Control method of fabric treatment equipment, electronic equipment and fabric treatment equipment
By obtaining the total load weight and ambient temperature of the fabric processing equipment and adjusting the washing parameters according to the preset settings, the problem of poor adaptability of fabric processing equipment in the existing technology is solved, realizing intelligent processing of different fabric materials and improving washing effect and energy efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-23
- Publication Date
- 2026-04-14
AI Technical Summary
In existing fabric processing equipment, the method of adjusting washing and drying time based on the weight of the fabric is poorly adapted, resulting in unsatisfactory washing results.
By acquiring the total load weight of the fabric processing equipment and the current ambient temperature, and combining the preset weight and temperature settings, the target operating parameters are determined, including washing time, spin speed, rinsing method, and drying degree, so as to achieve intelligent judgment and adjustment for different fabric materials.
It improves the washing effect of fabric processing equipment on fabrics of different materials, reduces damage to thin fabrics, optimizes energy consumption, and enhances the user experience.
Smart Images

Figure CN121853318A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of control methods for fabric processing equipment, and more particularly to a control method, electronic equipment, and fabric processing equipment for fabric processing equipment. Background Technology
[0002] In the technical field of fabric handling methods, washing machines generally have the function of adjusting the washing and drying time based on the weight of the fabric. This is usually determined by the amount of fabric: when there is more fabric, the washing and drying time is increased; when there is less fabric, the washing and drying time is decreased. This method relies solely on the motor's weight to determine the washing and drying time, resulting in poor adaptability. Summary of the Invention
[0003] The technical problem to be solved by the present invention is that the existing methods for adjusting the washing time and drying time based on the weight of the fabric have poor adaptability. The present invention provides a control method, electronic equipment and fabric processing equipment for fabric processing equipment.
[0004] This invention aims to provide a control method for a fabric processing device, comprising: Obtain the total weight of the load in the fabric processing equipment and the current ambient temperature; Based on the total weight and the current ambient temperature, the target operating parameters of the fabric treatment equipment are determined. The target operating parameters include at least one of the following: washing time, spin speed, rinsing method, and drying degree. The fabric processing equipment is controlled to process the load according to the target operating parameters.
[0005] In some embodiments, determining the target operating parameters of the fabric processing equipment based on the total weight and the current ambient temperature includes: Based on the total weight, a target weight level is determined. The target weight level is one of a plurality of preset weight levels, which are pre-configured and represent the range of total load weight. Based on the current ambient temperature, a target temperature level is determined. The target temperature level is one of multiple preset temperature levels, which are pre-configured according to the ambient temperature. The preset temperature level represents the range of ambient temperature. The target operating parameters are determined based on the target weight level and the target temperature level.
[0006] In some embodiments, determining the target operating parameters based on the target weight level and the target temperature level includes: Based on the target weight setting and the target temperature setting, the target operating parameter is determined from multiple preset level operating parameters. The multiple preset level operating parameters are configured according to different combinations of the preset weight setting and the preset temperature setting, and the washing time is different in different target operating parameters.
[0007] In some embodiments, the plurality of preset temperature levels include a first temperature level, a second temperature level, and a third temperature level, wherein the first temperature level represents an ambient temperature that is higher than the second temperature level, and the second temperature level represents an ambient temperature that is higher than the third temperature level. The multiple preset weight levels include a first weight level, a second weight level, a third weight level, a fourth weight level, a fifth weight level, and a sixth weight level. The load weight represented by the multiple preset weight levels, from smallest to largest, is as follows: first weight level < second weight level < third weight level < fourth weight level < fifth weight level < sixth weight level. Determining the target operating parameters based on the target weight setting and the target temperature setting includes at least one of the following: Based on the fact that the target temperature setting is the first temperature setting and the target weight setting is either the first weight setting or the second weight setting, the preset first-level working parameters are determined as the target working parameters. Based on the fact that the target temperature setting is the first temperature setting and the target weight setting is the third weight setting or the fourth weight setting, the preset second-level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the first temperature level and the target weight level is the fifth weight level or the sixth weight level, the preset third-level working parameters are determined as the target working parameters. Based on the fact that the target temperature setting is the second temperature setting and the target weight setting is the first weight setting or the second weight setting, the preset fourth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the second temperature level and the target weight level is the third or fourth weight level, the preset fifth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the second temperature level and the target weight level is the fifth weight level or the sixth weight level, the preset sixth level working parameter is determined as the target working parameter. Based on the fact that the target temperature level is the third temperature level and the target weight level is the first weight level or the second weight level, the preset seventh level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the third temperature level and the target weight level is the third weight level or the fourth weight level, the preset eighth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the third temperature level and the target weight level is the fifth or sixth weight level, the preset ninth level working parameters are determined as the target working parameters. Among the operating parameters from the first level to the ninth level, the washing time gradually increases.
[0008] In some embodiments, the dehydration speed in both the first-level operating parameters and the second-level operating parameters is the first speed. The dehydration speed in the third-level working parameters, the fourth-level working parameters, the fifth-level working parameters, and the sixth-level working parameters is the second speed. The dehydration speed in the seventh-level working parameters, the eighth-level working parameters, and the ninth-level working parameters is the third speed. The first rotational speed is less than the second rotational speed, and the second rotational speed is less than the third rotational speed.
[0009] In some embodiments, the rinsing methods in the first level working parameters, the second level working parameters, the third level working parameters, the fourth level working parameters, and the fifth level working parameters all include spray rinsing. The sixth, seventh, eighth, and ninth level operating parameters all include a water storage rinsing method.
[0010] In some embodiments, the degree of drying in the first-level working parameters, the second-level working parameters, and the third-level working parameters is the first degree of drying; the degree of drying in the fourth-level working parameters, the fifth-level working parameters, and the sixth-level working parameters is the second degree of drying; and the degree of drying in the seventh-level working parameters, the eighth-level working parameters, and the ninth-level working parameters is the third degree of drying. The first degree of drying represents a higher load moisture content after drying than the second degree of drying represents a higher load moisture content after drying, and the second degree of drying represents a higher load moisture content after drying than the third degree of drying represents a higher load moisture content after drying.
[0011] In some embodiments, obtaining the current ambient temperature includes: obtaining the current ambient temperature from a mobile terminal, wherein the mobile terminal is communicatively connected to the fabric processing equipment.
[0012] In some embodiments, an electronic device is provided, comprising: Memory stores computer instructions; A processor for invoking and executing the computer instructions to implement the methods described above.
[0013] In some embodiments, a fabric treatment apparatus is provided, comprising: The aforementioned electronic devices; Inner cylinder; A spraying element is used to spray water into the inner cylinder, and the input end of the spraying element is connected to the water inlet of the fabric processing equipment.
[0014] In some embodiments, the fabric processing apparatus further includes: A communication module is provided for communication connection with a mobile terminal and for receiving current ambient temperature information transmitted by the mobile terminal.
[0015] The solution provided by this invention has the following advantages compared with the prior art: By implementing this control method, the fabric processing equipment can use the current ambient temperature information to help determine the fabric material and automatically adjust different washing modes for different fabric materials. This makes the washing intensity of the fabric processing equipment match the fabric material, thereby achieving intelligent judgment of the fabric material by the fabric processing equipment and improving the washing effect of the fabric. Attached Figure Description
[0016] The accompanying drawings, as part of this invention, are used to provide a further understanding of the invention. The illustrative embodiments and descriptions of the invention are used to explain the invention, but do not constitute an undue limitation of the invention. Obviously, the drawings described below are merely some embodiments, and those skilled in the art can obtain other drawings based on these drawings without creative effort. In the drawings: Figure 1 This is one of the control method flowcharts shown in the embodiments of the present invention; Figure 2 This is the second flowchart of the control method shown in the embodiment of the present invention; Figure 3 This is the third flowchart of the control method shown in the embodiment of the present invention; Figure 4 This is a schematic diagram of a fabric processing device shown in an embodiment of the present invention.
[0017] In the diagram: 1-inner cylinder, 2-sprayer component, 3-water inlet, 4-drain.
[0018] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the invention in any way, but rather to illustrate the concept of the invention to those skilled in the art by referring to specific embodiments. Detailed Implementation
[0019] In the description of this invention, it should be noted that the terms "inner" and "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this invention.
[0020] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," "contact," and "communication" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0021] Most washing machines have the function of adjusting the washing and drying time based on the weight of the fabric. This is usually determined by the amount of fabric: more fabric means longer washing and drying time; less fabric means shorter washing and drying time. However, this method relies solely on the motor's weight to determine washing and drying time, resulting in poor adaptability.
[0022] Based on this, the following embodiments are proposed.
[0023] Example 1: like Figure 1 As shown, this embodiment provides a control method for a fabric processing device, including: obtaining the total weight of the load in the fabric processing device and the current ambient temperature; determining target operating parameters of the fabric processing device based on the total weight and the current ambient temperature, wherein the target operating parameters include at least one of washing time, spin-drying speed, rinsing method, and drying degree; and controlling the fabric processing device to process the load according to the target operating parameters.
[0024] In this embodiment, when the control method is executed, the control motherboard in the fabric processing equipment obtains the total weight information of the load and the current ambient temperature information. Combining the total weight information of the load and the current ambient temperature information, the target operating parameters of the fabric processing equipment are determined. The judgment logic of the control motherboard is as follows: the greater the total weight of the load, the greater the thickness of the fabric or the greater the quantity of fabric, and the washing intensity of the fabric needs to be appropriately increased. The washing time in the target operating parameters is greater. For example, the greater the total weight of the fabric load, the longer the washing time of the fabric processing equipment is to clean the fabric, which can clean the heavy fabric. The higher the current ambient temperature parameter, the warmer the region where the fabric processing equipment is located. It is judged that the fabric material is relatively thin. Excessive washing intensity will damage the thin fabric. The washing intensity of the fabric needs to be appropriately reduced. The washing time in the target operating parameters is smaller. For example, the higher the current ambient temperature, the shorter the washing time of the fabric processing equipment is to clean the thin fabric, which can clean the thin fabric and reduce damage to the thin clothing.
[0025] By implementing this control method, the fabric processing equipment can use the current ambient temperature information to help determine the fabric material and automatically adjust different washing modes for different fabric materials. This makes the washing intensity of the fabric processing equipment match the fabric material, thereby achieving intelligent judgment of the fabric material by the fabric processing equipment and improving the washing effect of the fabric.
[0026] In this embodiment, after the control board determines different target operating parameters for fabrics of different materials, the fabric processing equipment will not only adjust the washing time, but also the spin speed, rinsing method, and drying degree. By simultaneously adjusting multiple process parameters in the washing process, the processing effect on the fabric is improved, further enhancing the matching degree between the fabric processing parameter adjustment settings and the fabric. By simultaneously adjusting multiple process parameters in the washing process, the fabric processing equipment improves the processing effect on the fabric, further enhancing the matching degree between the fabric processing parameter adjustment settings and the fabric, thereby improving the user experience.
[0027] Optionally, in one implementation of this embodiment, determining the target operating parameters of the fabric processing equipment based on the total weight and the current ambient temperature includes: determining a target weight level based on the total weight, wherein the target weight level is one of a plurality of preset weight levels, the plurality of preset weight levels being pre-configured, and the preset weight level representing a range of total load weight; determining a target temperature level based on the current ambient temperature, wherein the target temperature level is one of a plurality of preset temperature levels, the plurality of preset temperature levels being pre-configured based on the ambient temperature, and the preset temperature level representing a range of ambient temperature; and determining the target operating parameters based on the target weight level and the target temperature level.
[0028] like Figure 2 As shown, in this embodiment, multiple preset weight levels and multiple preset temperature levels are pre-designed on the control board of the fabric processing equipment. When the control board of the fabric processing equipment obtains the total weight of the load, it uses the total weight as the target weight and compares it with the multiple preset weight levels, selecting the preset weight level corresponding to the target weight as the target weight level. When the control board of the fabric processing equipment obtains the current ambient temperature, it uses the current ambient temperature as the target temperature and compares it with the multiple preset temperature levels, selecting the preset temperature level corresponding to the target temperature as the target temperature level. Then, based on the target weight level and the target temperature level, the target operating parameters are determined. This method divides the specific total weight information and current temperature information into levels, and then determines the target operating parameters based on the levels of the two pieces of information. The judgment logic is accurate and simple. It can more quickly and automatically adjust different washing modes for fabrics of different materials, so that the washing intensity of the fabric processing equipment matches the material of the fabric.
[0029] Optionally, in one implementation of this embodiment, determining the target operating parameter based on the target weight level and the target temperature level includes: determining the target operating parameter from a plurality of preset level operating parameters based on the target weight level and the target temperature level, wherein the plurality of preset level operating parameters are configured according to different combinations of the preset weight level and the preset temperature level, and the washing time in the different target operating parameters is different.
[0030] More specifically, the plurality of preset temperature settings include a first temperature setting, a second temperature setting, and a third temperature setting, wherein the first temperature setting represents an ambient temperature higher than the second temperature setting, and the second temperature setting represents an ambient temperature higher than the third temperature setting; the plurality of preset weight settings include a first weight setting, a second weight setting, a third weight setting, a fourth weight setting, a fifth weight setting, and a sixth weight setting, wherein the load weight represented by the plurality of preset weight settings, from smallest to largest, is: first weight setting < second weight setting < third weight setting < fourth weight setting < fifth weight setting < sixth weight setting; Determining the target operating parameters based on the target weight setting and the target temperature setting includes at least one of the following: Based on the fact that the target temperature setting is the first temperature setting and the target weight setting is either the first weight setting or the second weight setting, the preset first-level working parameters are determined as the target working parameters. Based on the fact that the target temperature setting is the first temperature setting and the target weight setting is the third weight setting or the fourth weight setting, the preset second-level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the first temperature level and the target weight level is the fifth weight level or the sixth weight level, the preset third-level working parameters are determined as the target working parameters. Based on the fact that the target temperature setting is the second temperature setting and the target weight setting is the first weight setting or the second weight setting, the preset fourth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the second temperature level and the target weight level is the third or fourth weight level, the preset fifth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the second temperature level and the target weight level is the fifth weight level or the sixth weight level, the preset sixth level working parameter is determined as the target working parameter. Based on the fact that the target temperature level is the third temperature level and the target weight level is the first weight level or the second weight level, the preset seventh level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the third temperature level and the target weight level is the third weight level or the fourth weight level, the preset eighth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the third temperature level and the target weight level is the fifth or sixth weight level, the preset ninth level working parameters are determined as the target working parameters. Among the operating parameters from the first level to the ninth level, the washing time gradually increases.
[0031] In this embodiment, as Figure 3 As shown, there are multiple preset weight and temperature settings, and these preset weight and temperature settings do not overlap. Within each preset temperature setting, the control board can determine the appropriate level of operating parameters from multiple preset levels based on the different preset weight settings of the fabric, matching different fabric materials to treat the fabric with the most suitable washing intensity.
[0032] For example: The mobile terminal obtains the current ambient temperature of the area where the fabric processing equipment is located through the application software installed on it, and presets three temperature levels: First temperature setting: Current ambient temperature ≤10℃; Second temperature setting: 10℃ < current ambient temperature ≤ 25℃; Third temperature setting: 25℃ < current ambient temperature.
[0033] When the current ambient temperature in the area where the fabric processing equipment is located is greater than 25°C, indicating that the temperature is basically summer, and the weight of the fabric in the fabric processing equipment is relatively small, the control board will classify the current ambient temperature into the first temperature range and the total weight of the load into either the first or second weight range based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameters as the first level working parameters, so that the fabric processing device will wash the fabric with the first level working parameters.
[0034] When the current ambient temperature of the area where the fabric processing equipment is located is >25℃, indicating that the temperature is basically summer, and the weight of the fabric in the fabric processing equipment is moderate, the control board will classify the current ambient temperature into the first temperature range and the total weight of the load into the third or fourth weight range based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameters as the second level working parameters, so that the fabric processing device will wash the fabric with the second level working parameters.
[0035] When the current ambient temperature in the area where the fabric processing equipment is located is greater than 25°C, indicating that the temperature is basically summer, and the weight of the fabric in the fabric processing equipment is large, the control board will classify the current ambient temperature into the first temperature range and the total weight of the load into the fifth or sixth weight range based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameters to the third level working parameters, so that the fabric processing device will wash the fabric with the third level working parameters.
[0036] When the current ambient temperature of the area where the fabric processing equipment is located is 10℃ < current ambient temperature ≤ 25℃, it indicates that the temperature is basically in spring or autumn, and the weight of the fabric in the fabric processing equipment is relatively small, the control board will classify the current ambient temperature into the second temperature range and the total weight of the load into the first or second weight range based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameter to the fourth level working parameter, so that the fabric processing device will wash the fabric with the fourth level working parameter.
[0037] When the current ambient temperature of the area where the fabric processing equipment is located is 10℃ < current ambient temperature ≤ 25℃, indicating that the temperature is basically in spring or autumn, and the weight of the fabric in the fabric processing equipment is moderate, the control board will classify the current ambient temperature into the second temperature level and the total weight of the load into the third or fourth weight level based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameter to the fifth level working parameter, so that the fabric processing device will wash the fabric with the fifth level working parameter.
[0038] When the current ambient temperature of the area where the fabric processing equipment is located is 10℃ < current ambient temperature ≤ 25℃, it indicates that the temperature is basically in spring or autumn. When the weight of the fabric in the fabric processing equipment is large, the control board will classify the current ambient temperature into the second temperature level and the total weight of the load into the fifth or sixth weight level based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameter to the sixth level working parameter, so that the fabric processing device will wash the fabric with the sixth level working parameter.
[0039] When the current ambient temperature in the area where the fabric processing equipment is located is ≤10℃, indicating that the temperature is basically winter, and the weight of the fabric in the fabric processing equipment is small, the control board will classify the current ambient temperature into the third temperature range and the total weight of the load into the first or second weight range based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameters to the seventh level working parameters, so that the fabric processing device will wash the fabric with the seventh level working parameters.
[0040] When the current ambient temperature in the area where the fabric processing equipment is located is ≤10℃, indicating that the temperature is basically winter, and the weight of the fabric in the fabric processing equipment is moderate, the control board will classify the current ambient temperature into the third temperature range and the total weight of the load into the third or fourth weight range based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameters to the eighth level working parameters, so that the fabric processing device will wash the fabric with the eighth level working parameters.
[0041] When the current ambient temperature in the area where the fabric processing equipment is located is ≤10℃, indicating that the temperature is basically winter, and the weight of the fabric in the fabric processing equipment is large, the control board will classify the current ambient temperature into the third temperature level and the total weight of the load into the fifth or sixth weight level based on the current ambient temperature and the total weight of the load. At this time, the control board will set the target working parameters to the ninth level working parameters, so that the fabric processing device will wash the fabric with the ninth level working parameters.
[0042] By dividing the fabric into multiple preset weight and temperature levels, the control board can determine the corresponding target working parameters based on the different preset weight levels of the fabric within different preset temperature levels to match different fabric materials. This allows the fabric to be treated with the most suitable washing target working parameters, ensuring that each type of fabric receives the best washing treatment effect.
[0043] Optionally, in one implementation of this embodiment, the dehydration speed in the first-level working parameters and the second-level working parameters is a first speed; the dehydration speed in the third-level working parameters, the fourth-level working parameters, the fifth-level working parameters, and the sixth-level working parameters is a second speed; the dehydration speed in the seventh-level working parameters, the eighth-level working parameters, and the ninth-level working parameters is a third speed; the first speed is less than the second speed, and the second speed is less than the third speed.
[0044] In this embodiment, the washing time corresponding to the first level of working parameters is t1 and the spin speed is r1; the washing time corresponding to the second level of working parameters is t2 and the spin speed is r1; the washing time corresponding to the third level of working parameters is t3 and the spin speed is r2; the washing time corresponding to the fourth level of working parameters is t4 and the spin speed is r2; the washing time corresponding to the fifth level of working parameters is t5 and the spin speed is r2; the washing time corresponding to the sixth level of working parameters is t6 and the spin speed is r2; the washing time corresponding to the seventh level of working parameters is t7 and the spin speed is r3; the washing time corresponding to the eighth level of working parameters is t8 and the spin speed is r3; and the washing time corresponding to the ninth level of working parameters is t9 and the spin speed is r3. The washing time relationships between the first to ninth level operating parameters are: t1 < t2 < t3 < t4 < t5 < t6 < t7 < t8 < t9, and the relationships between the various spin speeds are: r1 < r2 < r3. The first to ninth level operating parameters target three categories of fabrics: lightweight summer fabrics, thicker spring / autumn fabrics, and heavy winter fabrics. The weight of these three types of fabrics increases sequentially, and the adjustment level increases accordingly. As the adjustment level increases, the washing time increases. Shorter washing times are used for lightweight fabrics to reduce damage; moderate washing times are used for thicker fabrics to balance cleaning effectiveness and energy consumption during the washing stage; and longer washing times are used for thicker fabrics to ensure thorough cleaning. The washing time increases as the adjustment level increases. The dehydration speed also needs to be increased gradually. The different dehydration speed ranges are: 600rpm≤r1<800rpm, 800rpm≤r2<1000rpm, and 1000rpm≤r3<1400rpm. This can be understood as follows: summer fabrics are relatively thin and do not require a high speed to complete dehydration, while thicker fabrics in spring and autumn require a certain high speed to complete dehydration, and thicker fabrics in winter require a higher speed to complete dehydration. This allows the fabric to be dehydrated in a faster time, thereby improving the dehydration efficiency of the fabric while reducing the energy consumption of the fabric processing equipment in the dehydration stage.
[0045] By combining different washing durations with different dehydration speeds to form different target operating parameters, the cleaning effect and dehydration efficiency of fabrics can be improved, and the energy consumption of fabric processing equipment during the washing and dehydration stages can be reduced, thereby enhancing the overall performance of the fabric processing equipment.
[0046] Optionally, in one implementation of this embodiment, the rinsing methods in the first level working parameters, the second level working parameters, the third level working parameters, the fourth level working parameters, and the fifth level working parameters all include a spray rinsing method; the sixth level working parameters, the seventh level working parameters, the eighth level working parameters, and the ninth level working parameters all include a water storage rinsing method.
[0047] In this embodiment, the washing time corresponding to the first level of working parameters is t1, and the rinsing method is spray rinsing; the washing time corresponding to the second level of working parameters is t2, and the rinsing method is spray rinsing; the washing time corresponding to the third level of working parameters is t3, and the rinsing method is spray rinsing; the washing time corresponding to the fourth level of working parameters is t4, and the rinsing method is spray rinsing; the washing time corresponding to the fifth level of working parameters is t5, and the rinsing method is spray rinsing; the washing time corresponding to the sixth level of working parameters is t6, and the rinsing method is water storage rinsing; the washing time corresponding to the seventh level of working parameters is t7, and the rinsing method is water storage rinsing; the washing time corresponding to the eighth level of working parameters is t8, and the rinsing method is water storage rinsing; and the washing time corresponding to the ninth level of working parameters is t9, and the rinsing method is water storage rinsing. The relationship between the washing time of the first level working parameters to the ninth level working parameters is as follows: t1 < t2 < t3 < t4 < t5 < t6 < t7 < t8 < t9.
[0048] In this embodiment, the target operating parameters include both washing time and rinsing method. Depending on the weight of the fabric, two different rinsing methods are used: spray rinsing and water storage rinsing. Water storage rinsing is a commonly used method. In this method, the water level in the inner drum is higher, ensuring optimal washing results when dealing with a large quantity of fabric or thicker fabrics. In contrast, spray rinsing has a lower water level in the inner drum. Water is introduced into the spray valve through the water inlet device for spray rinsing of the inner drum, while the drain device is opened simultaneously to achieve spray rinsing with both water inlet and outlet. This method effectively shortens the washing time when dealing with a smaller quantity of fabric or thinner fabrics.
[0049] This method matches the appropriate rinsing method according to different target working parameters, which can ensure that thick fabrics get the best washing effect, and can also complete the rinsing of thin fabrics in a shorter time, further improving the washing efficiency of fabrics.
[0050] Optionally, in one implementation of this embodiment, the drying degree in the first-level working parameters, the second-level working parameters, and the third-level working parameters is the first drying degree; the drying degree in the fourth-level working parameters, the fifth-level working parameters, and the sixth-level working parameters is the second drying degree; and the drying degree in the seventh-level working parameters, the eighth-level working parameters, and the ninth-level working parameters is the third drying degree. The drying degree represents a higher load moisture content than the second drying degree represents, and the drying degree represents a higher load moisture content than the third drying degree represents.
[0051] In this embodiment, the washing time corresponding to the first level of working parameters is t1 and the drying degree is h1; the washing time corresponding to the second level of working parameters is t2 and the drying degree is h1; the washing time corresponding to the third level of working parameters is t3 and the drying degree is h1; the washing time corresponding to the fourth level of working parameters is t4 and the drying degree is h2; the washing time corresponding to the fifth level of working parameters is t5 and the drying degree is h2; the washing time corresponding to the sixth level of working parameters is t6 and the drying degree is h2; the washing time corresponding to the seventh level of working parameters is t7 and the drying degree is h3; the washing time corresponding to the eighth level of working parameters is t8 and the drying degree is h3; and the washing time corresponding to the ninth level of working parameters is t9 and the drying degree is h3. The relationship between the washing time of the first to ninth level operating parameters is: t1 < t2 < t3 < t4 < t5 < t6 < t7 < t8 < t9, and the relationship between the multiple drying degrees is: h1 < h2 < h3.
[0052] The target working parameters include both washing time and drying degree. The drying degree refers to the final moisture content of the fabric after the drying process. This method can adopt corresponding washing time and drying programs for fabrics of different materials, so that fabrics of different materials can obtain different drying degrees and achieve the best drying effect. The drying degrees are arranged from largest to smallest as follows: drying degree h1: fabric moisture content 0% to 3%, drying degree h2: fabric moisture content -1% to -3%, drying degree h3: fabric moisture content -3% to -5%. Here, the drying degree refers to the drying of the fabric after washing, dehydration, and drying. The fabric moisture content is calculated as: (mass of dried fabric after drying - mass of dried fabric before washing) / mass of dried fabric before washing. Since the fabric also absorbs some moisture from the air, it will also have a certain humidity. For example, if the mass of dried fabric before washing is 1 kg, its weight after drying may become 0.9 kg. Then the moisture content of the fabric is (0.9-1) / 1 = -10%, which means that the fabric has been treated to be very dry and has achieved an excellent drying effect.
[0053] Preferably, when the target operating parameters simultaneously include washing time, rinsing method, and drying degree, the adjustment logic for the target operating parameters from the first level to the ninth level is as follows: First-level operating parameters: washing time is t1, spin speed is r1, spray rinsing method is used, and drying degree is h1; Second-level operating parameters: washing time is t1+3 minutes, spin speed is r1, spray rinsing method is used, and drying degree is h1; Third-level operating parameters: washing time is t1+4 minutes, spin speed is r2, spray rinsing method is used, and drying degree is h1; Fourth-level operating parameters: washing time is t1+5 minutes, spin speed is r2, spray rinsing method is used, and drying degree is h2; Fifth-level operating parameters: washing time is t1+6 minutes, spin speed is r2, spray rinsing method is used, and drying degree is h2; Level 6 operating parameters: washing time is t1+7 minutes, spin speed is r2, water storage type rinsing method is used, and drying degree is h2; Level 7 operating parameters: washing time is t1+8 minutes, spin speed is r3, water storage type rinsing method is used, and drying degree is h3; Level 8 operating parameters: washing time is t1+9 minutes, spin speed is r3, water storage type rinsing method is used, and drying degree is h3; Level 9 operating parameters: washing time is t1+10 minutes, spin speed is r3, water storage rinsing method is used, and drying degree is h3.
[0054] By applying different drying levels to fabrics of different materials, the moisture content of the fabric can be maintained within a range corresponding to its material, thus ensuring a good drying effect for all fabrics. Specifically, when processing lighter fabrics in summer, the drying level is relatively low and the fabric moisture content is relatively high, thereby achieving moderate drying of lightweight fabrics, saving energy, and avoiding over-drying of lightweight fabrics that may cause wrinkles. When processing moderately heavy fabrics in spring and autumn, the drying level and fabric moisture content are moderate. When processing heavier fabrics in winter, the drying level is relatively high and the fabric moisture content is relatively low, thereby achieving thorough drying of heavy clothing.
[0055] Optionally, in one implementation of this embodiment, obtaining the current ambient temperature includes: obtaining the current ambient temperature from a mobile terminal, wherein the mobile terminal is communicatively connected to the fabric processing device.
[0056] In this embodiment, a communication connection is established between the fabric processing equipment and the mobile terminal, enabling both to transmit and receive signals. The control motherboard first controls the mobile terminal to obtain the current ambient temperature information of the area where the fabric processing equipment is located from the network via wireless communication, and then controls the mobile terminal to transmit this current ambient temperature to the fabric processing equipment via wireless communication again. When the fabric processing equipment receives the current ambient temperature information, it uses this information as the current ambient temperature parameter and compares it with a preset temperature range parameter to determine the preset temperature range to which the current ambient temperature parameter belongs. The mobile terminal can obtain the real-time ambient temperature of the area where the fabric processing equipment is located from a relevant server via the Internet or satellite network, thereby adapting the washing mode of the fabric processing equipment to different fabric materials corresponding to different seasons, ensuring that the fabric always achieves the best washing effect.
[0057] Preferably, the mobile terminal can establish a communication connection with the fabric processing equipment via WIFI.
[0058] By using mobile terminals to obtain the real-time ambient temperature of the area where the fabric treatment equipment is located, the washing mode of the fabric treatment equipment can be adapted to different fabrics of different materials in different seasons, so that the fabrics can always obtain the best washing effect.
[0059] Example 2 This embodiment provides an electronic device, including a memory and a processor. The memory is used to store computer instructions, and the processor is used to call and execute the computer instructions to implement the control method in Embodiment 1.
[0060] In this embodiment, since the electronic device includes the control method in Embodiment 1, the electronic device has all the beneficial effects of the control method in Embodiment 1, which will not be elaborated here.
[0061] Example 3 This embodiment provides a fabric treatment device that executes the control method in Embodiment 1, or includes the electronic equipment in Embodiment 2; an inner cylinder 1; and a spraying component 2, wherein the spraying component 2 is used to spray water into the inner cylinder 1, and the input end of the spraying component is connected to the water inlet 3 of the fabric treatment device.
[0062] In this embodiment, as Figure 4 As shown, since the fabric processing equipment implements the control method in Embodiment 1 or includes the electronic equipment in Embodiment 2, the fabric processing equipment has all the beneficial effects of the control method in Embodiment 1 or the electronic equipment in Embodiment 2, which will not be elaborated here. Figure 3As shown, the water inlet 3 is located below the top cover of the fabric treatment equipment and above the inner drum 1. When the fabric treatment equipment responds to the washing program command, the water inlet 3 is opened, and washing water flows from the water inlet 3 into the input end of the spray element 2, which then begins to spray the inner drum. The spray element 2 can be located on the upper part of the inner drum 1 near the side wall, close to the door of the fabric treatment equipment, with water spraying from the top of the door towards the inner drum 1. The fabric treatment equipment also includes a drain end 4, located below the inner drum 1 near the bottom wall. The spray element 2 and the drain end 4 are diagonally arranged on the axial section of the inner drum 1 in the vertical direction, which facilitates the discharge of washing wastewater from the inner drum 1 while simultaneously performing spray rinsing on the fabric, thereby improving the washing efficiency of the fabric.
[0063] Optionally, in one implementation of this embodiment, the fabric processing device further includes a communication module, which is used to communicate with a mobile terminal and receive ambient temperature information transmitted from the mobile terminal to the fabric processing device.
[0064] In this embodiment, the communication module establishes a communication connection between the fabric processing device and the mobile terminal, enabling both devices to transmit and receive signals. The control motherboard first controls the mobile terminal to obtain the current ambient temperature information of the area where the fabric processing device is located from the network via wireless communication, and then controls the mobile terminal to transmit this current ambient temperature to the fabric processing device via wireless communication again. When the fabric processing device receives the current ambient temperature information, it uses this information as the current ambient temperature parameter. By using the mobile terminal to obtain the real-time ambient temperature of the area where the fabric processing device is located, the washing mode of the fabric processing device can be adapted to different fabrics of different materials in different seasons, so that the fabric can always obtain the best washing effect.
[0065] In summary, the ingenious design of the control method for fabric processing equipment lies in: First, by implementing this control method, the fabric processing equipment can use the current ambient temperature information to help determine the fabric material and automatically adjust different washing modes for different fabric materials. This makes the washing intensity of the fabric processing equipment match the fabric material, thereby achieving intelligent judgment of the fabric material by the fabric processing equipment and improving the washing effect of the fabric.
[0066] Secondly, by using mobile terminals to obtain the real-time ambient temperature of the area where the fabric processing equipment is located, the washing mode of the fabric processing equipment can be adapted to different materials of fabrics in different seasons, so that the fabric can always obtain the best washing effect.
[0067] Third, by dividing the fabric into multiple preset weight levels and preset temperature levels, the control board can determine the corresponding target working parameters within different preset temperature levels according to the different preset weight levels of the fabric to match different fabric materials. This allows the fabric to be treated with the most suitable washing target working parameters for the current fabric, ensuring that each type of fabric can achieve the best washing treatment effect.
[0068] Fourth, by simultaneously adjusting multiple process parameters in the washing process, the processing effect of the fabric treatment equipment on the fabric can be improved, thereby further enhancing the matching degree between the target working parameter adjustment level and the fabric, and thus improving the user experience.
[0069] Fifth, by combining different washing durations with different dehydration speeds, rinsing methods, and drying degrees to form different target working parameters, the cleaning effect, dehydration efficiency, and drying efficiency of fabrics can be improved, and the power and water consumption of fabric processing equipment can be reduced, thereby enhancing the overall performance of the fabric processing equipment.
[0070] It can be further understood that in this disclosure, "many" refers to two or more, and other quantifiers are similar. "And / or" describes the relationship between related objects, indicating that three relationships can exist; for example, A and / or B can represent: A alone, A and B simultaneously, and B alone. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship. The singular forms "a," "the," and "the" are also intended to include the plural forms unless the context clearly indicates otherwise.
[0071] It is further understood that the terms "first," "second," etc., are used to describe various types of information, but this information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another, and do not indicate a specific order or degree of importance. In fact, the expressions "first," "second," etc., are completely interchangeable. For example, without departing from the scope of this disclosure, first information can also be referred to as second information, and similarly, second information can also be referred to as first information.
[0072] It is further understood that although operations are described in a specific order in the accompanying drawings in the embodiments of this disclosure, this should not be construed as requiring these operations to be performed in the specific order or serial order shown, or requiring all of the shown operations to be performed to obtain the desired result. In certain environments, multitasking and parallel processing may be advantageous.
[0073] Other embodiments of this disclosure will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this disclosure are indicated by the following claims.
[0074] It should be understood that this disclosure is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this disclosure is limited only by the appended claims.
Claims
1. A control method for a fabric processing device, characterized in that, include: Obtain the total weight of the load in the fabric processing equipment and the current ambient temperature; Based on the total weight and the current ambient temperature, the target operating parameters of the fabric treatment equipment are determined. The target operating parameters include at least one of the following: washing time, spin speed, rinsing method, and drying degree. The fabric processing equipment is controlled to process the load according to the target operating parameters.
2. The method according to claim 1, characterized in that, Determining the target operating parameters of the fabric processing equipment based on the total weight and the current ambient temperature includes: Based on the total weight, a target weight level is determined. The target weight level is one of a plurality of preset weight levels, which are pre-configured and represent the range of total load weight. Based on the current ambient temperature, a target temperature level is determined. The target temperature level is one of multiple preset temperature levels, which are pre-configured according to the ambient temperature. The preset temperature level represents the range of ambient temperature. The target operating parameters are determined based on the target weight level and the target temperature level.
3. The method according to claim 2, characterized in that, The step of determining the target operating parameters based on the target weight level and the target temperature level includes: Based on the target weight setting and the target temperature setting, the target operating parameter is determined from multiple preset level operating parameters. The multiple preset level operating parameters are configured according to different combinations of the preset weight setting and the preset temperature setting, and the washing time is different in different target operating parameters.
4. The method according to claim 2, characterized in that, The plurality of preset temperature settings include a first temperature setting, a second temperature setting, and a third temperature setting. The first temperature setting represents an ambient temperature that is higher than the second temperature setting, and the second temperature setting represents an ambient temperature that is higher than the third temperature setting. The multiple preset weight levels include a first weight level, a second weight level, a third weight level, a fourth weight level, a fifth weight level, and a sixth weight level. The load weight represented by the multiple preset weight levels, from smallest to largest, is as follows: first weight level < second weight level < third weight level < fourth weight level < fifth weight level < sixth weight level. Determining the target operating parameters based on the target weight setting and the target temperature setting includes at least one of the following: Based on the fact that the target temperature setting is the first temperature setting and the target weight setting is either the first weight setting or the second weight setting, the preset first-level working parameters are determined as the target working parameters. Based on the fact that the target temperature setting is the first temperature setting and the target weight setting is the third weight setting or the fourth weight setting, the preset second-level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the first temperature level and the target weight level is the fifth weight level or the sixth weight level, the preset third-level working parameters are determined as the target working parameters. Based on the fact that the target temperature setting is the second temperature setting and the target weight setting is the first weight setting or the second weight setting, the preset fourth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the second temperature level and the target weight level is the third or fourth weight level, the preset fifth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the second temperature level and the target weight level is the fifth weight level or the sixth weight level, the preset sixth level working parameter is determined as the target working parameter. Based on the fact that the target temperature level is the third temperature level and the target weight level is the first weight level or the second weight level, the preset seventh level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the third temperature level and the target weight level is the third weight level or the fourth weight level, the preset eighth level working parameters are determined as the target working parameters. Based on the fact that the target temperature level is the third temperature level and the target weight level is the fifth or sixth weight level, the preset ninth level working parameters are determined as the target working parameters. Among the operating parameters from the first level to the ninth level, the washing time gradually increases.
5. The method according to claim 4, characterized in that, The dehydration speed in both the first-level operating parameters and the second-level operating parameters is the first speed. The dehydration speed in the third-level working parameters, the fourth-level working parameters, the fifth-level working parameters, and the sixth-level working parameters is the second speed. The dehydration speed in the seventh-level working parameters, the eighth-level working parameters, and the ninth-level working parameters is the third speed. The first rotational speed is less than the second rotational speed, and the second rotational speed is less than the third rotational speed.
6. The method according to claim 4, characterized in that, The rinsing methods in the first level working parameters, the second level working parameters, the third level working parameters, the fourth level working parameters, and the fifth level working parameters all include spray rinsing. The sixth, seventh, eighth, and ninth level operating parameters all include a water storage rinsing method.
7. The method according to claim 4, characterized in that, The degree of drying in the first level working parameters, the second level working parameters, and the third level working parameters is the first degree of drying; the degree of drying in the fourth level working parameters, the fifth level working parameters, and the sixth level working parameters is the second degree of drying; and the degree of drying in the seventh level working parameters, the eighth level working parameters, and the ninth level working parameters is the third degree of drying. The moisture content of the load after drying, represented by the first degree of drying, is greater than the moisture content of the load after drying, represented by the second degree of drying, and the moisture content of the load after drying, represented by the second degree of drying, is greater than the moisture content of the load after drying, represented by the third degree of drying.
8. The method according to claim 1, characterized in that, The step of obtaining the current ambient temperature includes: obtaining the current ambient temperature from a mobile terminal, wherein the mobile terminal is communicatively connected to the fabric processing equipment.
9. An electronic device, characterized in that, include: Memory stores computer instructions; A processor for invoking and executing the computer instructions to implement the method as described in any one of claims 1-8.
10. A fabric treatment device, characterized in that, include: The electronic device as described in claim 9; Inner cylinder (1); Sprayer (2), the sprayer (2) is used to spray into the inner cylinder (1), and the input end of the sprayer is connected to the water inlet (3) of the fabric processing equipment.
11. The fabric processing equipment according to claim 10, characterized in that, Also includes: A communication module is provided for communication connection with a mobile terminal and for receiving current ambient temperature information transmitted by the mobile terminal.