WO2018019114A1 - 洗涤方法及洗衣机 - Google Patents

洗涤方法及洗衣机 Download PDF

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Publication number
WO2018019114A1
WO2018019114A1 PCT/CN2017/092198 CN2017092198W WO2018019114A1 WO 2018019114 A1 WO2018019114 A1 WO 2018019114A1 CN 2017092198 W CN2017092198 W CN 2017092198W WO 2018019114 A1 WO2018019114 A1 WO 2018019114A1
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WIPO (PCT)
Prior art keywords
washing
time
water level
wool
rinsing
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PCT/CN2017/092198
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English (en)
French (fr)
Inventor
陈瑜
杨林
方大丰
薛凯
张皓钧
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Washing Machine Co Ltd
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Qingdao Haier Washing Machine Co Ltd
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Priority claimed from CN201610621076.5A external-priority patent/CN107663738B/zh
Priority claimed from CN201610620643.5A external-priority patent/CN107663737A/zh
Application filed by Qingdao Haier Washing Machine Co Ltd filed Critical Qingdao Haier Washing Machine Co Ltd
Publication of WO2018019114A1 publication Critical patent/WO2018019114A1/zh
Anticipated expiration legal-status Critical
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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 
    • D06F33/30Control of washing machines characterised by the purpose or target of the control 
    • D06F33/32Control of operational steps, e.g. optimisation or improvement of operational steps depending on the condition of the laundry
    • D06F33/36Control of operational steps, e.g. optimisation or improvement of operational steps depending on the condition of the laundry of washing
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F2103/00Parameters monitored or detected for the control of domestic laundry washing machines, washer-dryers or laundry dryers
    • D06F2103/18Washing liquid level

Definitions

  • the present disclosure relates to the field of washing machine technology, for example, to a washing method and a washing machine using the same.
  • the washing machine that uses the inner drum and the pulsator to rotate non-synchronously will increase the shrinkage rate (ie, wear) of the wool clothing when washing the wool clothes.
  • the washing machine that rotates synchronously with the inner barrel and the pulsator is used.
  • the washing rate of the wool clothing refers to the difference between the reflectance difference of the standard contaminated cloth before and after washing, the difference in reflectance before and after the standard contaminated cloth is contaminated, used to indicate The degree of washing of the clothes is poor, which cannot meet the needs of high-end users and the Australian wool washing standards.
  • a washing method capable of solving the problem of high shrinkage ratio of wool clothing and low washing rate when the washing machine washes wool clothes in the related art.
  • a washing machine using the above washing method can improve the washing rate of the wool clothes when the washing machine washes the wool clothes, and reduce the shrinkage rate of the wool clothes.
  • a washing method comprising:
  • the control pulsator rotates at a certain turn-stop ratio during the washing process, wherein each of the turn-around cycles includes a rotation time and a stop time, the rotation time in each stop cycle is less than the stop time, and
  • the washing process includes a washing process of the washing process and a rinsing process of the rinsing process.
  • the rotation time is 2-5S
  • the stall time is 9-15S.
  • the time required for continuous dewatering of the rinsing procedure is less than the time required for continuous dewatering of the dewatering procedure.
  • the preset water level is a water level above the middle water level or the middle water level.
  • the rinsing process is not less than one time, and the rinsing process takes less time than the washing process of the washing process.
  • the washing process of the washing process takes 9-14 minutes.
  • the time required for the rinsing process is 1.5-4 min.
  • a computer readable storage medium storing computer executable instructions arranged to perform the above described washing method.
  • the control pulsator periodically rotates and stops during the washing process, wherein the rotation time in each rotation period is less than the stop time.
  • Long stopping time able to fully soak wool clothes, can make the detergent have sufficient time to decompose the stains of the wool clothes, and can melt the stains on the wool clothes into the water during the rotation process to improve the washing rate; the rotation time is less than the stop time.
  • the friction between the wool garment and the barrel and the pulsator is reduced, and the shrinkage rate is reduced.
  • the washing machine provided above can reduce the friction between the wool clothes and the barrel body and the pulsator during the washing process, reduces the shrinkage rate of the wool clothes, and the pulsator rotates periodically, which can improve the washing rate.
  • Example 1 is a schematic flow chart of a method of washing wool clothes provided in Example 1;
  • FIG. 2 is a schematic view showing the washing process of the washing machine for washing wool clothes in the third embodiment.
  • FIG. 1 is a schematic flow chart of a method for washing wool clothes according to the embodiment.
  • a method for washing wool clothes in the embodiment includes the following steps.
  • step 110 the washing is initiated when the current water level reaches a preset water level.
  • the current water level of the inner tub of the washing machine can be obtained in real time, and the washing is started when the current water level reaches the preset water level.
  • the preset water level may be the water level above the middle water level or the middle water level.
  • the preset water level is the middle water level, and the middle water level can make the concentration of the detergent in the laundry process moderate, and meet the requirement of the washing rate.
  • the middle water level may be a water level corresponding to 1/2 of the amount of water that the inner tub can hold.
  • the low water level is not used in this embodiment because the low water level may increase the friction between the wool garment and the pulsator, and the friction between the wool garment and the inner tub, which increases the shrinkage of the wool garment, which is disadvantageous for the washing of the wool garment.
  • control pulsator rotates at a certain turn-off ratio during the washing process.
  • each of the turnaround periods may include a rotation time and a stop time, and the rotation time in each of the rotation periods is less than the stop time, and the washing process includes a washing process of the washing program and a rinsing process of the rinsing program.
  • the rotation time in the transition period is 2-5 seconds (Second, S), and the stall time is 9-15S.
  • the rinsing process includes a dehydration process and a rinsing process.
  • the turn-stop ratio in this embodiment may be the ratio of the rotation time of the pulsator to the stop time in each of the turnaround periods of the pulsator.
  • the rotation time in each rotation period is 4S, and the rotation time is 10S.
  • the washing method can prolong the pulsation rotation time in the cycle period, can improve the washing rate, prolong the pulsation stop time in the rotation period, and can fully soak. Wool clothing.
  • the rotation time of the wool-like clothes is shortened, and the friction between the wool clothes and the pulsator and the inner tub is reduced, which can reduce the shrinkage rate and improve the washing rate.
  • the rotation time in the rotation period is less than the stop time, so that the wool clothing is sufficiently immersed, and the washing rate can be improved; the rotation time is less than the rotation time, which can reduce the wool clothing during the washing process and the barrel body and the pulsator Friction between to reduce shrinkage and increase wash rate.
  • the washing machine can enter the rinsing process when the washing process is completed, and the rinsing process can be no less than once.
  • the rinsing process can be the same as the washing process of the washing program, and during the rinsing process and the washing process of the washing program, the pulsator can be controlled to rotate at a certain stopping ratio, and the rotation time in each rotation period is less than the stopping time.
  • the rinsing process in this embodiment may be two times, and the time required for the rinsing process is less than the time required for the washing process of the washing program.
  • the washing process requires a washing time of 9-14 minutes (minute, min); rinsing
  • the time required for the process is 1.5-4 min.
  • the washing process of the washing procedure in this embodiment requires 11 minutes and the rinsing process takes 2 minutes.
  • the washing machine starts the rinsing process, and the washing machine starts the dehydration process after the rinsing process is completed.
  • the rinsing process may include a dehydration process and a rinsing process, and the dehydration process may be performed before the rinsing process.
  • the rinsing process and the dehydration process both include a dehydration process, and the dehydration process includes gap dehydration (referred to as exfoliation in Table 1), continuous dehydration, and conventional dehydration (abbreviated as habitual desorption in Table 1), wherein the continuous dehydration process of the rinsing process
  • the time required is less than the time required for continuous dewatering of the dehydration process. After the dehydration is completed, the drain valve closes and brakes.
  • the time required for continuous dewatering of the rinsing process (abbreviated as detachment in Table 1) is 10 s
  • the time required for continuous dehydration during dehydration is 20 s.
  • the wool laundry cleaning program provided in this embodiment includes a washing program, a rinsing program, and a dehydrating program.
  • the washing procedure may include water inflow, washing process for 11 min, and balance 30S;
  • the rinsing procedure may include drainage, dehydration process 80S, brake 5S, rinsing process 2 min, balance 30S, drainage, dehydration process 80S, brake 5S, rinsing
  • the process is 2 min, balancing 30S;
  • the dehydration process can include drainage, dehydration process 72S, brake 5S.
  • a plurality of steps may be sequentially performed in order from left to right in Table 1.
  • the motor can rotate M 1 seconds to stop M 2 seconds, and the cycle stop process M 3 times.
  • the motor drives the dewatering bucket to continuously rotate forward.
  • the inertia removal process may be after the motor is turned off for 4 seconds, and the dewatering bucket rotates the water by inertia.
  • Braking process may be used after the removal, the release of traction, the process proceeds to the next M after 5 seconds.
  • M 1 , M 2 , M 4 , and M 5 are all positive numbers, and M 3 is a positive integer greater than 0.
  • the values of M 1 , M 2 , M 3 , M 4 , and M 5 can be set according to user requirements.
  • the same type of two-wheel washing machine A, B is used to wash the same wool clothes
  • the pulsator washing machine A uses the method of washing wool clothes provided by the embodiment
  • the pulsator washing machine B uses the related art to wash the wool clothes.
  • the method, the two-wheel washing machine A, B wash wool clothes of the same size and the same area.
  • the areas of carbon black, blood stains, chocolate, milk, and red wine sprinkled on the two wool garments are the same.
  • each stain stock solution is taken out in the same container.
  • Table 2 The results of the detection of the laundry washing rate after washing in this example are shown in Table 2 below.
  • the washing rate of wool clothing is greater than the limit value. It can be concluded from Table 2 that the washing rate of the method for washing wool clothes provided in the present embodiment is far higher than the limit value, and the washing rates of the four kinds of stains on the wool clothes washed by the pulsator washing machine A are respectively It is larger than the washing rate of four kinds of stains on the wool clothes washed by the washing machine B.
  • the limit of the washing rate in this embodiment is a limit value of the washing rate in the Australian wool standard.
  • Table 3 shows the results of detection of the shrinkage ratio of the washed wool clothes of this example.
  • the reference machine in Table 3 is a special test equipment for detecting the "cleaning performance" of the pulsator type washing machine.
  • the limit value of the expansion ratio is 1, and the smaller the expansion ratio is, the smaller the wear after washing is. It can be concluded from Table 3 that although the expansion ratio of the pulsator washing machine A and the expansion ratio of the pulsator washing machine B are smaller than the data of the reference machine, the expansion ratio of the washed wool garment of the pulsator washing machine A is smaller than that of the pulsator washing machine B.
  • the stretch rate of wool clothing Compared with the pulsator washing machine B, the washing machine A has a small abrasion after washing, which can prolong the service life of the wool garment.
  • the shrinkage ratio of the wool laundry after washing using the washing method in the present embodiment is smaller than the shrinkage ratio of the wool laundry washed by the wool laundry washing program in the related art, although both are smaller than the limit value of the shrinkage ratio.
  • the limit of the shrinkage ratio in this embodiment is a limit value of the shrinkage ratio in the Australian wool standard.
  • a washing machine using the method of washing wool clothes as provided in Example 1 is provided.
  • the washing machine is provided with a wool washing program.
  • the ordinary washing machine provided in this embodiment can also be provided with a general washing program, a quick washing program, and a silk washing program.
  • FIG. 2 is a flow chart of a method of washing wool garments in the washing machine provided in the embodiment.
  • the user When the user washes the wool clothes using the washing machine, after obtaining the information that the user starts the washing machine, the user selects the selection information of the wool washing program selected by the user, and controls the washing machine to wash the clothes according to the selection information and the above method, and automatically shuts down after the washing is completed.
  • the washing machine can reduce the friction between the wool clothes and the barrel body and the pulsator when washing the wool clothes, and reduces the shrinkage rate of the wool clothes, because the pulsator rotates periodically with a certain rotation stop ratio, and the rotation period is within the cycle
  • the rotation time is less than the stop time, which can increase the washing rate.
  • the method in the above embodiment may be performed by a central processor, a digital signal processor (DSP), or a Field Programmable Gate Array (FPGA).
  • DSP digital signal processor
  • FPGA Field Programmable Gate Array
  • the central processing unit, DSP and FGPA can be integrated in the washing machine to which the method of the above embodiment is applied.
  • the central processing unit, DSP, and FGPA can include a computer readable storage medium storing executable instructions arranged to perform the methods described above.
  • the computer readable storage medium may be a non-transitory storage medium, including: a read-only memory (ROM) or a random access memory (RAM), and the like, which may store the program code, or may be Transient storage medium.
  • a washing method and a washing machine can solve the problems of high shrinkage ratio of wool clothes and low washing rate when the washing machine washes wool clothes in the related art.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Control Of Washing Machine And Dryer (AREA)

Abstract

一种洗涤方法及使用该方法的洗衣机,其中,方法包括:获取当前水位,在当前水位达到预设水位时,启动洗涤;以及洗涤过程中控制波轮以一定的转停比旋转,其中,每个转停周期包括旋转时间和停转时间,每个转停周期内的旋转时间小于停转时间,以及洗涤过程包括洗涤程序的洗涤过程以及漂洗程序的漂洗过程。

Description

洗涤方法及洗衣机 技术领域
本公开涉及洗衣机技术领域,例如涉及一种洗涤方法及使用该方法的洗衣机。
背景技术
相关技术中采用内桶和波轮非同步转动的洗衣机洗涤羊毛衣物时会提高羊毛衣物的收缩率(即磨损),为此洗涤羊毛衣物时,多采用内桶和波轮同步转动的洗衣机,该种洗衣机在洗涤羊毛衣物时虽然会降低羊毛衣物的收缩率,但是羊毛衣物的洗净率(指标准污染布在洗涤前后的反射率差占标准污染布被污染前后的反射率差的百分比,用于表示衣物被洗干净的程度)较差,无法满足高端用户的使用需求以及澳洲羊毛洗涤标准。内桶与波轮同步转动时内桶水无法排除,洗衣机排水需要采用电动一体阀,而安装电动一体阀则增加了整机成本,因此相关技术中,在有电动一体阀的波轮洗衣机中才设置有洗涤羊毛类衣物的程序。
因此,如何提出一种洗涤羊毛衣物的方法,能够使用在更多的波轮洗衣机中且提高洗净率降低收缩率,是本领域技术人员需要解决的技术问题。
发明内容
一种洗涤方法,能够解决相关技术中的洗衣机洗涤羊毛衣物时羊毛衣物的收缩率高、洗净率低的问题。
一种洗衣机,该洗衣机使用上述洗涤方法,能够提高洗衣机洗涤羊毛衣物时羊毛衣物的洗净率,降低羊毛衣物的收缩率。
一种洗涤方法,包括:
在当前水位达到预设水位时,启动洗涤;以及
洗涤过程中控制波轮以一定的转停比旋转,其中,每个转停周期包括旋转时间和停转时间,每个转停周期内的所述旋转时间小于所述停转时间,以及所述洗涤过程包括洗涤程序的洗涤过程以及漂洗程序的漂洗过程。
可选的,所述旋转时间为2-5S,所述停转时间为9-15S。
可选的,所述漂洗程序的连续脱水所需时间小于脱水程序的连续脱水所需时间。
可选的,所述预设水位为中水位或中水位以上水位。
可选的,所述漂洗过程不少于一次,且漂洗过程所需时间小于洗涤程序的洗涤过程所需时间。
可选的,所述洗涤程序的洗涤过程所需时间为9-14min。
可选的,所述漂洗过程所需时间为1.5-4min。
一种洗衣机,使用上述任一项所述的洗涤方法。
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设置为执行上述洗涤方法。
以上技术方案提供的洗涤方法中,洗涤过程中控制波轮周期性旋转和停转,其中,每个转停周期内的旋转时间小于停转时间。停转时间长,能够充分浸泡羊毛衣物,能够使洗涤剂有充分的时间分解羊毛衣物的污渍,转动过程中能够将羊毛衣物上的污渍融入水中,提高洗净率;旋转时间小于停转时间,减小了羊毛衣物与桶体、波轮之间的摩擦,降低收缩率。
上述提供的洗衣机,洗涤过程中能够减小羊毛衣物与桶体、波轮之间的摩擦,降低了羊毛衣物的收缩率,波轮呈周期性旋转,能够提高洗净率。
附图说明
图1是实施例1提供的洗涤羊毛衣物的方法的流程示意图;以及
图2是实施例3提供洗衣机清洗羊毛衣物的洗涤流程示意图。
具体实施方式
下面结合附图并通过具体实施方式来说明以下实施例的技术方案。
实施例1
图1为本实施例提供的洗涤羊毛衣物方法的流程示意图,参照图1所示,本实施例中提供一种洗涤羊毛衣物的方法包括如下步骤。
在步骤110中,在当前水位达到预设水位时,启动洗涤。
在控制洗衣机进水时,可以实时获取洗衣机内桶的当前水位,在当前水位达到预设水位时,启动洗涤。
预设水位可以为中水位或者中水位以上的水位,作为可选,本实施例中预设水位为中水位,中水位能够使洗涤剂在洗衣过程中的浓度适中,满足洗净率的要求。中水位可以是内桶所能容纳水量的1/2对应的水位。本实施例中不使用低水位是因为低水位可能增加羊毛衣物与波轮之间的摩擦,以及羊毛衣物与内桶之间的摩擦,提高羊毛衣物的收缩率,不利于羊毛衣物的洗涤。
在120中,洗涤过程中控制波轮以一定的转停比旋转。
其中,每个转停周期可以包括旋转时间和停转时间,每个转停周期内的旋转时间小于停转时间,所述洗涤过程包括洗涤程序的洗涤过程以及漂洗程序的漂洗过程。可选的,转停周期内的旋转时间为2-5秒(Second,S),停转时间为9-15S。其中,漂洗程序包括脱水过程和漂洗过程。
本实施例中的转停比可以是波轮在每个转停周期内,波轮的旋转时间与停转时间的比值。
可选的,本实施例中每个转停周期内的旋转时间为4S,停转时间为10S。该种洗涤方式,与相关技术中的羊毛类衣物的洗涤方法相比,延长转停周期内的波轮旋转时间,能够提高洗净率,延长转停周期内波轮停转时间,能够充分浸泡羊毛类衣物。在洗涤过程中,缩短羊毛类衣物的旋转时间,使羊毛衣物与波轮、内桶之间的摩擦减小,既能降低收缩率,又能提高洗净率。
本实施例中,转停周期内旋转时间小于停转时间,使羊毛衣物得到充足的浸泡,能够提高洗净率;旋转时间小于停转时间能够减少羊毛衣物在洗涤过程中与桶体、波轮之间的摩擦,以降低收缩率并提高洗净率。
洗衣过程中,当洗涤程序完成后洗衣机可以进入漂洗程序,漂洗过程可以不少于一次。其中,漂洗过程可以与洗涤程序的洗涤过程相同,漂洗过程和洗涤程序的洗涤过程中,均可以控制波轮以一定的转停比旋转,且每个转停周期内的旋转时间小于停转时间。本实施例中漂洗过程可以为两次,且漂洗过程所需时间小于洗涤程序的洗涤过程所需时间。
可选地,洗涤程序的洗涤过程所需时间为9-14分钟(minute,min);漂洗 过程所需时间为1.5-4min。作为可选,本实施例中洗涤程序的洗涤过程所需时间为11min,漂洗过程所需时间为2min。
实施例2
如表1所示,洗衣机的洗涤程序完成后,洗衣机启动漂洗程序,漂洗程序完成后洗衣机启动脱水程序。其中,漂洗程序可以包括脱水过程和漂洗过程,且脱水过程可以在漂洗过程之前进行。而漂洗程序与脱水程序中均包括脱水过程,且脱水过程包括间隙脱水(表1中简称为间脱)、连续脱水、惯脱水(表1中简称为惯脱),其中漂洗程序的连续脱水所需时间小于脱水程序的连续脱水所需时间。脱水完成后排水阀闭合、刹车。可选地,漂洗程序的连续脱水(表1中简称为连脱)所需时间为10S,脱水过程中的连续脱水所需时间为20S。
本实施例提供的羊毛衣物清洗程序包括:洗涤程序、漂洗程序以及脱水程序。如表1所示,洗涤程序可以包括进水、洗涤过程11min、平衡30S;漂洗程序可以包括排水、脱水过程80S、刹车5S、漂洗过程2min、平衡30S、排水、脱水过程80S、刹车5S、漂洗过程2min、平衡30S;脱水程序可以包括排水、脱水过程72S、刹车5S。本实施例的羊毛衣物清洗程序中,多个步骤可以依照表1中自左至右的顺序依次执行。
表1
Figure PCTCN2017092198-appb-000001
其中,间隙脱水(间脱)过程中,电机可以正转M1秒停M2秒,循环停转过程M3次。连续脱水(连脱)过程中,电机带动脱水桶连续正转。惯脱过程可以是在连脱之后,电机断电M4秒,脱水桶凭惯性转动水。刹车过程可以是在惯脱结束后,释放牵引器,M5秒后进入下一进程。其中,M1、M2、M4、M5均为正数,M3为大于0的正整数。M1、M2、M3、M4、M5的数值可根据用户需求进行设置。本实施例中,采用相同型号的两波轮洗衣机A、B对相同的羊毛衣物洗涤,波轮洗衣机A使用本实施例提供的洗涤羊毛衣物的方法;波轮洗衣机B使用相关技术中洗涤羊毛衣物的方法,两波轮洗衣机A、B洗涤相同大小、相同面积的羊毛衣物。洒在两羊毛衣物上的炭黑、血渍、巧克力、牛奶、红酒的面积相同,为了保证试验前期参数一致,每种污渍原液均在相同的容器中取出。本 实施例洗涤后的羊毛衣物洗净率的检测结果如下表2所示。
表2
Figure PCTCN2017092198-appb-000002
根据相关规定,羊毛衣物洗净率大于限定值即可。从表2中可以得出,使用本实施例中提供的洗涤羊毛衣物的方法洗净率远远高于限定值,且波轮洗衣机A洗涤后的羊毛衣物上的四种污渍的洗净率分别大于波轮洗衣机B洗涤后的羊毛衣物上的四种污渍的洗净率。本实施例中的洗净率的限定值为澳洲羊毛标准中的洗净率的限定值。
表3是本实施例洗涤后的羊毛衣物的收缩率的检测结果。
表3
Figure PCTCN2017092198-appb-000003
表3中的参比机为检测波轮式洗衣机“洗净性能”的专用试验设备。伸缩率(收缩率)的限定值为1,伸缩率越小于限定值说明洗涤后的磨损越小。从表3中可以得出,虽然波轮洗衣机A的伸缩率和波轮洗衣机B的伸缩率均小于参比机的数据,但是波轮洗衣机A洗涤后的羊毛衣物的伸缩率小于波轮洗衣机B的羊毛衣物的伸缩率。与波轮洗衣机B相比,波轮洗衣机A洗涤后的羊毛磨损小,能够延长羊毛衣物的使用寿命。
使用本实施例中的洗涤方法洗涤后的羊毛衣物收缩率小于使用相关技术中羊毛衣物洗涤程序洗涤的羊毛衣物的收缩率,虽然二者均小于收缩率的限定值。
本实施例中的收缩率的限定值为澳洲羊毛标准中的收缩率的限定值。
实施例3
本实施例中提供了一种洗衣机,使用如实施例1中提供的洗涤羊毛衣物的方法。其中对应该洗涤羊毛衣物的方法,该洗衣机上设置有羊毛类洗涤程序。本实施例中提供的普通波轮洗衣机上还可以设置有普通洗涤程序、快速洗涤程序、真丝洗涤程序。
图2是本实施例中提供的洗衣机清洗羊毛衣物的方法的流程图。用户使用该洗衣机洗涤羊毛衣物时,获取用户启动洗衣机的信息后,获取用户选择羊毛类洗涤程序的选择信息,根据选择信息以及上述方法控制洗衣机对衣物进行洗涤,洗涤完毕自动关机。
该洗衣机在洗涤羊毛衣物时,能够减小羊毛衣物与桶体、波轮之间的摩擦,降低了羊毛衣物的收缩率,由于波轮以一定的转停比周期性旋转,且转停周期内旋转时间小于停转时间,能够提高洗净率。
上述实施例中的方法可由中央处理器(Central processor)、数字信号处理器(Digital Signal Processor,DSP)或者现场可编程门阵列(Field Programmable Gate Array,FPGA)执行。中央处理器、DSP和FGPA可集成在应用上述实施例方法的洗衣机中。
中央处理器、DSP和FGPA可以包含存储有可执行指令的计算机可读存储介质,所述可执行指令设置为执行上述方法。计算机可读存储介质可以是非暂态存储介质,包括:只读存储器(Read-Only Memory,ROM)或者随机存取存储器(Random Access Memory,RAM)等多种可以存储程序代码的介质,也可以是暂态存储介质。
工业实用性
一种洗涤方法及洗衣机,能够解决相关技术中的洗衣机洗涤羊毛衣物时羊毛衣物的收缩率高、洗净率低的问题。

Claims (9)

  1. 一种洗涤方法,包括:
    在当前水位达到预设水位时,启动洗涤;以及
    洗涤过程中控制波轮以一定的转停比旋转,其中,每个转停周期包括旋转时间和停转时间,每个转停周期内的所述旋转时间小于所述停转时间,以及所述洗涤过程包括洗涤程序的洗涤过程以及漂洗程序的漂洗过程。
  2. 根据权利要求1所述的方法,其中,所述旋转时间为2-5S,所述停转时间为9-15S。
  3. 根据权利要求2所述的方法,其中,所述漂洗程序的连续脱水所需时间小于脱水程序的连续脱水所需时间。
  4. 根据权利要求1所述的方法,其中,所述预设水位为中水位或中水位以上水位。
  5. 根据权利要求1所述的方法,其中,所述漂洗过程不少于一次,且漂洗过程所需时间小于洗涤程序的洗涤过程所需时间。
  6. 根据权利要求1所述的方法,其中,所述洗涤程序的洗涤过程所需时间为9-14min。
  7. 根据权利要求5所述的方法,其中,所述漂洗过程所需时间为1.5-4min。
  8. 一种洗衣机,使用如权利要求1-7任一项所述的洗涤方法。
  9. 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设置为执行权利要求1-7中任一项的洗涤方法。
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CN1143975A (zh) * 1994-12-02 1997-02-26 大宇电子株式会社 洗涤剂组合物和使用该组合物的洗涤方法
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CN1109927A (zh) * 1993-08-27 1995-10-11 大宇电子株式会社 用于洗涤毛织或丝织物的洗涤方法以及洗衣机
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