplied to the clothing storage apparatus 1100, but the clothing treatment agent in the clothing treatment agent cassette 1200 can be flushed into the clothing storage apparatus 1100, thereby treating the clothing to be treated in the clothing storage apparatus 1100.

[0050] The drying device 1400 communicates with the clothing storage device 1100 and dries the airflow guided from the clothing storage device 1100. In one embodiment of the present application, the relative positions of the clothing storage device 1100 and the drying device 1400 are not fixed, and they may be arranged facing each other vertically or front to back.

[0051] In one embodiment of the present application, the drying device 1400 is disposed above the clothing storage device 1100 as shown in FIG.

[0052] In another embodiment of the present application, the drying device 1400 may be disposed behind the clothing storage device 1100, or the drying device 1400 may be disposed below the clothing storage device 1100, or the drying device 1400 may be disposed to the side of the clothing storage device 1100.

[0053] The drying device 1400 directs airflow from the clothing storage device 1100 to itself, the airflow carries moisture from the clothing in the clothing storage device 1100, and the drying device 1400 dries the airflow to remove moisture from the clothing.

[0054] In one embodiment of the present application, as shown in FIGS. 3 and 4, the drying device 1400 includes a moisture absorption passage, a regeneration passage, a circulation fan 1430, a moisture absorption and dehumidification member 1440, a moisture absorption and dehumidification turntable driver 1450, and a regeneration fan 1460.

[0055] 3 and 4, the air inlet 1411 of the moisture absorption passage communicates with the air outlet duct 1900 of the clothing containment apparatus 1100. The air outlet 1412 of the moisture absorption passage communicates with the air inlet duct of the clothing containment apparatus 1100.

[0056] 2 and 4, the clothing storage apparatus 1100 has an airflow inlet and an airflow outlet. The airflow inlet is a connection between the air inlet duct and the clothing storage apparatus 1100. Alternatively, the airflow inlet on the clothing storage apparatus 1100 is in communication with the drying apparatus 1400 via the air inlet duct. The airflow outlet is a connection between the air outlet duct 1900 and the clothing storage apparatus 1100. Alternatively, the airflow outlet on the clothing storage apparatus 1100 is in communication with the drying apparatus 1400 via the air outlet duct 1900.

[0057] A portion of the moisture absorbing and dehumidifying member 1440 is located in the moisture absorbing passage and a portion is located in the regenerating passage, so that the circulating airflow in the moisture absorbing passage and the dehumidifying airflow in the regenerating passage both flow through the moisture absorbing and dehumidifying member 1440. The moisture absorbing and dehumidifying turntable driving unit 1450 drives the moisture absorbing and dehumidifying member 1440 to move, for example, rotate, relative to the moisture absorbing passage and the regenerating passage. After the circulating airflow enters the clothing storage device 1100, it carries away moisture from the clothes, and during the movement of the moisture absorbing and dehumidifying member 1440, it absorbs moisture in the circulating airflow in the moisture absorbing passage and expels the moisture through the dehumidifying airflow.

[0058] In one embodiment of the present application, the moisture absorbing and dehumidifying member 1440 may include a moisture absorbing and dehumidifying turntable, and a moisture absorbent is provided on the moisture absorbing and dehumidifying turntable to absorb moisture. Moisture absorbents include, but are not limited to, zeolite (molecular sieve), alkali metal silica aluminate (13X molecular sieve), lithium chloride, silica gel, modified silica gel, activated alumina, etc. Based on this, the moisture absorbing and dehumidifying turntable driver 1450 drives the moisture absorbing and dehumidifying turntable to rotate relative to the moisture absorption passage and the regeneration passage. A circulating airflow and a dehumidifying airflow simultaneously flow over the moisture absorbing and dehumidifying turntable. Here, the area of ​​the moisture absorbing and dehumidifying turntable that is circulated by the circulating airflow may be the moisture absorption area, and the area that is circulated by the dehumidifying airflow may be the regeneration area.

[0059] In one embodiment, a moisture absorbent for absorbing moisture is provided on moisture absorbing / dehumidifying member 1440. Examples of moisture absorbents include zeolite, modified / synthetic zeolite, molecular sieves (including, but not limited to, zeolite molecular sieves, A / X / Y-type molecular sieves, ZSM molecular sieves, and Beta molecular sieves), polymeric moisture absorbents, alkali metal silica aluminates (13X molecular sieves), lithium chloride, silica gel, modified silica gel, and activated alumina. Polymeric moisture absorbents, also known as polymeric adsorbents, have a lower regeneration temperature than conventional silica gel, activated carbon, and molecular sieve adsorbents.

[0060] In one embodiment, moisture absorbing and dehumidifying member 1440 may be formed from a porous material such as zeolite, molecular sieve, metal organic framework (MOF) material, covalent organic framework (COF) material, nanocarbon, silica, etc. In one embodiment, moisture absorbing and dehumidifying member 1440 may be formed from a granular solid or particle packing made of at least one of the above porous materials.

[0061] In one embodiment, the moisture absorbing and dehumidifying member 1440 may be a honeycomb or wave-shaped turntable carrying a moisture absorbent, which can adsorb and desorb absorbed water vapor and repeat the desorption and regeneration.

[0062] In one embodiment, the moisture absorbing / dehumidifying member 1440 is made of an inorganic / organic fiber support (ceramic, glass fiber, MOFs, COFs, cordierite, etc.), and the fiber support is coated with a moisture absorbent such as a molecular sieve. The molecular sieve is uniformly distributed between the fiber supports and on the surface of the fiber support to absorb moisture in the air. 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.

[0063] As a result, the introduction of the moisture absorbing and dehumidifying member 1440 can effectively reduce drying costs compared to heat pump-type assemblies used in the related art. At the same time, the moisture absorbing and dehumidifying member 1440 operates mainly using the moisture absorbing and dehumidifying properties of its material and / or structure, rather than absorbing and dehumidifying based on temperature differences, which reduces the sensitivity of the assembly in the drying device 1400 to the ambient temperature, improves the assembly's adaptability to ambient temperature, effectively extends the assembly's lifespan, reduces the risk of failure, and enables the clothing treatment device 1000 to maintain relatively stable energy consumption and drying efficiency even in various temperature environments. Furthermore, compared to the technical solution of heat pump-type assemblies used in the related art, the present technical solution further reduces the upper limit of the drying temperature, making it suitable for drying a wider range of clothing materials while protecting the clothing from damage.

[0064] Furthermore, the drying device 1400 may further include a regeneration heating module 1470 and a condenser 1480 provided on the regeneration passage. The regeneration heating module 1470 covers the regeneration area of ​​the moisture absorbing and dehumidifying member 1440 and is used to heat the regeneration area of ​​the moisture absorbing and dehumidifying member 1440 and desorb moisture absorbed by the moisture absorbing and dehumidifying member 1440. The condenser 1480 is used to condense the dehumidified stream flowing out from the regeneration area of ​​the moisture absorbing and dehumidifying member 1440 and dry the dehumidified stream.

[0065] Specifically, the circulation fan 1430 is located in the moisture absorption passage and creates a circulating airflow within the moisture absorption passage and the clothing storage device 1100. The circulating airflow carries moisture from the wet clothing, enters the drying device 1400 through the airflow outlet of the clothing storage device 1100, is absorbed by the moisture absorption passage of the moisture absorbing and dehumidifying member 1440, is relatively dried, and then re-enters the clothing storage device 1100 through the airflow inlet of the clothing storage device 1100. By repeating this process, moisture can be effectively removed from the clothing storage device 1100.

[0066] On the other hand, the regeneration fan 1460 is located in the regeneration passage and is used to form a dehumidified flow in the regeneration passage. The heating operation of the regeneration heating module 1470 desorbs the moisture adsorbed by the moisture absorbing and dehumidifying element 1440, and the operation of the regeneration fan 1460 forms a dehumidified flow. The condenser 1480 is located in the regeneration passage and is used to cool and dry the dehumidified flow in the regeneration passage. In one embodiment of the present application, the condenser 1480 may be located in the air inlet section of the regeneration passage or in the air outlet section of the regeneration passage. Under the operation of the regeneration fan 1460, the dried dehumidified flow enters the regeneration heating module 1470 again, causing the moisture adsorbed by the moisture absorbing and dehumidifying element 1440 in the regeneration passage to be desorbed again. This process is repeated to effectively dry the moisture absorbed by the moisture absorbing and dehumidifying element 1440.

[0067] As a result, the moisture absorption of the moisture absorbing and dehumidifying member 1440 and the moisture desorption of the moisture absorbing and dehumidifying member 1440 are combined to meet the drying needs of the clothes in the clothing receiving apparatus 1100.

[0068] It should be noted that the above content is only one implementation of the drying device 1400, and in actual application scenarios, the drying device 1400 may have any other structure that meets the actual clothes drying needs.

[0069] The filter wire 1500 is connected to the clothing storage device 1100 and the drying device 1400 and is used to filter the circulating airflow flowing from the clothing storage device 1100 to the drying device 1400. Specifically, the circulating airflow carries lint and other impurities on the clothing. In this regard, the filter wire 1500 is provided in the clothing storage device 1100 and the drying device 1400 to filter the lint and other impurities in the circulating airflow, thereby preventing the lint and other impurities from being carried back to the clothing or the drying device 1400 during the airflow process and affecting the clothing treatment effect.

[0070] In one embodiment of the present application, the mesh structure of the filtration mesh 1500 is shown in Figure 5. Of course, the mesh structure of the filtration mesh 1500 may be any structure adapted to actual filtration needs, such as a triangular mesh, a hexagonal mesh, etc.

[0071] The drying device 1400 includes an air outlet duct 1900 that provides a circulating airflow containing clothing moisture from the clothing storage device 1100 to the drying device 1400 .

[0072] In one embodiment of the present application, the filter mesh 1500 is provided in the air outlet duct 1900 .

[0073] In another embodiment of the present application, the filter mesh 1500 may be provided at the connection between the air outlet duct 1900 and the drying device 1400, the clothing storage device 1100 or the clothing storage device 1100.

[0074] In one embodiment of the present application, the filter 1500 is oriented perpendicular to the direction of airflow.

[0075] In another embodiment of the present application, as shown in FIG. 6 (airflow direction shown by the black arrow in FIG. 6), the filter mesh 1500 is installed in the air outlet duct 1900, and the filter mesh 1500 is installed at an angle to the airflow direction, thereby increasing the cross-sectional area of ​​the filter mesh 1500 for filtering the airflow and ensuring sufficient filtration of lint and impurities.

[0076] The second water supply line 1600 communicates with the clothing storage device 1100 via the filter string 1500 and supplies water to the clothing storage device 1100 via the filter string 1500. That is, while the second water supply line 1600 supplies water to the clothing storage device 1100, the water flows through the filter string 1500, washing away lint and impurities and providing a cleaning effect to the filter string 1500.

[0077] In one embodiment of the present application, the drying device 1400 further comprises a diverter device disposed in the second water supply line, which can control the water flow in the second water supply line to be directly introduced into the garment treatment device 1000 during the drying operation without passing through the garment storage device 1100.

[0078] In one embodiment of the present application, the laundry treatment device 1000 may also include a rinse unit, which has a rinse mechanism that moves along its length to fully cover the filter mesh 1500 with cleaning fluid. The cleaning fluid may be the water flow from the second water supply line 1600 or other liquid with cleaning function. In this embodiment, the amount, speed, pressure, and angle of the spray water from the rinse mechanism can all be adjusted to improve the cleaning effect of the filter mesh 1500.

[0079] In one embodiment of the present application, the first water supply line 1300 and the second water supply line 1600 inject water through the same water inlet pipe and supply water to the clothing storage device 1100 through the first outlet pipe and the second outlet pipe, respectively. Specifically, a first end of the water inlet pipe is connected to a tap water pipe, and a second end of the water inlet pipe is connected to a first end of the first outlet pipe and a first end of the second outlet pipe, respectively. The second end of the first outlet pipe is connected to the clothing treatment cassette 1200, and the second end of the second outlet pipe is connected to the air outlet duct 1900. Furthermore, both the clothing treatment cassette 1200 and the air outlet duct 1900 are provided with water inlets, and the second end of the first outlet pipe is connected to the water inlet of the clothing treatment cassette 1200, and the second end of the second outlet pipe is connected to the water inlet of the air outlet duct 1900. This allows water to be supplied to the clothing storage device 1100 via the first water supply line 1300 and the second water supply line 1600, respectively.

[0080] As a result, the composite water circuit system with one inlet and multiple outlets can, on the one hand, clean the filter net 1500 by supplying water to the air outlet duct 1900, optimize the drying effect, and protect the assembly of the drying device 1400; on the other hand, the water supply to the laundry treatment agent cassette 1200 can promote the introduction and sufficient reaction of the laundry treatment agent, thereby improving the overall laundry washing effect.

[0081] In one embodiment of the present application, a third water supply pipe may be added based on the above-mentioned multiple water circuit system having one inlet and multiple outlets. The third water supply pipe also injects water through the water inlet pipe and supplies water to the clothing storage device 1100 through the third outlet pipe. Specifically, the second end of the water inlet pipe is connected to the water inlet of the condenser 1480, and the water flow passes through the condenser 1480 installed on the regeneration area to promote cooling and liquefying the dehumidified flow flowing out from the regeneration area of ​​the moisture absorbing and dehumidifying member 1440, and dry the dehumidified flow.

[0082] As a result, the functionality of the composite water circuit system is enhanced, and multiple water supply requirements are met to optimize the drying effect and better protect the drying device 1400 assembly, thereby more completely meeting the needs of an integrated washing and drying washing machine.

[0083] 7, the water supply assembly in the garment treatment device 1000 includes at least a first water supply line 1300 and a second water supply line 1600. The drum water inlet in the water supply assembly, i.e., the water inlet of the garment storage device 1100, is in communication with the first water supply line 1300, and the water inlet of the filter mesh 1500 in the water supply assembly is in communication with the second water supply line 1600.

[0084] The water supply control unit 1700 is connected to the first water supply line 1300 and the second water supply line 1600 and is used to control the water supply process of the laundry treatment device 1000.

[0085] In one embodiment of the present application, the water supply control unit 1700 is the main board of the clothing treatment device 1000, and controlling the water supply process of the clothing treatment device 1000 is one of the control functions of the main board.

[0086] In another embodiment of the present application, the water supply control unit 1700 is a dedicated control board independent of the main board, and as shown in Figure 8, the water supply control unit 1700 is connected to the first water supply line 1300 and the second water supply line 1600 respectively, and is used to control the opening and closing of the first water supply line 1300 and the second water supply line 1600.

[0087] In another embodiment of the present application, the water supply control unit 1700 is a water supply valve with an autonomous control function, and the water supply valve controls the start and stop of water supply by opening and closing.

[0088] Based on the above structure, as shown in FIG. 9, the flow of the water supply control method according to an embodiment of the present application includes the following steps: Step 902, a first water supply stage, performs a first process, said first process including supplying water to the clothing storage apparatus 1100 through the second water supply line 1600 and the filter 1500.

[0089] Step 904, performing a second process in a second water supply stage, said second water supply stage being after said first water supply stage, said second process including supplying water to said clothing storage apparatus 1100 only through a first water supply line 1300.

[0090] That is, the water supply control unit 1700 performs a first process and a second process, respectively, in the first water supply stage and the second water supply stage of the clothing processing process, the first water supply stage being before the second water supply stage, the first process including supplying water to the clothing storage device 1100 through the second water supply line 1600, and the second process including supplying water to the clothing storage device 1100 only through the first water supply line 1300.

[0091] When the second water supply line 1600 supplies water to the clothing storage device 1100, the water flows through the filter wire 1500, washing away lint and other impurities. Tests conducted by the applicant have shown that after the water flows through the filter wire 1500, a water film is easily formed on the surface of the filter wire 1500, affecting drying performance. When the drying device 1400 performs a drying process using circulating airflow, the presence of the water film reduces the ventilation area of ​​the filter wire 1500, reducing the amount of circulating airflow passing through the filter wire 1500. At the same time, heat from the portion of the airflow blocked by the water film accumulates, raising local temperatures in the clothing processing device 1000 and affecting the safe operation and service life of local components. Furthermore, blocking the circulating airflow by the water film increases the load and temperature of the fan in the drying device 1400, thereby improving the safe operation and service life of the fan.

[0092] In this regard, in the first water supply stage, water is supplied to the clothing storage device 1100 via the second water supply line 1600, and the water flow passes through the filter rope 1500, thereby effectively cleaning lint and impurities from the filter rope 1500. Next, before the drying device 1400 performs the drying process, water must be supplied to the clothing storage device 1100 via the second water supply line 1600, otherwise the water will not flow through the filter rope 1500. In this way, no water film will form on the filter rope 1500, the air permeable area of ​​the filter rope 1500 will not change, and the circulating airflow will pass through the filter rope 1500 normally, without affecting the drying effect.

[0093] Therefore, the water supply process of the laundry treatment device 1000 is divided into a first water supply stage and a second water supply stage. The first water supply stage is earlier than the second water supply stage. The first water supply stage has a longer interval time from the drying process than the second water supply stage. In one embodiment, the second water supply stage is the final water supply stage before the drying process.

[0094] After the filter string 1500 is washed in the first water supply stage, a water film may still form on the surface of the filter string 1500 due to the relatively closed environment inside the laundry treatment device 1000. In this regard, if a serious blockage of the filter string 1500 is detected, the second water supply line 1600 may be activated to rinse the filter string.

[0095] In one embodiment of the present application, the clothing treatment device 1000 further includes a water film determination device and a water film removal device.

[0096] Here, the water film determination device is used to detect changes in system parameters in the clothing treatment device 1000 and determine whether a water film exists on the filter net according to the changes in the system parameters, where the system parameters include one or more of temperature, pressure, and current, and the water film removal device is used to remove the water film from the filter net 1500.

[0097] In one embodiment of the present application, the water film determination device is a temperature sensor, which is installed at the airflow outlet of the clothing storage device 1100, and is used to detect the temperature near the airflow outlet of the clothing storage device 1100, and determine whether a water film exists on the filter net 1500 according to the level of the temperature near the airflow outlet of the clothing storage device 1100.

[0098] In one embodiment of the present application, the water film determination device is a temperature sensor, which is installed at the air inlet and / or the air outlet of the condenser 1480, and is used to detect the temperature of the air inlet and / or the air outlet of the condenser 1480, and to determine whether a water film exists on the filter net 1500 according to the temperature changes of the air inlet and / or the air outlet of the condenser 1480.

[0099] In one embodiment of the present application, the water film determining device is a load current detector, which is used to detect the magnitude of the load current of the circulation fan 1430 .

[0100] In one embodiment of the present application, the water film detecting device is a pressure sensor, which is installed in the filter net 1500 and the air outlet duct 1900 of the drying device 1400 .

[0101] In one embodiment of the present application, the water film removal device is a filter string oscillator, which is connected to the filter string 1500, and removes the water film by controlling the frequency of the filter string oscillator.

[0102] In one embodiment of the present application, the water film removal device is a power applicator, and the power applicator includes a power generation module and at least one power ball, the power generation module is connected to the at least one power ball and is used to generate power of different frequencies, and when the power applicator is activated, there is a time when the power ball contacts the surface of the filter string 1500, and transmits power of different frequencies to the filter string 1500, which vibrates to burst the water film.

[0103] In one embodiment of the present application, when the water film determination device detects a water film on the filter mesh 1500, the circulation fan 1430 in the clothing treatment device 1000 is set to a water film removal operation mode. In the water film removal operation mode, the circulation fan 1430 directs airflow in a predetermined direction, which is the circulation direction in which the airflow passes through the clothing storage device 1100, the filter mesh 1500, the drying device 1400, and the clothing storage device 1100 in sequence.

[0104] In one embodiment of the present application, when the water film detection device detects a water film on the filter mesh 1500, the regeneration heating module 1470 in the clothing treatment device 1000 is set to a water film removal operation mode. In the water film removal operation mode, the regeneration heating module 1470 is used to heat the moisture absorption and dehumidification member 1440.

[0105] In one embodiment of the present application, the clothing treatment device further includes a heater for heating the water in the clothing storage device 1100. When the water film determination device detects a water film on the filter net 1500, the heater and / or regeneration heating module 1470 is set to a water film removal operation mode. Under the water film removal operation mode, the heater and / or regeneration heating module 1470 operates at a higher power or maximum power.

[0106] In one embodiment of the present application, the second watering stage comprises a final watering before the drying process.

[0107] The first water supply stage takes a longer time from the drying process, and even if a water film is formed by supplying water through the second water supply pipe 1600, the water film bursts within a short time, does not affect the passage of circulating gas after a long time, and does not adversely affect the drying effect.

[0108] In the second water supply stage, the time from the drying process is short, and if a water film remains formed by supplying water through the second water supply line 1600, the water film will still be present when the circulating air passes through. Therefore, in the second drying stage, water is supplied only through the first water supply line 1300. The water flow through the first water supply line 1300 does not pass through the filter net 1500, so no water film is formed on the filter net 1500, and the circulating air flow can pass through the filter net 1500 without being obstructed, which does not affect the drying effect.

[0109] The above technical solution effectively cleans the filter strand 1500 in the first water supply stage, and in the second water supply stage, i.e., the final water supply stage before drying, water is supplied through the first water supply line 1300 instead of the second water supply line 1600, thereby preventing the formation of a water film when the water flows through the filter strand 1500. This not only ensures effective cleaning of the filter strand 1500, but also protects the drying effect from the influence of the water film, maintains the safe operation of many components, including the fan, and extends the service life of the components.

[0110] In one embodiment of the present application, in the first water supply stage, the ratio of the total water supply time of the first water supply line 1300 to the total water supply time of the second water supply line 1600 is greater than or equal to zero.

[0111] Here, in some practical clothing treatment scenarios where the use of a clothing treatment agent is not required, in the first water supply stage, water is supplied to the clothing storage device 1100 using only the second water supply line 1600. In this case, the ratio of the total water supply time of the first water supply line 1300 to the total water supply time of the second water supply line 1600 is 0.

[0112] In one embodiment of the present application, the first process further includes supplying water to the clothing storage device 1100 via the first water supply line 1300. That is, by supplying water using both the first water supply line 1300 and the second water supply line 1600, it is possible to ensure smooth administration of the clothing treatment agent and a sufficient amount of water supply. In this case, the ratio of the total water supply time of the first water supply line 1300 to the total water supply time of the second water supply line 1600 is greater than 0.

[0113] In one embodiment of the present application, the total water supply time of the first water supply line 1300 may be selected from 0 s, 29 s, 32.5 s, 39.5 s, 50 s and 58 s. Of course, the total water supply time of the first water supply line 1300 may be any value set according to the needs of actual laundry treatment, and is not limited to the above examples.

[0114] In addition, supplying water using the first water supply pipe 1300 and the second water supply pipe 1600 in combination includes the following various forms: the first water supply pipe 1300 supplies water first and the second water supply pipe 1600 supplies water later; the second water supply pipe 1600 supplies water first and the first water supply pipe 1300 supplies water later; the first water supply pipe 1300 and the second water supply pipe 1600 supply water simultaneously; the first water supply pipe 1300 and / or the second water supply pipe 1600 supply water independently; and the first water supply pipe 1300 and the second water supply pipe 1600 supply water simultaneously.

[0115] In one embodiment of the present application, before step 902, the method further includes collecting operation data of the clothing processing device 1000, and the operation data includes at least one of the first load weight of the clothing storage device 1100, pulse information of the clothing processing device 1000 motor, an internal image of the clothing storage device 1100, and user operation instructions.

[0116] Based on this, step 902 includes executing the first process if the operational data satisfies a predetermined condition in the first water supply stage, and step 904 includes executing the second process if the operational data satisfies a predetermined condition in the second water supply stage.

[0117] Here, the specified condition includes at least one of the following: the first load weight is lower than a specified weight threshold; the second load weight determined based on the pulse information and a specified mapping relationship is lower than a specified weight threshold; clothes to be processed are recognized in the internal image; the water level height of the clothing storage device 1100 in the internal image is lower than a first specified water level; and the user operation command is user selection information for a specified clothing processing mode.

[0118] In this regard, an operation data collection unit is provided in the clothing processing device 1000, which is used to collect operation data of the clothing processing device 1000, and the operation data includes at least one of the first load weight of the clothing storage device 1100, pulse information of the clothing processing device 1000 motor, an internal image of the clothing storage device 1100 and user operation instructions.

[0119] As shown in Figure 8, the water supply control unit 1700 is further connected to the operation data collection unit 170a and is used to acquire operation data from the operation data collection unit 170a, and to execute the first processing when the operation data meets a predetermined condition in the first water supply stage, and to execute the second processing when the operation data meets a predetermined condition in the second water supply stage.

[0120] When the operation data of the laundry treatment device 1000 meets the predetermined conditions, water supply is performed, and water is supplied according to the actual operation needs of the laundry treatment device 1000, so that the practicality of laundry treatment can be improved.

[0121] In one embodiment of the present application, the operation data collection unit 170a includes a gravity sensor, is provided at the bottom of the clothing storage device 1100, and is connected to the water supply control unit 1700, collects a first load weight of the clothing storage device 1100, and transmits the first load weight to the water supply control unit 1700, which is further used to determine that the predetermined condition is met when the first load weight is lower than a predetermined weight threshold.

[0122] The predetermined weight threshold is the amount of water required to meet the clothing processing conditions in the clothing storage device 1100, and if the first load weight is lower than the predetermined weight threshold, it means that the amount of water in the clothing storage device 1100 is insufficient and water needs to be added.

[0123] In one embodiment of the present application, the predetermined weight threshold is the minimum amount of water in the garment storage device 1100 that satisfies garment treatment requirements.

[0124] In this regard, if the first load weight is lower than a predetermined weight threshold in the first water supply stage, a first process is performed to supply water via the second water supply line 1600, or via both the first water supply line 1300 and the second water supply line 1600. If the first load weight is lower than a predetermined weight threshold in the second water supply stage, a second process is performed to supply water only via the first water supply line 1300, without supplying water via the second water supply line 1600, thereby preventing a water film from forming on the filter net 1500 due to the water supply, which would affect the drying process after the second water supply stage.

[0125] In one embodiment of the present application, the clothing processing device 1000 is equipped with a motor and supplies energy to the clothing processing device 1000, the operating data collection unit 170a is arranged within the magnetic field coverage range of the motor, connected to the water supply control unit 1700, and includes a Hall sensor used to generate pulse information in response to changes in the magnetic field of the motor and transmit the pulse information to the water supply control unit 1700, the water supply control unit 1700 further determines a second load weight of the clothing storage device 1100 based on the pulse information and a predetermined mapping relationship, and is used to determine that the predetermined condition is met when the second load weight is lower than a predetermined weight threshold, and the predetermined mapping relationship is used to reflect the correlation between the pulse information and the second load weight of the clothing storage device 1100.

[0126] The Hall sensor can sense the change in the magnetic field of the motor and generate pulse information accordingly, which reflects the weight level of the contents driven by the motor. In this application, the motor drives the clothing storage device 1100 to move and realize clothing processing, and accordingly, the motor generates a magnetic field during the process of driving the clothing storage device 1100, which excites pulse information, which can reflect the weight level of the clothing storage device 1100 to some extent.

[0127] In this regard, a predetermined mapping relationship between the pulse information and the second load weight of the clothing storage device 1100 can be preset, and after obtaining the pulse information, the second load weight can be obtained based on the pulse information and the predetermined mapping relationship. If the second load weight is lower than a predetermined weight threshold in the first water supply step, a first process is executed to supply water via the second water supply line 1600, or to supply water via both the first water supply line 1300 and the second water supply line 1600. If the second load weight is lower than a predetermined weight threshold in the second water supply step, a second process is executed to supply water only via the first water supply line 1300, without supplying water via the second water supply line 1600. This prevents a water film from being formed on the filter net 1500 due to the water supply via the second water supply line 1600, which would affect the drying process after the second water supply step.

[0128] In one embodiment of the present application, the motion data collector 170a includes an image sensor.

[0129] A door body 1110 is provided at a position corresponding to the clothing storage device 1100 on the housing 1800 of the clothing processing device 1000, the door body 1110 is pivotally connected to the housing 1800, and an image sensor is provided on the door body 1110 of the clothing storage device 1100 and connected to the water supply control unit 1700, collects internal images of the clothing storage device 1100 and transmits the internal images to the water supply control unit 1700, which is further used to determine that the specified condition is met when the clothing to be processed is not recognized in the internal images and / or when the water level height of the clothing storage device 1100 in the internal images is lower than a first specified water level.

[0130] In one embodiment of the present application, the image sensor has a waterproof layer, which is a housing or a coating.

[0131] In one embodiment of the present application, the image sensor is mounted on a door seal at the connection between the door body 1110 and the housing 1800 , and the door seal is used to seal the connection between the door body 1110 and the housing 1800 .

[0132] In one embodiment of the present application, the door seal comprises a first part and / or a second part, the first part surrounding the edge of the door body 1110 and the second part being provided at a position on the housing 1800 corresponding to the edge of the door body 1110.

[0133] Optionally, when the number of image sensors is one, the image sensor is provided in the first part or the second part. For example, as shown in Figure 10, a camera 1120 is used as the image sensor, and is provided in the second part of the door seal, and is located at a position corresponding to the top of the door body 1110 on the housing 1800.

[0134] Optionally, multiple image sensors may be provided at different locations on the first and / or second portions to avoid a single sensor being blocked and unable to effectively capture an internal image.

[0135] The first predetermined water level refers to the water level required to satisfy the clothing processing conditions in the clothing storage device 1100. If the water level height of the clothing storage device 1100 in the internal image is lower than the first predetermined water level, the amount of water in the clothing storage device 1100 is insufficient and it is necessary to start up and supply water. In one embodiment of the present application, the first predetermined water level refers to the lowest water level required to satisfy the clothing processing conditions in the clothing storage device 1100.

[0136] Therefore, if it is detected in the first water supply step that the water level in the clothing storage device 1100 in the internal image is lower than the first predetermined water level, a first process is executed to supply water via the second water supply line 1600, or via both the first water supply line 1300 and the second water supply line 1600. If it is detected in the second water supply step that the water level in the clothing storage device 1100 in the internal image is lower than the first predetermined water level, a second process is executed to supply water only via the first water supply line 1300, without supplying water via the second water supply line 1600, thereby preventing a water film from forming on the filter net 1500 due to the water supply via the second water supply line 1600, which would affect the drying process after the second water supply step.

[0137] In one embodiment of the present application, when no clothes to be processed are recognized in the internal image, the first process may be directly initiated to clean the filter string 1500. Specifically, when no clothes to be processed are recognized in the internal image, the first process may be directly performed, which not only achieves cleaning of the filter string 1500, but also prevents clogging of the filter string 1500 by lint or impurities that may affect the drying effect, and prevents the clothes from getting wet due to cleaning the filter string if they have already been dried.

[0138] In one embodiment of the present application, the operation data collection unit 170a includes a touch operation unit connected to the water supply control unit 1700 and used to acquire a user touch operation, generate a user operation command based on the user touch operation, and send the user operation command to the water supply control unit 1700, and the water supply control unit 1700 is further used to determine that the specified condition is met if the user operation command is user selection information for a specified clothing processing mode.

[0139] The touch control unit is used to receive user touch operations and includes, but is not limited to, any electronic controller that can be manually operated by a user, such as a touch screen or touch buttons.

[0140] In another embodiment of the present application, the operation data collection unit 170a includes an information receiving unit, which is connected to the water supply control unit 1700 and is used to receive user operation commands from an external device and transmit the user operation commands to the water supply control unit 1700, and the water supply control unit 1700 is further used to determine that the predetermined condition is met if the user operation command is user selection information for a predetermined laundry treatment mode.

[0141] Here, the information receiving unit is connected to the external device via a wire or wirelessly. Optionally, the information receiving unit includes, but is not limited to, an antenna, an infrared sensor, etc. Optionally, the external device may be any electronic device that can be manually operated by a user, such as a remote control, a mobile phone, a tablet, a wearable device, etc.

[0142] Furthermore, the user operation command may be a command that needs to be executed in real time, or may be a command that needs to be executed at a specified timing.

[0143] The predetermined laundry treatment mode includes a laundry treatment mode with a drying process, such as a wash mode, a rinse mode, a spin-dry mode, and a drum self-cleaning mode. In other words, if the user operation command is to select a predetermined laundry treatment mode, it means that the laundry treatment device needs to perform a drying operation, and as a result, it is necessary to clean the filter strand 1500 and prevent water film from forming on the filter strand 1500. In this case, the above-mentioned water supply method of the present application is adopted, and a first process is performed in the first water supply stage to clean the filter strand 1500, and a second process is performed in the second water supply stage to prevent the water flow from passing through the filter strand 1500 and forming a water film. In this way, not only can the filter strand 1500 be effectively cleaned, but the drying effect can also be protected from the influence of water film.

[0144] In one embodiment of the present application, the operation data collection unit 170a includes a water level sensor provided in the clothing accommodation device 1100, connected to the water supply control unit 1700, and used to collect water level information of the clothing accommodation device 1100 and transmit the water level information to the water supply control unit 1700. In this way, the water supply control unit 1700 controls the water supply based on the water level information of the clothing accommodation device 1100.

[0145] Specifically, the first water supply stage includes a washing stage, and when water is supplied through the first water supply pipe 1300 during the washing stage, when the water level indicated by the water level information reaches a second predetermined water level or when the operation of the first water supply pipe 1300 reaches a first time length, the water supply of the first water supply pipe 1300 is stopped and the water supply of the second water supply pipe 1600 is started.

[0146] In one embodiment of the present application, the first time length may be 15 seconds. Of course, the first time length may be any value set according to the actual needs of laundry treatment, and is not limited to the above example.

[0147] The second predetermined water level is the water level reached after the water necessary for effective administration of the clothing treatment agent has entered the clothing storage device 1100. When the water level indicated by the water level information reaches the second predetermined water level, it means that the clothing treatment agent has been effectively administered. To improve the cleaning effect of the filter string 1500, the water supply to the first water supply line 1300 is stopped and the water supply to the second water supply line 1600 is started, and the water is supplied to the washing process while the filter string 1500 is washed. This improves the cleaning effect of the filter string 1500 while ensuring effective administration of the clothing treatment agent.

[0148] In one embodiment of the present application, the second predetermined water level is the water level reached after the minimum amount of water required for effective dosing of the clothing treatment agent has entered the clothing storage device 1100.

[0149] In another embodiment of the present application, the difference can be calculated by subtracting the amount of water required to rinse the filter mesh 1500 in the washing stage from the amount of water required for the washing process, and the second predetermined water level is the water level corresponding to the difference, or the water level reached after the difference in water amount enters the clothing storage device 1100. Here, the water level reached after entering the clothing storage device 1100 is determined after taking into account the clothing absorption effect in the clothing storage device 1100. In the present application, when determining any water level such as the first predetermined water level or the second predetermined water level, more accurate water level data can be obtained and the clothing processing effect can be improved.

[0150] As described above, it is possible to determine whether to supply water to the clothing storage device 1100 based on the operation data collected by the operation data collection unit 170a. If water supply is necessary, in the first water supply stage, water supply may be performed through the first water supply pipe 1300, through the second water supply pipe 1600, or through both the first water supply pipe 1300 and the second water supply pipe 1600. In the second water supply stage, water is supplied using only the first water supply pipe 1300 to prevent a water film from forming on the filter net 1500.

[0151] It should be understood that the water supply described in this application includes storing water during the laundry treatment preparation process in the laundry treatment device 1000, storing water during the laundry treatment process, and replenishing water when the amount of water is insufficient during the laundry treatment process.

[0152] In one embodiment of the present application, the first water supply line 1300 sets the water supply time in the washing stage to a fifth time length, and the second water supply line 1600 sets the water supply time in the washing stage to a sixth time length, and the fifth time length is greater than the sixth time length.

[0153] In one embodiment of the present application, the fifth time length may be 20 seconds and the sixth time length may be 15 seconds. Alternatively, the fifth time length may be 29 seconds and the sixth time length may be 20 seconds. Alternatively, the fifth time length may be 25 seconds and the sixth time length may be 15 seconds. Of course, the fifth time length and the sixth time length may be any value set according to actual clothing processing needs and are not limited to the above examples.

[0154] That is, during the washing stage, the water supply time of the first water supply line 1300 is longer than the water supply time of the second water supply line 1600. This ensures that the water supply time of the first water supply line 1300 is long enough to thoroughly flush the clothing treatment agent cassette 1200, ensuring the effectiveness of the clothing treatment agent injection and avoiding a situation where the amount of water flowing through the clothing treatment agent cassette 1200 is too small to flush the clothing treatment agent into the clothing storage device 1100.

[0155] In one embodiment of the present application, the first water supply stage is controlled to stop the water supply from the first water supply line 1300 until a third time period is reached. When treating clothes in the first water supply stage, the required amount of water supply is often determined. By stopping the water supply from the first water supply line 1300 until the third time period is reached, the time for the clothing treatment agent to fully react with the clothes is extended, and the third time period is supplemented with the water supply time of the second water supply line 1600, ensuring the amount of water supply from the second water supply line 1600 and increasing the amount of water supply for the filter rinsing.

[0156] In one embodiment of the present application, the amount of water supplied through the second water supply line 1600 may be further increased based on the originally required amount of water. After water is supplied to a certain level through the first water supply line 1300, the clothes to be treated absorb enough water during the period when the first water supply line 1300 is stopped, and the water level in the clothing storage device 1100 decreases. In this way, when supplying water through the second water supply line 1600, the amount of water supplied can be increased based on the originally required amount of water to replenish the amount of water absorbed by the clothes to be treated and increase the amount of water supplied for rinsing the filter wire. This increases the amount of water supplied through the second water supply line 1600, i.e., the amount of water used to rinse the filter wire 1500, thereby improving the cleaning effect of the filter wire 1500.

[0157] In one embodiment of the present application, the third time length is 10 seconds. Of course, the third time length may be any value set according to the actual needs of laundry treatment, and is not limited to the above example.

[0158] Furthermore, in the first water supply stage, if the number of water supplies through the first water supply pipe 1300 is at least two, the time interval between at least one pair of adjacent water supplies in the at least two times is set as the third time length.

[0159] The stoppage of the first water supply line 1300 may be set between any two adjacent water supplies of the first water supply line 1300. Optionally, it may be set between two water supplies before and after the addition of a clothing treatment agent. The water supply before the addition is used to wet the first water supply line 1300 to prevent the clothing treatment agent from adhering to the first water supply line 1300, preparing it for the subsequent addition of the clothing treatment agent. The water supply after the addition is used to thoroughly rinse the clothing treatment agent in the clothing treatment agent cassette 1200 so that the clothing treatment agent can be added to the clothing storage device 1100.

[0160] In one embodiment of the present application, when the water supply time of the first water supply line 1300 reaches a fourth time length during the first water supply step, a clothing treatment agent dispensing operation is performed on the clothing treatment agent cassette 1200. The fourth time length is the water supply time required to wet the first water supply line 1300. Here, in one embodiment, the fourth time length is the minimum water supply time required to wet the first water supply line 1300. Before dispensing the clothing treatment agent, the water supply time of the first water supply line 1300 reaches the fourth time length, i.e., the first water supply line 1300 can be effectively wetted, and the clothing treatment agent can be prevented from adhering to the first water supply line 1300.

[0161] The timing of the completion of the clothing treatment agent dispensing operation is earlier than the timing of the completion of water supply from the first water supply line 1300 in the first water supply stage. That is, the first water supply line 1300 continues to supply water even after the clothing treatment agent dispensing operation is completed. In this way, after the clothing treatment agent dispensing operation is completed, the clothing treatment agent in the clothing treatment agent cassette 1200 is thoroughly washed away by the water supply, and the clothing treatment agent is sufficiently dispensed into the clothing storage device 1100.

[0162] In one embodiment of the present application, the fourth time length is 5 seconds. Of course, the fourth time length may be any value set according to the actual needs of laundry treatment, and is not limited to the above example.

[0163] Furthermore, the first water supply step further includes an initial rinse step, which is performed after the washing step. A ratio of a water supply time of the first water supply line 1300 during the initial rinse step to a water supply time of the second water supply line 1600 during the initial rinse step is equal to or greater than 0.

[0164] When the ratio is 0, it means that water is supplied only through the second water supply line 1600 during the initial rinsing stage. When the ratio is greater than 0, water may be supplied through either the first water supply line 1300 or the second water supply line 1600 during the initial rinsing stage.

[0165] Furthermore, the second water supply stage includes a final rinse stage, and when the final rinse stage is entered, water supply to the first water supply line 1300 begins, and when the amount of water supplied this time reaches a specified amount or the water supply time reaches a second length of time, water supply to the first water supply line 1300 is stopped.

[0166] In one embodiment of the present application, the specified amount is 2 L and the second time length is 35 s. Of course, the specified amount and the second time length may be any values ​​set according to the actual laundry processing needs, and are not limited to the above example.

[0167] The final rinse step is the final water supply step before the drying process. In the final rinse step, water is supplied through the first water supply line 1300 instead of the second water supply line 1600, thereby preventing the formation of a water film when the water passes through the filter net 1500. The designated amount refers to the amount of water required for the laundry treatment device to operate normally in the final rinse step, and the second time length refers to the water supply time required for the laundry treatment device to obtain the amount of water required for normal operation in the final rinse step. When the current water supply amount reaches the designated amount or the water supply time reaches the second time length, it means that the amount of water required for the final rinse is sufficient, and the water supply through the first water supply line 1300 can be stopped.

[0168] When the water level is lower than a third predetermined water level during the washing and / or initial rinsing steps, the first process is executed. The third predetermined water level refers to the amount of water required for the laundry treatment device 1000 to operate normally during the washing and / or initial rinsing steps. If the water level is lower than the third predetermined water level, it means that water replenishment is required. To achieve the purpose of water replenishment, the first process is executed, i.e., water supply is started.

[0169] In one embodiment of the present application, the third predetermined water level refers to the minimum amount of water required for the laundry treatment device 1000 to function properly during the wash stage and / or initial rinse stage.

[0170] Similarly, when the water level is lower than the fourth predetermined level during the final rinse step, the first water supply line 1300 starts supplying water. The third predetermined level refers to the amount of water required for the laundry treatment device 1000 to operate normally during the final rinse step. If the water level is lower than the fourth predetermined level, it indicates that the amount of water is insufficient and that water replenishment is required. To achieve this, the second process is performed, i.e., water supply is started. At the same time, since water is supplied only through the first water supply line 1300 during the second process, a water film is not formed on the filter net 1500, which can protect the subsequent drying operation.

[0171] In one embodiment of the present application, the third predetermined water level is the minimum amount of water required for the laundry treatment device 1000 to operate normally during the final rinse stage.

[0172] In one embodiment of the present application, the third predetermined water level is 18 cm. Of course, the third predetermined water level may be any value set according to the actual laundry processing needs, and is not limited to the above example.

[0173] In one embodiment of the present application, the fourth predetermined water level is 22 cm. Of course, the third predetermined water level may be any value set according to the actual laundry processing needs, and is not limited to the above example.

[0174] In one embodiment of the present application, the first water supply line 1300 includes a first water supply switch used to open and close the first water supply line 1300, the water supply control unit 1700 is connected to the first water supply switch and is used to control the opening and closing of the first water supply switch, the second water supply line 1600 includes a second water supply switch used to open and close the second water supply line 1600, and the water supply control unit 1700 is connected to the second water supply switch and is used to control the opening and closing of the second water supply switch.

[0175] Optionally, the first water inlet switch and the second water inlet switch are water inlet valves.

[0176] In one specific application scenario of this application, in the first water supply stage, a gravity sensor is used to determine whether the first load weight of the clothing storage device 1100 is less than 3 kg. If the first load weight is less than 3 kg, it means that the amount of water supplied has not reached the level required for clothing treatment, so water supply is started. Furthermore, the specific water supply method of the first water supply stage is as follows: When the washing stage is first entered, water is first supplied through the first water supply line 1300 for 5 seconds and then stopped. This water supply wets the first water supply line 1300, preventing the clothing treatment agent from adhering to the first water supply line 1300 and preparing for the subsequent addition of the clothing treatment agent. Next, water supply is stopped until the first water supply line 1300 reaches 10 seconds. Within 10 seconds, the user is allowed to open the clothing treatment agent cassette 1200 and add the clothing treatment agent. Water is then supplied through the first water supply line 1300 for 10 seconds and then stopped. This water supply rinses out the clothing treatment agent in the clothing treatment agent cassette 1200, allowing the clothing treatment agent to be fully added to the clothing storage device 1100. At this time, the Hall sensor determines whether the second load weight of the clothing storage device 1100 is less than 5 kg. If the second load weight is less than 5 kg, after 15 seconds of water supply through the first water supply line 1300, the amount of water in the clothing storage device 1100 is not enough for the current washing process. Therefore, water supply through the second water supply line 1600 can be started. The water supply through the second water supply line 1600 increases the amount of water required for washing and also serves to rinse the filter mesh 1500. It should be understood that the washing stage may include one or multiple washing processes, and that the water supply method described herein may be used to supply water during each washing process.

[0177] Furthermore, during each washing step, an image sensor captures an internal image of the clothing storage device 1100. If the water level in the clothing storage device 1100 is less than 18 cm in the internal image, this indicates that there is insufficient water in the clothing storage device 1100, which may be due to, but is not limited to, the water being absorbed by the clothes and causing the water level to drop. In this case, to ensure effective washing, the first water supply line 1300 is operated to supply water until the water level in the clothing storage device 1100 reaches 18 cm.

[0178] Next, before the initial rinse step, water is supplied for 32 seconds through the second water supply line 1600 and then stopped. During the rinse step, a water level sensor determines whether the water level in the garment storage device 1100 is below 18 cm. If the water level is below 18 cm, this means that the current amount of water is insufficient for effective rinsing or for effective rinsing of the filter 1500. In this case, water supply through the second water supply line 1600 can be started until the water level reaches 18 cm.

[0179] Finally, before the final rinse process in the final rinse stage, water is supplied through the first water supply line 1300 for 35 seconds and then stopped. During the final rinse process, the water level sensor determines whether the water level in the garment storage device 1100 is below 22 cm. If the water level is below 22 cm, this means that the current amount of water is insufficient for effective rinsing. In this case, water supply through the first water supply line 1300 can be resumed until the water level reaches 22 cm.

[0180] In the above specific application scenario, weight detection may be performed using a Hall sensor instead of a gravity sensor, or weight detection may be increased using a gravity sensor instead of a Hall sensor. Water level detection may be performed using a water level sensor instead of an image sensor, or water level detection may be performed using an image sensor instead of a water level sensor. Furthermore, operation information from various operation data collectors 170a is combined to determine whether to start one water supply. In summary, operation information collected by various operation data collectors 170a may be used alone or in combination as a water supply start criterion.

[0181] Furthermore, although multiple values ​​are exemplified in the above specific application scenario, in actual applications, various values ​​may be set to meet diversifying clothing processing needs, and are not limited to the examples described in the above specific application scenario.

[0182] In any of the above embodiments of the present application, any of such features may be combined with one another to improve the drying effect.

[0183] In one embodiment of the present application, there is provided a clothing treatment device, comprising: a clothing storage device, a clothing treatment cassette, a first water supply line, a drying device, a filter, a second water supply line, a memory, and a processor communicatively connected to the memory, wherein the memory stores instructions executable by the processor, the instructions being configured to implement the solutions described in any of the above embodiments. The clothing treatment device has the same technical effects as any of the above embodiments, and therefore will not be repeated here.

[0184] In one embodiment of the present application, an electronic device is provided, comprising a communication module, a memory and a processor communicatively connected to the memory, wherein the memory stores instructions executable by the processor, the instructions being configured to control a garment processing device 1000 to perform the solution described in any of the above embodiments, and the communication module is used for wired or wireless connection to the garment processing device 1000. The electronic device has the same technical effects as any of the above embodiments, and therefore will not be repeated here.

[0185] The electronic devices of the embodiments of the present application may exist in a variety of forms, including but not limited to: (1) Mobile communication devices: These devices have mobile communication capabilities and are characterized by their primary goal of providing voice and data communications. Such devices include smartphones (e.g., iPhones), multimedia mobile phones, feature mobile phones, and low-end mobile phones. (2) Ultra-Mobile Personal Computer Devices: These devices fall under the category of personal computers and have computing and processing capabilities, and generally also have mobile Internet access features. Such devices include, but are not limited to, PDAs, MIDs, and UMPC devices, such as the iPad. (3) Portable Entertainment Devices: These devices are capable of displaying and playing multimedia content, including, but not limited to, wearable devices, audio and video players (such as iPod®), portable game consoles, e-books, smart toys, and portable car navigation devices. (4) Server: A device that provides computing services. The server configuration includes a processor, hard disk, memory, system bus, etc. The server architecture is similar to that of a general-purpose computer, but because it is required to provide highly reliable services, it has higher requirements in terms of processing power, stability, reliability, security, scalability, and manageability. (5) Other electronic devices with data interaction capabilities.

[0186] Further, an embodiment of the present application provides a computer-readable storage medium, having computer-executable instructions stored thereon, wherein the computer executes the instructions to perform the following steps: performing a first process in a first water supply stage, the first process including supplying water to the clothing storage device through a filter line via a second water supply line; and performing a second process in a second water supply stage, the second water supply stage being after the first water supply stage, and the second process including supplying water to the clothing storage device only via the first water supply line.

[0187] It should be noted that for the functions or steps that can be implemented by the computer-readable storage medium or electronic device, reference may be made to the relevant descriptions in the method embodiments, and details will be omitted here to avoid repetition.

[0188] As described above, the technical solution of the present application has been described in detail with reference to the accompanying drawings. According to the technical solution of the present application, the filter wire is effectively cleaned in the first water supply stage, and in the second water supply stage, i.e., the final water supply stage before drying, water is supplied through the first water supply line instead of the second water supply line, thereby avoiding the formation of a water film due to the flow of water through the filter wire. This allows the filter wire to be effectively cleaned while protecting the drying effect from the influence of the water film, maintaining the safe operation of many components including the fan, and extending the service life of the components.

[0189] It should be understood that the term "and / or" used in this specification is used only to explain the relation between related objects, and there are three relations, for example, A and / or B can be expressed as A existing alone, A and B existing simultaneously, and B existing alone. In addition, in this specification, the character " / " generally indicates that the related objects before and after it are in an "or" relation.

[0190] Depending on the context, the word "if" as used herein may be interpreted as "when" or "when" or "responsive to determining" or "responsive to detecting." Similarly, depending on the context, the words "determining" or "detecting (a condition or event of expression)" may be interpreted as "when it is determined that" or "responsive to determining that" or "when (a condition or event of expression) is detected" or "responsive to (a condition or event of expression) being detected."

[0191] The terms used in the examples of this application are used only for the purpose of describing particular examples and are not to be understood as limiting the present application. As used in the examples of this application and the appended claims, the singular forms "a," "the," and "the" are intended to encompass the plural forms unless the context clearly dictates otherwise.

[0192] In some embodiments provided by the present application, it should be understood that the disclosed systems, devices, and methods may be realized in other forms. For example, the device embodiments described above are merely exemplary, and the division of the units is merely a division of logical functions. In actual implementation, other division schemes may be used. For example, multiple units or assemblies may be combined or integrated into another system, or some features may be omitted or not implemented. In other respects, the illustrated or discussed mutual couplings or direct couplings or communication connections may be indirect couplings or communication connections of some interfaces, devices, or units, in electrical, mechanical, or other forms.

[0193] Those skilled in the art will understand that all or part of the steps in the above-described method embodiments can be achieved by a computer program instructing relevant hardware. The computer program may be stored in a non-volatile computer-readable storage medium, and when the computer program is executed, the steps in the above-described method embodiments can be realized. Herein, any reference to memory, storage, database, or other medium used in the embodiments provided in this application may include non-volatile and / or volatile memory. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory may include random access memory (RAM) or external cache memory. By way of example and not limitation, RAM is available in various forms such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM).

[0194] As mentioned above, the above embodiments are used to explain the technical solutions of the present invention, but are not intended to limit the same. The present invention has been described in detail with reference to the above embodiments. However, those skilled in the art may still make modifications to the technical solutions described in the above embodiments or make equivalent substitutions to some of the technical features thereof, and these modifications or substitutions shall not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention, and shall all fall within the protection scope of the present invention.

Claims

1. a garment receiving device for receiving the garments to be treated; a clothing treatment cassette communicating with the clothing storage device for storing a clothing treatment agent to be dispensed into the clothing storage device; a first water supply line communicating with the clothing storage device via the clothing treatment agent cassette for supplying water to the clothing storage device; a drying device in communication with the garment receiving device for drying the airflow directed from the garment receiving device; a filter tether in communication with the garment storage apparatus and the drying apparatus for filtering the airflow; a second water supply line communicating with the clothing storage apparatus through the filter line for supplying water to the clothing storage apparatus through the filter line; a water supply control unit connected to the first water supply line and the second water supply line, which performs a first process and a second process, respectively, at a first water supply stage and a second water supply stage of a clothing processing process, the first water supply stage being before the second water supply stage, the first process including supplying water to the clothing storage device via the second water supply line, and the second process including supplying water to the clothing storage device only via the first water supply line.

2. The method further includes an operation data collection unit for collecting operation data of the clothing processing device, the operation data including at least one of a first load weight of the clothing storage device, pulse information of a motor of the clothing processing device, an internal image of the clothing storage device, and a user operation command; The clothing processing device described in claim 1, characterized in that the water supply control unit is further connected to the operation data collection unit, acquires operation data from the operation data collection unit, and is used to execute the first process when the operation data satisfies a predetermined condition in the first water supply stage, and to execute the second process when the operation data satisfies a predetermined condition in the second water supply stage.

3. The operation data collection unit a gravity sensor provided at the bottom of the clothing storage device, connected to the water supply controller, and used to collect a first load weight of the clothing storage device and transmit the first load weight to the water supply controller; the water supply control unit is further used to determine that the predetermined condition is satisfied when the first load weight is lower than a predetermined weight threshold; or The operation data collection unit an image sensor provided on the door body of the clothing storage device, connected to the water supply control unit, for collecting an image of the interior of the clothing storage device and transmitting the image of the interior to the water supply control unit; The water supply control unit is further used to determine that the predetermined condition is satisfied when the clothes to be processed are not recognized in the internal image and / or when the water level in the clothes storage device in the internal image is lower than a first predetermined water level; or The operation data collection unit a touch operation unit connected to the water supply control unit, used to acquire a user touch operation, generate a user operation command based on the user touch operation, and transmit the user operation command to the water supply control unit; The clothing processing device according to claim 2 , wherein the water supply control unit is further used to determine that the predetermined condition is satisfied when the user operation command is user selection information for a predetermined clothing processing mode.

4. The motor is used to supply energy to the clothing treatment device, The operation data collection unit a Hall sensor provided within a magnetic field coverage range of the motor, connected to the water supply control unit, and used to generate pulse information in response to a magnetic field change of the motor and transmit the pulse information to the water supply control unit; The clothing processing device of claim 2, characterized in that the water supply control unit is further used to determine a second load weight of the clothing storage device based on the pulse information and a predetermined mapping relationship, and to determine that the predetermined condition is met when the second load weight is lower than a predetermined weight threshold, and the predetermined mapping relationship is used to reflect the correlation between the pulse information and the second load weight of the clothing storage device.

5. the first process further comprises supplying water to the garment storage apparatus via the first water supply line; The operation data collection unit a water level sensor provided in the clothing storage device, connected to the water supply control unit, and used to collect water level information of the clothing storage device and transmit the water level information to the water supply control unit; The first water supply step includes a washing step, In the washing step, when the water level indicated by the water level information reaches a second predetermined water level or when the operation of the first water supply pipe reaches a first length of time, the water supply of the first water supply pipe is stopped and the water supply of the second water supply pipe is started; The first water supply stage further includes an initial rinse stage; In the washing step and / or the initial rinsing step, the first process is performed when the water level is lower than a third predetermined water level. The laundry treatment device according to claim 2 .

6. the second water supply stage includes a final rinse stage; When the final rinse step is started, the water supply through the first water supply pipe is started, and when the amount of water supplied this time reaches a designated amount or the water supply time length reaches a second length, the water supply through the first water supply pipe is stopped; The laundry treating device according to claim 5, wherein, in the final rinsing stage, water supply to the first water supply pipe is started when the water level is lower than a fourth predetermined water level.

7. The first water supply pipe is a first water supply switch for opening and closing the first water supply line; the water supply control unit is connected to the first water supply switch and is used to control opening and closing of the first water supply switch; The second water supply pipe is a second water supply switch for opening and closing the second water supply line; The clothing processing device according to any one of claims 1 to 6, characterized in that the water supply control unit is connected to the second water supply switch and is used to control the opening and closing of the second water supply switch.

8. A water supply control method applied to the laundry treatment device according to any one of claims 1 to 6, performing a first process in a first water supply stage, the first process including supplying water to the garment storage device through a second water supply line and a filter; a second process being performed in a second water supply stage, the second water supply stage being after the first water supply stage, and the second process including supplying water to the clothing storage device only through the first water supply line.

9. collecting operational data of the clothing treatment device, the operational data including at least one of a first load weight of the clothing treatment device, pulse information of a motor of the clothing treatment device, an internal image of the clothing treatment device, and a user operation command; Performing a first treatment in the first water supply stage includes: executing the first process when the operational data satisfies a predetermined condition in the first water supply stage; Performing the second treatment in the second water supply stage includes: executing the second process when the operational data satisfies a predetermined condition in the second water supply stage; The predetermined condition is: the first load weight is less than a predetermined weight threshold; the second load weight determined based on the pulse information and the predetermined mapping relationship is lower than a predetermined weight threshold; the garment to be processed has been recognized in the internal image; The water level of the clothing storage device in the internal image is lower than a first predetermined water level; and The water supply control method according to claim 8, wherein the user operation command includes at least one of user selection information for a predetermined laundry treatment mode.

10. The first process includes: supplying water to the garment storage device through the first water supply line; and during the first water supply step, a ratio of a total water supply time of the first water supply line to a total water supply time of the second water supply line is equal to or greater than 0; controlling the first water supply line to stop supplying water for a third period of time during the first water supply stage; The water supply control method described in claim 9 further includes performing a clothing treatment agent dispensing operation on a clothing treatment agent cassette when the water supply time of the first water supply pipe reaches a fourth time length during the first water supply stage, and the end timing of the clothing treatment agent dispensing operation is earlier than the end timing of the water supply of the first water supply pipe during the first water supply stage.

11. The water supply control method of claim 10, further comprising, when the number of water supplies through the first water supply pipe is at least two in the first water supply stage, setting the time interval between at least one pair of adjacent water supplies in the at least two times as the third time length.

12. Performing a first treatment in the first water supply stage includes: and stopping the water supply through the first water supply line and starting the water supply through the second water supply line when it is detected that the water level in the clothing storage device reaches a second predetermined water level or that the operation of the first water supply line has reached a first length of time during the washing stage of the first water supply stage.

11. The water supply control method of claim 10, further comprising: setting a water supply time of the first water supply line in the washing step to a fifth time length; and setting a water supply time of the second water supply line in the washing step to a sixth time length, the fifth time length being greater than the sixth time length.

13. The first water supply step further includes an initial rinse step, the initial rinse step is performed after the washing step, and a ratio of a water supply time of the first water supply line in the initial rinse step to a water supply time of the second water supply line in the initial rinse step is equal to or greater than 0; performing a first treatment in the first water supply stage; The water supply control method according to claim 12, further comprising: executing the first process when the water level is lower than a third predetermined water level during the washing step and / or the initial rinsing step.

14. Performing the second treatment in the second water supply stage includes: When the final rinse stage in the second water supply stage is started, water supply to the first water supply pipe is started; The method further includes stopping the water supply through the first water supply pipe when the current water supply amount reaches a designated amount or when the water supply time reaches a second length of time; Performing the second treatment in the second water supply stage includes: The water supply control method according to claim 13, further comprising starting water supply through the first water supply line when the water level is lower than a fourth predetermined water level in the final rinsing stage.

15. A non-transitory computer-readable storage medium having a computer program stored thereon, the non-transitory computer-readable storage medium realizing the water supply control method according to claim 8 when the computer program is executed by a processor.