WO2020238201A1 - 洗衣机及洗衣机的控制方法 - Google Patents
洗衣机及洗衣机的控制方法 Download PDFInfo
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- WO2020238201A1 WO2020238201A1 PCT/CN2019/129782 CN2019129782W WO2020238201A1 WO 2020238201 A1 WO2020238201 A1 WO 2020238201A1 CN 2019129782 W CN2019129782 W CN 2019129782W WO 2020238201 A1 WO2020238201 A1 WO 2020238201A1
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- washing
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- washing machine
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F33/00—Control of operations performed in washing machines or washer-dryers
Definitions
- This application relates to the technical field of cleaning equipment, and in particular to a washing machine and a method for controlling the washing machine.
- the existing washing machine With the improvement of living standards, people have more and more requirements for washing machine functions.
- the existing washing machine In addition to basic functions such as washing, dehydrating, and drying, the existing washing machine also includes functions such as sterilization and nursing.
- the structure and method of using steam to remove peculiar smell of the cleaning material are complicated, which causes the problem of inconvenience for users.
- the main purpose of this application is to provide a washing machine and a method for controlling the washing machine, so as to solve the problem of complicated odor removal methods for washing machines in the prior art.
- a method for controlling a washing machine includes a method for deodorizing the washing machine.
- the method includes the following steps: entering the deodorizing mode, and operating the steam generation module; turning on the drying cycle Module, so that the steam generated in the steam generation module flows to the working cavity of the washing tub of the washing machine; turn on the drainage module, the working cavity of the washing tub introduces fresh air through the drainage module, so that the air in the working cavity of the washing tub flows to the washing machine through the drainage module External diffusion to remove the peculiar smell on the cleaning material.
- the method further includes the following steps: in the deodorization mode, when the time that the steam generation module and/or the drainage module is turned on reaches the preset value, the steam generation module is turned off, and the drying in the drying cycle module The heating device is turned on to perform drying operations on the cleaned objects in the working chamber of the washing tub.
- the method further includes the following steps: in the deodorization mode, by turning on the fan system in the drying cycle module, so that the steam generated in the steam generating module flows into the working cavity of the washing tub of the washing machine.
- the method further includes the following steps: the drain module includes a drain pump assembly, by controlling the drain pump assembly to be in an open position, so that the working chamber of the washing tub is connected to the outside of the washing machine, or by controlling the drain pump assembly to be in an open position. Closed position to disconnect the working cavity of the washing tub from the outside of the washing machine.
- the method further includes the following steps: when the steam generation module starts operation, the water inlet valve of the steam generation module connected to the water inlet channel of the washing machine is opened, and when the water level of the steam electric heating device entering the steam generation module reaches a safe pre-set When the value is set, the steam electric heating device starts and heats the water in the steam electric heating device to generate steam.
- the method further includes the following steps: updating the air step: in the steam generating module spraying steam into the working cavity of the washing tub, when the pressure in the working cavity of the washing tub reaches the first preset pressure value, The airflow in the working cavity of the washing tub can be diffused to the outside of the washing machine through the drainage module, until the pressure in the working cavity of the washing tub is reduced to the second preset pressure value, the fresh air outside the washing machine can pass through the fan in the drying circulation module The system sucks in the working chamber of the washing tub to update the air in the working chamber of the washing tub.
- the air is periodically updated in the working chamber of the washing tub through the air update step.
- control method further includes a washing method of a washing machine, and the washing method includes the following steps: entering a washing mode, and when the working chamber of the washing tub is cleaning the washing objects for a preset washing time, the drain pump assembly is turned on Position to drain the water in the working cavity of the washing tub to the outside of the washing machine. When the working cavity of the washing tub is in cleaning operation, the drain pump assembly is in the closed position to prevent the water in the working cavity of the washing tub from being discharged.
- the method further includes the following steps: when the steam generating module starts operation, when the low liquid level probe detecting the steam generating module is turned on, the electric steam heating device, the fan system in the drying cycle module, and the drainage module The drain pump component starts, and the compressor in the drying cycle module runs at low frequency.
- the water inlet valve opens and the water level of the electric steam heating device after S1 time The safety preset value is reached.
- the method further includes the following steps: when the steam temperature sensor of the steam generation module detects that the steam temperature is T, when T ⁇ 100°C, start recording the steam generation time S2, and at the same time recording the liquid level probe conduction time S3 , When S2 ⁇ S3, or, t1 ⁇ S2 ⁇ S3, turn off the steam electric heating device, open the drying cycle module, and the compressor runs at high frequency for S4 time; when S2 ⁇ t1, the water inlet valve opens for S1 time .
- the drying spray valve of the drying cycle module opens for S5 every preset time to spray liquid water into the drying air inlet channel.
- the method further includes the following steps: when the steam generating module starts to work, the fan system and compressor in the drying cycle module are turned off after high frequency operation for S6, and then the low level probe of the steam generating module is detected Whether it is on.
- a washing machine includes a deodorizing mode and a washing mode, and the deodorizing mode and the washing mode are controlled by using the above-mentioned control method.
- the washing machine includes: a cabinet; a washing tub disposed in the cabinet; a steam generating module disposed in the cabinet and communicating with the washing tub; a drying cycle module disposed in the cabinet and connected to the steam generating module and The washing tub is connected; the drainage module is arranged in the box and connected with the washing tub; among them, the washing machine includes a deodorizing mode and a cleaning mode.
- the washing machine is in the deodorizing mode, the working chamber of the washing tub can be connected to the washing machine through the drainage module The outside is connected to introduce fresh air into the washing tub.
- the working chamber of the washing tub can be connected to the outside of the washing machine through the drainage module to drain the water in the washing tub.
- the drying cycle module includes: a drying heating device arranged in the box; a fan system arranged in the box; a drying air inlet channel, the first end of the drying air inlet channel and the drying heating device The second end of the drying air inlet channel is connected with the inlet of the washing tub; the drying air outlet channel, the first end of the drying air outlet channel is connected with the outlet of the washing barrel, and the drying air outlet channel The second end of the dryer is connected to the inlet of the drying air inlet channel.
- the steam generating module includes: a steam heating device arranged in the washing tub; a water inlet valve assembly, the water inlet valve assembly is arranged in the box, one end of the water inlet valve assembly is connected to the water inlet channel of the washing machine, The other end of the water inlet valve assembly is connected with the steam heating device.
- the drainage module includes: a drainage pump assembly, which is arranged in the box.
- a drainage pump assembly which is arranged in the box.
- the working cavity of the washing tub can be connected to the outside of the washing tub through the drainage pump assembly. Fresh air is introduced inside.
- the working chamber of the washing tub can be connected to the outside of the washing machine through the drain pump assembly to drain the water in the washing tub.
- the washing machine further includes a damper, one end of the damper is connected to the cabinet, and the other end of the damper is connected to the washing tub.
- Fig. 1 shows a schematic diagram of the control flow of an embodiment of the deodorization mode according to the present application
- Figure 2 shows a schematic structural diagram of an embodiment of a washing machine according to the present application
- Figure 3 shows a schematic structural view of an embodiment of a washing machine according to the present application
- Figure 4 shows a schematic structural view of an embodiment of a steam heating device for a washing machine according to the present application
- FIG. 5 shows a schematic diagram of the control flow of an embodiment of the deodorization mode according to the present application
- Fig. 6 shows a schematic diagram of the control flow of an embodiment of the deodorization mode according to the present application.
- spatially relative terms such as “above”, “above”, “above”, “above”, etc. can be used here to describe as shown in the figure. Shows the spatial positional relationship between one device or feature and other devices or features. It should be understood that the spatially relative terms are intended to encompass different orientations in use or operation other than the orientation of the device described in the figure. For example, if the device in the figure is inverted, then the device described as “above the other device or structure” or “above the other device or structure” will then be positioned as “below the other device or structure” or “on Under other devices or structures”. Thus, the exemplary term “above” can include both orientations “above” and “below”. The device can also be positioned in other different ways (rotated by 90 degrees or in other orientations), and the relative description of the space used here is explained accordingly.
- a method for controlling a washing machine is provided.
- control method includes a method of deodorizing a washing machine, and the method of deodorizing includes the following steps: entering a deodorizing mode, and operating the steam generation module. Turn on the drying cycle module so that the steam generated in the steam generation module flows to the working cavity of the washing tub of the washing machine, and turn on the drainage module.
- the working cavity of the washing tub introduces fresh air through the drainage module to allow the air in the working cavity of the washing tub to pass
- the drainage module diffuses out of the washing machine to achieve the purpose of removing the peculiar smell on the washing objects.
- fresh air is introduced into the washing tub through the drainage module to replace the air in the working chamber of the washing tub, and then a way to achieve deodorization of the washing is achieved.
- this deodorizing method only steam is sprayed on the cleaned object, and the cleaned object can be deodorized without using water and detergent.
- the method is simple and reliable in operation.
- the internal structure of the washing machine is simplified, so that the structure of the washing machine is simpler and the operation is more reliable.
- the method for odor removal further includes the following steps: In the odor removal mode, when the time that the steam generation module and the drainage module are turned on reaches the preset value, the steam generation module is turned off, and the drying cycle in the drying cycle module is turned off.
- the dry heating device is turned on to dry the cleaned objects in the working chamber of the washing tub. Such a setting can make the peculiar smell of the laundry have been removed within the preset time, and the laundry needs to be dried, so that the user can immediately use the dried laundry, which effectively improves the user experience.
- the method for deodorizing further includes the following steps: in the deodorizing mode, by turning on the fan system in the drying cycle module, so that the steam generated in the steam generating module flows into the working cavity of the washing tub of the washing machine. This arrangement can speed up the efficiency of deodorization of the washing machine.
- the method for removing odor further includes the following steps: the drainage module includes a drainage pump assembly, by controlling the drainage pump assembly to be in an open position, so that the working chamber of the washing tub is connected to the outside of the washing machine, or by controlling the drainage pump assembly to be closed Position so that the working cavity of the washing tub is disconnected from the outside of the washing machine.
- the drainage module includes a drainage pump assembly, by controlling the drainage pump assembly to be in an open position, so that the working chamber of the washing tub is connected to the outside of the washing machine, or by controlling the drainage pump assembly to be closed Position so that the working cavity of the washing tub is disconnected from the outside of the washing machine.
- the method for removing odors also includes the following steps: when the steam generating module starts to work, the water inlet valve of the steam generating module connected to the water inlet channel of the washing machine is opened, and when the water level of the steam electric heating device entering the steam generating module reaches a safe preset value , The steam electric heating device starts and heats the water in the steam electric heating device to generate steam. This arrangement improves the safety of the steam generating module.
- the method further includes the step of updating the air: in the steam generating module spraying steam into the working cavity of the washing tub, when the pressure in the working cavity of the washing tub reaches a first preset pressure value, the The airflow in the working chamber can diffuse to the outside of the washing machine through the drainage module, until the pressure in the working chamber of the washing tub drops to the second preset pressure value, the fresh air outside the clothes machine can be sucked and washed by the fan system in the drying cycle module
- the working cavity of the tub is used to update the air in the working cavity of the washing tub.
- the air in the working chamber of the washing tub is periodically updated through the air updating step. This arrangement can effectively improve the odor removal efficiency of the washing machine.
- the control method also includes a washing method of a washing machine.
- the washing method includes the following steps: enter the washing mode, and when the time for washing the washing objects in the working chamber of the washing tub reaches a preset washing time, the drain pump assembly is in the open position to remove the washing tub The water in the working cavity of the washing tub is discharged to the outside of the washing machine. When the working cavity of the washing tub is in the cleaning operation, the drain pump assembly is in the closed position to prevent the water in the working cavity of the washing tub from being discharged. That is, in this application, the drain pump assembly can be used for draining operations in the cleaning mode, and can also be used for introducing fresh air in the deodorizing mode to replace the air in the working chamber.
- a washing machine includes a deodorizing mode and a washing mode.
- the deodorizing mode and the washing mode are controlled by using the control method in the above-mentioned embodiment.
- the washing machine includes a cabinet 1, a washing tub 9, a steam generation module, a drying cycle module, and a drainage module.
- the washing tub 9 is arranged in the cabinet 1.
- the steam generating module is arranged in the box 1 and communicated with the washing tub 9.
- the drying cycle module is arranged in the box 1 and communicates with the steam generating module and the washing tub 9.
- the drainage module is arranged in the box 1 and communicated with the washing tub 9.
- the washing machine includes a deodorization mode and a cleaning mode.
- the working chamber of the washing tub 9 can be connected to the outside of the washing machine through the drainage module to introduce fresh air into the washing tub 9.
- the working cavity of the washing tub 9 can be connected to the outside of the washing machine through the drainage module to drain the water in the washing tub 9.
- the washing machine can realize the deodorization of washing materials by spraying steam into the washing tub, which effectively improves the practicability of the washing machine.
- the drying cycle module includes a drying heating device 7, a fan system 11, a drying air inlet channel 6, and a drying air outlet channel 8.
- the drying and heating device 7 is arranged in the box 1.
- the fan system 11 is arranged in the box 1.
- the first end of the drying air inlet channel 6 communicates with the outlet of the drying heating device 7, and the second end of the drying air inlet channel 6 communicates with the inlet of the washing tub 9.
- the first end of the drying air outlet channel 8 communicates with the outlet of the washing tub 9, and the second end of the drying air outlet channel 8 communicates with the inlet of the drying air inlet channel 6.
- the steam generating module includes a steam heating device 4 and a water inlet valve assembly 3.
- the steam heating device 4 is installed in the washing tub 9.
- the water inlet valve assembly 3 is arranged in the cabinet 1, one end of the water inlet valve assembly 3 is connected with the water inlet channel of the washing machine, and the other end of the water inlet valve assembly 3 is connected with the steam heating device 4, and the steam heating device 4 passes steam
- the air inlet 5 communicates with the drying air inlet channel 6. This arrangement enables the steam at the steam inlet 5 to be blown into the washing tub through the drying air inlet channel 6.
- the drainage module includes a drainage pump assembly 10.
- the drain pump assembly 10 is arranged in the cabinet 1. When the washing machine is in the deodorization mode, the working chamber of the washing tub 9 can be connected to the outside of the washing machine through the drain pump assembly 10 to introduce fresh air into the washing tub 9. In the mode, the working chamber of the washing tub 9 can be connected to the outside of the washing machine through the drain pump assembly 10 to drain the water in the washing tub 9.
- the washing machine further includes a damper 2.
- One end of the damper 2 is connected with the box 1, and the other end of the damper 2 is connected with the washing tub 9. This arrangement can effectively reduce the vibration of the washing machine, thereby reducing the noise of the washing machine, and improving the installation stability of the washing tub.
- the circulating air duct is not provided with a structure to communicate with the air outside the machine, that is, fresh air cannot be introduced during the steam deodorization process, and the odorous air in the barrel is discharged into the air.
- control the drainage system The switch can realize the exchange with the air outside the washing tub, so as to realize the function of steam deodorization. Without adding more structure, the same steam deodorization effect can be achieved through the control of the system, and the design and processing cost of the washing machine can be reduced.
- the washing machine of the present application does not need to use water and detergent, and can be removed only by using steam. The peculiar smell on the clothes can be realized in a simple way, and the user can dress when the program stops, which is very convenient.
- the steam is introduced into the tub after it is generated.
- the high temperature steam causes the temperature of the underwear to gradually increase.
- the peculiar smell in the clothes will escape from the clothes and enter the air in the tub under the action of high temperature.
- the odorous air is discharged out of the washing tub, and the steam refreshing effect on the odorous clothes can be realized.
- the steam refreshing or deodorizing mode is mainly divided into two parts.
- the first part is the steam spraying stage.
- the steam can not only eliminate some bacteria on the clothes, but also make the odors in the clothes volatilize into the air;
- the second part is the drying stage.
- In the dry stage in order to stop and wear immediately after deodorization, it is necessary to dry the clothes after spraying the steam.
- one end of the steam heating device 4 is connected to the water inlet valve assembly 3, and one end is connected to the drying air inlet channel.
- the steam energy is continuously transmitted to the clothes to spray the clothes. Steam effect.
- the component drying air outlet channel, drying heating device, drying air inlet channel, washing barrel, and fan system form a closed drying cycle system (the direction of the air circulation is shown by the arrow in Figure 2) to achieve drying of clothes.
- the water inlet valve assembly 3 advances water until it reaches the heating safety water level of the steam electric heating device, and then the electric heater located in the steam device starts to work to produce steam .
- the electric heater located in the steam device starts to work to produce steam .
- the temperature in the tub rises, and the pressure in the tub also increases. At this time, the air in the tub diffuses to the air outside the washing machine.
- the method for removing odor further includes the following steps: when the steam generation module starts operation, when the low liquid level probe of the steam generation module is turned on, the steam The electric heating device, the fan system in the drying cycle module, and the drainage pump component of the drainage module are started.
- the compressor in the drying cycle module runs at low frequency.
- the water level of the steam electric heating device reaches the safe preset value after the water inlet valve is opened for S1 time.
- the odor removal method further includes the following steps: when the steam generation module starts to operate, the fan system and compressor in the drying cycle module operate for S6 time After closing, then check whether the low level probe of the steam generating module is turned on. That is, the drying system (compressor operation) is turned on before the first stage, that is, the steam injection stage, and the air duct is preheated, which can reduce the condensate produced by the lower temperature air duct after the steam is generated. The efficiency of steam utilization.
- the liquid level probe 17 in the steam heating device 4 starts to detect whether the liquid level in the steam device meets the conditions for turning on the steam electric heating 16.
- Condition that is, the low liquid level probe is turned on, then the steam electric heating 16 is turned on.
- the circulating fan and drain pump are turned on, and the compressor starts to run at low frequency.
- the steam temperature sensor 15 detects the steam temperature in real time.
- the temperature feedback value is 99 ⁇ 1°C
- the main board starts to record the time when the steam is generated, and at the same time it starts to record the time when the probe is turned on, until the steam generation time S2 set by the program is reached. Or the probe detects the disconnection time S3.
- the first stage ends, the steam electric heating is disconnected, and the second stage begins. If it is detected that the liquid level probe is disconnected during the steam generation process, it is necessary to determine whether the steam generation time (ie the liquid level probe conduction time) S3 is less than the minimum steam generation time (8min), if the minimum heating time is not met.
- the steam inlet valve 13 enters water and reheats to generate steam until the conditions for entering the second stage are reached. In this stage, as the steam enters the tub, the temperature in the tub rises, and the pressure in the tub also increases. At this time, the air in the tub diffuses to the air outside the washing machine. When the pressure in the tub gradually decreases, the outside of the tub The fresh air is gradually sucked into the barrel to achieve the purpose of replacing the fresh air. Part of the peculiar smell can be discharged out of the barrel through the drain pump.
- the compressor operates at high frequency, and the drying spray valve 12 is opened intermittently within a preset time. S5 Time, the experiment proves that the intermittent opening time of the water valve is about 5 to 15 minutes, which can achieve a better deodorization effect.
- the compressor continues to run for 5 to 10 minutes before being closed. At this stage, water is sprayed in the air duct to dissolve the odorous gas in the barrel, and the water in the air duct is discharged out of the barrel through the drain pump to achieve the purpose of removing odor.
- 14 is a steam outlet.
- time S1 can be 5s
- S2 can be 10min
- S4 can be 10min
- S5 can be 5s
- S6 can be 5min
- S4 is an actual measured value.
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Abstract
一种洗衣机及洗衣机的控制方法,控制方法包括洗衣机的除异味的方法,方法包括以下步骤:进入除味模式,蒸汽发生模块作业;开启烘干循环模块,以使蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶(9)的工作腔;开启排水模块,洗涤桶的工作腔通过排水模块引进新风,以使洗涤桶的工作腔内的空气通过排水模块向洗衣机外扩散,以达到去除清洗物上的异味的目的。在除味模式中,通过排水模块向洗涤桶内引进新风以更换洗涤桶的工作腔内的空气,继而达到对清洗物实现除味的方式。采用该除味方式,只需向清洗物喷洒蒸汽,无需通过水和洗涤剂就能够实现对清洗物进行除异味,使得该方法操作简单、可靠。
Description
相关申请
本申请要求2019年05月24日申请的,申请号为201910441227.2,名称为“洗衣机及洗衣机的控制方法”的中国专利申请的优先权,在此将其全文引入作为参考。
本申请涉及清洗设备技术领域,尤其涉及一种洗衣机及洗衣机的控制方法。
随着生活水平的提高,人们对洗衣机功能的要求也越来越多。现有的洗衣机除了洗涤、脱水和烘干等基本功能外,还包括除菌、护理等功能。相关技术中采用蒸汽对清洗物进行除异味的结构和方法复杂,造成用户的使用不方便的问题。
发明内容
本申请的主要目的在于提供一种洗衣机及洗衣机的控制方法,以解决现有技术中洗衣机除异味方法复杂的问题。
为了实现上述目的,根据本申请的一个方面,提供了一种洗衣机的控制方法,控制方法包括洗衣机的除异味的方法,方法包括以下步骤:进入除味模式,蒸汽发生模块作业;开启烘干循环模块,以使蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶的工作腔;开启排水模块,洗涤桶的工作腔通过排水模块引进新风,以使洗涤桶的工作腔内的空气通过排水模块向洗衣机外扩散,以去除清洗物上的异味。
在一个实施例中,方法还包括以下步骤:在除味模式中,当蒸汽发生模块和/或排水模块开启的时间达到开启预设值时,蒸汽发生模块关闭,烘干循环模块中的烘干加热装置开启,以对洗涤桶的工作腔内的清洗物进行烘干作业。
在一个实施例中,方法还包括以下步骤:在除味模式中,通过开启烘干循环模块中的风机系统,以使蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶的工作腔内。
在一个实施例中,方法还包括以下步骤:排水模块包括排水泵组件,通过控制排水泵组件处于打开位置,以使洗涤桶的工作腔与洗衣机的外部相连通,或者,通过控制排水泵组件处于关闭位置,以使洗涤桶的工作腔与洗衣机的外部相断开。
在一个实施例中,方法还包括以下步骤:蒸汽发生模块开始作业时,蒸汽发生模块的 连接洗衣机的进水通道的进水阀打开,当进入蒸汽发生模块的蒸汽电加热装置的水位达到安全预设值时,蒸汽电加热装置启动并对位于蒸汽电加热装置中的水进行加热以产生蒸汽。
在一个实施例中,方法还包括以下步骤:更新空气步骤:在蒸汽发生模块向洗涤桶的工作腔内喷入蒸汽中,当洗涤桶的工作腔内的压力达到第一压力预设值时,洗涤桶的工作腔内的气流可通过排水模块向洗衣机外部扩散,直至洗涤桶的工作腔内的压力降低至第二压力预设值时,衣机外的新风可通过烘干循环模块中的风机系统吸入洗涤桶的工作腔内以更新洗涤桶的工作腔内的空气。
在一个实施例中,在蒸汽发生模块作业的过程中,通过更新空气步骤周期性的对洗涤桶的工作腔内进行空气更新。
在一个实施例中,控制方法还包括洗衣机的清洗方法,清洗方法包括以下步骤:进入清洗模式,当洗涤桶的工作腔对清洗物进行清洗的时间达到预设清洗时间时,排水泵组件处于打开位置,以将洗涤桶的工作腔内的水排出至洗衣机外,当洗涤桶的工作腔处于清洗作业时,排水泵组件处于关闭位置以防止洗涤桶的工作腔内的水排出。
在一个实施例中,方法还包括以下步骤:蒸汽发生模块开始作业时,当检测蒸汽发生模块的低液位探针接通时,蒸汽电加热装置、烘干循环模块中的风机系统以及排水模块的排水泵组件启动,烘干循环模块中的压缩机以低频运行,当检测蒸汽电加热装置的低液位探针没有接通时,进水阀打开进水S1时间后蒸汽电加热装置的水位达到安全预设值。
在一个实施例中,方法还包括以下步骤:当蒸汽发生模块的蒸汽温度传感器检测蒸汽温度为T,当T≥100℃时,开始记录蒸汽发生时间S2,同时记录液位探针导通时间S3,当S2≥S3,或者,t1≤S2<S3时,关闭蒸汽电加热装置,烘干循环模块开启,压缩机以高频运行S4时间;当S2<t1时,进水阀打开进水S1时间。
在一个实施例中,压缩机在高频运行S4时间内,烘干循环模块的烘干喷淋阀每隔预设时间开启S5时间以向烘干进风通道喷洒液态水。
在一个实施例中,方法还包括以下步骤:蒸汽发生模块开始作业时,烘干循环模块中的风机系统、压缩机高频运行S6时间后关闭,然后再检测蒸汽发生模块的低液位探针是否导通。
根据本申请的另一方面,提供了一种洗衣机,洗衣机包括除味模式和清洗模式,除味模式和清洗模式通过采用上述的控制方法进行控制。
在一个实施例中,洗衣机包括:箱体;洗涤桶,设置于箱体内;蒸汽发生模块,设置于箱体内并与洗涤桶相连通;烘干循环模块,设置于箱体内并与蒸汽发生模块和洗涤桶相 连通;排水模块,设置于箱体内并与洗涤桶相连通;其中,洗衣机包括除味模式和清洗模式,当洗衣机位于除味模式时,洗涤桶的工作腔可通过排水模块与洗衣机的外部相连通以向洗涤桶内引进新风,当洗衣机位于清洗模式时,洗涤桶的工作腔可通过排水模块与洗衣机的外部相连通以将位于洗涤桶内的水排出。
在一个实施例中,烘干循环模块包括:烘干加热装置,设置于箱体内;风机系统,设置于箱体内;烘干进风通道,烘干进风通道的第一端与烘干加热装置的出口相连通,烘干进风通道的第二端与洗涤桶的进口相连通;烘干出风通道,烘干出风通道的第一端与洗涤桶的出口相连通,烘干出风通道的第二端与烘干进风通道的进口相连通。
在一个实施例中,蒸汽发生模块包括:蒸汽加热装置,设置于洗涤桶内;进水阀组件,进水阀组件设置于箱体内,进水阀组件的一端与洗衣机的进水通道相连通,进水阀组件的另一端与蒸汽加热装置相连通。
在一个实施例中,排水模块包括:排水泵组件,排水泵组件设置于箱体内,当洗衣机位于除味模式时,洗涤桶的工作腔可通过排水泵组件与洗衣机的外部相连通以向洗涤桶内引进新风,当洗衣机位于清洗模式时,洗涤桶的工作腔可通过排水泵组件与洗衣机的外部相连通以将位于洗涤桶内的水排出。
在一个实施例中,洗衣机还包括:阻尼器,阻尼器的一端与箱体相连接,阻尼器的另一端与洗涤桶相连接。
应用本申请的技术方案,在不增加新风结构的条件下,在除味模式中,通过排水模块向洗涤桶内引进新风以更换洗涤桶的工作腔内的空气,继而达到对清洗物实现除味的方式。采用该除味方式,只需向清洗物喷洒蒸汽,无需通过水和洗涤剂就能够实现对清洗物进行除异味,使得该方法操作简单、可靠,同时简化了该洗衣机的内部结构,洗衣机的结构更加简单,运行起来更加可靠,使用起来更加方便,有效地提高了用户的使用体验。
构成本申请的一部分的说明书附图用来提供对本申请的进一步理解,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1示出了根据本申请的除味模式的实施例的控制流程示意图;
图2示出了根据本申请的洗衣机的实施例的结构示意图;
图3示出了根据本申请的洗衣机的实施例的结构示意图;
图4示出了根据本申请的洗衣机的蒸汽加热装置的实施例的结构示意图;
图5示出了根据本申请的除味模式的实施例的控制流程示意图;
图6示出了根据本申请的除味模式的实施例的控制流程示意图。
其中,上述附图包括以下附图标记:
1、箱体;2、阻尼器;3、进水阀组件;4、蒸汽加热装置;5、蒸汽进气口;6、烘干进风通道;7、烘干加热装置;8、烘干出风通道;9、洗涤桶;10、排水泵组件;11、风机系统;12、烘干喷淋阀;13、蒸汽进水阀;14、蒸汽出气口;15、蒸汽感温包;16、蒸汽电加热;17、液位探针。
需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。下面将参考附图并结合实施例来详细说明本申请。
需要注意的是,这里所使用的术语仅是为了描述具体实施方式,而非意图限制根据本申请的示例性实施方式。如在这里所使用的,除非上下文另外明确指出,否则单数形式也意图包括复数形式,此外,还应当理解的是,当在本说明书中使用术语“包含”和/或“包括”时,其指明存在特征、步骤、操作、器件、组件和/或它们的组合。
需要说明的是,本申请的说明书和权利要求书及附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的术语在适当情况下可以互换,以便这里描述的本申请的实施方式例如能够以除了在这里图示或描述的那些以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
为了便于描述,在这里可以使用空间相对术语,如“在……之上”、“在……上方”、“在……上表面”、“上面的”等,用来描述如在图中所示的一个器件或特征与其他器件或特征的空间位置关系。应当理解的是,空间相对术语旨在包含除了器件在图中所描述的方位之外的在使用或操作中的不同方位。例如,如果附图中的器件被倒置,则描述为“在其他器件或构造上方”或“在其他器件或构造之上”的器件之后将被定位为“在其他器件或构造下方”或“在其他器件或构造之下”。因而,示例性术语“在……上方”可以包括“在……上方”和“在……下方”两种方位。该器件也可以其他不同方式定位(旋转90度或处于其他方位),并且对这里所使用的空间相对描述作出相应解释。
现在,将参照附图更详细地描述根据本申请的示例性实施方式。然而,这些示例性实施方式可以由多种不同的形式来实施,并且不应当被解释为只限于这里所阐述的实施方式。应当理解的是,提供这些实施方式是为了使得本申请的公开彻底且完整,并且将这些 示例性实施方式的构思充分传达给本领域普通技术人员,在附图中,为了清楚起见,有可能扩大了层和区域的厚度,并且使用相同的附图标记表示相同的器件,因而将省略对它们的描述。
结合图1所示,根据本申请的实施例,提供了一种洗衣机的控制方法。
具体地,该控制方法包括洗衣机的除异味的方法,除异味的方法包括以下步骤:进入除味模式,蒸汽发生模块作业。开启烘干循环模块,以使蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶的工作腔,开启排水模块,洗涤桶的工作腔通过排水模块引进新风,以使洗涤桶的工作腔内的空气通过排水模块向洗衣机外扩散,以达到去除清洗物上的异味的目的。
在本实施例中,通过排水模块向洗涤桶内引进新风以更换洗涤桶的工作腔内的空气,继而达到对清洗物实现除味的方式。采用该除味方式,只需向清洗物喷洒蒸汽,无需通过水和洗涤剂就能够实现对清洗物进行除异味,该方法操作简单、可靠。同时简化了该洗衣机的内部结构,使得洗衣机的结构更加简单,运行起来更加可靠。
在一个实施例中,除异味的方法还包括以下步骤:在除味模式中,当蒸汽发生模块和排水模块开启的时间达到开启预设值时,蒸汽发生模块关闭,烘干循环模块中的烘干加热装置开启,以对洗涤桶的工作腔内的清洗物进行烘干作业。这样设置能够使得在预设时间内,清洗物的异味已经除尽,需要对清洗物进行烘干,使得用户可以马上利用烘干后的衣物,有效地提高了用户的使用体验。
除异味的方法还包括以下步骤:在除味模式中,通过开启烘干循环模块中的风机系统,以使蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶的工作腔内。这样设置能够加快洗衣机的除异味的效率。
其中,除异味的方法还包括以下步骤:排水模块包括排水泵组件,通过控制排水泵组件处于打开位置,以使洗涤桶的工作腔与洗衣机的外部相连通,或者,通过控制排水泵组件处于关闭位置,以使洗涤桶的工作腔与洗衣机的外部相断开。这样设置使得在除味模式中,实现换新风的结构更加简单,即实现了排水泵组件一物多用的功能。
除异味的方法还包括以下步骤:蒸汽发生模块开始作业时,蒸汽发生模块的连接洗衣机的进水通道的进水阀打开,当进入蒸汽发生模块的蒸汽电加热装置的水位达到安全预设值时,蒸汽电加热装置启动并对位于蒸汽电加热装置中的水进行加热以产生蒸汽。这样设置提高了蒸汽发生模块的安全性。
在一个实施例中,方法还包括更新空气步骤:在蒸汽发生模块向洗涤桶的工作腔内喷入蒸汽中,当洗涤桶的工作腔内的压力达到第一压力预设值时,洗涤桶的工作腔内的气流 可通过排水模块向洗衣机外部扩散,直至洗涤桶的工作腔内的压力降低至第二压力预设值时,衣机外的新风可通过烘干循环模块中的风机系统吸入洗涤桶的工作腔内以更新洗涤桶的工作腔内的空气。其中,在蒸汽发生模块作业的过程中,通过更新空气步骤周期性的对洗涤桶的工作腔内进行空气更新。这样设置能够有效地提高该洗衣机的除异味效率。
控制方法还包括洗衣机的清洗方法,清洗方法包括以下步骤:进入清洗模式,当洗涤桶的工作腔对清洗物进行清洗的时间达到预设清洗时间时,排水泵组件处于打开位置,以将洗涤桶的工作腔内的水排出至洗衣机外,当洗涤桶的工作腔处于清洗作业时,排水泵组件处于关闭位置以防止洗涤桶的工作腔内的水排出。即在本申请中,该排水泵组件可以用于清洗模式下的排水作业,也可以用于除味模式下引进新风以更换工作腔内的空气。
在循环风道没有设置与机外空气连通结构的情况下,即在蒸汽除味过程中无法引入新风,无法将洗涤筒内有异味的空气排到机外空气中同时从洗涤筒外引新鲜空气进入桶内清新衣物。针对此问题,在不增加新风结构的条件下,通过控制排水系统和进水系统的开关,实现与洗涤筒外空气的交换,从而实现蒸汽除味的功能。
根据本申请的另一方面,提供了一种洗衣机,洗衣机包括除味模式和清洗模式,除味模式和清洗模式通过采用上述实施例中的控制方法进行控制。具体地,如图2所示,洗衣机包括箱体1、洗涤桶9、蒸汽发生模块、烘干循环模块、排水模块。洗涤桶9设置于箱体1内。蒸汽发生模块设置于箱体1内并与洗涤桶9相连通。烘干循环模块设置于箱体1内并与蒸汽发生模块和洗涤桶9相连通。排水模块设置于箱体1内并与洗涤桶9相连通。其中,洗衣机包括除味模式和清洗模式,当洗衣机位于除味模式时,洗涤桶9的工作腔可通过排水模块与洗衣机的外部相连通以向洗涤桶9内引进新风,当洗衣机位于清洗模式时,洗涤桶9的工作腔可通过排水模块与洗衣机的外部相连通以将位于洗涤桶9内的水排出。采用该洗衣机能够实现只需向洗涤桶内喷洒蒸汽就能够实现对清洗物除异味,有效地提高了该洗衣机的实用性。
其中,烘干循环模块包括烘干加热装置7、风机系统11、烘干进风通道6、烘干出风通道8。烘干加热装置7设置于箱体1内。风机系统11设置于箱体1内。烘干进风通道6的第一端与烘干加热装置7的出口相连通,烘干进风通道6的第二端与洗涤桶9的进口相连通。烘干出风通道8的第一端与洗涤桶9的出口相连通,烘干出风通道8的第二端与烘干进风通道6的进口相连通。蒸汽发生模块包括蒸汽加热装置4、进水阀组件3。蒸汽加热装置4设置于洗涤桶9内。进水阀组件3设置于箱体1内,进水阀组件3的一端与洗衣机的进水通道相连通,进水阀组件3的另一端与蒸汽加热装置4相连通,蒸汽加热装置4通过蒸汽进气口5与烘干进风通道6相连通。这样设置能够使得位于蒸汽进气口5的蒸汽 通过烘干进风通道6吹入洗涤桶内。
排水模块包括排水泵组件10。排水泵组件10设置于箱体1内,当洗衣机位于除味模式时,洗涤桶9的工作腔可通过排水泵组件10与洗衣机的外部相连通以向洗涤桶9内引进新风,当洗衣机位于清洗模式时,洗涤桶9的工作腔可通过排水泵组件10与洗衣机的外部相连通以将位于洗涤桶9内的水排出。
在一个实施例中,洗衣机还包括阻尼器2。阻尼器2的一端与箱体1相连接,阻尼器2的另一端与洗涤桶9相连接。这样设置能够有效减小洗衣机的振动,继而减小了洗衣机的噪音,提高了洗涤桶的安装稳定性。
具体地,在循环风道没有设置与机外空气连通结构的条件下,即在蒸汽除味过程中无法引入新风,将桶内有异味的空气排到空气中,针对此问题,通过控制排水系统的开关,实现与洗涤桶外空气的交换,从而实现蒸汽除味的功能。在不多增加结构的情况下,通过对系统的控制实现相同的蒸汽除味效果,降低洗衣机的设计加工成本,采用本申请的洗衣机,不需要通过水和洗涤剂,只需利用蒸汽就能够去除衣物上的异味,实现方式简单,程序即停用户即可穿衣,十分便捷。
蒸汽除味过程中,蒸汽产生后被引入桶内,高温蒸汽导致桶内衣物温度逐渐升高,衣物中的异味在高温的作用下脱离衣物进入桶内的空气中,此时若引入洗涤桶外新风,将有异味的空气排出洗涤桶外,就可以实现对有异味的衣物的蒸汽清新作用。
蒸汽清新或除味模式主要分为两个部分,第一部分为喷蒸汽阶段,利用蒸汽的作用不仅可以消除衣物上的部分细菌,还可以使衣物中的异味挥发到空气中;第二部分为烘干阶段,为实现在除味后能即停即穿,需要将喷完蒸汽后的衣物进行烘干。
如图1所示,蒸汽加热装置4的一端与进水阀组件3相连,一端与烘干进风通道相连,在风机的带动下,蒸汽能源源不断的传递到衣物上,实现对衣物的喷蒸汽作用。部件烘干出风通道、烘干加热装置、烘干进风通道、洗涤桶、风机系统组成封闭的烘干循环系统(风的循环方向如图2中箭头所示)实现对衣物的烘干。
如图2所示,当用户选择蒸汽清新/除味功能时,进水阀组件3先进水,直至达到蒸汽电加热装置的加热安全水位,然后位于蒸汽装置内的电加热器开始工作,产生蒸汽。为将产生的蒸汽带入桶内,需在蒸汽过程中开启循环风机系统。为实现与洗涤桶外空气的交换,在不增加新风系统的情况下,需要在喷蒸汽的过程中打开排水泵以引进新风。随着蒸汽进入桶内,桶内温度升高,桶内压力也随之增大,此时桶内的空气向洗衣机外的空气扩散,当桶内压力逐渐降低后,洗涤桶外的新风又逐渐被吸入桶内,达到换新风的目的。经过空气的不断交换,桶内有异味的空气变得新鲜,最终达到衣物除味的效果。
结合图3至图5所示,根据本申请的另一个实施例,除异味的方法还包括以下步骤:蒸汽发生模块开始作业时,当检测蒸汽发生模块的低液位探针接通时,蒸汽电加热装置、烘干循环模块中的风机系统以及排水模块的排水泵组件启动,烘干循环模块中的压缩机以低频运行,当检测蒸汽电加热装置的低液位探针没有接通时,进水阀打开进水S1时间后蒸汽电加热装置的水位达到安全预设值。
在一个实施例中,如图5所示,当蒸汽发生模块的蒸汽温度传感器检测蒸汽温度为T,当T≥100℃时,开始记录蒸汽发生时间S2,同时记录液位探针导通时间S3,当S2≥S3,或者,t1≤S2<S3时,关闭蒸汽电加热装置,烘干循环模块开启,压缩机以高频运行S4时间;当S2<t1时,进水阀打开进水S1时间。其中,t1可以是8分钟。其中,压缩机在高频运行S4时间内,烘干循环模块的烘干喷淋阀每隔预设时间开启S5时间以向烘干进风通道喷洒液态水。即喷淋阀为间断开启模式。
当然,在本申请的另一个实施例中,如图6所示,该除异味方法还包括以下步骤:蒸汽发生模块开始作业时,烘干循环模块中的风机系统、压缩机高频运行S6时间后关闭,然后再检测蒸汽发生模块的低液位探针是否导通。即可在第一阶段即喷蒸汽阶段前先开启烘干系统(压缩机运行),给风道预热,可以减少因蒸汽产生后遇到较低温度的风道产生冷凝水的情况,达到更加的蒸汽利用效率。
具体地,如图4和图5所示,选择蒸汽除味程序后,蒸汽加热装置4内的液位探针17开始检测蒸汽装置内的液位是否满足开启蒸汽电加热16的条件,若满足条件,即低液位探针导通,则开启蒸汽电加热16。蒸汽电加热16启动后,循环风机、排水泵开启,压缩机开始以低频运行。蒸汽感温包15实时检测蒸汽温度,当温度反馈值为99±1℃时,主板开始记录蒸汽产生时间点,同时开始记录探针导通时间点,直至达到程序设定的蒸汽产生时间S2,或探针检测到断开时间S3。若在设定的蒸汽产生时间S2内一直未检测到液位探针断开,即S2≥S3,则第一阶段结束,蒸汽电加热断开,开始进入第二阶段。若蒸汽产生过程中检测到液位探针断开,则需判断已进行的蒸汽产生时间(即液位探针导通时间)S3是否小于最小蒸汽产生时间(8min),若不满足最小加热时间则蒸汽进水阀13进水,重新加热产生蒸汽,直至达到进入第二阶段的条件。在此阶段内,随着蒸汽进入桶内,桶内温度升高,桶内压力也随之增大,此时桶内的空气向洗衣机外的空气扩散,当桶内压力逐渐降低后,筒外的新风又逐渐被吸入桶内,达到换新风的目的,部分异味可通过排水泵排出筒外。
如图3所示,蒸汽电加热16断开后,开始进入第二阶段即烘干阶段,此过程中,压缩机以高频运行,同时烘干喷淋阀12在预设时间内间断开启S5时间,实验证明水阀间断开 启时间约为5至15min可达到较好的除异味效果。烘干喷淋阀12关闭后,压缩机再持续运行5至10min后关闭。在此阶段,利用在风道内喷水达到溶解桶内异味气体的目的,风道内的水再经由排水泵排出筒外,从而达到去异味的目的。其中,在图4中,14为蒸汽出气口,在本申请中,时间S1可以为5s、S2为10min、S4可以为10min、S5可以为5s、S6可以为5min,S4为实测值。
除上述以外,还需要说明的是在本说明书中所谈到的“一个实施例”、“另一个实施例”、“实施例”等,指的是结合该实施例描述的具体特征、结构或者特点包括在本申请概括性描述的至少一个实施例中。在说明书中多个地方出现同种表述不是一定指的是同一个实施例。进一步来说,结合任一实施例描述一个具体特征、结构或者特点时,所要主张的是结合其他实施例来实现这种特征、结构或者特点也落在本申请的范围内。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。
Claims (18)
- 一种洗衣机的控制方法,其特征在于,所述控制方法包括洗衣机的除异味的方法,所述方法包括以下步骤:进入除味模式,蒸汽发生模块作业;开启烘干循环模块,以使所述蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶的工作腔;开启排水模块,所述洗涤桶的工作腔通过所述排水模块引进新风,以使所述洗涤桶的工作腔内的空气通过所述排水模块向洗衣机外扩散,以去除清洗物上的异味。
- 根据权利要求1所述的控制方法,其特征在于,所述方法还包括以下步骤:在所述除味模式中,当所述蒸汽发生模块和/或所述排水模块开启的时间达到开启预设值时,所述蒸汽发生模块关闭,所述烘干循环模块中的烘干加热装置开启,以对所述洗涤桶的工作腔内的所述清洗物进行烘干作业。
- 根据权利要求1或2所述的控制方法,其特征在于,所述方法还包括以下步骤:在所述除味模式中,通过开启所述烘干循环模块中的风机系统,以使所述蒸汽发生模块中产生的蒸汽流向洗衣机的洗涤桶的工作腔内。
- 根据权利要求1所述的控制方法,其特征在于,所述方法还包括以下步骤:所述排水模块包括排水泵组件,通过控制所述排水泵组件处于打开位置,以使所述洗涤桶的工作腔与所述洗衣机的外部相连通,或者,通过控制所述排水泵组件处于关闭位置,以使所述洗涤桶的工作腔与所述洗衣机的外部相断开。
- 根据权利要求1所述的控制方法,其特征在于,所述方法还包括以下步骤:所述蒸汽发生模块开始作业时,所述蒸汽发生模块的连接所述洗衣机的进水通道的进水阀打开,当进入所述蒸汽发生模块的蒸汽电加热装置的水位达到安全预设值时,所述蒸汽电加热装置启动并对位于所述蒸汽电加热装置中的水进行加热以产生蒸汽。
- 根据权利要求5所述的控制方法,其特征在于,所述方法还包括以下步骤:更新空气步骤:在所述蒸汽发生模块向所述洗涤桶的工作腔内喷入蒸汽中,当所述洗涤桶的工作腔内的压力达到第一压力预设值时,所述洗涤桶的工作腔内的气流可通过所述排水模块向所述洗衣机外部扩散,直至所述洗涤桶的工作腔内的压力降低至第二压力预设值时,所述衣机外的新风可通过所述烘干循环模块中的风机系统吸入所述洗涤桶的工作腔内以更新所述洗涤桶的工作腔内的空气。
- 根据权利要求6所述的控制方法,其特征在于,在蒸汽发生模块作业的过程中,通过所述更新空气步骤周期性的对所述洗涤桶的工作腔内进行空气更新。
- 根据权利要求4所述的控制方法,其特征在于,所述控制方法还包括洗衣机的清洗方法,所述清洗方法包括以下步骤:进入清洗模式,当所述洗涤桶的工作腔对清洗物进行清洗的时间达到预设清洗时间时,所述排水泵组件处于打开位置,以将所述洗涤桶的工作腔内的水排出至所述洗衣机外,当所述洗涤桶的工作腔处于清洗作业时,所述排水泵组件处于关闭位置以防止所述洗涤桶的工作腔内的水排出。
- 根据权利要求5所述的控制方法,其特征在于,所述方法还包括以下步骤:所述蒸汽发生模块开始作业时,当检测所述蒸汽发生模块的低液位探针接通时,蒸汽电加热装置、所述烘干循环模块中的风机系统以及所述排水模块的排水泵组件启动,所述烘干循环模块中的压缩机以低频运行,当检测所述蒸汽电加热装置的低液位探针没有接通时,所述进水阀打开进水S1时间后所述蒸汽电加热装置的水位达到安全预设值。
- 根据权利要求9所述的控制方法,其特征在于,所述方法还包括以下步骤:当所述蒸汽发生模块的蒸汽温度传感器检测蒸汽温度为T,当T≥100℃时,开始记录蒸汽发生时间S2,同时记录液位探针导通时间S3,当S2≥S3,或者,t1≤S2<S3时,关闭所述蒸汽电加热装置,所述烘干循环模块开启,所述压缩机以高频运行S4时间;当S2<t1时,所述进水阀打开进水S1时间。
- 根据权利要求10所述的控制方法,其特征在于,所述压缩机在高频运行S4时间内,所述烘干循环模块的烘干喷淋阀每隔预设时间开启S5时间以向烘干进风通道喷洒液态水。
- 根据权利要求5所述的控制方法,其特征在于,所述方法还包括以下步骤:所述蒸汽发生模块开始作业时,所述烘干循环模块中的风机系统、压缩机高频运行S6时间后关闭,然后再检测蒸汽发生模块的低液位探针是否导通。
- 一种洗衣机,所述洗衣机包括除味模式和清洗模式,其特征在于,所述除味模式和所述清洗模式通过采用权利要求1至12中任一项的所述控制方法进行控制。
- 根据权利要求13所述的洗衣机,其特征在于,所述洗衣机包括:箱体(1);洗涤桶(9),设置于所述箱体(1)内;蒸汽发生模块,设置于所述箱体(1)内并与所述洗涤桶(9)相连通;烘干循环模块,设置于所述箱体(1)内并与蒸汽发生模块和所述洗涤桶(9)相连通;排水模块,设置于所述箱体(1)内并与所述洗涤桶(9)相连通;其中,所述洗衣机包括除味模式和清洗模式,当所述洗衣机位于所述除味模式时,所 述洗涤桶(9)的工作腔可通过所述排水模块与所述洗衣机的外部相连通以向所述洗涤桶(9)内引进新风,当所述洗衣机位于所述清洗模式时,所述洗涤桶(9)的工作腔可通过所述排水模块与所述洗衣机的外部相连通以将位于所述洗涤桶(9)内的水排出。
- 根据权利要求14所述的洗衣机,其特征在于,所述烘干循环模块包括:烘干加热装置(7),设置于所述箱体(1)内;风机系统(11),设置于所述箱体(1)内;烘干进风通道(6),所述烘干进风通道(6)的第一端与所述烘干加热装置(7)的出口相连通,所述烘干进风通道(6)的第二端与所述洗涤桶(9)的进口相连通;烘干出风通道(8),所述烘干出风通道(8)的第一端与所述洗涤桶(9)的出口相连通,所述烘干出风通道(8)的第二端与所述烘干进风通道(6)的进口相连通。
- 根据权利要求15所述的洗衣机,其特征在于,所述蒸汽发生模块包括:蒸汽加热装置(4),设置于所述洗涤桶(9)内;进水阀组件(3),所述进水阀组件(3)设置于所述箱体(1)内,所述进水阀组件(3)的一端与所述洗衣机的进水通道相连通,所述进水阀组件(3)的另一端与所述蒸汽加热装置(4)相连通。
- 根据权利要求14所述的洗衣机,其特征在于,所述排水模块包括:排水泵组件(10),所述排水泵组件(10)设置于所述箱体(1)内,当所述洗衣机位于所述除味模式时,所述洗涤桶(9)的工作腔可通过所述排水泵组件(10)与所述洗衣机的外部相连通以向所述洗涤桶(9)内引进新风,当所述洗衣机位于所述清洗模式时,所述洗涤桶(9)的工作腔可通过所述排水泵组件(10)与所述洗衣机的外部相连通以将位于所述洗涤桶(9)内的水排出。
- 根据权利要求14所述的洗衣机,其特征在于,所述洗衣机还包括:阻尼器(2),所述阻尼器(2)的一端与所述箱体(1)相连接,所述阻尼器(2)的另一端与所述洗涤桶(9)相连接。
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| JP2012179267A (ja) * | 2011-03-02 | 2012-09-20 | Panasonic Corp | ドラム式洗濯機 |
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| CN110079973A (zh) * | 2019-05-24 | 2019-08-02 | 珠海格力电器股份有限公司 | 洗衣机及洗衣机的控制方法 |
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| KR100819590B1 (ko) * | 2006-02-28 | 2008-04-03 | 엘지전자 주식회사 | 냄새를 제거하는 방법 |
| KR100867122B1 (ko) * | 2007-04-17 | 2008-11-06 | 삼성전자주식회사 | 세탁기 및 그 제어방법 |
| KR100964695B1 (ko) * | 2008-01-03 | 2010-06-21 | 엘지전자 주식회사 | 건조기 |
| CN202208837U (zh) * | 2011-08-26 | 2012-05-02 | 浙江科技学院 | 蒸汽洗衣机 |
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| CN101743351A (zh) * | 2007-07-10 | 2010-06-16 | Lg电子株式会社 | 气味去除方法 |
| US20100281924A1 (en) * | 2007-12-28 | 2010-11-11 | Sanyo Electric Co., Ltd. | Washing/drying machine and deodorization apparatus |
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| CN110079973A (zh) * | 2019-05-24 | 2019-08-02 | 珠海格力电器股份有限公司 | 洗衣机及洗衣机的控制方法 |
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| CN110079973B (zh) | 2020-05-29 |
| CN110079973A (zh) | 2019-08-02 |
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