WO2018041140A1 - 羽绒服洗涤方法及洗衣机 - Google Patents

羽绒服洗涤方法及洗衣机 Download PDF

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WO2018041140A1
WO2018041140A1 PCT/CN2017/099652 CN2017099652W WO2018041140A1 WO 2018041140 A1 WO2018041140 A1 WO 2018041140A1 CN 2017099652 W CN2017099652 W CN 2017099652W WO 2018041140 A1 WO2018041140 A1 WO 2018041140A1
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Prior art keywords
washing
range
speed
down jacket
time
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PCT/CN2017/099652
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English (en)
French (fr)
Inventor
曾靖峰
方艳萍
韩新华
魏新
王际平
蔡国强
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青岛海尔洗衣机有限公司
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Publication of WO2018041140A1 publication Critical patent/WO2018041140A1/zh

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F33/00Control of operations performed in washing machines or washer-dryers 
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F37/00Details specific to washing machines covered by groups D06F21/00 - D06F25/00
    • D06F37/30Driving arrangements 
    • D06F37/36Driving arrangements  for rotating the receptacle at more than one speed

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  • the present disclosure relates to the field of washing machine technology, for example, to a down jacket washing method and a washing machine.
  • the down jacket is a clothing that is frequently used in the autumn and winter seasons.
  • the performance of the down jacket is warmth, so the quality of the filler (velvet) is high, and the fabric is required to have anti-velvet, windproof and breathable properties.
  • Medium anti-velvet properties are essential, so high-density chemical fiber fabrics are often used.
  • the down jacket is bloated, with a lot of air in between. During the washing process, the down will be wetted and united. If the down is not evenly distributed, it will affect the warmth of the down jacket.
  • the pulsator washing machine In the case of a pulsator washing machine, the pulsator washing machine completely or substantially completely immerses the laundry during the washing process, and the pulsator drives the washing water flow to rub or penetrate the clothes to achieve the purpose of washing the clothes; in the case of the drum washing machine, the drum washing machine is During the washing process, the clothes are taken off the water surface by the lifting ribs and then tapped into the water to drive the washing water flow to rub or penetrate the clothes to achieve the purpose of washing the clothes. Whether it is a pulsator washing machine or a drum washing machine, the use of a conventional washing program to wash the down jacket will make the down in the down jacket highly united.
  • the present disclosure proposes a down jacket washing method capable of alleviating the unity phenomenon after the down jacket washing and being convenient to operate.
  • the present disclosure also proposes a washing machine capable of alleviating the unity phenomenon after the down jacket washing and being convenient to operate.
  • a down garment washing method comprising: washing a down jacket by setting a washing parameter of a washing machine; wherein the washing program of the washing machine comprises washing, at least one rinsing, and at least two dehydration; the washing parameter includes an intermediate spin speed and finally Dehydration rotation speed, the final dehydration refers to the last dehydration, and the intermediate dehydration refers to dehydration between washing and rinsing; wherein the maximum value of the final dehydration rotation speed is lower than the maximum dehydration rotation speed of the washing machine; The speed is selected within the selected range corresponding to the final spin speed.
  • the final dewatering speed is selected from the range of 400-800 r/min.
  • the final dewatering speed is selected in the range of 250-650 r/min.
  • the set value of the washing parameter is at least one of the following: a final spin speed of 600 r/min and an intermediate spin speed of 600 r/min.
  • the set value of the laundry parameter is at least one of the following: a final spin speed of 450 r/min and an intermediate spin speed of 450 r/min.
  • the water inlet speed of the inner cylinder is in the range of 10-40 r/min.
  • the method comprises: injecting water into the inner tub of the pulsator washing machine; washing the down jacket, wherein the washing time is in the range of 5-25 min, and the washing water amount is in the range of 37-57 L, The washing speed is in the range of 60-130r/min, and the pulsator alternately rotates in the range of 0.7-3s in the rotation time and the stop time in the range of 0.5-2s; performing at least one intermediate dewatering on the down jacket, the pulsator The step of rinsing the inner tub of the washing machine and rinsing the down jacket, wherein the intermediate dehydration speed is in the range of 250-650 r/min, the intermediate dehydration time is in the range of 1-5 min; the rinsing time is in the range of 2-7 min, and the rinsing amount is In the range of 37-57L, the rinsing speed is in the range of 60-130r/min.
  • the pulsator alternately rotates within the range of 0.7-3 s and the stop time is in the range of 0.5-2 s; the final dewatering of the down jacket is carried out, and the final dehydration speed is in the range of 250-650 r/min, and finally dehydrated.
  • the time is in the range of 1-5 min.
  • the method comprises: injecting water into the inner cylinder of the drum washing machine, wherein the water inlet speed is in the range of 10-40 r/min; washing the down jacket, wherein the washing time is 5-30 min.
  • the washing speed is in the range of 20-60r/min
  • the inner cylinder rotates in the range of 10-30s
  • the stopping time is 5-20s.
  • Stopping performing at least one step of intermediate dewatering of the down jacket, watering the inner cylinder, and rinsing the down jacket; wherein the rinsing time is in the range of 1-7 min, the rinsing water amount is in the range of 10-30 L, and the rinsing speed is In the range of 20-60r/min, the inner cylinder rotates in the range of 10-30s, and the stopping time alternates in the range of 5-20s; the final dewatering is performed on the down jacket, wherein the final dehydration speed is 400-800r. In the range of /min, the final dehydration time is in the range of 1-3 min.
  • the washing time is 15 min, the washing water volume is 47 L, the washing speed is 115 r/min, and the pulsator is rotated for 1.5 s
  • the stopping time is Alternately transfer for 1 s; perform two steps of intermediate dewatering of the down jacket, watering the inner tub of the pulsator washing machine, and rinsing the down jacket; in the step of intermediate dewatering of the down jacket, the intermediate dehydration speed is 450 r/min, intermediate dehydration The time is 4 min; in the step of rinsing the down jacket, the rinsing time is 3.5 min, the rinsing water volume is 47 L, the rinsing speed is 115 r/min, the pulsator is rotated for 1.5 s, and the stopping time is 1 s alternately; In the final dewatering step of the down jacket, the final dewatering speed is 450r
  • the water inflow speed is 20 r/min in the step of injecting the inner cylinder of the drum washing machine; in the step of washing the down jacket, the washing time is 15 min, and the washing water volume is 8 L.
  • the washing speed is 45r/min, the inner cylinder has a rotation time of 20s and the stop time is 10s.
  • a step of heating is performed between the step of injecting water into the inner cylinder of the drum washing machine and the step of washing the down jacket, the heating step comprising:
  • the water temperature in the inner cylinder is greater than or equal to 25 ° C. If the water temperature in the inner cylinder is greater than or equal to 25 ° C, the step of washing the down jacket is started; if the water temperature in the inner cylinder is less than 25 ° C, the water in the inner cylinder is heated, and the inner cylinder is rotated for 10 s. After stopping the rotation for 7 s, it is judged again whether the water temperature in the inner cylinder is greater than or equal to 25 ° C.
  • a washing machine for performing a down jacket washing method according to any of the above.
  • a computer readable storage medium storing computer executable instructions for performing the above method.
  • a laundry apparatus including one or more processors, a memory, and one or more programs, the one or more programs being stored in a memory, and when executed by one or more processors, performing the above method .
  • a computer program product comprising a computer program stored on a non-transitory computer readable storage medium, the computer program comprising program instructions that, when executed by a computer, cause the computer to execute Any of the above methods.
  • the down jacket washing method of the present disclosure discards the solution of separately solving the unity phenomenon after washing in the related art, and prevents the down jacket to be combined after the down jacket is washed by setting the washing parameters of the washing machine to solve the problem of the down and down of the down jacket after washing. Moreover, the technical solution of the present disclosure solves the unity phenomenon by setting the washing parameters of the washing machine, and the operation is convenient, simple and time-saving, and is suitable for both the domestic washing machine and the washing machine. Clothing store, strong applicability.
  • the washing machine of the present disclosure is used to execute the above-mentioned down jacket washing method, which can prevent the down jacket from being down after the down jacket is washed by setting the washing parameters of the washing machine, and can solve the problem that the down jacket is cleaned after the down. Moreover, the technical solution of the present disclosure solves the unity phenomenon by setting the washing parameters of the washing machine, and the operation is convenient and simple, and the time-saving is applicable to both the domestic washing machine and the laundry, and the applicability is strong.
  • FIG. 1 is a flow chart of a first embodiment of a method for washing a down jacket provided in the embodiment, wherein the method of washing the down jacket is performed by using a pulsator washing machine;
  • FIG. 2 is a flow chart of a second embodiment of the method for washing a down jacket provided by the embodiment, wherein the method of washing the down jacket is performed by using a drum washing machine;
  • FIG. 3 is a schematic diagram of the hardware structure of a laundry device provided by this embodiment.
  • a down jacket washing method is provided in this embodiment.
  • the laundry condition of the washing machine is set to prevent the down jacket from being washed and united.
  • the down jacket washing method of the present embodiment discards the solution of separately solving the unity phenomenon after washing in the related art, but sets the washing parameters of the washing machine to prevent the down jacket from being combined after the down jacket is washed, and solves the problem that the down jacket is cleaned after the down. Moreover, the solution of the embodiment solves the unity phenomenon by setting the washing parameters of the washing machine, and the operation is convenient, simple and time-saving, and is suitable for both the household washing machine and the laundry, and has strong applicability.
  • the washing of the down jacket is performed using a pulsator washing machine.
  • the washing procedure of the pulsator washing machine includes a first water inlet step, a washing step, at least one rinsing step, an intermediate dewatering step and an intermediate water inlet step between the washing step and the rinsing step, and between the two rinsing steps, and finally The final dehydration step.
  • the structure of the down jacket refers to the downy structure of the down, that is, the small space formed by the fabric surrounding the down, and the downed structure of the down can be divided into a three-dimensional box structure and a double clip structure.
  • the down distribution is uniform, but the process is cumbersome and the weight of the entire garment is increased.
  • the clothes are light, but easy to breathe, suitable for the inner liner.
  • the three-dimensional box-like structure and the double-layer clip structure of the down jacket are available on the market. Among them, the three-dimensional box-like structure is more common in the heavy down jacket used in the three or nine days, and the double-layer clip structure is mostly used in fashionable styles and light-weight models.
  • Down jacket Regardless of the structure, at high speeds, the down is pulled by centrifugal force to one end of these small spaces, making the interior of the down jacket united. Therefore, the down unity problem can be correlated with the dehydration speed, and the down and down of the down jacket can be prevented by setting a specific intermediate dehydration speed and a final dehydration speed.
  • the spin speed is set to a lower range to prevent the inner down of the down jacket from being united, and the water inside the down jacket is released.
  • the maximum dehydration speed of the washing machine is greater than 650 r/min, and in this embodiment, the maximum value of the final dehydration speed selection range is lower than the highest dehydration speed of the washing machine, and is set to 250-650 r/min.
  • the intermediate dehydration speed is selected within the selected range corresponding to the final dewatering speed, that is, the intermediate dehydration speed is also in the range of 250-650 r/min.
  • the final dehydration speed is set to 450 r/min
  • the intermediate dehydration speed may be equal to the final dehydration speed, or may be slightly adjusted based on the final dehydration speed setting.
  • the down jacket washing method includes the following steps.
  • the down jacket is washed, wherein the washing time is in the range of 5-25 min (the set value is 15 min), and the washing water volume is in the range of 37-57 L (the set value is 47 L). ), the washing speed is in the range of 60-130r/min (set value is 115r/min), the pulsator has a rotation time in the range of 0.7-3s (the set value is 1.5s), and the stop time is 0.5-2s. Within the range (set value is 1s) alternately rotates and alternates between positive and negative, and determines whether the washing time is reached after one cycle of forward-stop-reverse-stop. If the washing time is reached, enter S1.3. In order to perform the intermediate dehydration step, if the washing time is not reached, the washing step of the forward-stop-reverse-stop is continued.
  • the down jacket is subjected to intermediate dewatering, wherein the intermediate dewatering speed is in the range of 250-650 r/min (set value is 450 r/min), and the intermediate dewatering time is 1-5 min. Within the range (set value is 5min).
  • the down jacket is rinsed, wherein the rinsing time is in the range of 2-7 min (the set value is 3.5 min), and the rinsing water amount is in the range of 37-57 L (the set value is 47L), the rinsing speed is in the range of 60-130r/min (set value is 115r/min), the pulsator has a rotation time in the range of 0.7-3s (set value is 1.5s), and the stop time is 0.5- In the range of 2s (set value is 1s), alternately rotates alternately and forwards and reverses, and after a cycle of forward-stop-reverse-stop, it is judged whether the rinsing time is reached. If the rinsing time is reached, the next step is entered. The step (which may be an intermediate dehydration step or a final dehydration step), if the rinse time is not reached, continues the forward-stop-reverse-stop rinse step.
  • the rinsing time is in the range of 2-7 min (
  • the final dewatering of the down jacket is carried out, the final dewatering speed is in the range of 250-650r/min (set value is 450r/min), and the final dewatering time is in the range of 1-5min. (Setting value is 4min).
  • the value of the plurality of laundry parameters referred to herein corresponds to a load of less than 1 kg, and the weight of the down jacket is substantially less than 1 kg.
  • the "rotation speed" mentioned is the rotation speed of the pulsator.
  • the difference between the embodiment and the above embodiment is that the down jacket is washed by the drum washing machine, and when the drum washing machine is used, the laundry parameters of the washing machine can still be set to prevent the down jacket from being cleaned after the down jacket is washed.
  • the down jacket washing method of the present embodiment discards the solution of separately solving the unity phenomenon after washing in the related art, but sets the washing parameters of the washing machine to prevent the down jacket from being combined after the down jacket is washed, and solves the problem that the down jacket is cleaned after the down. Moreover, the solution of the embodiment solves the unity phenomenon by setting the washing parameters of the washing machine, and the operation is convenient, simple and time-saving, and is suitable for both the household washing machine and the laundry, and has strong applicability.
  • the washing process of the drum washing machine includes a first water inflow step, a washing step, at least one rinsing step, an intermediate dewatering step and an intermediate water inflow step between the washing step and the rinsing step, and between the two rinsing steps, and finally the final Dehydration step. Therefore, the down unity problem can be correlated with the dehydration speed, and the down jacket can be prevented from being washed after setting the specific intermediate dehydration speed and the final dehydration speed. Velvet unity.
  • the spin speed is set to a lower range to prevent the inner down of the down jacket from being united, and the water inside the down jacket is released.
  • the preset final spin-drying speed is greater than 800 r/min, and in this embodiment, the selected range of the final spin-drying speed is lower than the preset final spin-drying speed, and is set to 400-800 r/ Min.
  • the intermediate dewatering speed is selected within the selected range corresponding to the final dewatering speed, that is, the intermediate dehydration speed is also in the range of 400-800 r/min.
  • the final dewatering speed setting value is 600r/min
  • the intermediate dehydration rotation speed may be equal to the final dehydration rotation speed, or may be slightly adjusted based on the final dehydration rotation speed setting value.
  • the related procedure reduces the water inlet speed, so that the down jacket can just be dripped by the water brought by the inner cylinder. So that it is fully wetted.
  • the water inlet speed of the inner cylinder is in the range of 10-40 r/min.
  • the set value of the water inlet speed of the inner cylinder is 20 r/min.
  • the down garment washing method employing a drum washing machine includes the following steps.
  • water is injected into the inner cylinder of the drum washing machine, wherein the water inlet speed is in the range of 10-40 r/min (set value is 20 r/min), and the water injection amount is The amount of washing water described below.
  • step a it is judged whether the water temperature in the inner cylinder is 25 ° C or more, and if so, S2.2 is performed, and if not, the following step b is performed.
  • step b the water in the inner cylinder is heated, and the inner cylinder is rotated for 20 seconds, and then stopped for 10 s, and the process returns to step a.
  • washing step the down jacket is washed, wherein the washing time is in the range of 5-30 min (the set value is 15 min), and the washing water amount is in the range of 5-12 L (the set value is 8 L). ), the washing speed is in the range of 20-60r/min (set value is 45r/min), and the inner cylinder is rotated for 10-30s.
  • the stop time is in the range of 5-20s (set value is 10s) alternately, and after the rotation-stop one cycle, it is judged whether the washing time is reached, if the washing time is reached Then, the process proceeds to step S2.3 to perform the intermediate dehydration step, and if the washing time is not reached, the rotation-stop washing step is continued.
  • the down jacket is rinsed, wherein the rinsing time is in the range of 1-7 min (the set value is 5 min), and the rinsing water amount is in the range of 10-30 L (the set value is 15 L). ), the rinsing speed is in the range of 20-60r/min (set value is 45r/min), the inner cylinder is in the range of 10-30s in rotation time (set value is 20s), and the stop time is 5-20s. Within the range (set value is 10s), alternately stop, and after the rotation-stop one cycle, judge whether the rinsing time is reached. If the rinsing time is reached, proceed to the next step (may be the intermediate dehydration step or the final dehydration step). If the rinsing time has not been reached, the rinsing step of the rotation-stop is continued.
  • the final dewatering is performed on the down jacket, wherein the final dewatering speed is in the range of 400-800 r/min (set value is 600 r/min), and the final dewatering time is 1-3 min. Within the range (set value is 2min).
  • a heating step (steps a and b) was carried out between S2.1 and S2.2, and a suitable water temperature of 25 ° C was selected.
  • the heating step may not be employed, or the temperature of the heating may be selected to be any value below 40 °C.
  • the values of the multiple laundry parameters involved in this paper correspond to the load below 1 kg, feather
  • the weight of the cashmere suit is basically less than 1 kg.
  • the "rotation speed” mentioned is the rotation speed of the inner cylinder of the drum washing machine.
  • the plurality of washing parameters of the drum washing machine selects the value in the above-mentioned range of values, especially when the above-mentioned set value is selected, the washing result of the combination of down, unity, water content, washing, etc., the uniformity of the down jacket after washing is remarkable. Improvement, water content reduction, decontamination ability can reach more than 90%.
  • a washing machine for performing the down jacket washing method of the first embodiment or the second embodiment.
  • the washing machine may be a pulsator washing machine for performing the down jacket washing method of the first embodiment; the washing machine may also be a drum washing machine for performing the down jacket washing method of the second embodiment.
  • the washing machine can prevent the down jacket from being combined after the down jacket is washed by setting the washing parameters of the washing machine to solve the problem of the down and down of the down jacket after washing.
  • the solution of the embodiment solves the unity phenomenon by setting the washing parameters of the washing machine, and the operation is convenient, simple and time-saving, and is suitable for both the domestic washing machine and the laundry, and has strong applicability.
  • the embodiment further provides a computer readable storage medium storing computer executable instructions for performing the above method.
  • FIG. 3 is a schematic diagram showing the hardware structure of a laundry device according to the embodiment, as shown in FIG.
  • the laundry device includes one or more processors 310 and memory 320.
  • One processor 310 is taken as an example in FIG.
  • the laundry apparatus may further include: an input device 330 and an output device 340.
  • the processor 310, the memory 320, the input device 330, and the output device 340 in the laundry device may be connected by a bus or other means, as exemplified by a bus connection in FIG.
  • the input device 330 can receive input numeric or character information
  • the output device 340 can include a display device such as a display screen.
  • the memory 320 is a computer readable storage medium that can be used to store software programs, computer executable programs, and modules.
  • the processor 310 executes various functional applications and data processing by executing software programs, instructions, and modules stored in the memory 320 to implement any of the above embodiments.
  • the memory 320 may include a storage program area and an storage data area, wherein the storage program area may store an operating system, an application required for at least one function; the storage data area may store data created according to usage of the laundry device, and the like.
  • the memory may include volatile memory such as random access memory (RAM), and may also include non-volatile memory such as at least one magnetic disk storage device, flash memory device, or other non-transitory solid state storage device.
  • Memory 320 can be a non-transitory computer storage medium or a transitory computer storage medium.
  • the non-transitory computer storage medium such as at least one magnetic disk storage device, flash memory device, or other non-volatile solid state storage device.
  • memory 320 can optionally include memory remotely located relative to processor 310, which can be connected to the laundry device over a network. Examples of the above networks may include the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
  • Input device 330 can be used to receive input numeric or character information and to generate key signal inputs related to user settings and function control of the laundry device.
  • the output device 340 can include a display such as a display screen device.
  • a person skilled in the art can understand that all or part of the process of implementing the above embodiment method can be completed by executing related hardware by a computer program, and the program can be stored in a non-transitory computer readable storage medium.
  • the program when executed, may include the flow of an embodiment of the method as described above, wherein the non-transitory computer readable storage medium may be a magnetic disk, an optical disk, a read only memory (ROM), or a random access memory (RAM). Wait.
  • the down jacket washing method and the washing machine provided by the present disclosure can prevent the down jacket from being combined after the down jacket is washed by setting the washing parameters of the washing machine and setting the plurality of washing parameters to be lower than the maximum parameter value of the washing machine, and solving the down and down of the down jacket after washing. problem.
  • the solution of the embodiment solves the unity phenomenon by setting the washing parameters of the washing machine, and the operation is convenient, simple and time-saving, and is suitable for both the domestic washing machine and the laundry, and has strong applicability.

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Abstract

本公开提供一种羽绒服洗涤方法和洗衣机,其中所述方法包括:通过设定洗衣机的洗衣参数对羽绒服进行洗涤;其中,所述洗衣机的洗涤程序包括洗涤、至少一次漂洗以及至少两次脱水;所述洗衣参数包括中间脱水转速和最终脱水转速,所述最终脱水是指最后一次脱水,所述中间脱水是指位于洗涤与漂洗之间的脱水;其中,所述最终脱水转速的选值范围的最大值低于洗衣机的最高脱水转速;所述中间脱水转速在所述最终脱水转速所对应的选值范围内选择。

Description

羽绒服洗涤方法及洗衣机 技术领域
本公开涉及洗衣机技术领域,例如涉及一种羽绒服洗涤方法及洗衣机。
背景技术
羽绒服是秋冬季节使用频繁的服装,羽绒服注重的性能是保暖性,因此对填充物(绒)的质量要求较高,同时对于服装面料要求具备防绒性、防风性和透气性,上述三个特性中防绒性至关重要,因此多采用高密度化纤面料。羽绒服体型臃肿,其间有大量空气,洗涤过程中羽绒会被沾湿而发生团结,若羽绒未能分布均匀,将会影响羽绒服的保暖性。就波轮洗衣机而言,波轮洗衣机在洗涤过程中会将衣物完全或基本完全浸没,波轮带动洗涤水流摩擦或穿透衣物,达到洗净衣物的目的;就滚筒洗衣机而言,滚筒洗衣机在洗涤过程中通过提升筋将衣物带离水面再拍打入水,带动洗涤水流摩擦或穿透衣物,达到洗净衣物的目的。无论是波轮洗衣机还是滚筒洗衣机,采用常规的洗涤程序洗涤羽绒服后都会使羽绒服中的羽绒发生高度团结。
而相关技术中,为解决羽绒服羽绒团结的问题,需要将羽绒服平铺在输送网带上进行烘干。但是,这种方式耗时且操作不便,更不利于在家洗涤羽绒服。
发明内容
本公开提出一种能够减轻羽绒服洗涤后的团结现象且操作方便的羽绒服洗涤方法。
本公开还提出一种能够减轻羽绒服洗涤后的团结现象且操作方便的洗衣机。
一种羽绒服洗涤方法,包括:通过设定洗衣机的洗衣参数对羽绒服进行洗涤;其中,所述洗衣机的洗涤程序包括洗涤、至少一次漂洗以及至少两次脱水;所述洗衣参数包括中间脱水转速和最终脱水转速,所述最终脱水是指最后一次脱水,所述中间脱水是指位于洗涤与漂洗之间的脱水;其中,最终脱水转速的选值范围的最大值低于洗衣机的最高脱水转速;中间脱水转速在最终脱水转速所对应的选值范围内选择。
可选地,针对滚筒洗衣机,最终脱水转速的选值范围为400-800r/min。
可选地,针对波轮洗衣机,最终脱水转速的选值范围为250-650r/min。
可选地,针对滚筒洗衣机,所述洗衣参数的设定值为以下至少之一:最终脱水转速为600r/min和中间脱水转速为600r/min。
可选地,针对波轮洗衣机,所述洗衣参数的设定值为以下至少之一:最终脱水转速为450r/min和中间脱水转速为450r/min。
可选地,针对滚筒洗衣机,在第一次向滚筒洗衣机的内筒注水时,内筒的进水转速位于10-40r/min的范围内。
可选地,当采用波轮洗衣机洗涤羽绒服时,包括:向波轮洗衣机的内桶注水;对羽绒服进行洗涤,其中,洗涤时间在5-25min的范围内,洗涤水量在37-57L的范围内,洗涤转速在60-130r/min的范围内,波轮以转动时间在0.7-3s的范围内、停止时间在0.5-2s的范围内交替转停;执行至少一次对羽绒服进行中间脱水、向波轮洗衣机的内桶注水和对羽绒服进行漂洗的步骤,其中,中间脱水转速在250-650r/min的范围内,中间脱水时间在1-5min的范围内;漂洗时间在2-7min的范围内,漂洗水量在37-57L的范围内,漂洗转速在60-130r/min的范 围内,波轮以转动时间在0.7-3s的范围内、停止时间在0.5-2s的范围内交替转停;对羽绒服进行最终脱水,最终脱水转速在250-650r/min的范围内,最终脱水时间在1-5min的范围内。
可选地,当采用滚筒洗衣机洗涤羽绒服时,包括:向滚筒洗衣机的内筒注水,其中,进水转速在10-40r/min的范围内;对羽绒服进行洗涤,其中,洗涤时间在5-30min的范围内,洗涤水量在5-12L的范围内,洗涤转速在20-60r/min的范围内,内筒以转动时间在10-30s的范围内、停止时间在5-20s的范围内交替转停;执行至少一次对羽绒服进行中间脱水、向所述内筒中注水和对羽绒服进行漂洗的步骤;其中,漂洗时间在1-7min的范围内,漂洗水量在10-30L的范围内,漂洗转速在20-60r/min的范围内、内筒以转动时间在10-30s的范围内、停止时间在5-20s的范围内交替转停;对羽绒服进行最终脱水,其中,最终脱水转速在400-800r/min的范围内,最终脱水时间在1-3min的范围内。
可选地,当采用波轮洗衣机洗涤羽绒服时,在对羽绒服进行洗涤的步骤中,洗涤时间为15min,洗涤水量为47L,洗涤转速为115r/min,波轮以转动时间为1.5s、停止时间为1s交替转停;执行两次对羽绒服进行中间脱水、向波轮洗衣机的内桶注水和对羽绒服进行漂洗的步骤;在对羽绒服进行中间脱水的步骤中,中间脱水转速为450r/min,中间脱水时间为4min;在对羽绒服进行漂洗的步骤中,漂洗时间为3.5min,漂洗水量为47L,漂洗转速为115r/min、波轮以转动时间为1.5s、停止时间为1s交替转停;在对羽绒服进行最终脱水的步骤中,最终脱水转速为450r/min,最终脱水时间为4min。
可选地,当采用滚筒洗衣机洗涤羽绒服时,在向滚筒洗衣机的内筒注水的步骤中,进水转速为20r/min;在对羽绒服进行洗涤的步骤中,洗涤时间为15min,洗涤水量为8L,洗涤转速为45r/min,内筒以转动时间为20s、停止时间为10s 交替转停;执行三次对羽绒服进行中间脱水、向所述内筒中注水和对羽绒服进行漂洗的步骤;在对羽绒服进行漂洗的步骤中,漂洗时间为5min,漂洗水量为15L,漂洗转速为45r/min、内筒以转动时间为20s、停止时间为10s交替转停;在对羽绒服进行最终脱水的步骤中,最终脱水转速为600r/min,最终脱水时间为2min。
可选地,在向滚筒洗衣机的内筒注水的步骤和对羽绒服进行洗涤的步骤之间包括加热步骤,所述加热步骤包括:
判断内筒中水温是否大于等于25℃,若内筒中水温大于等于25℃,则开始对羽绒服进行洗涤的步骤;若内筒中水温小于25℃,则对内筒中的水进行加热,同时内筒转动10s后停止转动7s,再次判断内筒中水温是否大于等于25℃。
一种洗衣机,洗衣机用于执行如上述任一项的羽绒服洗涤方法。
一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述方法。
一种洗衣设备,该洗衣设备包括一个或多个处理器、存储器以及一个或多个程序,所述一个或多个程序存储在存储器中,当被一个或多个处理器执行时,执行上述方法。
一种计算机程序产品,所述计算机程序产品包括存储在非暂态计算机可读存储介质上的计算机程序,所述计算机程序包括程序指令,当所述程序指令被计算机执行时,使所述计算机执行上述任意一种方法。
本公开的羽绒服洗涤方法摒弃相关技术中在洗涤后单独解决团结现象的方案,而是通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结,以解决羽绒服洗后羽绒团结的问题。而且,本公开的技术方案是通过设定洗衣机的洗衣参数来解决团结现象,操作方便简单、省时,既适用于家用洗衣机,也适用于洗 衣店,适用性强。
本公开的洗衣机用于执行上述羽绒服洗涤方法,该洗衣机通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结,可以解决羽绒服洗后羽绒团结的问题。而且,本公开的技术方案是通过设定洗衣机的洗衣参数来解决团结现象,操作方便简单、省时,既适用于作为家用洗衣机,也适用于洗衣店,适用性强。
附图说明
图1是本实施例提供的羽绒服洗涤方法的实施例一的流程图,其中,采用波轮洗衣机执行该羽绒服洗涤方法;
图2是本实施例提供的羽绒服洗涤方法的实施例二的流程图,其中,采用滚筒洗衣机执行该羽绒服洗涤方法;
图3是本实施例提供的一种洗衣设备的硬件结构示意图。
具体实施方式
下面结合附图并通过以下实施例来说明本公开的技术方案。
实施例一
参照图1,在本实施例中提供一种羽绒服洗涤方法。在该羽绒服洗涤方法中,通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结。
本实施例的羽绒服洗涤方法摒弃相关技术中在洗涤后单独解决团结现象的方案,而是通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结,解决羽绒服洗后羽绒团结的问题。而且,本实施例的方案是通过设定洗衣机的洗衣参数来解决团结现象,操作方便简单、省时,既适用于家用洗衣机,也适用于洗衣店,适用性强。
可选地,在本实施例中,采用波轮洗衣机进行羽绒服的洗涤。波轮洗衣机的洗涤程序包括第一次进水步骤、洗涤步骤、至少一次漂洗步骤、位于洗涤步骤与漂洗步骤之间和位于两次漂洗步骤之间的中间脱水步骤和中间进水步骤以及最后的最终脱水步骤。羽绒服的结构是指羽绒的充绒结构,也就是面料包围羽绒而形成的一个个小空间,羽绒的充绒结构可分为立体盒状结构和双层夹片结构。对于立体盒状结构,羽绒分布均匀,但工艺繁琐,增加整衣重量。对应双层夹片结构,衣服较轻,但易透风,适合做内胆用。羽绒服充绒的立体盒状结构和双层夹片结构市面上都有,其中,立体盒状结构多见于三九天使用的厚重的羽绒服,双层夹片结构则多用于款式时尚,轻薄款的羽绒服。无论是哪种结构,在高速转动时,羽绒都会被离心力甩到这些小空间的一端,使得羽绒服内部羽绒团结。因此,可以将羽绒团结问题与脱水速度相关联,通过设置特定的中间脱水转速和最终脱水转速来防止羽绒服洗后羽绒团结。
可选地,本实施例中将脱水转速设置在一较低范围内,以防止羽绒服洗后内部羽绒团结,以及方便羽绒服内部的水释放出。相关技术中在洗涤普通衣物时,洗衣机的最高脱水转速大于650r/min,而本实施例中,最终脱水转速的选值范围的最大值低于洗衣机的最高脱水转速,设置为250-650r/min。中间脱水转速在最终脱水转速所对应的选值范围内选择,即中间脱水转速也位于250-650r/min的范围内。
可选地,最终脱水转速的设定值为450r/min,中间脱水转速可与最终脱水转速相等,也可在最终脱水转速的设定值的基础上略微调整。
继续参照图1,可选地,在本实施例中,羽绒服洗涤方法包括如下步骤。
在S1.1(即第一次进水步骤)中,向波轮洗衣机的内桶注水,其中,注水量为下述洗涤水量。
在S1.2(即洗涤步骤)中,对羽绒服进行洗涤,其中,洗涤时间在5-25min的范围内(设定值为15min),洗涤水量在37-57L的范围内(设定值为47L),洗涤转速在60-130r/min的范围内(设定值为115r/min),波轮以转动时间在0.7-3s的范围内(设定值为1.5s)、停止时间在0.5-2s的范围内(设定值为1s)交替转停且交替正反转,并且,在正转-停止-反转-停止一个周期后判断是否达到洗涤时间,若达到洗涤时间,则进入S1.3以执行中间脱水步骤,若未达到洗涤时间,则继续执行正转-停止-反转-停止的洗涤步骤。
执行1-3次(设定值为2次)S1.3.1-S1.3.3,执行完毕后进入S1.4。
在S1.3.1(即中间脱水步骤)中,对羽绒服进行中间脱水,其中,中间脱水转速在250-650r/min的范围内(设定值为450r/min),中间脱水时间在1-5min的范围内(设定值为5min)。
在S1.3.2(即中间进水步骤)中,向波轮洗衣机的内桶注水,其中,注水量为下述漂洗水量。
在S1.3.3(即漂洗步骤)中,对羽绒服进行漂洗,其中,漂洗时间在2-7min的范围内(设定值为3.5min),漂洗水量在37-57L的范围内(设定值为47L),漂洗转速在60-130r/min的范围内(设定值为115r/min),波轮以转动时间在0.7-3s的范围内(设定值为1.5s)、停止时间在0.5-2s的范围内(设定值为1s)交替转停且交替正反转,并且,在正转-停止-反转-停止一个周期后判断是否达到漂洗时间,若达到漂洗时间,则进入下一步骤(可能是中间脱水步骤或最终脱水步骤),若未达到漂洗时间,则继续执行正转-停止-反转-停止的漂洗步骤。
在S1.4(即最终脱水步骤)中,对羽绒服进行最终脱水,最终脱水转速在250-650r/min的范围内(设定值为450r/min),最终脱水时间在1-5min的范围内(设定值为4min)。
其中,本文所涉及的多个洗衣参数的取值是对应于1公斤以下负载的,羽绒服的重量基本低于1公斤。并且,在本实施例中,针对于波轮洗衣机,所提及的“转速”均为波轮的转速。
通过理论分析及系列实验研究,对比市场销售的同一机型开机默认程序及上述多个洗衣参数选取设定值时的洗涤程序,测试经两种程序洗后羽绒服的去污效果、含水量和团结现象。发现使用上述多个洗衣参数选取设定值时的洗涤程序,羽绒服的含水量变化不大去污效果相差不大,羽绒的团结现象改善明显。
综上,波轮洗衣机多个洗衣参数在选择上述取值范围中的数值时,特别是选择上述设定值时,综合羽绒团结、含水量率、洗净等洗涤结果,洗后的羽绒服团结现象显著改善、含水量变化不大、去污能力能够达到90%以上。
实施例二
参照图2,本实施例与上述实施例的不同之处在于,采用滚筒洗衣机洗涤羽绒服,采用滚筒洗衣机时,仍可通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结。
本实施例的羽绒服洗涤方法摒弃相关技术中在洗涤后单独解决团结现象的方案,而是通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结,解决羽绒服洗后羽绒团结的问题。而且,本实施例的方案是通过设定洗衣机的洗衣参数来解决团结现象,操作方便简单、省时,既适用于家用洗衣机,也适用于洗衣店,适用性强。
滚筒洗衣机的洗涤程序包括第一次进水步骤、洗涤步骤、至少一次漂洗步骤、位于洗涤步骤与漂洗步骤之间和位于两次漂洗步骤之间的中间脱水步骤和中间进水步骤以及最后的最终脱水步骤。因此,可以将羽绒团结问题与脱水速度相关联,通过设置特定的中间脱水转速和最终脱水转速来防止羽绒服洗后羽 绒团结。
可选地,本实施例中将脱水转速设置在一较低范围内,以防止羽绒服洗后内部羽绒团结,以及方便羽绒服内部的水释放出。相关技术中采用滚筒洗衣机洗涤普通衣物时,预设的最终脱水转速大于800r/min,而本实施例中,最终脱水转速的选值范围低于预设的最终脱水转速,设置为400-800r/min。中间脱水转速在最终脱水转速所对应的选值范围内选择,即中间脱水转速也位于400-800r/min的范围内。
可选地,最终脱水转速的设定值为600r/min,中间脱水转速可与最终脱水转速相等,也可在最终脱水转速的设定值的基础上略微调整。
此外,第一次向滚筒洗衣机的内筒注水时要保证羽绒服能够被充分润湿,因此,本实施例中较相关程序降低了进水转速,使得羽绒服刚好能够被内筒带起的水淋到,从而充分润湿。可选地,在第一次进水步骤中,内筒的进水转速位于10-40r/min的范围内。可选地,内筒的进水转速的设定值为20r/min。
继续参照图2,可选地,采用滚筒洗衣机的羽绒服洗涤方法包括如下步骤。
在S2.1(即第一次进水步骤)中,向滚筒洗衣机的内筒注水,其中,进水转速在10-40r/min的范围内(设定值为20r/min),注水量为下述洗涤水量。
在步骤a中,判断内筒中水温是否大于等于25℃,若是,则进行S2.2,若不是,则进行如下步骤b。
在步骤b中,对内筒中的水进行加热,同时内筒转动20s后停止转动10s,返回步骤a。
在S2.2(即洗涤步骤)中,对羽绒服进行洗涤,其中,洗涤时间在5-30min的范围内(设定值为15min),洗涤水量在5-12L的范围内(设定值为8L),洗涤转速在20-60r/min的范围内(设定值为45r/min),内筒以转动时间在10-30s 的范围内(设定值为20s)、停止时间在5-20s的范围内(设定值为10s)交替转停,并且,在转动-停止一个周期后判断是否达到洗涤时间,若达到洗涤时间,则进入步骤S2.3以执行中间脱水步骤,若未达到洗涤时间,则继续执行转动-停止的洗涤步骤。
执行1-6次(设定值为4次)S2.3.1-S2.3.3,执行完毕后进入S2.4。
在S2.3.1(即中间脱水步骤)中,对羽绒服进行中间脱水。
在S2.3.2(即中间进水步骤)中,向内筒中注水,其中,注水量为下述漂洗水量。
在S2.3.3(即漂洗步骤)中、对羽绒服进行漂洗,其中,漂洗时间在1-7min的范围内(设定值为5min),漂洗水量在10-30L的范围内(设定值为15L),漂洗转速在20-60r/min的范围内(设定值为45r/min)、内筒以转动时间在10-30s的范围内(设定值为20s)、停止时间在5-20s的范围内(设定值为10s)交替转停,并且,在转动-停止一个周期后判断是否达到漂洗时间,若达到漂洗时间,则进入下一步骤(可能是中间脱水步骤或最后脱水步骤),若未达到漂洗时间,则继续执行转动-停止的漂洗步骤。
在S2.4(即最终脱水步骤)中,对羽绒服进行最终脱水,其中,最终脱水转速在400-800r/min的范围内(设定值为600r/min),最终脱水时间在1-3min的范围内(设定值为2min)。
其中,水温越高,洗涤剂的清洁作用越强,但水温越高,对材料表面的保护越不利。因此,平衡洗涤剂的清洁程度和材料保护,在S2.1和S2.2之间进行加热步骤(步骤a和步骤b),并选取了适合的水温25℃。在其他实施例中,可不采用加热步骤,或加热的温度选取为低于40℃的任一值。
其中,本文所涉及的多个洗衣参数的取值是对应于1公斤以下负载的,羽 绒服的重量基本低于1公斤。并且,在本实施例中,针对滚筒洗衣机,所提及的“转速”为滚筒洗衣机的内筒的转速。
通过理论分析及系列实验研究,对比市场销售的同一机型常用洗涤程序及上述多个洗衣参数选取设定值时的洗涤程序,测试经两种程序洗后羽绒服的去污效果、含水量和团结现象。发现使用上述多个洗衣参数选取设定值时的洗涤程序,羽绒服的含水量变化不大,去污效果相差不大,羽绒的团结现象改善明显。
综上,滚筒洗衣机多个洗衣参数在选择上述取值范围中的数值时,特别是选择上述设定值时,综合羽绒团结、含水量率、洗净等洗涤结果,洗后的羽绒服团结现象显著改善、含水量有所降低、去污能力能够达到90%以上。
实施例三
在本实施例中,提供一种洗衣机,该洗衣机用于执行上述实施例一或实施例二的羽绒服洗涤方法。可选地,洗衣机可为波轮洗衣机,用于执行上述实施例一的羽绒服洗涤方法;洗衣机也可为滚筒洗衣机,用于执行上述实施例二的羽绒服洗涤方法。
无论是波轮洗衣机还是滚筒洗衣机,该洗衣机均能够通过设定洗衣机的洗衣参数来防止羽绒服洗后羽绒团结,以解决羽绒服洗后羽绒团结的问题。而且,本实施例的方案是通过设定洗衣机的洗衣参数来解决团结现象,操作方便简单、省时,既适用于作为家用洗衣机,也适用于洗衣店,适用性强。
实施例四
本实施例还提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述方法。
图3是根据本实施例的一种洗衣设备的硬件结构示意图,如图3所示,该 洗衣设备包括:一个或多个处理器310和存储器320。图3中以一个处理器310为例。
所述洗衣设备还可以包括:输入装置330和输出装置340。
所述洗衣设备中的处理器310、存储器320、输入装置330和输出装置340可以通过总线或者其他方式连接,图3中以通过总线连接为例。
输入装置330可以接收输入的数字或字符信息,输出装置340可以包括显示屏等显示设备。
存储器320作为一种计算机可读存储介质,可用于存储软件程序、计算机可执行程序以及模块。处理器310通过运行存储在存储器320中的软件程序、指令以及模块,从而执行多种功能应用以及数据处理,以实现上述实施例中的任意一种方法。
存储器320可以包括存储程序区和存储数据区,其中,存储程序区可存储操作***、至少一个功能所需要的应用程序;存储数据区可存储根据洗衣设备的使用所创建的数据等。此外,存储器可以包括随机存取存储器(RandomAccess Memory,RAM)等易失性存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件或者其他非暂态固态存储器件。
存储器320可以是非暂态计算机存储介质或暂态计算机存储介质。该非暂态计算机存储介质,例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。在一些实施例中,存储器320可选包括相对于处理器310远程设置的存储器,这些远程存储器可以通过网络连接至洗衣设备。上述网络的实例可以包括互联网、企业内部网、局域网、移动通信网及其组合。
输入装置330可用于接收输入的数字或字符信息,以及产生与洗衣设备的用户设置以及功能控制有关的键信号输入。输出装置340可包括显示屏等显示 设备。
本领域普通技术人员可理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来执行相关的硬件来完成的,该程序可存储于一个非暂态计算机可读存储介质中,该程序在执行时,可包括如上述方法的实施例的流程,其中,该非暂态计算机可读存储介质可以为磁碟、光盘、只读存储记忆体(ROM)或随机存储记忆体(RAM)等。
工业实用性
本公开提供的羽绒服洗涤方法和洗衣机,通过设定洗衣机的洗衣参数,并且将多个洗衣参数设定为低于洗衣机的最大参数值,可以防止羽绒服洗后羽绒团结,解决羽绒服洗后羽绒团结的问题。而且,本实施例的方案通过设定洗衣机的洗衣参数来解决团结现象,操作方便简单、省时,既适用于作为家用洗衣机,也适用于洗衣店,适用性强。

Claims (13)

  1. 一种羽绒服洗涤方法,包括:
    通过设定洗衣机的洗衣参数对羽绒服进行洗涤;其中,所述洗衣机的洗涤程序包括洗涤、至少一次漂洗以及至少两次脱水;
    所述洗衣参数包括中间脱水转速和最终脱水转速,所述最终脱水是指最后一次脱水,所述中间脱水是指位于洗涤与漂洗之间的脱水;其中,
    所述最终脱水转速的选值范围的最大值低于洗衣机的最高脱水转速;
    所述中间脱水转速在所述最终脱水转速所对应的选值范围内选择。
  2. 根据权利要求1所述的方法,其中,针对滚筒洗衣机,所述最终脱水转速的选值范围为400-800r/min。
  3. 根据权利要求1所述的方法,其中,针对波轮洗衣机,所述最终脱水转速的选值范围为250-650r/min。
  4. 根据权利要求2所述的方法,其中,所述洗衣参数的设定值为以下至少之一:所述最终脱水转速为600r/min和所述中间脱水转速为600r/min。
  5. 根据权利要求3所述的方法,其中,所述洗衣参数的设定值为以下至少之一:所述最终脱水转速为450r/min和所述中间脱水转速为450r/min。
  6. 根据权利要求2所述的方法,其中,在第一次向滚筒洗衣机的内筒注水时,所述内筒的进水转速位于10-40r/min的范围内。
  7. 根据权利要求1所述的方法,其中,当采用波轮洗衣机洗涤羽绒服时,包括:
    向波轮洗衣机的内桶注水;
    对羽绒服进行洗涤,其中,洗涤时间在5-25min的范围内,洗涤水量在37-57L的范围内,洗涤转速在60-130r/min的范围内,波轮以转动时间在0.7-3s的范围内、停止时间在0.5-2s的范围内交替转停;
    执行至少一次对羽绒服进行中间脱水、向波轮洗衣机的内桶注水和对羽绒服进行漂洗的步骤,其中,中间脱水转速在250-650r/min的范围内,中间脱水时间在1-5min的范围内;漂洗时间在2-7min的范围内,漂洗水量在37-57L的范围内,漂洗转速在60-130r/min的范围内,波轮以转动时间在0.7-3s的范围内、停止时间在0.5-2s的范围内交替转停;
    对羽绒服进行最终脱水,最终脱水转速在250-650r/min的范围内,最终脱水时间在1-5min的范围内。
  8. 根据权利要求1所述的方法,其中,当采用滚筒洗衣机洗涤羽绒服时,包括:
    向滚筒洗衣机的内筒注水,其中,进水转速在10-40r/min的范围内;
    对羽绒服进行洗涤,其中,洗涤时间在5-30min的范围内,洗涤水量在5-12L的范围内,洗涤转速在20-60r/min的范围内,所述内筒以转动时间在10-30s的范围内、停止时间在5-20s的范围内交替转停;
    执行至少一次对羽绒服进行中间脱水、向所述内筒中注水和对羽绒服进行漂洗的步骤;
    其中,漂洗时间在1-7min的范围内,漂洗水量在10-30L的范围内,漂洗转速在20-60r/min的范围内,内筒以转动时间在10-30s的范围内、停止时间在5-20s的范围内交替转停;
    对羽绒服进行最终脱水,其中,最终脱水转速在400-800r/min的范围内,最终脱水时间在1-3min的范围内。
  9. 根据权利要求7所述的方法,其中,在对羽绒服进行洗涤的步骤中,洗涤时间为15min,洗涤水量为47L,洗涤转速为115r/min,波轮以转动时间为1.5s、停止时间为1s交替转停;
    执行两次对羽绒服进行中间脱水、向波轮洗衣机的内桶注水和对羽绒服进行漂洗的步骤;
    在对羽绒服进行中间脱水的步骤中,中间脱水转速为450r/min,中间脱水时间为4min;
    在对羽绒服进行漂洗的步骤中,漂洗时间为3.5min,漂洗水量为47L,漂洗转速为115r/min,波轮以转动时间为1.5s、停止时间为1s交替转停;
    在对羽绒服进行最终脱水的步骤中,最终脱水转速为450r/min,最终脱水时间为4min。
  10. 根据权利要求8所述的方法,其中,在向滚筒洗衣机的内筒注水的步骤中,进水转速为20r/min;
    在对羽绒服进行洗涤的步骤中,洗涤时间为15min,洗涤水量为8L,洗涤转速为45r/min,内筒以转动时间为20s、停止时间为10s交替转停;
    执行三次对羽绒服进行中间脱水、向所述内筒中注水和对羽绒服进行漂洗的步骤;
    在对羽绒服进行漂洗的步骤中,漂洗时间为5min,漂洗水量为15L,漂洗转速为45r/min,内筒以转动时间为20s、停止时间为10s交替转停;
    在对羽绒服进行最终脱水的步骤中,最终脱水转速为600r/min,最终脱水时间为2min。
  11. 根据权利要求10所述的方法,其中,在所述向滚筒洗衣机的内筒注水的步骤和所述对羽绒服进行洗涤的步骤之间包括加热步骤,所述加热步骤包括:
    判断内筒中水温是否大于等于25℃,若内筒中水温大于等于25℃,则开始对羽绒服进行洗涤的步骤;
    若内筒中水温小于25℃,则对内筒中的水进行加热,同时内筒转动10s后 停止转动7s,再次判断内筒中水温是否大于等于25℃。
  12. 一种洗衣机,包括:所述洗衣机用于执行如权利要求1-11中任一项所述的羽绒服洗涤方法。
  13. 一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1-11任一项的方法。
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