WO2018082698A1 - 洗衣机漂洗方法 - Google Patents

洗衣机漂洗方法 Download PDF

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Publication number
WO2018082698A1
WO2018082698A1 PCT/CN2017/109588 CN2017109588W WO2018082698A1 WO 2018082698 A1 WO2018082698 A1 WO 2018082698A1 CN 2017109588 W CN2017109588 W CN 2017109588W WO 2018082698 A1 WO2018082698 A1 WO 2018082698A1
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Prior art keywords
motor
washing machine
dehydration
stage
intermittent
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PCT/CN2017/109588
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English (en)
French (fr)
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邢福涛
徐雯婷
张皓钧
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青岛海尔洗衣机有限公司
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Publication of WO2018082698A1 publication Critical patent/WO2018082698A1/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
    • D06F35/00Washing machines, apparatus, or methods not otherwise provided for
    • D06F35/005Methods for washing, rinsing or spin-drying
    • D06F35/006Methods for washing, rinsing or spin-drying for washing or rinsing only
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F17/00Washing machines having receptacles, stationary for washing purposes, wherein the washing action is effected solely by circulation or agitation of the washing liquid
    • D06F17/04Washing machines having receptacles, stationary for washing purposes, wherein the washing action is effected solely by circulation or agitation of the washing liquid solely by water jets
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

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  • the present disclosure relates to the field of washing machine washing methods, for example, to a washing machine rinsing method.
  • washing machine There are two main ways to wash the fully automatic washing machine, one is the standard washing method, and the other is the ordinary washing method.
  • the standard washing method When using the washing machine to wash clothes, if the standard washing method is used, the residual content of the washing liquid (powder) after rinsing is too high; and the ordinary washing method will lead to excessive water consumption during rinsing, resulting in unnecessary waste.
  • the washing machine washes the plush toy method, and the rinsing stage thereof comprises multiple rinsing, wherein in the first rinsing, the water is first drained to the set water level, and at the same time, the motor is driven to drive the plush toy to rotate, and intermittently enters the water. Spray rinsing, then dehydration, and then continue to enter, wash, drain, dehydrate, and so on until after the last rinsing, after washing and dehydration to complete the washing, wherein the washing in the rinsing stage is intermittently agitated and washed by the motor.
  • the dehydration in the rinsing stage and the dehydration stage is a working process of intermittent dehydration and continuous dehydration.
  • This rinsing method adopts multiple rinsing, and each rinsing is intermittently dehydrated and then continuously dehydrated and then washed with water. This can reduce the residual liquid of the laundry liquid (powder), but the water consumption is large, thereby causing waste of water resources, which is disadvantageous to Energy conservation.
  • the present disclosure provides a washing machine rinsing method that can improve the quality of laundry rinsing while saving time and water.
  • a washing machine rinsing method comprising:
  • a continuous dehydration step is circulated, and between the adjacent continuous dehydration steps, when the motor stops rotating, the inner tub is sprayed.
  • the continuous dehydration step is divided into a continuous dehydration phase, an inertia dehydration phase, and a motor brake stop phase, wherein the operation time of the inertia dehydration phase is less than or equal to 60 seconds, and the motor The brake time in the brake stop phase is less than or equal to 10 seconds.
  • the motor speed is set according to the type of the washing machine motor.
  • the motor speed during continuous dehydration is the maximum motor speed.
  • the washing machine motor is a variable frequency motor
  • the motor speed during continuous dehydration is set according to the selected washing mode.
  • the running time and the stopping time of the motor are set according to the washing capacity of the washing machine and the performance of the motor.
  • the washing machine motor is a fixed frequency motor and the upper drainage mode is adopted
  • the running time and the stopping time of the motor are set according to the washing capacity and the motor performance of the washing machine; the drain pump intermittently drains following the operation of the motor.
  • the intermittent dewatering when the washing machine motor is a variable frequency motor and adopts a lower drainage mode, the intermittent dewatering is divided into a first phase, a second phase, and a third phase, wherein the second phase has the highest motor speed.
  • the motor speed in the third stage is greater than or equal to the motor speed in the first stage, and the drain pump performs intermittent drainage.
  • the intermittent dehydration is divided into a plurality of stages in sequence, wherein the rotation speed of the motor whose odd number is odd stage is lower than the ordinal number.
  • the speed of the motor at the same time, the drain pump performs intermittent drainage.
  • the washing machine rinsing method provided by the present disclosure first performs intermittent dehydration, then performs a continuous dehydration step according to the laundry water turbidity cycle, and increases the step of spraying the inner barrel between adjacent continuous dehydration steps, since there are constantly
  • FIG. 1 is a flow chart of a washing method of a washing machine according to an embodiment
  • FIG. 2 is a timing diagram of a drain pump and a motor in a washing machine rinsing method according to an embodiment
  • FIG. 3 is a schematic diagram of a spray structure in a washing machine rinsing method according to an embodiment.
  • a washing machine rinsing method comprising:
  • a continuous dehydration step is circulated, and between the adjacent continuous dehydration steps, when the motor stops rotating, the inner tub is sprayed.
  • the continuous dehydration step is divided into a continuous dehydration stage, an inertia dehydration stage and a motor brake stop rotation phase, wherein the operation time of the inertia dehydration stage is less than or equal to 60 seconds, and the braking time of the motor brake stop rotation stage is less than or equal to 10 seconds.
  • the washing machine is washed as follows:
  • Intermittent dehydration (inter-release), the intermittent duration is set according to the type of washing machine motor and the drainage method. As shown in Table 1, the time of intermittent dehydration was A seconds.
  • the washing machine motor is a fixed-frequency motor and adopts the lower drainage mode
  • the motor's stopping frequency is b seconds and stops for c seconds. According to this cycle, intermittent dehydration is completed until A seconds, the motor running time b and the stopping time c are according to the washing machine. Wash capacity and motor performance settings.
  • the timing of the motor and the drain pump is shown in Figure 2.
  • the frequency of the motor's stop-and-go is b seconds and stops for c seconds. According to this cycle, it is completed until A seconds. Intermittent dehydration.
  • the drain pump follows the operation of the motor for intermittent drainage.
  • the drain pump runs with the motor at the same time as the motor starts and runs longer than the motor.
  • the drain pump is shipped before the motor. Turn and run longer than the motor.
  • the draining time of the drain pump is d seconds and the stopping time is e seconds, which is also cycled until A seconds.
  • the drain pump is still running for a period of time in order to drain the washing water.
  • the running time b and the stopping time c of the motor are set according to the washing capacity of the washing machine and the performance of the motor.
  • the intermittent dewatering is divided into the first stage, the second stage, and the third stage which are successively connected.
  • the dehydration time, motor speed and motor acceleration are different.
  • the dehydration time in the first stage is G seconds
  • the motor speed is F1
  • the motor acceleration is G1
  • the dehydration time in the second stage is H seconds
  • the motor speed is F2.
  • the motor acceleration is G2
  • the dehydration time in the third stage is G seconds
  • the motor speed is F3
  • the motor acceleration is G3.
  • F1 is a relatively low speed
  • F2 is a relatively high speed
  • F3 is a relatively low speed
  • F2 has the highest speed
  • F3 is greater than or equal to F1.
  • the accelerations G1, G2 and G3 can be set according to actual needs.
  • the drain pump performs intermittent drainage, and the drainage time is d seconds and the discharge time is e seconds, and the same cycle is repeated until A seconds.
  • the first stage second stage The third stage time G(S) H(S) G(S) Rotating speed F 1 (r/min) F 2 (r/min) F 3 (r/min) Acceleration G 1 (m/s 2 ) G 2 (m/s 2 ) G 3 (m/s 2 )
  • the intermittent dehydration is divided into a plurality of stages in sequence.
  • the present embodiment as shown in Table 3, it is divided into seven stages, which are respectively the first stage and the first stage. Two phases, three phases, four phases, fifth phases, sixth phases and seventh phases.
  • the dehydration time, motor speed and motor acceleration are different in different stages.
  • the dehydration time in the first stage is H1 seconds, the motor speed is F1, the motor acceleration is G1; the dehydration time in the second stage is H2 seconds, the motor speed is F2, the motor The acceleration is G2; the dehydration time in the third stage is H3 seconds, the motor speed is F3, the motor acceleration is G3; the dehydration time in the fourth stage is H4 seconds, the motor speed is F4, the motor acceleration is G4; the fifth stage dehydration time H5 seconds, motor speed F5, motor acceleration G5; sixth stage dewatering time is H6 seconds, motor speed is F6, motor acceleration is G6; seventh stage dewatering time is H7 seconds, motor speed is F7, motor The acceleration is G7.
  • the rotation speed of the motor whose ordinal number is an odd stage is lower than the rotation speed of the motor whose ordinal number is an even stage, that is, F1, F3, F5, and F7 are relatively low.
  • F2, F4, and F6 are relatively high, and the specific speed is set according to the washing machine model and the motor model; the accelerations G1 to G7 are set according to actual needs.
  • the drain pump performs intermittent drainage, and the drainage time is d seconds and the discharge time is e seconds, and the same cycle is repeated until A seconds.
  • the rotation speed is set according to the type of the washing machine motor, and the dehydration time is F seconds as shown in Table 1.
  • the motor speed during continuous dehydration is the maximum motor speed.
  • the motor of the washing machine is a variable frequency motor
  • the motor speed during continuous dehydration is set according to the selected washing mode.
  • This inertial dehydration stage (inertia) has a duration of E seconds and E is less than or equal to 60 seconds.
  • the motor brake stop phase During the motor brake stop phase, the motor is stationary.
  • the motor brake stop phase lasts for B seconds, and B is less than or equal to 10 seconds.
  • the spray device 1 has a spray angle of ⁇ in the inner tub 2, and the rinsing performance at this time is the best, and the laundry laundry (powder) residual amount is the smallest.
  • the spray device 1 is connected with the water inlet of the water inlet valve of the washing machine through a pipeline, and is connected with the spray head to adjust the direction of the spray head so that the spray range reaches the range shown in FIG. 3, wherein the spray is a fan spray, and the spray head spray nozzle pattern is not limited to a circular hole. .
  • the rotation speed is set according to the type of the washing machine motor, and the dehydration time is D seconds as shown in Table 1, and the times of D and F can be the same.
  • the motor speed during continuous dehydration is the maximum motor speed.
  • the washing machine motor is a variable frequency motor
  • the motor speed during continuous dehydration is set according to the selected washing mode.
  • inertia dehydration stage (inertia) lasts for E seconds, and E is less than or equal to 60 seconds.
  • the motor brake stop phase During the motor brake stop phase, the motor is stationary, and the motor brake stop phase lasts for B seconds, and B is less than or equal to 10 seconds.
  • the continuous dewatering step ends.
  • the above washing machine rinsing method first performs intermittent dehydration, then performs a continuous dehydration step according to the laundry water turbidity cycle, and increases the step of spraying the inner barrel between adjacent continuous dehydration steps, since the rinsing process is constantly fresh.
  • the water spray sprays the clothes, which improves the quality of the clothes, and the injection of the spray saves time and water, and is more energy-saving and environmentally friendly.
  • the fresh water mist is sprayed on the clothes to improve the quality of the clothes rinsing, and the injection of the spray saves time and water, and is more energy-saving and environmentally friendly.

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

Abstract

一种洗衣机漂洗方法,该方法包括根据洗衣机电机的类型和排水方式设定间歇时长进行间歇脱水;根据洗衣水浊度,循环进行连续脱水步骤,在相邻的连续脱水步骤之间,电机停止转动时,向内桶(2)进行喷雾。该洗衣机漂洗方法提升了衣物漂清质量,而且喷雾的注入既省时又省水,更加节能环保。

Description

洗衣机漂洗方法 技术领域
本公开涉及洗衣机洗涤方法领域,例如涉及一种洗衣机漂洗方法。
背景技术
全自动波轮洗衣机洗涤方式主要有两种,一种是标准洗涤方式,另一种是普通洗涤方式。用户在使用洗衣机洗涤衣物时,若选用标准洗涤方式,漂洗后洗衣液(粉)残留含量太高;而选用普通洗涤方式,则会导致漂洗时用水量过大,造成不必要的浪费。
相关技术中,洗衣机洗毛绒玩具的方法,其漂洗阶段,包括多次漂洗,其中在第一次漂洗时,先排水到设定水位,同时开启电机驱动毛绒玩具转动,并断续进水进行喷淋漂洗,然后脱水,再继续进水、洗涤、排水、脱水,以此类推直至最后一次漂洗后,经过排水、脱水完成洗涤,其中,在漂洗阶段的洗涤为电机间歇式搅动洗涤,在漂洗阶段和脱水阶段的脱水为先间歇脱水、后连续脱水的工作过程。这一漂洗方式采用多次漂洗每次漂洗都是先间歇脱水再连续脱水然后再进行清水洗涤,如此可减少洗衣液(粉)残留,但用水量较大,从而造成了水资源浪费,不利于节能减排。
发明内容
本公开提供一种既可提升衣物漂清质量又能省时省水的洗衣机漂洗方法。
一种洗衣机漂洗方法,包括:
根据洗衣机电机的类型和排水方式确定的间隙时长进行间歇脱水;
根据洗衣水浊度,循环进行连续脱水步骤,且在相邻的连续脱水步骤之间,当电机停止转动时,向内桶进行喷雾。
可选地,所述连续脱水步骤中分为依次设置的连续脱水阶段、惯性脱水阶段和电机刹车停转阶段,其中,惯性脱水阶段的运行时间小于等于60秒,电机 刹车停转阶段刹车时间小于等于10秒。
可选地,所述连续脱水阶段,电机转速根据洗衣机电机的类型设定。
可选地,所述连续脱水阶段中,当洗衣机电机为定频电机时,连续脱水时的电机转速为电机最高转速。
可选地,所述连续脱水阶段中,当洗衣机电机为变频电机时,连续脱水时的电机转速根据选定的洗涤方式设定。
可选地,间歇脱水时,当洗衣机电机为定频电机且采用下排水方式时,电机的运转时间和停止时间根据洗衣机的洗涤容量和电机性能设定。
可选地,间歇脱水时,当洗衣机电机为定频电机且采用上排水方式时,电机的运转时间和停止时间根据洗衣机的洗涤容量和电机性能设定;排水泵跟随电机的运转进行间歇排水。
可选地,间歇脱水时,当洗衣机电机为变频电机且采用下排水方式时,间歇脱水被分为依次接续的第一阶段、第二阶段、第三阶段,其中,第二阶段的电机转速最高,第三阶段的电机转速大于等于第一阶段的电机转速,同时,排水泵进行间歇排水。
可选地,间歇脱水时,当洗衣机电机为变频电机且采用上排水方式时,间歇脱水被分为依次接续的多个阶段,其中,序数为奇数阶段的电机的转速低于序数为偶数阶段的电机的转速,同时,排水泵进行间歇排水。
本公开提供的洗衣机漂洗方法,首先进行间歇脱水,然后根据洗衣水浊度循环进行连续脱水步骤,并在相邻的连续脱水步骤之间增加向内桶喷雾的步骤,由于在漂洗过程中,不断有清新的水雾对衣物加以喷淋,提升了衣物漂清质量,而且喷雾的注入既省时又省水,更加节能环保。
附图说明
图1是一实施例提供的洗衣机漂洗方法的流程图;
图2是一实施例提供的洗衣机漂洗方法中排水泵和电机时序图;
图3是一实施例提供的洗衣机漂洗方法中喷雾结构的示意图。
图3中:1-喷雾装置、2-内桶。
具体实施方式
一种洗衣机漂洗方法,包括:
根据洗衣机电机的类型和排水方式确定的间隙时长进行间歇脱水;
根据洗衣水浊度,循环进行连续脱水步骤,且在相邻的连续脱水步骤之间,当电机停止转动时,向内桶进行喷雾。
所述连续脱水步骤中分为依次设置的连续脱水阶段、惯性脱水阶段和电机刹车停转阶段,其中,惯性脱水阶段的运行时间小于等于60秒,电机刹车停转阶段刹车时间小于等于10秒。
如图1和表1所示,本实施例中,根据洗衣水的浊度,其选择进行两次连续脱水步骤。
Figure PCTCN2017109588-appb-000001
表1
可选地,洗衣机漂洗的步骤如下:
间歇脱水(间脱),根据洗衣机电机的类型和排水方式设定间歇时长。如表1所示,间歇脱水的时间为A秒。
当洗衣机电机为定频电机且采用下排水方式时,电机的转停频率为转b秒停c秒,依此循环,直至A秒时完成间歇脱水,电机的运转时间b和停止时间c根据洗衣机的洗涤容量和电机性能设定。
当洗衣机电机为定频电机且采用上排水方式时,电机和排水泵的转停时序如图2所示,电机的转停频率为转b秒停c秒,依此循环,直至A秒时完成间歇脱水。排水泵跟随电机的运转进行间歇排水,排水泵在电机启动阶段随电机同时运转且比电机运转时间更长;当电机进行间歇运转后,排水泵先于电机运 转并且比电机运转时间更长。为此,排水泵的排水时间为d秒停排时间为e秒,同样依此循环,直至A秒。当电机停止运转后,排水泵仍运转一段时间,以期将洗衣水排净。电机的运转时间b和停止时间c根据洗衣机的洗涤容量和电机性能设定。
当洗衣机电机为变频电机且采用下排水方式时,如表2所示,间歇脱水被分为依次接续的第一阶段、第二阶段、第三阶段。不同阶段,脱水的时间、电机转速和电机加速度均不同,第一阶段的脱水时间为G秒、电机转速为F1、电机加速度为G1;第二阶段的脱水时间为H秒、电机转速为F2、电机加速度为G2;第三阶段的脱水时间为G秒、电机转速为F3、电机加速度为G3。F1为一个相对较低的转速,F2为一个相对较高的转速,F3为一个相对较低的转速,F2的转速最高,F3大于等于F1。加速度G1、G2和G3可根据实际需求加以设置。脱水同时,排水泵进行间歇排水,排水时间为d秒停排时间为e秒,同样依此循环,直至A秒。
  第一阶段 第二阶段 第三阶段
时间 G(S) H(S) G(S)
转速 F1(r/min) F2(r/min) F3(r/min)
加速度 G1(m/s2) G2(m/s2) G3(m/s2)
表2
当洗衣机电机为变频电机且采用上排水方式时,间歇脱水被分为依次接续的多个阶段,在本实施例中,如表3所示,分为七个阶段,分别为第一阶段、第二阶段、第三阶段、第四阶段、第五阶段、第六阶段和第七阶段。不同阶段脱水的时间、电机转速和电机加速度均不同,第一阶段的脱水时间为H1秒、电机转速为F1、电机加速度为G1;第二阶段的脱水时间为H2秒、电机转速为F2、电机加速度为G2;第三阶段的脱水时间为H3秒、电机转速为F3、电机加速度为G3;第四阶段的脱水时间为H4秒、电机转速为F4、电机加速度为G4;第五阶段的脱水时间为H5秒、电机转速为F5、电机加速度为G5;第六阶段的脱水时间为H6秒、电机转速为F6、电机加速度为G6;第七阶段的脱水时间为H7秒、电机转速为F7、电机加速度为G7。其中,序数为奇数阶段的电机的转速低于序数为偶数阶段的电机的转速,也就是说,F1、F3、F5、F7相对较低, F2、F4、F6相对较高,具体速度根据洗衣机机型和电机机型设置;加速度G1至G7根据实际需求进行设置。脱水同时,排水泵进行间歇排水,排水时间为d秒停排时间为e秒,同样依此循环,直至A秒。
Figure PCTCN2017109588-appb-000002
表3
连续脱水步骤:
连续脱水阶段,根据洗衣机电机的类型设定转速,脱水时间如表1所示为F秒,
当洗衣机电机为定频电机时,连续脱水时的电机转速为电机最高转速。
当洗衣机的电机为变频电机时,连续脱水时的电机转速根据选定的洗涤方式设定。
电机停止运行,依靠惯性脱水,这一惯性脱水阶段(惯脱)持续时间为E秒,E小于等于60秒。
电机刹车停转阶段,使电机静止,这一电机刹车停转阶段持续时间为B秒,B小于等于10秒。
连续脱水结束。
向内桶喷雾,喷淋时间为C秒。如图3所示,喷雾装置1在内桶2内的喷淋角度为α,此时的漂洗性能最佳,衣物洗衣液(粉)残留量最少。喷雾装置1通过管路结合洗衣机进水阀出水口,连接喷雾头,调整喷雾头方向,使喷雾范围达到图3所示范围,其中喷雾为扇形喷雾,喷雾头喷雾嘴样式不局限于圆形孔。
连续脱水步骤循环:
连续脱水阶段,根据洗衣机电机的类型设定转速,脱水时间如表1所示为D秒,D和F的时间可以相同,
当洗衣机电机为定频电机时,连续脱水时的电机转速为电机最高转速。
当洗衣机电机为变频电机时,连续脱水时的电机转速根据选定的洗涤方式设定。
电机停止运行,依靠惯性脱水,惯性脱水阶段(惯脱)持续时间为E秒,E小于等于60秒。
电机刹车停转阶段,使电机静止,电机刹车停转阶段持续时间为B秒,B小于等于10秒。
连续脱水步骤结束。
上述洗衣机漂洗方法,其先进行间歇脱水,然后根据洗衣水浊度循环进行连续脱水步骤,并在相邻的连续脱水步骤之间增加向内桶喷雾的步骤,由于在漂洗过程中,不断有清新的水雾对衣物加以喷淋,提升了衣物漂清质量,而且喷雾的注入既省时又省水,更加节能环保。
工业实用性
本公开的洗衣机漂洗方法,在漂洗过程中,不断有清新的水雾对衣物加以喷淋,提升了衣物漂清质量,而且喷雾的注入既省时又省水,更加节能环保。

Claims (9)

  1. 一种洗衣机漂洗方法,包括:
    根据洗衣机电机的类型和排水方式确定的间隙时长进行间歇脱水;
    根据洗衣水浊度,循环进行连续脱水步骤,且在相邻的连续脱水步骤之间,当电机停止转动时,向内桶进行喷雾。
  2. 根据权利要求1所述的洗衣机漂洗方法,其中,所述连续脱水步骤,包括:依次设置的连续脱水阶段、惯性脱水阶段和电机刹车停转阶段,其中,惯性脱水阶段的运行时间小于等于60秒,电机刹车停转阶段刹车时间小于等于10秒。
  3. 根据权利要求2所述的洗衣机漂洗方法,其中,所述连续脱水阶段,电机转速根据所述洗衣机电机的类型设定。
  4. 根据权利要求3所述的洗衣机漂洗方法,其中,所述连续脱水阶段中,当所述洗衣机电机为定频电机时,连续脱水时的所述电机转速为电机最高转速。
  5. 根据权利要求3所述的洗衣机漂洗方法,其中,所述连续脱水阶段中,当所述洗衣机电机为变频电机时,所述连续脱水时的所述电机转速根据选定的洗涤方式设定。
  6. 根据权利要求1所述的洗衣机漂洗方法,其中,所述间歇脱水时,当所述洗衣机电机为定频电机且采用下排水方式时,所述电机的运转时间和停止时间根据洗衣机的洗涤容量和电机性能设定。
  7. 根据权利要求1所述的洗衣机漂洗方法,其中,间歇脱水时,当所述洗衣机电机为定频电机且采用上排水方式时,所述电机的所述运转时间和所述停止时间根据洗衣机的所述洗涤容量和所述电机性能设定;排水泵跟随所述电机的运转进行间歇排水。
  8. 根据权利要求1所述的洗衣机漂洗方法,其中,所述间歇脱水时,当所述洗衣机电机为变频电机且采用所述下排水方式时,所述间歇脱水被分为依次接续的第一阶段、第二阶段、第三阶段,其中,第二阶段的电机转速最高,第三阶段的电机转速大于等于第一阶段的电机转速,同时,排所述水泵进行所述间歇排水。
  9. 根据权利要求1所述的洗衣机漂洗方法,其中,所述间歇脱水时,当所述洗衣机电机为变频电机且采用所述上排水方式时,所述间歇脱水被分为依次 接续的多个阶段,其中,序数为奇数阶段的电机的转速低于序数为偶数阶段的电机的转速,同时,所述排水泵进行所述间歇排水。
PCT/CN2017/109588 2016-11-07 2017-11-06 洗衣机漂洗方法 WO2018082698A1 (zh)

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