Clothes washing method and device, storage medium and electronic equipment

By controlling the distribution and state of the pigment treatment agent in the inner cylinder of the washing machine, the problem of low pigment treatment efficiency in the prior art is solved, targeted treatment of the target clothing is achieved, processing efficiency is improved and dyeing risks are reduced.

CN120425546APending Publication Date: 2025-08-05BEIJING XIAOMI MOBILE SOFTWARE CO LTD
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Patent Information

Application Number
CN202410162067.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-02-04
Publication Date
2025-08-05

AI Technical Summary

Technical Problem

In the prior art, pigment treatment agents are randomly distributed in the inner cylinder of the washing machine, and targeted treatments cannot be performed on targeted clothing (such as black clothes that are prone to fading), resulting in low pigment treatment efficiency.

Method used

By controlling the distribution of the pigment treatment agent within the horizontal height range of the target clothing in the inner cylinder of the washing machine, combined with mashing operation, electric field control and turbidity detection, the input amount and state of the pigment treatment agent are optimized to achieve targeted processing.

Benefits of technology

It improves the pigment treatment efficiency, reduces the possibility of dyeing clothes during washing, and enhances targeted treatment effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a clothes washing method and device, a storage medium and electronic device.The clothes washing method comprises the steps that after a pigment treating agent is put into an inner barrel of a washing machine along with water flow, the pigment treating agent is controlled to be distributed in the horizontal height range where target clothes are located in the inner barrel of the washing machine, the pigment treating agent is used for treating pigment generated by clothes, and the target clothes are clothes meeting preset pigment generation conditions. Then, after standing is conducted for a first time length, clothes washing operation is executed, and the clothes washing operation is used for washing clothes put into an inner barrel of the washing machine. The pigment treatment agent is controlled to be distributed in the horizontal height range of the target clothes in the inner barrel of the washing machine, so that the pigment treatment agent can perform targeted treatment on the pigment generated by the target clothes, and the pigment treatment efficiency is improved.
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Description

Technical Field

[0001] The technical solution of the present disclosure relates to the technical field of washing machines, and particularly relates to a method and device for washing clothes, a storage medium, and an electronic device. Background Art

[0002] In related technical solutions, after a pigment treatment agent is put into the inner drum of a washing machine, the pigment treatment agent will be randomly distributed in the inner drum of the washing machine, and cannot specifically treat the pigments generated by target clothes (for example, black clothes that are prone to fading), resulting in low pigment treatment efficiency. Summary of the Invention

[0003] In view of this, embodiments of the present disclosure provide a method and device for washing clothes, a storage medium, and an electronic device.

[0004] According to a first aspect of the present disclosure, a method for washing clothes is provided, and the method includes:

[0005] After putting the pigment treatment agent into the inner drum of the washing machine along with the water flow, control the pigment treatment agent to be distributed within the horizontal height range where the target clothes are located in the inner drum of the washing machine; the pigment treatment agent is used to treat the pigments generated by the clothes, and the target clothes are clothes that meet the preset pigment generation conditions;

[0006] After standing for a first period of time, perform a clothes washing operation; the clothes washing operation is used to wash the clothes put into the inner drum of the washing machine.

[0007] Combined with any implementation manner provided by the present disclosure, the pigment treatment agent includes: a pigment absorbent and / or a pigment decomposer;

[0008] The pigment absorbent is used to absorb the pigments generated by the clothes, and the pigment decomposer is used to decompose the pigments generated by the clothes.

[0009] Combined with any implementation manner provided by the present disclosure, putting the pigment treatment agent into the inner drum of the washing machine along with the water flow includes:

[0010] Perform a smashing operation on the pigment treatment agent;

[0011] Put the smashed pigment treatment agent into the inner drum of the washing machine along with the water flow.

[0012] Combined with any implementation manner provided by the present disclosure, performing the smashing operation on the pigment treatment agent includes:

[0013] Determine a second period of time for performing the smashing operation according to a first washing parameter; the first washing parameter is used to characterize the degree of easy dyeing of the clothes put into the inner drum of the washing machine, and the second period of time is proportional to the degree of easy dyeing of the clothes;

[0014] Perform the crushing operation on the pigment treatment agent for the second duration.

[0015] Combined with any implementation manner provided by the present disclosure, putting the pigment treatment agent into the inner drum of the washing machine along with the water flow includes:

[0016] Determine the first quantity of the pigment treatment agent put into the inner drum of the washing machine according to the first washing parameter; the first washing parameter is used to characterize the degree of easy dyeing of the clothes put into the inner drum of the washing machine, and the first quantity is proportional to the degree of easy dyeing of the clothes;

[0017] Put the first quantity of the pigment treatment agent into the inner drum of the washing machine along with the water flow.

[0018] Combined with any implementation manner provided by the present disclosure, the first washing parameter includes at least one of the following:

[0019] A clothing quantity parameter used to characterize the quantity of clothes put into the inner drum of the washing machine;

[0020] An easy dyeing coefficient parameter used to characterize the degree of easy dyeing of the target clothes;

[0021] A washing duration parameter used to characterize the execution duration of the clothing washing operation.

[0022] Combined with any implementation manner provided by the present disclosure, the easy dyeing coefficient parameter of the target clothes is determined in advance based on the following method:

[0023] During the process of filling water based on the water inlet instruction, determine the first turbidity of the water entering the inner drum of the washing machine;

[0024] When it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, stop filling water;

[0025] Let it stand for the second duration, and during the process of draining the water in the inner drum of the washing machine, determine the second turbidity of the drained water;

[0026] Based on the first turbidity and the second turbidity, determine the easy dyeing coefficient parameter of the target clothes.

[0027] Combined with any implementation manner provided by the present disclosure, the pigment treatment agent is a color master sheet;

[0028] T Controlling the pigment treatment agent to be distributed within the range of the horizontal height where the target clothes are located in the inner drum of the washing machine includes:

[0029] During the water inlet process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, stop filling water.

[0030] In combination with any of the embodiments provided by the present disclosure, the pigment treating agent is a hydroxyl group;

[0031] The step of introducing the pigment treating agent into the inner drum of the washing machine along with the water flow includes:

[0032] During the water inlet process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, introduce the hydroxyl group into the inner drum of the washing machine along with the water flow.

[0033] In combination with any of the embodiments provided by the present disclosure, an alternating current electric field is provided at the outer drum of the washing machine, and the pigment treating agent is a hydroxyl group;

[0034] The step of controlling the distribution of the pigment treating agent within the range of the horizontal height where the target clothes in the inner drum of the washing machine are located includes:

[0035] Activate the alternating current electric field within the range of the horizontal height where the target clothes are located, so as to control the distribution of the hydroxyl group within the range of the horizontal height where the target clothes are located through the alternating current electric field.

[0036] In combination with any of the embodiments provided by the present disclosure, the step of activating the alternating current electric field within the range of the horizontal height where the target clothes are located includes:

[0037] Determine the target electric field intensity of the alternating current electric field based on the second washing parameter; the second washing parameter is used to characterize the degree of easy dyeing of the clothes introduced into the inner drum of the washing machine, and the target electric field intensity is proportional to the degree of easy dyeing of the clothes;

[0038] Activate the alternating current electric field with the target electric field intensity.

[0039] In combination with any of the embodiments provided by the present disclosure, after activating the alternating current electric field within the range of the horizontal height where the target clothes are located, the method further includes:

[0040] Determine the electric field positive and negative pole exchange frequency of the alternating current electric field according to the easy dyeing coefficient parameter of the target clothes; the easy dyeing coefficient parameter is used to characterize the degree of easy dyeing of the target clothes;

[0041] Adjust the electric field positive and negative poles of the alternating current electric field according to the electric field positive and negative pole exchange frequency.

[0042] In combination with any of the embodiments provided by the present disclosure, after standing for the first period of time, performing the clothes washing operation includes:

[0043] After standing for the first period of time, drain the water in the inner drum of the washing machine;

[0044] Determine the third turbidity of the drained water;

[0045] When the third turbidity is lower than or equal to a preset value, perform the clothing washing operation.

[0046] Combined with any implementation manner provided by the present disclosure, the method further includes:

[0047] When the third turbidity is higher than the preset value, re - execute the step of putting the pigment treatment agent into the inner cylinder of the washing machine along with the water flow and then controlling the pigment treatment agent to be distributed within the horizontal height range where the target clothing is located in the inner cylinder of the washing machine.

[0048] Combined with any implementation manner provided by the present disclosure, the method further includes:

[0049] During the water inlet process of the washing machine, determine the fourth turbidity of the water entering the inner cylinder of the washing machine;

[0050] According to the third turbidity and the fourth turbidity, determine the fading index of the target clothing during the clothing washing operation; the fading index is used to characterize the fading condition of the clothing.

[0051] Combined with any implementation manner provided by the present disclosure, the method further includes:

[0052] The washing machine establishes a communication connection with the terminal device;

[0053] Through the communication connection, send the fading index of the target clothing during the clothing washing operation to the terminal device.

[0054] According to the second aspect of the present disclosure, a clothing washing device is proposed, and the device includes:

[0055] A control module, configured to, after putting the pigment treatment agent into the inner cylinder of the washing machine along with the water flow, control the pigment treatment agent to be distributed within the horizontal height range where the target clothing is located in the inner cylinder of the washing machine; the pigment treatment agent is used to treat the pigment generated by the clothing, and the target clothing is the clothing that meets the preset pigment generation condition;

[0056] A clothing washing module, configured to perform the clothing washing operation after standing for a first period of time; the clothing washing operation is used to wash the clothing put into the inner cylinder of the washing machine.

[0057] According to the third aspect of the present disclosure, a computer - readable storage medium is provided. The machine - readable storage medium stores machine - readable instructions, and when the machine - readable instructions are called and executed by a processor, the processor is prompted to implement the clothing washing method of any embodiment of the present disclosure.

[0058] According to the fourth aspect of the present disclosure, a washing machine is provided, and the washing machine includes:

[0059] A control device, configured to control the pigment treatment agent to be distributed within a range of the horizontal height where the target clothing is located in the inner tub of the washing machine after the pigment treatment agent is put into the inner tub of the washing machine along with the water flow; the pigment treatment agent is used to treat the pigment generated by the clothing, and the target clothing is the clothing that meets the preset pigment generation condition.

[0060] A clothing washing device, configured to perform a clothing washing operation after standing for a first period of time; the clothing washing operation is used to wash the clothing put into the inner tub of the washing machine.

[0061] Combined with any one of the embodiments provided by the present disclosure, the washing machine further includes: a position determining device installed in the clothing washing device;

[0062] The position determining device is configured to determine the range of the horizontal height where the target clothing is located in the inner tub of the washing machine.

[0063] Combined with any one of the embodiments provided by the present disclosure, the washing machine further includes: a first water turbidity detection device installed at the water inlet pipe of the washing machine and a second water turbidity detection device installed at the water outlet pipe of the washing machine;

[0064] The first water turbidity detection device is configured to detect the turbidity of the water entering the inner tub of the washing machine;

[0065] The second water turbidity detection device is configured to detect the turbidity of the water discharged from the inner tub of the washing machine.

[0066] Combined with any one of the embodiments provided by the present disclosure, the washing machine further includes: a pigment treatment agent crushing device connected to the water inlet pipe of the washing machine;

[0067] The pigment treatment agent crushing device is configured to perform a crushing operation on the pigment treatment agent and put the crushed pigment treatment agent into the inner tub of the washing machine along with the water flow in the water inlet pipe.

[0068] Combined with any one of the embodiments provided by the present disclosure, the washing machine further includes: a hydroxyl preparation device connected to the water inlet pipe of the washing machine;

[0069] The hydroxyl preparation device is configured to perform electrolysis of water to obtain hydroxyls and put the hydroxyls into the inner tub of the washing machine along with the water flow in the water inlet pipe.

[0070] The technical solutions provided by the embodiments of the present disclosure may include the following beneficial effects:

[0071] In the clothes washing method, device, storage medium and electronic device provided by the embodiments of the present disclosure, after the pigment treatment agent is put into the inner drum of the washing machine along with the water flow, the distribution of the pigment treatment agent in the inner drum of the washing machine can be controlled within the horizontal height range where the target clothes are located. The pigment treatment agent is used to treat the pigments generated by the clothes, and the target clothes are the clothes that meet the preset pigment generation conditions. Then, after standing for the first period of time, the clothes washing operation is performed. The clothes washing operation is used to wash the clothes put into the inner drum of the washing machine. Controlling the distribution of the pigment treatment agent within the horizontal height range where the target clothes are located in the inner drum of the washing machine can enable the pigment treatment agent to specifically treat the pigments generated by the target clothes and improve the pigment treatment efficiency.

[0072] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS

[0073] The drawings here are incorporated into the specification and form a part of this specification, showing the embodiments consistent with the present disclosure and used together with the specification to explain the principles of the present disclosure.

[0074] Figure 1 is a flowchart of a clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0075] Figure 2 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0076] Figure 3 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0077] Figure 4 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0078] Figure 5 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0079] Figure 6 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0080] Figure 7 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0081] Figure 8 is a flowchart of another clothes washing method shown according to an exemplary embodiment of the present disclosure;

[0082] Figure 9It is a schematic diagram of positive binding of hydroxyl groups shown according to an exemplary embodiment of the present disclosure;

[0083] Figure 10 It is a schematic diagram of reverse binding of hydroxyl groups shown according to an exemplary embodiment of the present disclosure;

[0084] Figure 11 It is a flowchart of another method for washing clothes shown according to an exemplary embodiment of the present disclosure;

[0085] Figure 12 It is a flowchart of another method for washing clothes shown according to an exemplary embodiment of the present disclosure;

[0086] Figure 13 It is a flowchart of another method for washing clothes shown according to an exemplary embodiment of the present disclosure;

[0087] Figure 14 It is a flowchart of another method for washing clothes shown according to an exemplary embodiment of the present disclosure;

[0088] Figure 15 It is a schematic diagram of the structure of a clothes washing device shown according to an exemplary embodiment of the present disclosure;

[0089] Figure 16 It is a schematic diagram of the structure of a washing machine shown according to an exemplary embodiment of the present disclosure. Detailed implementation manners

[0090] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present disclosure. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.

[0091] The terms used in the present disclosure are only for the purpose of describing specific embodiments and are not intended to limit the present disclosure. The singular forms of "a", "the" and "said" used in the present disclosure and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the term "and / or" used herein refers to and includes any or all possible combinations of one or more of the associated listed items.

[0092] It should be understood that although terms such as first, second, and third may be used in this disclosure to describe various information, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this disclosure, the first information may also be referred to as the second information, and similarly, the second information may also be referred to as the first information. Depending on the context, the word "if" as used herein may be interpreted as "when" or "while" or "in response to a determination".

[0093] In related technical solutions, after the pigment treatment agent is put into the inner drum of the washing machine, the pigment treatment agent will randomly distribute in the inner drum of the washing machine and cannot specifically treat the pigments generated by target clothes (for example, black clothes that are prone to fading), resulting in a low pigment treatment efficiency.

[0094] In view of this, an embodiment of this disclosure provides a clothes washing method. In this method, after the pigment treatment agent is put into the washing machine, the washing machine can control the pigment treatment agent to distribute within the horizontal height range where the target clothes (for example, the aforementioned black clothes that are prone to fading) are located in the inner drum of the washing machine, so that the pigment treatment agent can specifically treat the pigments generated by the target clothes, thereby improving the pigment treatment efficiency.

[0095] The following will describe the clothes washing method according to the embodiments of this disclosure in detail with reference to the drawings.

[0096] Figure 1 is a flowchart of a clothes washing method shown according to an exemplary embodiment of this disclosure. This method can be executed by a washing machine, as Figure 1 shown, the method of this exemplary embodiment may include the following steps:

[0097] In step 101, after the pigment treatment agent is put into the inner drum of the washing machine along with the water flow, control the pigment treatment agent to distribute within the horizontal height range where the target clothes are located in the inner drum of the washing machine.

[0098] The pigment treatment agent is used to treat the pigments generated by the clothes.

[0099] In this example, the pigment treatment agent may include: a pigment absorbent and / or a pigment decomposer. Among them, the pigment absorbent is used to absorb the pigments generated by the clothes. Exemplarily, the pigment absorbent may be a color master sheet. The pigment decomposer is used to decompose the pigments generated by the clothes. Exemplarily, the pigment decomposer may be a hydroxyl group.

[0100] The target clothes are clothes that meet the preset pigment generation conditions, and the preset pigment generation conditions may include, for example: dark color, easy to fade, etc.

[0101] When the pigment treating agent is a color master sheet: During the water inlet process of the washing machine, the color master sheet can be automatically put into the inner drum of the washing machine along with the water flow. Then, when the washing machine detects that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, the water inlet stops. Since the color master sheet floats on the water surface, it is possible to make the color master sheet distributed within the range of the horizontal height where the target clothes are located.

[0102] When the pigment treating agent is a hydroxyl group: During the water inlet process of the washing machine, the hydroxyl group can be automatically put into the inner drum of the washing machine along with the water flow. Then, the washing machine can control the activation of an alternating current electric field at the horizontal height where the target clothes are located and set on the outer drum of the washing machine, so as to control the distribution of the hydroxyl group within the range of the horizontal height where the target clothes are located through the alternating current electric field.

[0103] The process by which the washing machine determines the range of the horizontal height where the target clothes are located will be introduced in subsequent embodiments and will not be elaborated here.

[0104] In step 102, after standing for the first period of time, a clothes washing operation is performed.

[0105] The clothes washing operation is used to wash the clothes put into the inner drum of the washing machine.

[0106] After the water inlet operation stops, macroscopically, the clothes are static. The pigment treating agent distributed within the range of the horizontal height where the target clothes are located can specifically treat the pigment generated by the target clothes during this standing time. After the treatment, the clothes washing operation is then performed.

[0107] In the clothes washing method provided by the embodiments of the present disclosure, after the pigment treating agent is put into the inner drum of the washing machine along with the water flow, the washing machine can control the distribution of the pigment treating agent within the range of the horizontal height where the target clothes are located in the inner drum of the washing machine, so that the pigment treating agent specifically treats the pigment generated by the target clothes during the above-mentioned standing first period of time, improving the pigment treatment efficiency and reducing the possibility of the clothes in the inner drum of the washing machine being dyed during the subsequent execution of the clothes washing operation.

[0108] In one embodiment, as Figure 2 shown, for the above-mentioned step 101, the putting of the pigment treating agent into the inner drum of the washing machine along with the water flow may specifically include the following steps:

[0109] In step 201, a crushing operation is performed on the pigment treating agent.

[0110] When the pigment treating agent is a color master sheet, the washing machine can first perform a crushing operation on the color master sheet.

[0111] In step 202, the crushed pigment treating agent is put into the inner drum of the washing machine along with the water flow.

[0112] After the crushing operation is completed, the washing machine can put the crushed color masterbatch into the inner drum of the washing machine along with the water flow.

[0113] It should be noted that in this example, the pigment treatment agent is taken as an example of the color masterbatch for introduction. In actual applications, the pigment treatment agent can also be other substances used to absorb or decompose pigments, and the present disclosure does not limit this.

[0114] In the laundry washing method provided by the embodiments of the present disclosure, the washing machine can crush the pigment treatment agent and then put it into the inner drum of the washing machine along with the water flow, thereby increasing the contact area between the pigment treatment agent and the pigment and improving the pigment treatment efficiency.

[0115] In one embodiment, as Figure 3 shown, for the above-mentioned step 201, the operation of crushing the pigment treatment agent may specifically include the following steps:

[0116] In step 301, a second duration for performing the crushing operation is determined according to the first washing parameter.

[0117] The first washing parameter is used to characterize the degree of easy staining of the clothes put into the inner drum of the washing machine, and the second duration is proportional to the degree of easy staining of the clothes. That is, the higher the degree of easy staining of the clothes put into the inner drum of the washing machine, the longer the determined second duration. The lower the degree of easy staining of the clothes put into the inner drum of the washing machine, the shorter the determined second duration.

[0118] Optionally, the first washing parameter may include at least one of the following:

[0119] A clothing quantity parameter for characterizing the quantity of clothes put into the inner drum of the washing machine, an easy staining coefficient parameter for characterizing the degree of easy staining of the target clothes, and a washing duration parameter for characterizing the execution duration of the clothing washing operation.

[0120] The more clothes are put into the inner drum of the washing machine, the more likely it is to have a staining situation, and the higher the degree of easy staining of the clothes in the inner drum of the washing machine. The larger the easy staining coefficient parameter of the target clothes, the more easily the target clothes fade, and the higher the degree of easy staining of the clothes in the inner drum of the washing machine. The longer the execution duration of the clothing washing operation, the greater the chance of the clothes contacting each other, and the more likely it is to have a staining situation, and the higher the degree of easy staining of the clothes in the inner drum of the washing machine.

[0121] In actual applications, the washing machine can query the crushing time table from the memory based on the foregoing first washing parameter to obtain the corresponding second duration, and this crushing time table is calibrated by relevant staff through a large number of experiments.

[0122] In step 302, perform the crushing operation on the pigment treatment agent for the second duration.

[0123] As described above, the crushing operation for the second duration can be performed on the color master sheet.

[0124] In the clothes washing method provided by the embodiments of the present disclosure, the washing machine can determine the duration of performing the crushing operation based on the color-fastness degree of the clothes in the inner drum of the washing machine. When the color-fastness degree is relatively high, the execution duration of the crushing operation can be relatively long, so as to increase the contact area between the pigment treatment agent and the pigment and improve the pigment treatment efficiency. When the color-fastness degree is relatively low, the execution duration of the crushing operation can be relatively short to avoid waste of electric power resources.

[0125] In one embodiment, as Figure 4 shown, the color-fastness coefficient parameter of the above-mentioned target clothes can be determined in advance through the following steps.

[0126] In step 401, during the process of filling water based on the water inlet instruction, determine the first turbidity of the water entering the inner drum of the washing machine.

[0127] In step 402, when it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height of the target clothes in the inner drum of the washing machine, stop filling water.

[0128] The target clothes can be, for example, dark-colored clothes.

[0129] Optionally, it can be stopped filling water when it is detected that the water in the inner drum of the washing machine basically covers the target clothes.

[0130] In step 403, stand for the second duration, and during the process of draining the water in the inner drum of the washing machine, determine the second turbidity of the drained water.

[0131] During the second duration of standing, the pigment of the target clothes will dissolve in the water.

[0132] In step 404, based on the first turbidity and the second turbidity, determine the color-fastness coefficient parameter of the target clothes.

[0133] In this example, the difference between the second turbidity and the first turbidity can be used as the color-fastness coefficient parameter of the target clothes.

[0134] In the clothes washing method provided by the embodiments of the present disclosure, before the washing machine performs the clothes washing operation on the clothes put into the inner drum of the washing machine, it can first determine the color-fastness coefficient parameter of the target clothes, and then determine the quantity and state of the pigment treatment agent subsequently put into the inner drum of the washing machine based on the color-fastness coefficient parameter of the target clothes, which has high practicability.

[0135] In one embodiment, asFigure 5 As shown in the figure, for the above step 101, the step of putting the pigment treatment agent into the inner drum of the washing machine along with the water flow may specifically include the following steps:

[0136] In step 501, according to the first washing parameter, determine the first quantity of the pigment treatment agent put into the inner drum of the washing machine.

[0137] The first washing parameter is used to characterize the degree of easy dyeing of the clothes put into the inner drum of the washing machine, and the first quantity is proportional to the degree of easy dyeing of the clothes. That is, the higher the degree of easy dyeing of the clothes put into the inner drum of the washing machine, the larger the determined first quantity. The lower the degree of easy dyeing of the clothes put into the inner drum of the washing machine, the smaller the determined first quantity.

[0138] For the introduction of the first washing parameter, reference can be made to the description in the foregoing embodiments, and details are not described herein again.

[0139] In step 502, put the first quantity of the pigment treatment agent into the inner drum of the washing machine along with the water flow.

[0140] When the pigment treatment agent is a color master sheet, the first quantity of color master sheets can be put into the inner drum of the washing machine along with the water flow. When the pigment treatment agent is a hydroxyl group, the first quantity of hydroxyl groups can be put into the inner drum of the washing machine along with the water flow.

[0141] In the clothes washing method provided by the embodiments of the present disclosure, the washing machine can determine the quantity of the pigment treatment agent put into the inner drum of the washing machine based on the degree of easy dyeing of the clothes put into the inner drum of the washing machine. When the degree of easy dyeing of the clothes put into the inner drum of the washing machine is relatively high, the quantity of the pigment treatment agent put into the inner drum of the washing machine can be relatively large, so as to fully treat the pigment and reduce the probability of the clothes being dyed. When the degree of easy dyeing of the clothes put into the inner drum of the washing machine is relatively low, the quantity of the pigment treatment agent put into the inner drum of the washing machine can be relatively small, so as to avoid the situation that too much pigment treatment agent damages the clothes.

[0142] In one embodiment, when the pigment treatment agent is a hydroxyl group, as Figure 6 shown in the figure, for the above step 101, the step of putting the pigment treatment agent into the inner drum of the washing machine along with the water flow may specifically include the following steps:

[0143] In step 601, during the water inlet process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, put the hydroxyl group into the inner drum of the washing machine along with the water flow.

[0144] Exemplarily, when it is detected that the water level in the inner tub of the washing machine is flush with the horizontal height of the lower edge of the target clothing, it is considered that the water level in the inner tub of the washing machine is within the horizontal height range of the target clothing. At this time, the hydroxyl groups can be introduced into the inner tub of the washing machine along with the water flow.

[0145] In the clothing washing method provided by the embodiments of the present disclosure, when the washing machine detects that the water level in the inner tub of the washing machine is within the horizontal height range of the target clothing, the hydroxyl groups can be introduced into the inner tub of the washing machine along with the water flow, so that most of the hydroxyl groups are distributed in the spatial position where the target clothing is located, specifically decomposing the pigments generated by the target clothing and improving the pigment decomposition efficiency.

[0146] In one embodiment, as Figure 7 shown, for the AC electric field turned on within the horizontal height range of the target clothing mentioned in the foregoing embodiment, the following steps may be specifically included:

[0147] In step 701, determine the target electric field strength of the AC electric field based on the second washing parameter.

[0148] The second washing parameter is used to characterize the degree of easy staining of the clothing put into the inner tub of the washing machine, and the target electric field strength is proportional to the degree of easy staining of the clothing. That is, the higher the degree of easy staining of the clothing put into the inner tub of the washing machine, the greater the determined target electric field strength of the AC electric field. The lower the degree of easy staining of the clothing put into the inner tub of the washing machine, the smaller the determined target electric field strength of the AC electric field.

[0149] Optionally, the second washing parameter may include at least one of the following:

[0150] The clothing quantity parameter used to characterize the quantity of the clothing put into the inner tub of the washing machine, the easy staining coefficient parameter used to characterize the degree of easy staining of the target clothing, and the water level height corresponding to the currently set clothing washing operation.

[0151] The more the quantity of the clothing put into the inner tub of the washing machine, the more likely it is to have a staining situation, and the higher the degree of easy staining of the clothing in the inner tub of the washing machine. The larger the easy staining coefficient parameter of the target clothing, the more easily the target clothing fades, and the higher the degree of easy staining of the clothing in the inner tub of the washing machine. Since during the washing process, the clothing put into the inner tub of the washing machine generally accounts for less than half of the total volume of the inner tub. Considering the actual situation of the currently widely used drum washing machine, the higher the water level height corresponding to the currently set clothing washing operation, the greater the possibility that the clothing in the inner tub of the washing machine comes into contact with each other, and the higher the degree of easy staining of the clothing in the inner tub of the washing machine.

[0152] In step 702, turn on the AC electric field with the electric field strength being the target electric field strength.

[0153] In the clothes washing method provided by an embodiment of the present disclosure, the washing machine can determine the target electric field strength of the alternating current electric field based on the degree of color staining of the clothes in the inner drum of the washing machine. The higher the degree of color staining of the clothes, the greater the determined target electric field strength of the alternating current electric field, and the better the hydroxyl groups can be bound within the horizontal height range where the target clothes are located, so that the hydroxyl groups can specifically decompose the pigments generated for the target clothes and improve the pigment decomposition efficiency.

[0154] In one embodiment, as Figure 8 shown, after turning on the alternating current electric field within the horizontal height range where the target clothes are located mentioned in the foregoing embodiment, the clothes washing method may further include the following steps:

[0155] In step 801, determine the frequency of alternating the positive and negative poles of the electric field of the alternating current electric field according to the color staining coefficient parameter of the target clothes.

[0156] The color staining coefficient parameter is used to characterize the degree of color staining of the target clothes. The determination process of the color staining coefficient parameter for the target clothes can be referred to the introduction in the foregoing embodiment and will not be elaborated here.

[0157] The unit of the frequency of alternating the positive and negative poles of the electric field is hertz (Hz), which is used to represent the number of times of alternating the positive and negative poles of the electric field per second. For example, when the frequency of alternating the positive and negative poles of the electric field is 1 hertz, it means that the positive and negative poles of the electric field are exchanged 1 time within one second, and when the frequency of alternating the positive and negative poles of the electric field is 10 hertz, it means that the positive and negative poles of the electric field are exchanged 10 times within one second.

[0158] Optionally, the frequency of alternating the positive and negative poles of the electric field is proportional to the degree of color staining of the target clothes. That is, the greater the degree of color staining of the target clothes, the greater the determined frequency of alternating the positive and negative poles of the electric field. The smaller the degree of color staining of the target clothes, the smaller the determined frequency of alternating the positive and negative poles of the electric field.

[0159] In step 802, adjust the positive and negative poles of the electric field of the alternating current electric field according to the frequency of alternating the positive and negative poles of the electric field.

[0160] Exemplarily, in one adjustment process, it can be adjusted from Figure 9 the positive and negative poles of the electric field with the forward binding of hydroxyl groups shown in Figure 10 to the positive and negative poles of the electric field with the reverse binding of hydroxyl groups shown in

[0161] In the clothes washing method provided by an embodiment of the present disclosure, the washing machine can determine the frequency of alternating the positive and negative poles of the electric field based on the color staining coefficient parameter of the target clothes. When the color staining coefficient parameter of the target clothes is larger, the determined frequency of alternating the positive and negative poles of the electric field can be larger, so that the hydroxyl groups continuously move left and right in the inner drum of the washing machine, better "scour" the clothes, and accelerate the pigment decomposition.

[0162] In one embodiment, as Figure 11 shown, for step 102 above, after standing for the first duration, performing the clothing washing operation may specifically include the following steps:

[0163] In step 1101, after standing for the first duration, drain the water in the inner drum of the washing machine.

[0164] In step 1102, determine the third turbidity of the drained water.

[0165] In step 1103, when the third turbidity is lower than or equal to a preset value, perform the clothing washing operation.

[0166] When it is determined that the third turbidity of the drained water is lower than or equal to the preset value, it indicates that the protection against fading of the target clothing this time has been successful. Therefore, the subsequent clothing washing operation can be performed.

[0167] Optionally, when the third turbidity is higher than the preset value, re - execute the step of putting the pigment treatment agent into the inner drum of the washing machine along with the water flow and then controlling the pigment treatment agent to be distributed within the horizontal height range of the target clothing in the inner drum of the washing machine until it is determined that the third turbidity of the drained water is lower than or equal to the preset value, and then perform the subsequent clothing washing operation, so as to ensure the success of the protection against fading of the target clothing this time, reduce the pigment generated by the target clothing during the subsequent clothing washing process, and reduce the probability of clothing staining.

[0168] In one embodiment, as Figure 12 shown, in the case of the Figure 11 shown process, the clothing washing method may further include the following steps:

[0169] In step 1201, during the water inlet process of the washing machine, determine the fourth turbidity of the water entering the inner drum of the washing machine.

[0170] In step 1202, according to the third turbidity and the fourth turbidity, determine the fading index of the target clothing during the clothing washing operation.

[0171] The fading index is used to characterize the fading situation of the clothing.

[0172] Optionally, the fading situation of the target clothing during the current clothing washing operation can be determined based on the difference between the aforementioned fourth turbidity and the third turbidity.

[0173] For example, when it is determined that the difference between the fourth turbidity and the third turbidity is greater than a preset value, it can be considered that the target clothing "seriously fades" during the current clothing washing operation. When it is determined that the difference between the fourth turbidity and the third turbidity is less than the preset value, it can be considered that the target clothing "slightly fades" during the current clothing washing operation. "Seriously fades" and "slightly fades" correspond to the aforementioned fading index.

[0174] For another example, the difference between the aforementioned fourth turbidity and the third turbidity can be directly used as the fading index representing the fading situation of the target clothing during the current clothing washing operation. Specifically, the larger the difference, the more seriously the target clothing fades during the current clothing washing operation.

[0175] In the clothing washing method provided by the embodiments of the present disclosure, the washing machine can determine the fading situation of the target clothing during the current clothing washing operation based on the fourth turbidity of the water entering the inner drum of the washing machine and the third turbidity of the water discharged after standing for the first duration, with a relatively high degree of intelligence.

[0176] In one embodiment, as Figure 13 shown, in the case of the process shown in Figure 12 the clothing washing method may further include the following steps:

[0177] In step 1301, the washing machine establishes a communication connection with the terminal device.

[0178] The communication connection can be a BLE (Bluetooth Low Energy) connection, a WiFi connection, etc.

[0179] In step 1302, through the communication connection, the fading index of the target clothing during the clothing washing operation is sent to the terminal device.

[0180] Continuing with the previous example, the washing machine can send the obtained fading index "seriously fades" or "slightly fades" to the terminal device (such as the user's mobile phone, tablet, etc.) through the established communication connection. Or, the washing machine can send the difference between the obtained fourth turbidity and the third turbidity as the fading index to the terminal device through the established communication connection.

[0181] In the clothing washing method provided by the embodiments of the present disclosure, the washing machine can send the obtained fading index of the target clothing to the terminal device through the communication connection established with the terminal device, so as to facilitate the user to view the fading situation of the target clothing during the current washing operation through the terminal device, bringing a better user experience.

[0182] Figure 14FIG. 0 is a flowchart of another method for washing clothes according to an exemplary embodiment of the present disclosure. In this example, a complete description of the method for washing clothes provided by the present disclosure will be given. In this embodiment, the same steps as those in the foregoing embodiment will be briefly described and will not be elaborated again. For details, reference may be made to the relevant descriptions of any of the foregoing embodiments. As Figure 14 shown, the method of this exemplary embodiment may include the following steps:

[0183] In step 1401, determine the parameter of the color staining coefficient of the target clothes in the inner drum of the washing machine.

[0184] The target clothes are the clothes that meet the preset pigment generation condition, and the color staining coefficient parameter is used to characterize the degree of color staining of the target clothes.

[0185] In practical applications, when the user opens the door of the washing machine, the washing machine can detect a change in the voltage signal. At this time, the steps of this solution can be executed.

[0186] Specifically, when the user continuously puts clothes into the inner drum of the washing machine, the washing machine can record the colors of the clothes put into the washing machine through a camera (or an optical flow sensor, a chromaticity sensor, a photosensitive sensor, etc.). For example, the color sequence of the clothes put in can be specifically recorded, such as the first piece is white, the second piece is black, the third piece is white, etc.

[0187] At the same time, when the user continuously puts clothes into the inner drum of the washing machine, a position determining device located in the washing machine (such as a sonic sensor, a laser sensor, an electromagnetic wave sensor, etc.) can record the horizontal height where each piece of clothing is located after being put in. When no clothes are put in, the distance of the position determining device relative to the bottom of the inner drum of the washing machine is H0. After the first white piece of clothing is put in, the distance of the position determining device relative to the first piece of clothing is reduced to H1, that is, the relative horizontal height of the first piece of clothing is H0 - H1. Similarly, the relative horizontal heights of the second and third pieces of clothing can be obtained.

[0188] In this example, the second black piece of clothing mentioned above can be determined as the target clothes. H0 - H1 is the horizontal height where the lower edge of the target clothes is located. H0 - H2 is the horizontal height where the upper edge of the target clothes is located. H0 - H2 to H0 - H1 is the horizontal height range where the target clothes are located.

[0189] Further, the washing machine can determine the parameter of the color staining coefficient of the target clothes based on the determined target clothes and the horizontal height range where the target clothes are located. For the specific process, reference may be made to the relevant introduction in the foregoing embodiment, and details are not repeated here.

[0190] In step 1402, according to the clothing quantity parameter, the washing duration parameter, and the color fastness coefficient parameter of the target clothing, determine the first quantity of color masterbatch, the second quantity of hydroxyl groups, and the second duration for performing the crushing operation on the color masterbatch to be put into the inner drum of the washing machine.

[0191] The clothing quantity parameter is used to represent the quantity of clothing put into the inner drum of the washing machine, and the washing duration parameter is used to represent the execution duration of the clothing washing operation.

[0192] In step 1403, when performing the water inlet operation on the washing machine, determine the fourth turbidity of the water entering the inner drum of the washing machine, and put the first quantity of color masterbatch obtained after performing the crushing operation for the second duration into the inner drum of the washing machine along with the water flow.

[0193] In step 1404, when it is detected that the water level in the inner drum of the washing machine is flush with the horizontal height of the lower edge of the target clothing, put the second quantity of hydroxyl groups into the inner drum of the washing machine along with the water flow.

[0194] In step 1405, when it is detected that the water level in the inner drum of the washing machine is flush with the horizontal height of the upper edge of the target clothing, stop the water inlet operation.

[0195] In step 1406, turn on the alternating current electric field within the horizontal height range where the target clothing is located, so as to control the distribution of the hydroxyl groups within the horizontal height range where the target clothing is located through the alternating current electric field.

[0196] In practical applications, the target electric field strength of the alternating current electric field can be determined based on the second washing parameter first, and then the alternating current electric field with the target electric field strength is turned on.

[0197] The second washing parameter is used to represent the color fastness degree of the clothing put into the inner drum of the washing machine, and the target electric field strength is proportional to the color fastness degree of the clothing.

[0198] In step 1407, let it stand for the first duration, and determine the third turbidity of the water discharged during the process of discharging the water in the inner drum of the washing machine.

[0199] During this standing process, the washing machine can determine the alternating current electric field positive and negative electrode exchange frequency according to the color fastness coefficient parameter of the target clothing, and adjust the positive and negative electrodes of the alternating current electric field according to the determined alternating current electric field positive and negative electrode exchange frequency.

[0200] The color fastness coefficient parameter is used to represent the color fastness degree of the target clothing, and the alternating current electric field positive and negative electrode exchange frequency is proportional to the color fastness degree of the target clothing.

[0201] In step 1408, it is determined whether the third turbidity is lower than or equal to a preset value.

[0202] When it is determined that the third turbidity is lower than or equal to the preset value, step 1409 is executed;

[0203] When it is determined that the third turbidity is higher than the preset value, step 1403 is executed.

[0204] In step 1409, a clothing washing operation is performed.

[0205] The clothing washing operation is used to wash the clothes put into the inner drum of the washing machine.

[0206] In step 1410, according to the third turbidity and the fourth turbidity, a fading index of the target clothing during the clothing washing operation is determined.

[0207] The fading index is used to characterize the fading situation of the clothes.

[0208] In step 1411, through the communication connection established with the terminal device, the fading index of the target clothing during the clothing washing operation is sent to the terminal device.

[0209] It should be noted that in the foregoing embodiments, the target clothing is described as one piece. In actual applications, when there are multiple target clothes, the method of this embodiment is still applicable.

[0210] In the clothing washing method provided by the embodiments of the present disclosure, after the pigment treatment agent is put into the inner drum of the washing machine along with the water flow, the distribution of the pigment treatment agent in the inner drum of the washing machine can be controlled within the range of the horizontal height where the target clothing is located. The pigment treatment agent is used to treat the pigment generated by the clothes, and the target clothing is the clothing that meets the preset pigment generation conditions. Then, after standing for the first duration, a clothing washing operation is performed. The clothing washing operation is used to wash the clothes put into the inner drum of the washing machine. Controlling the distribution of the pigment treatment agent within the range of the horizontal height where the target clothing is located in the inner drum of the washing machine can enable the pigment treatment agent to specifically treat the pigment generated by the target clothing and improve the pigment treatment efficiency.

[0211] For the foregoing method embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that the present disclosure is not limited by the described action sequence, because according to the present disclosure, certain steps can be performed in other sequences or simultaneously.

[0212] Secondly, those skilled in the art should also know that the embodiments described in the specification are all optional embodiments, and the actions and modules involved are not necessarily essential to the present disclosure.

[0213] Corresponding to the foregoing embodiments of the method for implementing an application function, the present disclosure also provides embodiments of an apparatus for implementing an application function and a corresponding terminal.

[0214] Figure 15 FIG. 5 is a schematic structural diagram of a clothing washing apparatus shown by the present disclosure according to an exemplary embodiment. As Figure 15 shown, the clothing washing apparatus may include:

[0215] A control module 151, configured to control the pigment treatment agent to be distributed within a horizontal height range where the target clothing is located in the inner drum of the washing machine after the pigment treatment agent is put into the inner drum of the washing machine along with the water flow; the pigment treatment agent is used to treat the pigment generated by the clothing, and the target clothing is the clothing that meets the preset pigment generation condition.

[0216] A clothing washing module 152, configured to perform a clothing washing operation after standing for a first period of time; the clothing washing operation is used to wash the clothing put into the inner drum of the washing machine.

[0217] Optionally, the pigment treatment agent includes: a pigment absorbent and / or a pigment decomposer.

[0218] The pigment absorbent is used to absorb the pigment generated by the clothing, and the pigment decomposer is used to decompose the pigment generated by the clothing.

[0219] Optionally, when the control module 151 is configured to put the pigment treatment agent into the inner drum of the washing machine along with the water flow, it includes:

[0220] Performing a smashing operation on the pigment treatment agent.

[0221] Putting the smashed pigment treatment agent into the inner drum of the washing machine along with the water flow.

[0222] Optionally, when the control module 151 is configured to perform a smashing operation on the pigment treatment agent, it includes:

[0223] Determining a second period of time for performing the smashing operation according to a first washing parameter; the first washing parameter is used to characterize the degree of easy staining of the clothing put into the inner drum of the washing machine, and the second period of time is proportional to the degree of easy staining of the clothing.

[0224] Performing the smashing operation on the pigment treatment agent for the second period of time.

[0225] Optionally, when the control module 151 is configured to put the pigment treatment agent into the inner drum of the washing machine along with the water flow, it includes:

[0226] Determine a first quantity of the pigment treatment agent to be put into the inner drum of the washing machine according to the first washing parameter; the first washing parameter is used to characterize the degree of easy dyeing of the clothes put into the inner drum of the washing machine, and the first quantity is proportional to the degree of easy dyeing of the clothes.

[0227] Put the first quantity of the pigment treatment agent into the inner drum of the washing machine along with the water flow.

[0228] Optionally, the first washing parameter includes at least one of the following:

[0229] A clothing quantity parameter used to characterize the quantity of clothes put into the inner drum of the washing machine.

[0230] An easy dyeing coefficient parameter used to characterize the degree of easy dyeing of the target clothes.

[0231] A washing duration parameter used to characterize the execution duration of the clothing washing operation.

[0232] Optionally, the easy dyeing coefficient parameter of the target clothes is determined in advance based on the following method:

[0233] During the process of filling water based on the water inlet instruction, determine the first turbidity of the water entering the inner drum of the washing machine.

[0234] When it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, stop filling water.

[0235] Let it stand for a second duration, and during the process of draining the water in the inner drum of the washing machine, determine the second turbidity of the drained water.

[0236] Based on the first turbidity and the second turbidity, determine the easy dyeing coefficient parameter of the target clothes.

[0237] Optionally, the pigment treatment agent is a color masterbatch.

[0238] When the control module 151 is used to control the pigment treatment agent to be distributed within the range of the horizontal height where the target clothes in the inner drum of the washing machine are located, it includes:

[0239] During the water inlet process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, stop filling water.

[0240] Optionally, the pigment treatment agent is a hydroxyl group.

[0241] When the control module 151 is used to put the pigment treatment agent into the inner drum of the washing machine along with the water flow, it includes:

[0242] During the water inlet process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the range of the horizontal height where the target clothes are located, the hydroxyl radicals are put into the inner drum of the washing machine along with the water flow.

[0243] Optionally, an alternating current electric field is provided at the outer drum of the washing machine, and the pigment treatment agent is hydroxyl radicals;

[0244] When the control module 151 is used to control the distribution of the pigment treatment agent within the range of the horizontal height where the target clothes in the inner drum of the washing machine are located, it includes:

[0245] Turn on the alternating current electric field within the range of the horizontal height where the target clothes are located, so as to control the distribution of the hydroxyl radicals within the range of the horizontal height where the target clothes are located through the alternating current electric field.

[0246] Optionally, when the control module 151 is used to turn on the alternating current electric field within the range of the horizontal height where the target clothes are located, it includes:

[0247] Determine the target electric field intensity of the alternating current electric field based on the second washing parameter; the second washing parameter is used to characterize the degree of easy dyeing of the clothes put into the inner drum of the washing machine, and the target electric field intensity is proportional to the degree of easy dyeing of the clothes.

[0248] Turn on the alternating current electric field with the target electric field intensity.

[0249] Optionally, on the basis of the Figure 15 shown modules, the clothes washing device may further include the following modules:

[0250] An exchange frequency confirmation module, configured to determine the electric field positive and negative pole exchange frequency of the alternating current electric field according to the easy dyeing coefficient parameter of the target clothes; the easy dyeing coefficient parameter is used to characterize the degree of easy dyeing of the target clothes.

[0251] An electric field positive and negative pole adjustment module, configured to adjust the electric field positive and negative poles of the alternating current electric field according to the electric field positive and negative pole exchange frequency.

[0252] Optionally, on the basis of the Figure 15 shown modules, the clothes washing device may further include the following modules:

[0253] A drainage module, configured to drain the water in the inner drum of the washing machine after standing for the first time period.

[0254] A first turbidity determination module, configured to determine the third turbidity of the drained water.

[0255] A washing operation execution module, configured to execute the clothes washing operation when the third turbidity is lower than or equal to a preset value.

[0256] Optionally, based on the Figure 15 modules shown, the clothing washing device may further include the following modules:

[0257] An execution module, configured to, when the third turbidity is higher than the preset value, re-execute the step of putting the pigment treatment agent into the inner drum of the washing machine along with the water flow, and then control the pigment treatment agent to be distributed within the range of the horizontal height where the target clothing is located in the inner drum of the washing machine.

[0258] Optionally, based on the Figure 15 modules shown, the clothing washing device may further include the following modules:

[0259] A second turbidity determination module, configured to determine the fourth turbidity of the water entering the inner drum of the washing machine during the water inlet process of the washing machine.

[0260] A fading index determination module, configured to determine the fading index of the target clothing during the clothing washing operation according to the third turbidity and the fourth turbidity; the fading index is used to characterize the fading condition of the clothing.

[0261] Optionally, based on the Figure 15 modules shown, the clothing washing device may further include the following modules:

[0262] A communication connection establishment module, configured to establish a communication connection between the washing machine and the terminal device.

[0263] A sending module, configured to send the fading index of the target clothing during the clothing washing operation to the terminal device through the communication connection.

[0264] For the device embodiments, since they basically correspond to the method embodiments, the relevant parts can be referred to the partial descriptions of the method embodiments. The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place, or may be distributed to multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the present disclosure solution. Those of ordinary skill in the art can understand and implement it without creative efforts.

[0265] In an embodiment of the present disclosure, there is also provided a computer-readable storage medium, on which a computer program is stored, and when the program is executed by a processor, it implements the steps of the clothing washing method in any embodiment of the present disclosure.

[0266] The non-transitory computer-readable storage medium may be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, etc.

[0267] In an embodiment of the present disclosure, a washing machine is further provided. As Figure 16 shown, the washing machine may include:

[0268] A control device 161, configured to control the pigment treatment agent to be distributed within a horizontal height range where the target clothing is located in the inner drum of the washing machine after the pigment treatment agent is put into the inner drum of the washing machine along with the water flow; the pigment treatment agent is used to treat the pigment generated by the clothing, and the target clothing is the clothing that meets the preset pigment generation conditions.

[0269] A clothing washing device 162, configured to perform a clothing washing operation after standing for a first period of time; the clothing washing operation is used to wash the clothing put into the inner drum of the washing machine.

[0270] A position determination device 163 installed in the clothing washing device, the position determination device 163 is configured to determine the horizontal height range where the target clothing is located in the inner drum of the washing machine. The position determination device may be, for example, an acoustic wave sensor, a laser sensor, an electromagnetic wave sensor, etc.

[0271] A first water turbidity detection device 164 installed at the water inlet pipe of the washing machine and a second water turbidity detection device 165 installed at the water outlet pipe of the washing machine. The first water turbidity detection device 164 is configured to detect the turbidity of the water entering the inner drum of the washing machine, and the second water turbidity detection device 165 is configured to detect the turbidity of the water discharged from the inner drum of the washing machine.

[0272] A pigment treatment agent crushing device 166 connected to the water inlet pipe of the washing machine. The pigment treatment agent crushing device 166 is configured to perform a crushing operation on the pigment treatment agent and put the crushed pigment treatment agent into the inner drum of the washing machine along with the water flow in the water inlet pipe.

[0273] A hydroxyl preparation device 167 connected to the water inlet pipe of the washing machine. The hydroxyl preparation device 167 is configured to perform electrolysis of water to obtain hydroxyl and put the hydroxyl into the inner drum of the washing machine along with the water flow in the water inlet pipe.

[0274] Those skilled in the art will readily conceive of other embodiments of the present disclosure after considering the specification and practicing the invention disclosed herein. The present disclosure is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include known common knowledge or conventional technical means in the technical field not disclosed in the present disclosure. The specification and examples are only to be considered as exemplary, and the true scope and spirit of the present disclosure are pointed out by the following claims.

[0275] It should be understood that the present disclosure is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.

Claims

1. A method for washing clothes, characterized in that: The method is applied to a washing machine, and comprises: After a pigment treatment agent is introduced into the inner drum of a washing machine along with water, the pigment treatment agent is controlled to be distributed within a height range within the inner drum of the washing machine where target clothing is located; the pigment treatment agent is used to treat the pigment produced by clothing, wherein the target clothing is clothing that meets a preset pigment production condition; After standing still for a first period of time, a clothes washing operation is performed; the clothes washing operation is used to wash the clothes put into the inner drum of the washing machine.

2. The method according to claim 1, characterized in that The pigment treatment agent includes: a pigment absorber and / or a pigment decomposer; The pigment absorber is used to absorb the pigment produced by clothes, and the pigment decomposer is used to decompose the pigment produced by clothes.

3. The method according to claim 1, characterized in that The method of adding the pigment treatment agent into the inner drum of the washing machine along with the water flow comprises: performing a mashing operation on the pigment treatment agent; The crushed pigment treatment agent is put into the inner drum of the washing machine along with water.

4. The method according to claim 3, characterized in that The step of crushing the pigment treatment agent comprises: Determining a second duration for performing the mashing operation based on a first washing parameter; wherein the first washing parameter is used to characterize the degree of staining of the clothes put into the inner drum of the washing machine, and the second duration is proportional to the degree of staining of the clothes; The pounding operation is performed on the pigment processing agent for the second time period.

5. The method according to claim 1, wherein The method of adding the pigment treatment agent into the inner drum of the washing machine along with the water flow comprises: Determining a first amount of the pigment treatment agent to be put into the inner drum of the washing machine according to a first washing parameter; the first washing parameter is used to represent the susceptibility of the clothes put into the inner drum of the washing machine to dyeing, and the first amount is proportional to the susceptibility of the clothes to dyeing; A first amount of the pigment treatment agent is added into the inner drum of the washing machine along with the water flow.

6. The method according to claim 4 or 5, characterized in that The first washing parameter includes at least one of the following: A laundry quantity parameter for representing the amount of laundry put into the inner drum of the washing machine; A dyeing coefficient parameter for characterizing the dyeing ease of the target clothing; A washing duration parameter used to characterize the execution duration of the laundry washing operation.

7. The method according to claim 6, characterized in that The dyeing coefficient parameter of the target clothing is predetermined based on the following method: During the water inlet process based on the water inlet instruction, determining a first turbidity of water entering the inner drum of the washing machine; When it is detected that the water level in the inner drum of the washing machine is within the height range of the target clothes in the inner drum of the washing machine, the water supply is stopped; During the process of draining the water from the inner drum of the washing machine after standing for a second period of time, determining a second turbidity of the drained water; Based on the first turbidity and the second turbidity, a dyeing ease coefficient parameter of the target clothing is determined.

8. The method according to claim 1, characterized in that The pigment processing agent is a color masterbatch; The controlling the pigment treatment agent to be distributed within a horizontal height range where target clothing is located in the inner drum of the washing machine includes: During the water intake process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the horizontal height range of the target clothes, the water intake is stopped.

9. The method according to claim 1, characterized in that The pigment treatment agent is a hydroxyl group; The method of adding the pigment treatment agent into the inner drum of the washing machine along with the water flow comprises: During the water intake process of the washing machine, when it is detected that the water level in the inner drum of the washing machine is within the horizontal height range of the target clothes, the hydroxyl radical is injected into the inner drum of the washing machine along with the water flow.

10. The method according to claim 1, characterized in that An AC electric field is provided at the outer drum of the washing machine, and the pigment treatment agent is a hydroxyl group; The controlling the pigment treatment agent to be distributed within a horizontal height range where target clothing is located in the inner drum of the washing machine includes: An alternating current electric field is turned on within the horizontal height range where the target clothing is located, so as to control the hydroxyl groups to be distributed within the horizontal height range where the target clothing is located through the alternating current electric field.

11. The method according to claim 10, characterized in that The step of turning on the AC electric field within the horizontal height range where the target clothing is located includes: determining a target electric field strength of the AC electric field based on a second washing parameter; the second washing parameter is used to represent the susceptibility of the clothes put into the inner drum of the washing machine to dyeing, and the target electric field strength is proportional to the susceptibility of the clothes to dyeing; An alternating current electric field having a target electric field strength is turned on.

12. The method according to claim 10, characterized in that After turning on the AC electric field within the horizontal height range where the target clothing is located, the method further includes: Determining the frequency of the alternating current electric field's positive and negative poles according to a dyeing coefficient parameter of the target clothing; the dyeing coefficient parameter is used to characterize the degree of dyeing ease of the target clothing; The positive and negative poles of the alternating electric field are adjusted according to the frequency of the electric field positive and negative pole swapping.

13. The method according to claim 1, wherein After the first standing time, performing a laundry washing operation includes: After standing for the first period of time, draining the water from the inner drum of the washing machine; Determine the third turbidity of the discharged water; When the third turbidity is lower than or equal to a preset value, the laundry washing operation is performed.

14. The method according to claim 13, characterized in that The method further comprises: When the third turbidity is higher than the preset value, the step of adding the pigment treatment agent into the inner drum of the washing machine along with the water flow and then controlling the pigment treatment agent to be distributed within the horizontal height range of the target clothes in the inner drum of the washing machine is executed again.

15. The method according to claim 13, characterized in that The method further comprises: During the water intake process of the washing machine, determining a fourth turbidity of water entering the inner drum of the washing machine; The fading index of the target laundry during the laundry washing operation is determined according to the third turbidity and the fourth turbidity; the fading index is used to characterize the fading condition of the laundry.

16. The method according to claim 15, characterized in that The method further comprises: The washing machine establishes a communication connection with the terminal device; The fading index of the target clothing during the clothing washing operation is sent to the terminal device via the communication connection.

17. A clothes washing device, characterized in that: The device is applied to a washing machine, and comprises: a control module for controlling the distribution of a pigment treatment agent within a height range within which target clothing is located after the pigment treatment agent is introduced into the inner drum of the washing machine along with the water flow; the pigment treatment agent is used to treat pigment produced by clothing, wherein the target clothing is clothing that meets a preset pigment production condition; The clothing washing module is used to perform a clothing washing operation after standing still for a first period of time; the clothing washing operation is used to wash the clothing put into the inner drum of the washing machine.

18. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the steps of the method according to any one of claims 1 to 16 are implemented.

19. A washing machine, characterized in that: The washing machine comprises: A control device for controlling the distribution of a pigment treatment agent within a height range within which target clothing is located in the inner drum of the washing machine after the pigment treatment agent is introduced into the inner drum of the washing machine along with the water flow; the pigment treatment agent is used to treat pigment produced by clothing, wherein the target clothing is clothing that meets a preset pigment production condition; The clothes washing device is used to perform a clothes washing operation after being stationary for a first period of time; the clothes washing operation is used to wash the clothes put into the inner drum of the washing machine.

20. The washing machine according to claim 19, wherein The washing machine further comprises: a position determining device installed in the clothes washing device; The position determining device is used to determine the horizontal height range of the target clothes in the inner drum of the washing machine.

21. The washing machine according to claim 19, wherein The washing machine further comprises: a first water turbidity detection device installed at the water inlet pipe of the washing machine and a second water turbidity detection device installed at the water outlet pipe of the washing machine; The first water turbidity detection device is used to detect the turbidity of water entering the inner drum of the washing machine; The second water turbidity detection device is used to detect the turbidity of the water discharged from the inner drum of the washing machine.

22. The washing machine according to claim 19, wherein The washing machine further comprises: a pigment treatment agent crushing device connected to the water inlet pipe of the washing machine; The pigment treatment agent crushing device is used to crush the pigment treatment agent and put the crushed pigment treatment agent into the inner drum of the washing machine along with the water flow in the water inlet pipe.

23. The washing machine according to claim 19, wherein The washing machine further comprises: a hydroxyl group producing device connected to a water inlet pipe of the washing machine; The hydroxyl group preparation device is used to perform water electrolysis operation to obtain hydroxyl groups, and to inject the hydroxyl groups into the inner drum of the washing machine along with the water flow in the water inlet pipe.