WO2014205986A1 - 环保洗衣机装置 - Google Patents

环保洗衣机装置 Download PDF

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Publication number
WO2014205986A1
WO2014205986A1 PCT/CN2013/087409 CN2013087409W WO2014205986A1 WO 2014205986 A1 WO2014205986 A1 WO 2014205986A1 CN 2013087409 W CN2013087409 W CN 2013087409W WO 2014205986 A1 WO2014205986 A1 WO 2014205986A1
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WO
WIPO (PCT)
Prior art keywords
water
saving
controller
drainage
tank
Prior art date
Application number
PCT/CN2013/087409
Other languages
English (en)
French (fr)
Inventor
何丽丽
Original Assignee
He Lili
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by He Lili filed Critical He Lili
Priority to CN201380030734.8A priority Critical patent/CN104471138A/zh
Publication of WO2014205986A1 publication Critical patent/WO2014205986A1/zh

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Classifications

    • 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
    • D06F33/42Control of operational steps, e.g. optimisation or improvement of operational steps depending on the condition of the laundry of draining
    • 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 
    • D06F33/46Control of the energy or water consumption
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/006Recovery arrangements, e.g. for the recovery of energy or water
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/083Liquid discharge or recirculation arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/088Liquid supply arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/20Arrangements for water recovery
    • 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

Definitions

  • the invention relates to a washing machine, in particular to an environmentally friendly agricultural washing machine device.
  • the purpose of this invention is to overcome the deficiencies of the prior art and to provide an environmentally friendly washing machine device that saves limited water resources.
  • Environmentally-friendly washing machine including continuation, dewatering bucket, pulsator or S-disc, water bucket, boom, drain electric valve, water inlet solenoid valve, drain pipe, power unit, Circulating water pump, water saving, water saving electromagnetic wide, water level sensor on water tank, water level water level sensor and controller;
  • the water tank is connected with the tank through the boom, the dewatering tank is installed in the water tank, the power device and the dewatering tank and the wave Wheel or smashing: connection, water inlet electromagnetic ⁇ is installed on the “t” side of the water tank, the water saving tank 11 is installed in the box body;
  • the water-saving electromagnetic eye is the two-position electromagnetic surface, the input interface of the water-saving electromagnetic bay and the drainage electromagnetic eye
  • the drain connection is connected, the first output joint of the water-saving electromagnetic eye is connected with the drain pipe, and the second output joint of the water-saving electromagnetic cooker is connected with the water-saving tank, and is used for putting the washing water that needs to be recycled into the water-saving tank or
  • the pump
  • the environmentally-friendly washing machine has ordinary working procedures and water-saving work procedures, and water-saving work procedures. Yes: Start a first pumping of bad water ⁇ Laundry for the first time drain ⁇ First dehydration, Second water intake, One rinse, One second drain, One second dehydration, One last water, One last rinse After recycling the water for 3 ⁇ 4, the water will be drenched once ⁇ stop ⁇ .
  • the water-saving working principle of the environmentally friendly washing machine device is: When the washing machine performs the last drainage or non-first-time drainage, the controller controls the water saving 3 ⁇ 4 magnetic eye to recycle the last - 'secondary drainage or non-first drainage of the washing machine to save water The first time the machine is released or the water is not discharged into the storage tank, the controller controls the circulating water to pump the recovered water from the water tank to the water.
  • the specific water-saving working principle of the environmentally-friendly agricultural washing machine device is specifically as follows: When the agricultural washing machine performs the last drainage or the non-first drainage, the controller controls the water-saving solenoid valve to be energized, and the water discharged by the drainage electromagnetic W is saved by the water-saving magnetic W.
  • the second output connector flows into the water-saving tank, and the last---drainage or non-first-drainage of the washing machine is recycled to the water-saving jurisdiction; 3 ⁇ 4 of the water.
  • the water level is smashed to the water II. At the water level, the water level sensor on the water tank transmits its signal to the controller, and the controller controls the remaining water-saving solenoid valve to be powered off.
  • the water drain and discharge solenoid valve is drained through the first output joint of the water-saving electromagnetic eye and the drain pipe;
  • the controller controls the water solenoid valve to close and control the circulating water pump;
  • the circulatory water pump draws the water from the water tank to the spirit water tank for recycling;
  • the controller controls the circulating water pump to stop running.
  • the controller controls the circulating water to stop the operation and control the water inlet solenoid valve to snoring.
  • the solenoid valve enters the tub, and when the water in the tub reaches the set water level, the controller controls the inlet solenoid valve to close.
  • the beneficial effects of this hairpin are:
  • the environmentally-friendly washing machine device is equipped with a water-saving solenoid valve and a circulating water chestnut, and the water-saving electromagnetic W is used to collect the water of the last washing of the washing machine into the water-saving tank, and the next time the farmland is washed, the circulation is utilized.
  • the pump will pump the water-saving and recovered water into the bucket as the first-time laundry cycle, saving some water resources.
  • Fig. 1 is a schematic view showing the structure of an environmentally-friendly washing machine device. Specific way of extinguishing
  • the knot of the environmentally-friendly washing machine device shown in Fig. 1 is shown in the box, and the box body 1 is dehydrated.
  • Wave wheel or mixing 1 3, bucket 4, hanging raft 5, drainage ill magnetic ⁇ 6, water inlet electromagnetic ⁇ 7, drain pipe 8, power unit 9, circulating water pump 10, water saving tank 11, water saving electromagnetic 12, water tank Upper water level sensor 13, water tank lower water level sensor 14 and controller 15;
  • the water tank 4 is connected to the tank body through the boom 5,
  • the dewatering tank 2 is installed in the water tub 4, the power unit 9 and the dewatering tank 2 and the pulsator or S disk 3 is connected, water inlet solenoid valve 7 is installed in the water tank 4 .
  • water saving 11 is installed in the box law 1, the water saving tank 11 is located below the water tank 4;
  • the valve 12 is a two-position electromagnetic field, and the input port 16 of the water-saving solenoid valve 12 is connected to the drain port of the drain solenoid valve 6.
  • the water-saving electromagnetic eye 12 is .
  • the drain pipe 8 is connected, the water-saving electromagnetic eye 12 two-position output joint 18 and the water-saving tank 11 are used for putting the washing water that needs to be recycled into the water-saving 11 or draining;
  • the pumping port 1.9 of the circulating water pump 10 is located at the section At the bottom of the water tank 11, the water outlet 20 of the circulating water pump 10 is in communication with the water tub 4, and the water is continuously pumped to the water tub 4 for recycling.
  • the upper water level sensor 13 is disposed at an upper portion of the water saving tank 11, and the lower water level sensor 1 is disposed at the bottom of the water saving tank 11 for controlling the water level of the water saving tyrant 11; the controller 1 ⁇ is provided with a control line and a drain solenoid valve 6, Power installation. 9. Circulating water pump 10, water saving solenoid valve 12, water tank level sensor 13 and water tank level sensing » 14 connection.
  • the water saving tank 11 is located at the bottom of the box law 1, and the water saving tank 11 is fixedly connected to the tank 1.
  • the water tank 11 In order to pump the 0 water of the water saving Zhao 11 into the water tank, the water tank 11 is provided with a pumping port 20, and the input joint 21 of the circulating water 3 ⁇ 4 10 is sealingly connected with the pumping port 20, and the input joint 21 is connected to the pumping port 19 through the pumping pipe 22 .
  • the output joint 23 of the circulating water pump 10 is connected to the water outlet 20 through the hose passage 24.
  • the water-saving work procedure of the environmentally-friendly washing machine device is specifically:
  • the first cycle of circulating water After the environmentally-friendly washing machine device is escaping from the water-saving control program, the controller 15 controls the circulating water 10 to operate, and the water of the water-saving tank ii is pumped to the tub 4 by the circulating water pump 10 ; laundry: circulating water 3 ⁇ 4 10
  • the controller 15 controls the circulating water pump 10 to stop running; meanwhile, the controller 1 ⁇ controls the power unit 9 to drive the pulsator or the stirring plate 3 to rotate, utilizing Wave wheel or turntable 3 to drive water and clothing The service is turned over and washed.
  • the first time the water is held When the washing time is up, the controller 15 controls the pulsator or the slamming disc 3 to stop and controls the drain solenoid valve 6 to snoring, and the bucket 4 sewage sluice drain solenoid valve 6 passes the first position of the water saving electromagnetic ⁇ 12
  • the output joint 17 and the drain pipe 8 are discharged;
  • the first-time dehydration the first-time drainage time arrives, the controller 15 controls the power device 9 to drive the dewatering bucket 2 to rotate and dehydrate, and the water discharged from the ship is discharged by the drain solenoid valve 6 through the first output joint 17 of the water-saving solenoid valve 12. And draining the drain 8;
  • the second water inflow the first dehydration time is up, the controller 15 controls the drain solenoid valve 6 to close and controls the water inlet solenoid valve 7 snoring, sputum water ⁇ water inlet electromagnetic W 7 enters the water tank 4;
  • Rinsing When the water level entering the tub 4 reaches the set water level, the controller 15 controls the water inlet solenoid valve 7 to close and controls the power unit 9 to drive the pulsator or stir the 3, and uses the pulsator or the disc 3 to drive the water and The clothes are turned over for rinsing;
  • the second drainage the rinsing time is up, the controller 15 controls the pulsator or the tray 3 to stop lh and the control drainage electromagnetic W 6 to open, the water tank 4 is rinsed through the water-saving electromagnetic eye 12 first output joint 17 and the drain pipe 8 rows;
  • the second water the second drainage time is up, the controller 15 controls the power device 9 to drive the water tub 2 to rotate and dehydrate, and the water is discharged through the first-position output joint 17 of the water-saving electromagnetic eye 12 and the drain pipe 8. ;
  • the last time the water is introduced The second time the water time is up, the controller 15 controls the drainage electromagnetic eye 6 to close and controls the water inlet electromagnetic eye 7 to open, the tap water enters the water tank 4 by the water inlet electromagnetic eye 7; the last rinse: when entering the Sheng
  • the controller 15 controls the water inlet electromagnetic W 7 to be turned off and the braking force device 9 drives the pulsator or the S disk 3 to rotate, and the water wheel and the clothes pan 3 are used to drive the water to turn over. - rinsing;
  • Circulating water recovery The last rinsing time is up, the controller 15 controls the pulsator or the swash plate 3 to stop and controls the drainage electromagnetic W 6 snoring, and at the same time, the controller 15 controls the power supply of the water-saving electromagnetic eye 12 to control the water-saving electromagnetic
  • the input interface 16 of the valve 12 is in communication with the second output joint 18 thereof, and the last rinsed water is flowed by the drain electromagnetic W 6 through the second output joint 18 of the water saving solenoid valve 12 into the water saving bowl 11 ;
  • the last dehydration the cycle back to the ft water time, the controller 15 controls the power unit 9 to drive the dewatering tank 2 to rotate and dehydrate, and the desorbed water flows into the water-saving tank by the drain solenoid valve 6 through the second output joint 18 of the water-saving solenoid valve 12. 11 ; Stop: When the last water observation time is up, the controller 15 controls the power device 9 to stop rotating and controls the drainage electromagnetic eye 6 to be closed, the dewatering bucket 2 stops J dehydration, and at the same time, the controller 15 controls to cut off the power supply of the water saving electromagnetic wide 12, saving water The solenoid valve 12 is reset, and the input port 16 of the control water saving solenoid valve 12 is in communication with its first output joint 17, and the washing is completed.
  • the controller 15 controls the circulation water pump 10 to pump the water saving tank U water to the water tank 4; when the water level of the water saving 11 is lower than the water level lower level sensor 14 position, the control The controller 15 controls the circulation water pump 10 to be turned off and controls the water inlet electromagnetic level to be 7 strokes, and the tap water is placed in the water tub 4.
  • the controller 15 controls the water-saving solenoid valve 12 to be energized, and the water-saving solenoid valve 12
  • the input interface 16 is disconnected from the first output connector 17, and the input interface 16 of the water-saving electromagnetic eye 12 is connected to the second-position output: 3 ⁇ 4 18, and the input interface 16 of the water-saving water-saving electromagnetic W 12 discharged from the drain solenoid valve 6
  • the second output connector 18 flows into the water throttle 11.
  • the second output joint 18 of the water saving solenoid valve 12 is connected with a filter 26, and the water outlet outlet 27 of the filter 26 is connected to the water saving 11; the continuation 1 and the water saving tank 11 are provided
  • the socket 28, the filter 26 is inserted into the socket 28; the rinsing water filter 26 discharged from the drain solenoid 6 is filtered and then placed in the water tank ⁇ ; when the filter 26 is cleaned or replaced, the filter is filtered.
  • the device 26 is pulled out at the socket 28, and the filter material 29 is cleaned or replaced and inserted back.
  • the input interface 16 of the water-saving electromagnetic eye 12 is disconnected from the first-position output connector 17, and the input interface 16 and the second-position output connector of the water-saving solenoid valve 12 are
  • the water-saving electromagnetic eye 12 is de-energized, the input interface 16 of the water-saving electromagnetic surface 12 is connected to the first-position output connector 17, and the input interface 16 of the water-saving electromagnetic W 12 and the second-position output connector 18 are not connected.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Detail Structures Of Washing Machines And Dryers (AREA)

Abstract

环保洗衣机装置包括有箱体(1)、脱水桶(2)、波轮(3)、盛水桶(4)、吊杆(5)、排水电磁阀(6)、进水电磁阀(7)、排水管(8)、动力装置(9)、循环水泵(10)、节水箱(11)、节水电磁阀(12)、水箱上水位传感器(13)、水箱下水位传感器(14)以及控制器(15);排水电磁阀(6)与节水电磁闽(12)连接,节水电磁闽(12)与节水箱(11)以及排水管(8)连接,循环水泵(10)与节水箱(11)以及盛水桶(4)连接,利用节水电磁阀(12)将洗衣机最后一次漂洗的水放到节水箱(11),下一次洗衣时,利用循环水泵(10)将节水箱(11)的水抽到盛水桶(4)作为第一次洗衣循环使用,节省有限的水资源;环保洗衣机装置的节水工作程序是:启动→第一次抽循环水→洗衣→第一次排水→第一次脱水→第二次进水→漂洗→第二次排水→第二次脱水→最后一次进水→最后一次漂洗→循环回收水→最后一次脱水→停止。

Description

环保洗衣机装置
技术领域
本发明涉及一种洗农机, 特别是一种环保洗农机装置 背景技术
现有的洗农机, 洗衣过程中的水全部排走; 如果最后 - · ·次漂洗的水回 收, 提供给洗衣机第一次洗衣的话, 不但不会影响洗衣的质量, 而 .还可 以节省有限的水资源, 一种可以 II]收漂洗水的环保洗衣机装置巳成为人们 节水的需要。 发明内容
本发 的目的是克服现有技术的不足, 提供 -种环保洗衣机装置, 节 省有限的水资源。
本发 所釆用的技术方案是: 环保洗衣机装置,包括有續体、脫水桶、 波轮或者 S盘、 盛水桶、 吊杆、 排水电礒阀、 进水电磁阀、 排水管、 动力 装置、 循环水泵、 节水續、 节水电磁阔、 水箱上水位传感器、 水箱下水位 传感器以及控制器;盛水桶通过吊杆与箱体连接,脱水桶安装亍盛水桶内, 动力装置与脱水桶以及波轮或者攪 ϋ:连接, 进水电磁 Μ安装于盛水桶的― t 边, 节水箱 11 安装于箱体内; 节水电磁睛为二位电磁麵, 节水电磁灣的 输入接口与排水电磁睛的排水口连接, 节水电磁睛的第一位输出接头与排 水管连接, 节水电磁阃的第二位输出接头与节水箱连接, 用于将需要回收 的洗衣水放入节水箱或者排走; 循环水泵的抽水口位于节水纏的底部, 循 环水 的出水口与盛水桶连通, 用于将节水箱的水抽到盛水桶循环使用; 上水位传感器设于节水箱的上部, 下水位传感器设于节水箱的底部, 用于 控制节水箱的水位; 控制器设有控制 II与排水电磁睛、 动力装置、 循环水 泵、 节水电磁 、 水箱上水位传慼器以及水箱― F水位传感器连接; 控制器 设有程序转换幵关, 程序转换开关 ¾有普通工作程序档位以及节水工作程 序档位, 用于逸择洗衣机的按普通工作程序或者按节水工作程序运行。
环保洗衣机装置设有普通工作程序以及节水工作程序, 节水工作程序 是: 启动一第一次抽循坏水→洗衣一第一次排水→第一次脱水一第二次进 水一漂洗一第二次排水一第二次脱水一最后一次进水一最后一次漂洗一 循环回收水一 ¾后一次騰水→停±。
环保洗衣机装置的节水工作原理是: 洗衣机进行最后一次排水或者非 第 - -次排水时, 控制器控制节水¾磁睛将洗衣机的最后 - '次排水或者非第 一次排水回收于节水箱; 法衣机第一次放水或者非¾ fn一次放水入储水桶 时, 控制器控制循环水 ¾将节水箱的回收水抽到盛水極内循环使用。
环保洗农机装置的具体节水工作原理具体是: 使用时, 洗农机进行最 后一次排水或者非第一次排水时, 控制器控制节水电磁阀通电, 排水电磁 W排出的水由节水 磁 W的第二位输出接头流入节水箱, 将洗衣机的最后 - · -次排水或者非第 '次排水回收予节水辖; ¾节水.糟的水位迖到水 II上水 位传感 II控制的水位时, 水箱上水位传感器将其信号传输给控制器, 控制 器控剩节水电磁阀断电, 水 ώ排水电磁阀经节水电磁睛的第一位输出接头 以及排水管排走; 洗衣第一次放水或者非最后一次放水时, 控制器控制道 水电磁阀关闭以及控制循环水泵; Ε行, 循环水泵将节水箱的 Θ收水抽到靈 水桶内循环使用; 当盛水極的水位达到设定的水位时, 控制器控制循环水 栗停止运行。 当节水箱水位障至水續下水位传感器的位置时, 水箱不水位 传感器将其信号传输给控制器, 控制器控制循环水轰停±运行以及控制进 水电磁阀打幵, 自来水由进水电磁阀进入盛水桶, 当盛水桶的水 达到设 定的水位时, 校制器控制进水电磁阀关闭。
本发呢的有益效果是: 环保洗衣机装置包插有节水电磁阀以及循环水 栗, 利用节水电磁 W将洗衣机最后一次漂洗的水回收放到到节水箱, 下一 次洗农时, 利用循环水泵将节水續回收水抽到盛水桶作为第 - -次洗衣循环 使用, 节省有 的水资源。
»图说明
图 1是环保洗衣机装置的结构示意圏。 具体实滅方式
下面结合 »图对本发明进行进一歩的说明:
图 1所示的环保洗衣机装置的结 示意 S, 包插有箱体 1、 脱水榧 2、 波轮或者搅 1: 3、 水桶 4、 吊枰 5、 排水 ill磁闺 6、 进水电磁闺 7、 排水 管 8、 动力装置 9、 循环水泵 10、 节水箱 11、 节水电磁 12、 水箱上水位 传感器 13、 水箱下水位传感器 14以及控制器 15; 盛水桶 4通过吊杆 5与 箱体 1.连接, 脱水桶 2安装于盛水桶 4内, 动力装置 9与脱水桶 2以及波 轮或者 S盘 3连接, 进水电磁阀 7安装于盛水桶 4的 ..... t:边, 节水籍 11安 装于箱律 1内, 节水箱 11位于盛水桶 4的下方; 节水电磁阀 12为二位电 磁園, 节水电磁阀 12的输入接口 16与排水电磁阀 6的排水口连接》 节水 电磁睛 12的第 ·········· -位输出接头 17与排水管 8连接, 节水电磁睛 12 二 位输出接头 18与节水箱 11職,用于将需要回收的洗衣水放入节水籍 11 或者排走; 循环水栗 10的抽水口 1.9位于节水箱 11的底部, 循环水栗 10 的出水口 20与盛水桶 4连通, 由于将节水續 11的水抽到盛水桶 4循环使 用; 上水位传感器 13设于节水箱 11的上部, 下水位传感器 1 设于节水 箱 11的底部, 用于控制节水霸 11的水位; 控制器 1δ设有控 «线与排水 电磁阀 6、 动力装霄. 9、 循环水泵 10、 节水电磁阀 12、 水箱上水位传感器 13以及水箱下水位传感 » 14连接。
为了方便回收漂洗水, 节水箱 11位于箱律 1的底部, 节水箱 11与箱 体 1固定连接。
为了将节水趙 11的 0牧水抽到盛水桶, 水箱 11设有抽水接口 20, 循环水 ¾ 10的输入接头 21与抽水接口 20密封连接, 输入接头 21週过抽 水管道 22与抽水口 19连通。
为了不影响洗衣机的防 β性能, 循环水泵 10的输出接头 23通过软管 道 24与出水口 20连通
环保洗衣机装置的节水工作程序具体是:
启动: 将衣服以及洗衣 或者洗衣净放入环保洗衣机装置的脱水桶 2 内, 利用控制器 15的水位选择开关设置靈水桶 4的洗衣水位, 利用控制 器 15的程序转换开关控制环保洗衣机装冒.迸入节水控制程序;
第一次抽循环水: 环保洗衣机装置避入节水控制程序后, 控制器 15 控制循环水 10运行, 利用循环水泵 10将节水箱 i i的水抽到盛水桶 4; 洗衣: 循环水 ¾ 10将节水箱 11的水抽到盛水桶 4的水位达到设置的 洗衣水位时, 控制器 15控制循环水泵 10停止运行; 同时, 控制器 1δ控 制动力装置 9带动波轮或者搅盘 3转动, 利用波轮或者转盘 3带动水与衣 服翻转迸行洗农;
第一次持水: 洗衣的时间到, 控制器 15控制波轮或者撹盘 3停止以 及控制排水电磁阀 6打幵,盛水桶 4污水 ώ排水电磁阀 6经节水电磁 Η 12 的第一位输出接头 17以及排水管 8排走;
第 - -次脱水: 第 - -次排水时间到, 控制器 15控制动力装置 9带动脱 水桶 2转动脱水, 舰出的水由排水电磁阀 6经节水电磁阀 12的第一位输 出接头 17以及排水管 8排走;
第二次进水: 第一次脱水时间到, 控制器 15控制排水电磁阀 6关闭 以及控制进水电磁阀 7打幵, ϋ来水 ώ进水电磁 W 7进入盛水桶 4;
漂洗: 当进入盛水桶 4的水位达到设置的洗农水位时, 控制器 15控 制进水电磁阀 7关闭以及控制动力装置 9带动波轮或者搅 3转动, 利用 波轮或者揾盘 3带动水与衣服翻转进行漂洗;
第二次排水: 漂洗时间到, 控制器 15控制波轮或者携盘 3停 lh以及 控制排水电磁 W 6打开, 将盛水桶 4漂洗水经节水电磁睛 12第一位输出 接头 17以及排水管 8排走;
第二次 水: 第二次排水时间到, 控制器 15控制动力装置 9带动説 水桶 2转动脱水, 説出的水经节水电磁睛 12的第一 -位输出接头 17以及排 水管 8排走;
最后一次进水: 第二次説水时间到, 控制器 15控制排水电磁睛 6关 闭以及控制进水电磁睛 7打开, 自来水由进水电磁睛 7进入盛水桶 4; 最后一次漂洗: 当进入盛水桶 4的水位达麵设置的洗衣水位时, 控制 器 15控制进水电磁 W 7关闭以及 制动力装置 9带动波轮或者 S盘 3转 动, 利用波轮或者撹盘 3带动水与衣服翻转进行最后 -次漂洗;
循环回收水: 最后一次漂洗时间到, 控制器 15控制波轮或者搅盘 3 停止以及控制排水电磁 W 6打幵, 同时, 控制器 15控制接通节水电磁睛 12的电源, 控制节水电磁阀 12的输入接口 16与其第二位输出接头 18连 通, 最后一次漂洗的水由排水电磁 W 6经节水电磁阀 12的第二位输出接 头 18流入节水糯 11;
最后一次脱水: 循环回 ft水时间到, 控制器 15控制动力装置 9带动 脱水桶 2转动脱水, 脱出的水由排水电磁阀 6经节水电磁阀 12的第二位 输出接头 18流入节水箱 11 ; 停止: 最后一次观水时间到, 控制器 15控制动力装置 9停止转动以 及控制排水电磁睛 6关闭, 脱水桶 2停 J 脱水, 同时, 控制器 15控制切 断节水电磁阔 12的电源, 节水电磁阀 12复位, 控制节水电磁阀 12的输 入接口 16与其第一位输出接头 17连通, 洗衣结束。
为了控制节水續 11的水位以及使洗衣机在节水箱 11水位底或者没有 水的条件下 以正常使用, 环保洗衣机装置洗农时, Ϊ水 l 11 的水位高 于水箱 T水位传感器 14位置时, 水箱下水位传感器 14将其信号传输给控 制器 15, 控制器 15控制循环水泵 10将节水箱 U水抽到盛水桶 4; 节水 續 11的水位低于水箱下水位传感器 14位置时, 控制器 15控制循环水泵 10关闭以及控制进水电磁阔 7打幵, 将自来水放入 水桶 4。
为了回收最后 - ·次的漂洗水作为下 -次的洗衣循环使用 , 环保洗农机 装置的排水电磁阀 6进行最后一次排水时, 控制器 15控制节水电磁阀 12 通电, 节水电磁阀 12的输入接口 16与第一位输出接头 17不通, 节水电 磁睛 12的输入接口 16与第二位输出接: ¾ 18连通, 排水电磁阀 6排出的 水 ώ节水电磁 W 12的输入接口 16以及第二位输出接头 18流入节水霸 11。
为了过滤回收的漂洗水, 节水电磁阀 12的第二位输出接头 18连接有 过滤器 26, 过滤器 26的滤水出口 27与节水續 11连接; 續体 1以及节水 箱 11设有插口 28, 过滤器 26与插口 28插接; 由排水电磁 Η 6排出的漂 洗水 ώ过滤器 26过滤后再放入节水箱 η ;清洁或者更換过滤器 26 过德 村料 29时, 将过滤器 26于插口 28拉出, 清洁或者更換过滤材料 29后插 回。
为了实施漂洗水的回收以及排放, 节水电磁阔 12 通电时, 节水电磁 睛 12的输入接口 16与第一位输出接头 17不通, 节水电磁阀 12的输入接 口 16与第二位输出接头 18连通; 节水电磁睛 12失电时, 节水电磁麵 12 的输入接口 16与第一位输出接头 17接通, 节水电磁 W 12的输入接口 16 与第二位输出接头 18不通。

Claims

杈 利 要 求 书
1.环保 衣机装置,包括有趙体(1)、舰水桶(2)、波轮或者搅盘(3)、 據水桶 (4)、 吊杆 (5)、 排水电磁阀 (6)、 进水电磁阀 (7)、 排水管 (8)、 动力装置 (9)、 循环水 (10)、 节水.雷 (11), 节水 磁 (12)、 水箱 上水位传感器 (13)、 水缠不水位传感器 (14) 以及控制器 (15); 盛水桶 (4) 通过吊杆 (5) 与箱体 (1) 连接, 脱水桶 (2) 安装于盛水極 (4) 内, 动力装置 (9) 与脱水桶 (2) 以及波轮或者搅盘 (3) 连接, 进水电 磁阀 (7) 安装于盛水桶 (4) 的上边, 节水霸 (11) 安装于箱体 (1) 内, 节水箱 (11)位亍盛水桶 (4) 的下方; 节水电磁 I有 (12) 为二位电磁 节水电 ¾W (12) 的输入接口 (16) 与排水电磁 (6) 的排水口连接, 节水电磁阔 (12) 的第一位输出接头 (17) 与排水管 (8) 连接, 节水电 磁阀 (12) 的第二位输出接头 (18)与节水箱 αΐ)连接; 循环水荥 (10) 的抽水口 (19)位于节水箱 (11) 的底部, 循环水栗 (10) 的出水口 (20) 与盛水桶 (4) 连通; 上水位传.感器 (13) 设于节水箱 (11) 的上部, 下 水位传感器 (14) 设于节水箱 (11) 的底部; 控制器 (15) 设有控制线与 排水电磁睛 (6)、 动力装置 (9)、 循环水 (10)、 节水电磁阀 (12)、 水 箱上水位传感器 (13) 以及水箱下水位传感器 (14) 连接;
其特征在于: 所述的环保洗衣机装置的工作原理是: 洗衣机进 ί』: ¾后 一次排水或者 Φ第一次排水时, 控制器控制节水电磁睛将洗衣机的最后一 次排水或者非第一次排水 0 于节水箱; 洗衣机第一次放水或者非最后一 次放水入储水桶时, 控制器控制循环水 将节水續的回收水抽到盛水桶内 循环使用。
2 艮椐权利要求 1所述的环保洗衣机装置, 其特征在于: 所述的环保 洗衣机装置的节水工作程序是: 启动一第一次抽循环水一洗农一第一次排 水第一次脱水第二次进水 '漂洗第二次排水第二次脱水最后 一次进水一最后一次漂 ft—循环回收水一最后一次脱水一停止。
3.根锯权利要求 2所述的环保洗衣机装置, 其特征在于: 所述的环保 洗衣机装置的节水工作程序具体是:
启动: 将衣服以及洗衣粉或者洗衣净放入环保洗衣机装置的脱水桶 (2) 内, 利用控制器 (15) 的水位逢择幵关 ¾置盛水桶 (4) 的洗衣水位, 利用控制器( 1δ)的程序转換幵关控制 保洗衣机装置进入节水控制程序; 第一次抽循环水: 坏保洗衣机装 a进入节水 e制程序后,控制器 as) 控制循环水泵 (10) 行, 利用循环水 (10)将节水箱 (11) 的水抽到 麵桶 (4);
洗农: 循环水泵 (10) 将节水箱 (11) 的水抽到盛水桶 (4) 的水位 达到设置的洗农水位时, 控制器 (15) 控制循环水粟 (10) 停止运行; 同 时, 控制器 (1.5)控制动力装置 (9) 带动波轮或者搅盘 (3) 转动, 利用 波轮或者转盘 (3) 带动水与衣服翻转进行洗.衣;
第一次排水: 洗衣的时间到, 控制器 (15)控制波轮或者搅盘 (3) 停止以及控制排水 磁 W (6) 打开, 盛水桶 (4) 污水 ώ排水电磁睛 (6) 经节水电磁阀 (12) 的第一位输出接头 (17) 以及排水管 (8)排走; 第一次説水: 第一次排水时间到, 控制器 (15) 控制动力装置 (9) 带动观水桶 (2)转动观水,观出的水 ώ排水电磁阀 (6)经节水电磁阔 (12) 的第一位输出接头 (17) 以及排水管 (8) 排走;
第二次进水: 第一次脱水时间到, 控制器 (15)控制排水电磁 Η (6) 关闭以及控制进水电磁 W (7) 打幵, 自来水由进水电磁阀 (7) 进入盛水 輔 (4);
漂洗: 当进入盛水桶(4)的水位达到设置的洗衣水位时,控制器(15) 控制进水电 ¾阀 (7) 关闭以及控制动力装置 (9) 带动波轮或者纖盘 (3) 转动, 利用波轮或者搅撤 (3) 带动水与衣.服翻转进行漂洗;
第二次排水: 漂洗时间到, 控制器 (15)控制波轮或者搅盘 (3)停 止以及控«排水电磁阔(6)打开,将盛水桶(4)漂洗水经节水电磁阀 ( 12) 第一 '位输出接头 (17) 以及排水管 (8)排走;
第二次脱水: 第二次排水时间到, 控制器 (15) 控制动力装置 (9) 带动舰水稱 (2) 转动舰水, 脱出的水经节水电磁阔 (12) 的第一位输出 接头 (17) 以及排水管 (8) 排走;
最后一次迸水:第二次説水时间到,控制器(15)控制排水电磁 W (6) 关闭以及控制进水电磁陶 (7) 打幵, 自来水由进水电磁阀 (7)进入盛水 桶 (4);
最后一次漂洗: 当进入盛水桶 (4) 的水位达到设置的洗衣水位时, 控制器 (15) 控制进水电磁睛 (7) 关闭以及控制动力装置 (9) 带动波轮 或者搅盘 (3) 转动, 利用波轮或者纖盘 (3) 带动水与衣服翻转进行最后 一次漂洗;
循环回收水: 最后一次漂洗时间到, 控制器 (15) 控制波轮或者搅盘 (3) 停止以及控制排水电磁圈 (6) 打幵, 同时, 控制器(15) 控制接通 节水电磁睛 (12) 的电源, 控制节水电磁阀 (12) 的输入接口 (16) 与其 第二位输出接头 (18) 连通, ¾后一次漂洗的水由排水电磁 M (6) 经节 水电磁阀 (12) 的第二位输出接头 (18) 流入节水續 (11);
最后一次脱水: 循环回牧水时间到, 控制器 (15) 控制动力装置 (9) 带动脱水桶(2)转动脱水, 兑出的水 ώ排水电磁阀 (6)经节水电磁阀(12) 的第二位输出接头 (18) 流入节水箱 (1.1);
停止: 最后 -次脱水时间到, ¾制器 (15) 控制动力装置 (9) 停止 转动以及控制排水¾磁阀 (6) 关闭, 舰水桶 (2) 停止观水, 同时, 控制 器 (15) 控制切斷节水电磁阀 (12) 的电源, 节水电磁 W (12) 复位, 控 制节水电磁阀 (12) 的输入接口 (16) 与其第一位输出接头 (17) 连通, 洗衣结束。
4.根据权利要求 i所建的环保洗衣机装置, 其特征在亍: 所述的环保 洗衣机装霄使用时, 洗农机进行最后 - -次排水或者非第一 ·次排水时, 控制 器控制节水电磁睛通电, 排水电磁阀排出的水由节水电磁 W的第二位输出 接头流入节水箱, 将洗衣机的最后一次排水或者非第一次排水回收于节水 箱; 当节水箱的水位达到水箱上水位传感器控制的水位时, 水箱上水位传 感器将其信号传输给控制器, 控制器控制节水电磁阔断电, 水由排水电磁 经节水电磁 W的第一位输出接头以及排水管排走; 洗衣第一次放水或者 非最后一次放水时, 控制器控制进水 疆阀关闭以及控制循环水泵运行, 循环水泵将节水箱的回收水抽到盛水桶内循环使用; 当盛水桶的水位达到 设定的水位时, 控制器控制循环水栗停止运行。
5.根椐权利要求 1所述的环保洗衣机装霄, 其特征在于: 所述的环保 洗衣机装置洗衣时, 节水箱 (11) 的水位高于水箱下水位传感器 (14) 位 置时, 水箱下水位传感器(14)将其信号传输给控制器 U5), 控制器(15) 控制循环水粟 (10) 将节水箱 (11) 水抽麵盛水桶 (4); 节水箱 (11) 的 水位低于水籍不水位传感器 (.·■ 14)位置时,控制器( 15)控制循环水泵 ( 10) 关闭以及控制进水电磁 W (7) 打幵, 将自来水放入盛水桶 (4)。
6.根据权利要求 1.所述的环保洗衣机装置, 其特征在于: 所¾的环保 洗农机装置的排水电磁睛 (6) 迸行最后一次排水时, 控制器 (15) 控制 节水电磁阀 (12) 通电, 节水电磁阀 (12) 的输入接口 (16) 与第一位输 出接头 (17) 不通, 节水电磁 (12) 的输入接口 (16) 与第二位输出接 头 (18) 连通, 排水电磁阀 (6) 排出的水由节水电磁 W (12) 的输入接 口 (16) 以及第二位输出接头 (18) 流入节水箱 (11)Q
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