Clothes treatment device and detergent putting method thereof, electronic equipment and storage medium
By equipping the garment processing device with quantitative and metering dispensing devices, and combining the detergent target dispensing information with garment parameters, the device enables precise dispensing of various detergents, solving the problem of dispensing different needs that existing technologies cannot meet, and improving washing effect and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- NANJING YIMU INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2024-10-22
- Publication Date
- 2026-04-24
AI Technical Summary
Existing detergent dispensing systems cannot meet the precise dispensing needs of different laundry volumes, different machine models, and different consumer habits, resulting in poor washing performance.
The garment processing unit is equipped with a quantitative dispensing device and a metering dispensing device. By acquiring the target detergent dispensing information and combining it with garment parameters and washing programs, it accurately determines the amount and type of quantitative and metering detergent products to be dispensed, thereby achieving intelligent dispensing of various detergents.
It enables precise detergent dispensing based on different washing needs, meets users' intelligent requirements, and improves washing results and efficiency.
Smart Images

Figure CN121915580A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of clothing handling device control technology, and particularly to clothing handling devices and their detergent dispensing methods, electronic devices and storage media. Background Technology
[0002] As an essential home appliance in modern households, washing machines provide us with convenient laundry services. With the development of technology, washing machines are constantly being updated and upgraded, and one important improvement is the automatic detergent dispensing function.
[0003] Typically, the automatic detergent dispensing function of a washing machine means that the machine can automatically dispense the appropriate amount of laundry detergent or liquid based on set parameters, without manual intervention. This way, users only need to select the corresponding washing program, and the washing machine will automatically dispense the appropriate laundry products, greatly improving the convenience and efficiency of laundry.
[0004] With the development of technology, the types of laundry products that play an important role in the washing process are also increasing. In addition to regular liquid detergents, there are also laundry pods or similar small packaged detergent products designed for machine washing. These laundry products consist of a soluble outer membrane that encapsulates a certain amount of laundry essence, and users can choose the amount to add according to their washing needs.
[0005] In related technologies, the dispensing function of laundry detergent pods or similar small-packaged detergent products is relatively simple, only enabling the individual dispensing of these products. Laundry detergent pods are precise quantitative products, and in actual use, when faced with different needs such as different amounts of laundry, different washing machine models, and different consumer habits, these quantitative detergent products alone cannot achieve the precise dispensing of detergent required for different washing needs. Therefore, they cannot meet users' intelligent detergent dispensing needs and cannot guarantee the washing effect of the washing machine. Summary of the Invention
[0006] To achieve the above-mentioned objectives and other advantages of the present invention, a first objective of the present invention is to provide a detergent dispensing method for a laundry treatment device, wherein the laundry treatment device is equipped with a quantitative dispensing device and a metering dispensing device, the quantitative dispensing device being used to dispense a quantitative amount of detergent product, and the metering dispensing device being used to dispense a metered amount of detergent product, comprising the following steps:
[0007] Obtain detergent target delivery information;
[0008] The type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device are determined by the detergent target dispensing information.
[0009] Furthermore, prior to the step of obtaining the detergent target dispensing information, the method further includes:
[0010] Obtain the washing program and garment parameters;
[0011] The target detergent dosage information is determined by the washing procedure and the clothing parameters.
[0012] Furthermore, the clothing parameters include one or more of the following: clothing weight, degree of soiling, clothing material, and clothing color;
[0013] The detergent target delivery information includes several detergent target types and associated detergent target delivery quantities.
[0014] Furthermore, the step of determining the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device respectively based on the detergent target dispensing information includes:
[0015] The quantity dispensed by the quantitative dispensing device, the type of replenishment and the amount of replenishment by the metering dispensing device are determined by the target detergent type and the target detergent dosage.
[0016] Furthermore, the steps of determining the dispensing quantity of the metering device, the replenishment type, and the replenishment amount of the metering device based on the target detergent type and the target detergent dosage include:
[0017] Obtain product information of the quantitative detergent product loaded in the quantitative dispensing device;
[0018] The target type of detergent, the target dosage of detergent, and the product information of the quantitative detergent product are compared.
[0019] Based on the comparison results, determine the quantity of the quantitative detergent product to be added, the type of detergent to be added, and the amount to be added.
[0020] Furthermore, the steps of determining the dispensing quantity of the metering device, the replenishment type, and the replenishment amount of the metering device based on the target detergent type and the target detergent dosage also include:
[0021] Obtain product information of the metering washing products loaded in the metering dispensing device;
[0022] Based on the type and amount of detergent to be added, and in conjunction with the product information of the metered detergent product, the dosage of the metered detergent product is determined.
[0023] Furthermore, the product information includes several detergent types and their corresponding concentrations.
[0024] Further, the step of comparing the target detergent type, the target detergent dosage, and the product information of the quantitative detergent product includes:
[0025] Determine whether the detergent type of the quantitative washing product includes all target detergent types to determine the type and amount of detergent to be added;
[0026] The maximum integer number of pre-mixed detergent products to be added and the type and amount of detergent to be added are calculated based on the target dosage of the detergent and the concentration of each detergent in the pre-mixed detergent product.
[0027] Furthermore, the step of determining the dosage of the metered detergent product based on the type and amount of detergent to be added, combined with the product information of the metered detergent product, includes:
[0028] Determine whether the detergent type of the metered washing product includes the type of detergent that needs to be replenished;
[0029] If the type of detergent that needs to be replenished is included, the dosage of the metered washing product is calculated based on the replenishment amount and the concentration of detergent in the metered washing product.
[0030] Furthermore, it also includes the following steps:
[0031] If the type of detergent that needs to be replenished is not included, a prompt will appear to add that type of detergent.
[0032] A second objective of this invention is to provide a garment processing apparatus that utilizes the aforementioned method, comprising a quantitative dispensing device and a metering dispensing device, wherein the quantitative dispensing device is used to dispense a quantitative amount of laundry product, and the metering dispensing device is used to dispense a metering amount of laundry product.
[0033] A third object of the present invention is to provide an electronic device comprising: a memory having program code stored thereon; and a processor connected to the memory, wherein the above-described method is implemented when the program code is executed by the processor.
[0034] A fourth objective of this invention is to provide a computer-readable storage medium having program instructions stored thereon, which, when executed, implement the method described above.
[0035] Compared with the prior art, the beneficial effects of the present invention are:
[0036] This invention provides a garment processing device and its detergent dispensing method, electronic equipment, and storage medium. The garment processing device is equipped with a quantitative dispensing device and a metering dispensing device. The quantitative dispensing device is used to dispense quantitative detergent products, and the metering dispensing device is used to dispense metered detergent products. It acquires detergent target dispensing information and determines the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device, respectively, through the detergent target dispensing information. By combining the dispensing of quantitative detergent products with the dispensing of metered detergent products, the garment processing device can accurately dispense the detergent required for different washing needs in actual use, meet the user's intelligent detergent dispensing needs, and ensure the washing effect of the garment processing device.
[0037] The above description is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it according to the contents of the specification, the preferred embodiments of the present invention are described in detail below with reference to the accompanying drawings. Specific embodiments of the present invention are given in detail below with reference to the accompanying drawings. Attached Figure Description
[0038] The accompanying drawings, which are included to provide a further understanding of the invention and form part of this application, illustrate exemplary embodiments of the invention and, together with their description, serve to explain the invention and do not constitute an undue limitation thereof. In the drawings:
[0039] Figure 1 This is a flowchart of the detergent dispensing method of the clothing treatment device in Example 1;
[0040] Figure 2 The flowchart for determining the target detergent dosage information in Example 1 is shown below;
[0041] Figure 3 The quantitative detergent product dispensing control process of Example 1 Figure 1 ;
[0042] Figure 4 The metering-type detergent product dispensing control process of Example 1 Figure 1 ;
[0043] Figure 5 The quantitative detergent product dosing control process of Example 1 Figure 2 ;
[0044] Figure 6 The metering-type detergent product dispensing control process of Example 1 Figure 2 ;
[0045] Figure 7 A schematic diagram of the garment processing device;
[0046] Figure 8 This is a schematic diagram of the electronic device in Example 3;
[0047] Figure 9 This is a schematic diagram of the storage medium in Example 4.
[0048] In the diagram: 1. Clothing processing device; 101. Quantitative dispensing device; 102. Metering dispensing device; 103. Outer cylinder; 20. Dispensing component. Detailed Implementation
[0049] The present invention will now be further described with reference to the accompanying drawings and specific embodiments. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.
[0050] Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this invention.
[0051] The drawing numbers in this application are only used to distinguish the steps in the scheme and are not used to limit the execution order of the steps. The specific execution order is as described in the specification.
[0052] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0053] To address the issue that existing detergent dispensing solutions have limited functionality for dispensing laundry pods or similar small-packaged detergents, only allowing for individual dispensing of these products and preventing the garment processing device from accurately dispensing the detergent required for different washing needs in actual use, Embodiment 1 of the present invention provides a detergent dispensing method for a garment processing device.
[0054] The clothing processing equipment can be configured as a washing machine, a washer-dryer combo, or other clothing processing equipment with washing function. For ease of description, this invention uses a drum washing machine as an example for illustration, and should not be construed as a limitation on the type of clothing processing equipment.
[0055] This method can be executed by the main control unit of the garment processing device. The main control unit can be implemented in the form of software and / or hardware, and is generally integrated into any electronic device with network communication capabilities, such as a mobile terminal, PC, or server.
[0056] Example 1
[0057] A method for dispensing detergent in a laundry treatment device, the laundry treatment device being equipped with a quantitative dispensing device and a metering dispensing device, the quantitative dispensing device being used to dispense a quantitative amount of detergent, and the metering dispensing device being used to dispense a metered amount of detergent, such as... Figure 1 As shown, it includes the following steps:
[0058] S1. Obtain detergent target dispensing information; this target dispensing information is used to indicate the dispensing of quantitative detergent products loaded in the quantitative dispensing device and the metering detergent products loaded in the metering dispensing device. The two are combined to achieve accurate dispensing of detergent required for the current washing needs in actual use of the clothing treatment device.
[0059] The term "quantitative detergent product" refers to detergent products that are individually packaged in fixed quantities. This means that the cleaning power of a single detergent product is fixed, and in actual use, it can only be dispensed whole, and it is not possible to dispense any amount (specifically, less than the amount of a single detergent product) according to actual washing needs.
[0060] The quantitative detergent product can be configured as laundry pods or similar small-package detergent products, as well as laundry gels, other solid detergents, etc. For ease of description, this embodiment uses laundry pods as an example for illustration.
[0061] The laundry detergent pods mentioned in this embodiment are made by encapsulating detergent in a water-soluble outer membrane. The detergent encapsulated within the outer membrane can be a single type of detergent, i.e., single-function pods on the market. This includes different types of detergents, such as laundry pods containing only detergent, rinsing pods containing only fabric softener, etc., as well as detergents of the same type but with different functions, such as regular detergent, oil-removing detergent, wool detergent, etc. By placing pods with different functions separately in a dispensing device, intelligent dispensing of various types of pods can be achieved. Alternatively, the detergent encapsulated within the outer membrane can be multiple types of detergent, i.e., multi-functional pods on the market. For example, it can contain at least two of the following: detergent, fabric softener, fragrance, disinfectant, etc. Multi-functional pods use independent chambers to keep the various types of detergents separate, only mixing them when used, ensuring chemical stability. The various detergents in the pods can be formulated as regular concentrations of detergent or as concentrated detergents, etc.
[0062] The metered washing products refer to detergent products that are not packaged in individually measured quantities, and can be dispensed in any amount according to actual washing needs.
[0063] The metered washing product can be configured as a liquid detergent, a solid detergent, etc., such as conventional liquid laundry detergent, fabric softener, bactericide, care agent and other commonly used preparations, as well as laundry powder, etc. For ease of description, this embodiment uses liquid detergent as an example for illustration.
[0064] This embodiment uses the above-mentioned washing products and detergent types as examples for illustration, and should not be construed as including only the above-mentioned types of washing products and detergent types.
[0065] In some embodiments, such as Figure 7 As shown, the garment handling device 1 is equipped with a quantitative dispensing device 101, a metering dispensing device 102, an outer drum 103, a dispensing component 20, and an inner drum. The quantitative dispensing device 101 is used to dispense quantitative washing products, and the metering dispensing device 102 is used to dispense metered washing products.
[0066] Optionally, users can put a large number of laundry detergent pods into the dispensing device 101 at one time to store multiple laundry detergent pods. The garment care device 1 can automatically dispense laundry detergent pods, reducing the amount of operation required by the user.
[0067] Preferably, the quantitative dispensing device 101 is connected to the outer drum 103 via the dispensing component 20. The pushing mechanism of the dispensing component 20 receives the laundry pods and pushes them into the dispensing channel of the dispensing component 20. The laundry pods enter between the outer drum 103 and the inner drum, thereby achieving automatic dispensing of the pods. Then, a certain amount of water can be introduced into the garment processing device to contact the pods, causing the outer membrane of the pods to melt and release the encapsulated detergent, thus dispensing the detergent. This method facilitates the full dissolution of the pods and the detergent inside, effectively shortens the time required to form the washing environment, and helps to quickly create the conditions required for washing. This improves the stain removal effect on clothes while also increasing the efficiency of garment processing.
[0068] For example, the dispensing chamber of the quantitative dispensing device 101 may be provided with only one storage chamber to store only one type of pods, or it may be divided into at least two storage chambers for storing different types of pods, which can be set according to actual washing needs and product design.
[0069] Optionally, the metering and dispensing device 102 may include a storage box and a dispensing device. The storage box is used to store liquid detergent, and the liquid detergent in the storage box is drawn out by the dispensing device, such as a dispensing pump, and the liquid detergent is dispensed into the inner cylinder in conjunction with the water inlet.
[0070] For example, the storage box can be divided into at least two storage chambers for storing different types of liquid detergents, such as laundry detergent, fabric softener, disinfectant, etc., which can be specifically set according to actual washing needs and product design.
[0071] In some embodiments, such as Figure 2 As shown, the procedure further includes the following steps before obtaining the detergent target dispensing information:
[0072] S100: Obtain the washing program and garment parameters;
[0073] S110. Determine the target detergent dosage information based on the washing program and the clothing parameters.
[0074] Optionally, the garment handling device stores the correspondence between washing programs, garment parameters, and detergent target dosage information. The garment handling device matches the corresponding detergent target dosage information to different washing programs and garment parameters. For example, when a user selects a regular washing program, the main wash detergent (corresponding to the laundry type) needs to be added during the main wash stage, and the rinsing detergent (corresponding to the rinsing type) needs to be added during the rinsing stage; when the user selects a separate rinsing program, only the rinsing detergent needs to be added.
[0075] The correspondence between the washing program, clothing parameters, and detergent target dosage information can be determined through extensive experiments. In other words, the detergent target dosage information is the appropriate detergent dosage information corresponding to the washing program and clothing parameters, which ensures the washing efficiency of the clothing treatment device.
[0076] Optionally, the clothing parameters include one or more of the following: clothing weight, degree of soiling, clothing material, and clothing color. The clothing weight, degree of soiling, clothing material, and clothing color can be obtained by detecting the clothing using corresponding sensors. For example, clothing weight can be detected by a weighing sensor, the degree of soiling by a water quality sensor, and the clothing material and color by an image sensor. Taking clothing weight and degree of soiling as examples, the greater the clothing weight, the more detergent is needed to wash it, and the larger the target detergent dosage. Similarly, a high degree of soiling in the wash water detected by the water quality sensor indicates a high degree of soiling of the clothing, requiring more detergent to wash it, and thus a larger target detergent dosage.
[0077] Based on the above description, the detergent target dosage information includes several detergent target types and associated detergent target dosage amounts. Taking a user selecting a regular washing program as an example, a regular washing program typically includes a main wash stage and a rinsing stage. During the main wash stage, a laundry-type detergent, such as liquid laundry detergent, single-use laundry pods, or multi-use laundry pods, needs to be added. The specific dosage can be determined based on the aforementioned clothing parameters. During the rinsing stage, a rinsing-type detergent, such as fabric softener or single-use rinsing pods, needs to be added. The specific dosage can also be determined based on the aforementioned clothing parameters. When the multi-use laundry pods added during the main wash stage also contain rinsing-type detergent, the rinsing stage can analyze the specific washing needs to determine whether additional rinsing-type detergent needs to be added, to avoid the rinsing-type detergent dosage in the previously added multi-use laundry pods being insufficient to meet the current washing requirements.
[0078] S2. Determine the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device respectively based on the detergent target dispensing information.
[0079] By combining the dispensing of quantitative and metered washing products, the laundry treatment device can accurately dispense the detergent required for different washing needs in actual use, thus meeting users' intelligent needs for detergent dispensing and ensuring the washing effect of the laundry treatment device.
[0080] In some embodiments, the step of determining the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device respectively based on the detergent target dispensing information includes:
[0081] The quantity dispensed by the quantitative dispensing device, the type of replenishment and the amount of replenishment by the metering dispensing device are determined by the target detergent type and the target detergent dosage.
[0082] Based on the description of the above embodiments, let's take the user selecting a regular washing program as an example. Since a regular washing program typically includes a main wash stage and a rinsing stage, the target detergent type includes both laundry detergent and rinsing detergent. The target dosage for each type of detergent can be determined based on the garment parameters. Let's assume the target dosage for laundry detergent is 'a' and the target dosage for rinsing detergent is 'b'. Assuming both the quantitative dispensing device and the metering dispensing device are loaded with enough detergent for the current wash, we will illustrate the process by using single-function detergent pods and multi-function detergent pods as examples.
[0083] When using a single laundry pod during the main wash, given the known dosage of detergent per pod, and since the pod can only be dispensed whole, the maximum number of pods that can be used is determined by the target dosage 'a'. Then, the additional detergent dosage is calculated by combining the target dosage 'a', the maximum number of pods, and the dosage provided by a single pod. This additional dosage is then used to control the metering device to add more detergent. Because a single laundry pod cannot provide rinsing, rinsing detergent needs to be added during the rinsing stage using a metering device. This additional dosage is the target dosage 'b' for rinsing detergent.
[0084] When using a multi-purpose laundry detergent pod containing both laundry and rinsing detergent during the main wash stage, given the known dosage of laundry detergent and rinsing detergent per pod, and since laundry pods can only be dispensed whole, the maximum number of pods that can be dispensed can be determined by the target dosage 'a' of laundry detergent. Then, the additional amount of laundry detergent can be calculated by combining the target dosage 'a', the maximum number of pods, and the dosage of laundry detergent per pod. The metering device is then used to add more laundry detergent based on this additional dosage. Since the multi-purpose pod also provides a rinsing function, the additional amount of rinsing detergent can be calculated by combining the target dosage 'b', the number of pods already dispensed, and the dosage of rinsing detergent per pod. The metering device is then used to add more rinsing detergent based on this additional dosage.
[0085] Optionally, the detergent target dosing information can be configured as standard dosing information. This standard dosing information can be determined based on the specific usage scenario of the garment processing device. For example, if the garment processing device is only suitable for using a specific type of detergent product (including pre-quantitative and metered detergent products) in a specific usage scenario, then that specific type of detergent product can be used as the standard product. Based on this standard product, combined with the specific washing program and garment parameters, the dosage of pre-quantitative detergent products and the replenishment amount of metered detergent products can be determined. Alternatively, the standard dosing information can be determined based on industry detergent standards. For example, according to industry standards, the active ingredient content of laundry detergent is around 15%, while the active ingredient content of laundry pods is generally around 80% to 90%. Based on industry detergent standards, combined with the specific washing program and garment parameters, the dosage of pre-quantitative detergent products and the replenishment amount of metered detergent products can be determined.
[0086] Considering the diverse actual usage scenarios of clothing processing devices, users can purchase pre-quantitative washing products according to their own needs and preferences. In order to make the detergent dispensing scheme better adapt to different actual usage scenarios, it is necessary to accurately dispense detergent based on the pre-quantitative washing products actually used by the user.
[0087] In some embodiments, such as Figure 3 As shown, the steps of determining the dispensing quantity of the metering device, the replenishment type, and the replenishment amount of the metering device based on the target detergent type and the target detergent dosage include:
[0088] S200: Obtain product information of the quantitative detergent product loaded in the quantitative dispensing device; the product information is described as being able to obtain the detergent type and the amount of each type of detergent in the quantitative detergent product.
[0089] Taking multi-functional detergent pods as an example, the product information reveals the types of detergents they contain, such as laundry detergent, fabric softener, fragrance, and disinfectant. It also shows the quantity of each type of detergent, including laundry detergent, fabric softener, fragrance, and disinfectant.
[0090] S210. Compare the target type of detergent, the target dosage of detergent, and the product information of the quantitative detergent product.
[0091] S220. Based on the comparison results, determine the quantity of the quantitative washing product to be added, the type of detergent to be added, and the amount to be added.
[0092] Based on the description of the above embodiments, let's take the user selecting a regular washing program as an example. Since a regular washing program typically includes a main wash stage and a rinsing stage, the target detergent type includes both laundry detergent and rinsing detergent. The target dosage for each type of detergent can be determined based on the garment parameters. Let's assume the target dosage for laundry detergent is 'a' and the target dosage for rinsing detergent is 'b'. Assuming both the quantitative dispensing device and the metering dispensing device are loaded with enough detergent for the current wash, we will illustrate the process by using single-function detergent pods and multi-function detergent pods as examples.
[0093] When adding a single laundry pod during the main wash stage, obtain the product information of the single pod to determine its detergent type and specific amount. Assume the detergent dosage provided by a single pod is a1. If a1*(N-1) < a < a1*(N), where N is an integer greater than or equal to 1, and since laundry pods can only be added whole, meaning a maximum of a1*(N-1) pods are suitable, additional detergent needs to be added. The specific amount to be added is a - a1*(N-1). Because a single laundry pod cannot provide rinsing, additional rinsing detergent needs to be added during the rinsing stage. The amount to be added is the target dosage b for rinsing detergent.
[0094] When adding a multi-purpose laundry pod containing both laundry detergent and rinsing detergent during the main wash stage, obtain the product information of the multi-purpose pod to determine the type and amount of detergent it contains. Assuming the multi-purpose pod can provide a1 of laundry detergent and b1 of rinsing detergent, if a1*(N-1) < a < a1*(N), where N is an integer greater than or equal to 1, and since laundry pods can only be added whole, meaning a maximum of a1*(N-1) pods are suitable, additional laundry detergent needs to be added. The specific amount of detergent to be added is a-a1*(N-1). Since this multi-functional pod also provides rinsing function, the amount of detergent added for rinsing can be calculated by combining the number of pods already added (N-1) with the amount of detergent that a single multi-functional pod can provide for rinsing (b1). The amount added (b1*(N-1)) is compared with the target amount (b) to determine whether additional detergent is needed for rinsing, and the specific amount to be added is calculated by b-b1*(N-1).
[0095] It should be noted that the detergent dosage of a certain type provided by the aforementioned detergent pods can be obtained directly from product information or obtained by processing product information. For example, according to industry standards, the active ingredient content of laundry detergent is around 15%, while the active ingredient content of laundry pods is generally around 80% to 90%. Assuming the target dosage of detergent for the main wash stage in the current washing process of the garment processing device is 'a', a laundry pod containing c grams of active ingredient has an active ingredient content of c*d% grams because it contains d% of active ingredient. The calculated result of c*d% can be used as the detergent dosage of the laundry type provided by the pods in the above embodiment, a1.
[0096] Considering the diverse actual usage scenarios of clothing processing devices, users can purchase metered washing products according to their own needs and preferences. In order to make the detergent dispensing scheme better adapt to different actual usage scenarios, it is necessary to accurately dispense detergent based on the metered washing products actually used by the user.
[0097] In some embodiments, such as Figure 4 As shown, the steps of determining the dispensing quantity of the metering device, the replenishment type, and the replenishment amount of the metering device based on the target detergent type and the target detergent dosage further include:
[0098] S230. Obtain product information of the metering detergent product loaded in the metering dispensing device; the product information is described as the type of detergent and the amount of that type of detergent that can be used to obtain the metering detergent product.
[0099] Taking laundry detergent as an example, its product information can reveal its detergent type and the content of active ingredients in that type of detergent.
[0100] S240. Based on the type and amount of detergent to be added, and in conjunction with the product information of the metered detergent product, determine the dosage of the metered detergent product.
[0101] Based on the description of the above embodiments, when a single laundry detergent pod is added during the main wash stage, and it is necessary to add laundry detergent of type a, specifically the amount to be added is a-a1*(N-1), and it is also necessary to add rinsing detergent of type b, the product information of the laundry detergent and fabric softener loaded in the metering device is obtained to obtain their types, the active ingredient content of the laundry detergent, and the active ingredient content of the fabric softener. Assuming that the active ingredient content of the laundry detergent is e%, and the active ingredient content of the fabric softener is f%, the specific amount of laundry detergent can be calculated as (a-a1*(N-1)) / e% by using the amount of laundry detergent added a-a1*(N-1) and the active ingredient content of the laundry detergent e%. The specific amount of fabric softener can be calculated as b / f by using the amount of rinsing detergent added b and the active ingredient content of the fabric softener f%.
[0102] Based on the description of the above embodiments, when a multi-functional detergent pod containing both laundry detergent and rinsing detergent is added during the main wash stage, and it is necessary to add more laundry detergent (specifically, the amount added is a-a1*(N-1)), and it is also necessary to add more rinsing detergent (the amount added is the target amount of rinsing detergent, b-b1*(N-1)), the product information of the laundry detergent and fabric softener loaded in the metering device is obtained to determine their types, the active ingredient content of the laundry detergent, and the active ingredient content of the fabric softener. Assuming the active ingredient content of the laundry detergent is e% and the active ingredient content of the fabric softener is f%, the specific dosage of the laundry detergent can be calculated as (a-a1*(N-1)) / e% by using the amount of laundry detergent to be added (a-a1*(N-1)) and the active ingredient content of the laundry detergent (e%). Similarly, the specific dosage of the fabric softener can be calculated as (b-b1*(N-1)) / f% by using the amount of rinsing detergent to be added (b-b1*(N-1)) and the active ingredient content of the fabric softener (f%).
[0103] Optionally, the product information includes several detergent types and their corresponding concentrations. The concentration of the detergent product here can be conceptually described as other parameters used to measure the detergent product's cleaning ability / effect, such as the content of active ingredients, the level of active enzymes, and the types of active enzymes.
[0104] The product information can be obtained by identifying the detergent's labeling information, which may include barcodes, QR codes, text descriptions, images, etc., on the detergent packaging.
[0105] Taking multi-functional laundry detergent pods as an example, a multi-functional laundry detergent pod can contain laundry detergent m1 and rinsing detergent m2. The concentration of laundry detergent m1 is n1, and the concentration of rinsing detergent m2 is n2.
[0106] Higher detergent concentrations result in stronger cleaning power. Therefore, when using the same type of detergent to wash the same clothes, different detergent concentrations require different amounts of detergent. Thus, the amount of detergent used needs to be adjusted according to the concentration to ensure accurate dosage, meet users' intelligent detergent dispensing needs, and improve the washing effect of the garment processing device.
[0107] In some embodiments, such as Figure 5 As shown, the step of comparing the target detergent type, the target detergent dosage, and the product information of the quantitative detergent product includes:
[0108] S211. Determine whether the detergent type of the quantitative washing product includes all the target detergent types, so as to determine the type and amount of detergent to be added;
[0109] S212. Otherwise, determine the type and amount of detergent that needs to be added; at this time, the target amount corresponding to the type of detergent that needs to be added is the amount to be added.
[0110] S213. If so, no additional detergent is needed.
[0111] S214. Calculate the maximum integer number of quantitative detergent products to be added and the type and amount of detergent to be added based on the target amount of detergent and the concentration of each detergent in the quantitative detergent product.
[0112] Based on the description of the above embodiments, let's take the user selecting a regular washing program as an example. Since a regular washing program typically includes a main wash stage and a rinsing stage, the target detergent type includes both laundry detergent and rinsing detergent. The target dosage for each type of detergent can be determined based on the garment parameters. Let's assume the target dosage for laundry detergent is 'a' and the target dosage for rinsing detergent is 'b'. Assuming both the quantitative dispensing device and the metering dispensing device are loaded with enough detergent for the current wash, we will illustrate the process by using single-function detergent pods and multi-function detergent pods as examples.
[0113] When a single laundry detergent pod is added during the main wash stage, the product information of the single laundry detergent pod is obtained, including the detergent type m and concentration n. It is then determined whether the detergent type of the single laundry detergent pod contains the target detergent type, that is, whether it contains both laundry detergent and rinsing detergent. Since it does not contain rinsing detergent, it can be determined that the detergent type to be added is rinsing detergent. At this time, the target amount b corresponding to the rinsing detergent to be added is the amount to be added.
[0114] Then, the maximum integer number of single-function pods to be added is calculated based on the target dosage 'a' of laundry detergent and the concentration 'n' of laundry detergent 'm' in the single-function pod. When the result of a / (c*n) is not an integer, additional laundry detergent needs to be added, and the specific amount to be added is aM*(c*n).
[0115] When a multi-purpose detergent pod containing both laundry and rinsing detergent is added during the main wash stage, the product information of the multi-purpose detergent pod is obtained, including the laundry detergent m1, the rinsing detergent m2, the concentration n1 of the laundry detergent m1, and the concentration n2 of the rinsing detergent m2. It is then determined whether the multi-purpose detergent pod contains the target detergent type, that is, whether it contains both laundry and rinsing detergent. Since the multi-purpose detergent pod contains both laundry and rinsing detergent, it can be determined that no additional detergent needs to be added at this time.
[0116] Then, the maximum integer number of multi-purpose pods to be added is calculated based on the target dosage 'a' of laundry detergent and the concentration 'n1' of laundry detergent 'm1' in the multi-purpose pods. When the result of a / (c*n1) is not an integer, additional laundry detergent needs to be added, and the specific amount to be added is aM*(c*n1). Since this multi-functional detergent pod also provides rinsing function, the amount of rinsing detergent already added can be calculated by combining the number of pods already added M with the concentration n2 of rinsing detergent m2 in a single multi-functional pod. The amount of rinsing detergent already added c*n2*M is compared with the target amount b. When the target amount b > the amount of rinsing detergent already added c*n2*M, additional rinsing detergent needs to be added, and the specific amount to be added is b-(c*n2*M).
[0117] In some embodiments, such as Figure 6 As shown, the step of determining the dosage of the metered detergent product based on the type and amount of detergent to be added, combined with the product information of the metered detergent product, includes:
[0118] S241. Determine whether the detergent type of the metered washing product includes the detergent type that needs to be replenished;
[0119] S242. If the type of detergent that needs to be replenished is included, the amount of the metered detergent product to be added is calculated based on the amount of replenishment and the concentration of detergent in the metered detergent product.
[0120] In some embodiments, such as Figure 6 As shown, it also includes the following steps:
[0121] S243. If the type of detergent that needs to be replenished is not included, then prompt the user to replenish that type of detergent.
[0122] Optionally, if the type of detergent that needs to be replenished is not included, the washing and replenishment action will not be performed first. Instead, the subsequent procedures will be executed directly to complete the current washing and then a detergent replenishment reminder will be sent.
[0123] Based on the description of the above embodiments, when a single laundry detergent pod is added during the main wash stage, and it is necessary to add rinsing detergent and laundry detergent, it is determined whether the detergent type of the metered laundry product includes the detergent type that needs to be added, that is, whether it includes rinsing detergent and laundry detergent. Assuming that the metering dispensing device stores laundry detergent and fabric softener, the amount of laundry detergent to be added is calculated using the amount of laundry detergent to be added aM*(c*n) and the concentration of laundry detergent. The amount of fabric softener to be added is calculated using the amount of rinsing detergent to be added b and the concentration of fabric softener. If the metering dispensing device is short of laundry detergent and / or fabric softener, the user can be reminded to add the corresponding detergent. Alternatively, the washing and adding detergent can be delayed, and the subsequent program can be executed directly to complete the current wash first, and then the detergent addition reminder can be issued.
[0124] Based on the description of the above embodiments, when a multi-functional detergent pod containing both laundry detergent and rinsing detergent is added during the main wash stage, and it is necessary to add more laundry detergent and rinsing detergent, the system determines whether the detergent type of the metered laundry product includes the detergent type that needs to be added, that is, whether it includes both rinsing detergent and laundry detergent. Assuming that the metering dispensing device stores laundry detergent and fabric softener, the amount of laundry detergent to be added is calculated using the amount of laundry detergent to be added (aM*(c*n1)) and the concentration of the laundry detergent. The amount of fabric softener to be added is calculated using the amount of rinsing detergent to be added (b-(c*n2*M)) and the concentration of the fabric softener. If the metering dispensing device is short of laundry detergent and / or fabric softener, the system can provide the user with the corresponding detergent. Alternatively, the system can skip the detergent addition action and directly execute the subsequent program to complete the current wash first, and then provide a detergent replenishment reminder.
[0125] This embodiment provides a detergent dispensing method for a clothing treatment device. The clothing treatment device is equipped with a quantitative dispensing device and a metering dispensing device. The quantitative dispensing device is used to dispense quantitative detergent products, and the metering dispensing device is used to dispense metered detergent products. Detergent target dispensing information is obtained, and the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device are determined by the detergent target dispensing information. By combining the dispensing of quantitative detergent products with the dispensing of metered detergent products, the precise dispensing of detergent required for different washing needs in actual use of the clothing treatment device can be achieved, which can meet the user's intelligent demand for detergent dispensing and ensure the washing effect of the clothing treatment device.
[0126] Example 2
[0127] A clothing processing device is provided, employing the method described above. For a detailed description of the method, please refer to the corresponding descriptions in the above method embodiments, which will not be repeated here. In some embodiments, the clothing processing device can be applied as a washing machine; in other embodiments, it can be applied as a washer-dryer combo; it can also be applied as other clothing processing equipment with washing functions. For ease of description, this invention uses a drum-type washing machine as an example for illustration, and should not be construed as a limitation on the type of clothing processing equipment.
[0128] like Figure 7 As shown, the garment processing device 1 of this embodiment includes a quantitative dispensing device 101, a metering dispensing device 102, an outer drum 103, a dispensing component 20, and an inner drum. The quantitative dispensing device 101 is used to dispense quantitative washing products, and the metering dispensing device 102 is used to dispense metered washing products.
[0129] Optionally, users can put a large number of laundry detergent pods into the dispensing device 101 at one time to store multiple laundry detergent pods. The garment care device 1 can automatically dispense laundry detergent pods, reducing the amount of operation required by the user.
[0130] Preferably, the quantitative dispensing device 101 is connected to the outer drum 103 via the dispensing component 20. The pushing mechanism of the dispensing component 20 receives the laundry pods and pushes them into the dispensing channel of the dispensing component 20. The laundry pods enter between the outer drum 103 and the inner drum, thereby achieving automatic dispensing of the pods. Then, a certain amount of water can be introduced into the garment processing device to contact the pods, causing the outer membrane of the pods to melt and release the encapsulated detergent, thus dispensing the detergent. This method facilitates the full dissolution of the pods and the detergent inside, effectively shortens the time required to form the washing environment, and helps to quickly create the conditions required for washing. This improves the stain removal effect on clothes while also increasing the efficiency of garment processing.
[0131] For example, the dispensing chamber of the quantitative dispensing device 101 may be provided with only one storage chamber to store only one type of pods, or it may be divided into at least two storage chambers for storing different types of pods, which can be set according to actual washing needs and product design.
[0132] Optionally, the metering and dispensing device 102 may include a storage box and a dispensing device. The storage box is used to store liquid detergent, and the liquid detergent in the storage box is drawn out by the dispensing device, such as a dispensing pump, and the liquid detergent is dispensed into the inner cylinder in conjunction with the water inlet.
[0133] For example, the storage box can be divided into at least two storage chambers for storing different types of liquid detergents, such as laundry detergent, fabric softener, disinfectant, etc., which can be specifically set according to actual washing needs and product design.
[0134] The clothing processing device of this embodiment may include the following process:
[0135] The information acquisition module is used to acquire detergent target delivery information;
[0136] The dispensing module is used to determine the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device, respectively, based on the detergent target dispensing information.
[0137] Based on the technical solution of the above embodiments, optionally, the method further includes the following step before obtaining the detergent target dispensing information:
[0138] Obtain the washing program and garment parameters;
[0139] The target detergent dosage information is determined by the washing procedure and the clothing parameters.
[0140] Based on the technical solutions of the above embodiments, optionally, the clothing parameters include one or more of the following: clothing weight, degree of soiling, clothing material, and clothing color;
[0141] The detergent target delivery information includes several detergent target types and associated detergent target delivery quantities.
[0142] Based on the technical solutions of the above embodiments, optionally, the step of determining the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device respectively through the detergent target dispensing information includes:
[0143] The quantity dispensed by the quantitative dispensing device, the type of replenishment and the amount of replenishment by the metering dispensing device are determined by the target detergent type and the target detergent dosage.
[0144] Based on the technical solutions of the above embodiments, optionally, the step of determining the dispensing quantity of the quantitative dispensing device, the replenishment type and replenishment amount of the metering dispensing device through the target detergent type and the target detergent dispensing amount includes:
[0145] Obtain product information of the quantitative detergent product loaded in the quantitative dispensing device;
[0146] The target type of detergent, the target dosage of detergent, and the product information of the quantitative detergent product are compared.
[0147] Based on the comparison results, determine the quantity of the quantitative detergent product to be added, the type of detergent to be added, and the amount to be added.
[0148] Based on the technical solution of the above embodiments, the steps of determining the dispensing quantity of the quantitative dispensing device, the replenishment type and replenishment amount of the metering dispensing device by means of the target detergent type and the target detergent dispensing amount further include:
[0149] Obtain product information of the metering washing products loaded in the metering dispensing device;
[0150] Based on the type and amount of detergent to be added, and in conjunction with the product information of the metered detergent product, the dosage of the metered detergent product is determined.
[0151] Based on the technical solutions of the above embodiments, optionally, the product information includes several detergent types and their corresponding concentrations.
[0152] Based on the technical solutions of the above embodiments, optionally, the step of comparing the target type of detergent, the target dosage of detergent, and the product information of the quantitative detergent product includes:
[0153] Determine whether the detergent type of the quantitative washing product includes all target detergent types to determine the type and amount of detergent to be added;
[0154] The maximum integer number of pre-mixed detergent products to be added and the type and amount of detergent to be added are calculated based on the target dosage of the detergent and the concentration of each detergent in the pre-mixed detergent product.
[0155] Based on the technical solutions of the above embodiments, optionally, the step of determining the dosage of the metered detergent product according to the type and amount of detergent to be added, combined with the product information of the metered detergent product, includes:
[0156] Determine whether the detergent type of the metered washing product includes the type of detergent that needs to be replenished;
[0157] If the type of detergent that needs to be replenished is included, the dosage of the metered washing product is calculated based on the replenishment amount and the concentration of detergent in the metered washing product.
[0158] Optionally, based on the technical solution of the above embodiments, the method further includes the following steps:
[0159] If the type of detergent that needs to be replenished is not included, a prompt will appear to add that type of detergent.
[0160] This embodiment provides a garment processing device and a detergent dispensing method for the garment processing device described above. The method includes a quantitative dispensing device and a metering dispensing device. The quantitative dispensing device dispenses a quantitative amount of detergent, and the metering dispensing device dispenses a metered amount of detergent. Detergent target dispensing information is obtained, and the type and amount of detergent to be dispensed by the quantitative and metering dispensing devices are determined based on this information. By combining the dispensing of quantitative and metered detergents, the garment processing device achieves precise dispensing of detergent for different washing needs in actual use, meeting users' intelligent detergent dispensing requirements and ensuring the washing effect of the garment processing device.
[0161] Example 3
[0162] An electronic device, such as Figure 8 As shown, it includes: a memory storing program code; and a processor connected to the memory, which, when executed by the processor, implements a detergent dispensing method for a laundry treatment device. For a detailed description of the method, please refer to the corresponding description in the above method embodiments, which will not be repeated here.
[0163] Example 4
[0164] A computer-readable storage medium, such as Figure 9 As shown, it stores program instructions, which, when executed, implement a detergent dispensing method for a clothing treatment device. For a detailed description of the method, please refer to the corresponding description in the above method embodiments; it will not be repeated here.
[0165] The number of devices and processing scale described herein are for the purpose of simplifying the description of the invention. Applications, modifications, and variations of the invention will be readily apparent to those skilled in the art.
[0166] Although embodiments of the present invention have been disclosed above, they are not limited to the applications listed in the specification and embodiments. They can be applied to various fields suitable for the present invention. For those skilled in the art, other modifications can be easily made. Therefore, without departing from the general concept defined by the claims and their equivalents, the present invention is not limited to the specific details and illustrations shown and described herein.
[0167] The apparatus, electronic device, and non-volatile computer storage medium and method provided in the embodiments of this specification are corresponding. Therefore, the apparatus, electronic device, and non-volatile computer storage medium also have similar beneficial technical effects as the corresponding method. Since the beneficial technical effects of the method have been described in detail above, the beneficial technical effects of the corresponding apparatus, electronic device, and non-volatile computer storage medium will not be repeated here.
[0168] Those skilled in the art will also know that, besides implementing the controller in the form of purely computer-readable program code, the same functions can be achieved by logically programming the method steps, making the controller take the form of logic gates, switches, application-specific integrated circuits (ASICs), programmable logic controllers (PLCs), and embedded microcontrollers. Therefore, such a controller can be considered a hardware component, and the devices included within it for implementing various functions can also be considered structures within that hardware component. Alternatively, the devices for implementing various functions can be considered as both software units implementing the method and structures within a hardware component.
[0169] The systems, apparatuses, or units described in the above embodiments can be implemented by computer chips or physical entities, or by products with certain functions. For ease of description, the above apparatuses are described separately by function as various units. Of course, when implementing one or more embodiments of this specification, the functions of each unit can be implemented in one or more software and / or hardware.
[0170] Those skilled in the art will understand that the embodiments of this specification can be provided as methods, systems, or computer program products. Therefore, the embodiments of this specification can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the embodiments of this specification can take the form of a computer program product implemented on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.
[0171] This specification is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of this specification. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, create a machine for implementing the flowchart illustrations and / or block diagrams. Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.
[0172] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1The function specified in one or more boxes.
[0173] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.
[0174] It should also be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0175] This specification may be described in the general context of computer-executable instructions, such as program units, that are executed by a computer. Generally, program units include routines, programs, objects, components, data structures, etc., that perform a specific task or implement a specific abstract data type. This specification may also be practiced in distributed computing environments, where tasks are performed by remote processing devices connected via a communication network. In distributed computing environments, program units may reside in local and remote computer storage media, including storage devices.
[0176] The various embodiments in this specification are described in a progressive manner. Similar or identical parts between embodiments can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments. In particular, the system embodiments are basically similar to the method embodiments, so the description is relatively simple; relevant parts can be referred to the descriptions in the method embodiments.
[0177] The above description is merely an embodiment of this specification and is not intended to limit the scope of one or more embodiments of this specification. Various modifications and variations can be made to one or more embodiments of this specification by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of one or more embodiments of this specification should be included within the scope of the claims of one or more embodiments of this specification.
Claims
1. A method for dispensing detergent into a clothing treatment device, characterized in that, The laundry processing device is equipped with a quantitative dispensing device and a metering dispensing device. The quantitative dispensing device is used to dispense a quantitative amount of laundry product, and the metering dispensing device is used to dispense a metered amount of laundry product. The process includes the following steps: Obtain detergent target delivery information; The type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device are determined by the detergent target dispensing information.
2. The detergent dispensing method of the clothing treatment device as described in claim 1, characterized in that, The method further includes the following steps before the step of obtaining detergent target dosage information: Obtain the washing program and garment parameters; The target detergent dosage information is determined by the washing procedure and the clothing parameters.
3. The detergent dispensing method of the clothing treatment device as described in claim 2, characterized in that: The clothing parameters include one or more of the following: clothing weight, degree of soiling, clothing material, and clothing color. The detergent target delivery information includes several detergent target types and associated detergent target delivery quantities.
4. The detergent dispensing method of the clothing treatment device as described in claim 3, characterized in that, The step of determining the type and amount of detergent to be dispensed by the quantitative dispensing device and the metering dispensing device respectively based on the detergent target dispensing information includes: The quantity dispensed by the quantitative dispensing device, the type of replenishment and the amount of replenishment by the metering dispensing device are determined by the target detergent type and the target detergent dosage.
5. The detergent dispensing method of the clothing treatment device as described in claim 4, characterized in that, The steps of determining the dispensing quantity of the metering device, the replenishment type of the metering device, and the replenishment quantity of the metering device based on the target type and target dosage of the detergent include: Obtain product information of the quantitative detergent product loaded in the quantitative dispensing device; The target type of detergent, the target dosage of detergent, and the product information of the quantitative detergent product are compared. Based on the comparison results, determine the quantity of the quantitative detergent product to be added, the type of detergent to be added, and the amount to be added.
6. The detergent dispensing method of the clothing treatment device as described in claim 5, characterized in that, The step of determining the dispensing quantity of the metering device, the replenishment type and the replenishment amount of the metering device based on the target detergent type and the target detergent dosage further includes: Obtain product information of the metering washing products loaded in the metering dispensing device; Based on the type and amount of detergent to be added, and in conjunction with the product information of the metered detergent product, the dosage of the metered detergent product is determined.
7. The detergent dispensing method of the clothing treatment device as described in claim 6, characterized in that: The product information includes several detergent types and their corresponding concentrations.
8. The detergent dispensing method of the clothing treatment device as described in claim 7, characterized in that, The step of comparing the target detergent type, the target detergent dosage, and the product information of the quantitative detergent product includes: Determine whether the detergent type of the quantitative washing product includes all target detergent types to determine the type and amount of detergent to be added; The maximum integer number of pre-mixed detergent products to be added and the type and amount of detergent to be added are calculated based on the target dosage of the detergent and the concentration of each detergent in the pre-mixed detergent product.
9. The detergent dispensing method of the clothing treatment device as described in claim 7, characterized in that, The step of determining the dosage of the metered detergent product based on the type and amount of detergent to be added, combined with the product information of the metered detergent product, includes: Determine whether the detergent type of the metered washing product includes the type of detergent that needs to be replenished; If the type of detergent that needs to be replenished is included, the dosage of the metered washing product is calculated based on the replenishment amount and the concentration of detergent in the metered washing product.
10. The detergent dispensing method of the clothing treatment device as described in claim 9, characterized in that, It also includes the following steps: If the type of detergent that needs to be replenished is not included, a prompt will appear to add that type of detergent.
11. A garment processing apparatus, employing the method as described in any one of claims 1 to 10, characterized in that: It includes a quantitative dispensing device and a metering dispensing device, wherein the quantitative dispensing device is used to dispense quantitative detergent products, and the metering dispensing device is used to dispense metered detergent products.
12. An electronic device, characterized in that, include: A memory that stores program code; A processor connected to the memory, which, when the program code is executed by the processor, implements the method as described in any one of claims 1 to 10.
13. A computer-readable storage medium, characterized in that, It stores program instructions that, when executed, implement the method as described in any one of claims 1 to 10.