WO2021103355A1 - Clothes treatment apparatus and working table assembly thereof - Google Patents

Clothes treatment apparatus and working table assembly thereof Download PDF

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Publication number
WO2021103355A1
WO2021103355A1 PCT/CN2020/080272 CN2020080272W WO2021103355A1 WO 2021103355 A1 WO2021103355 A1 WO 2021103355A1 CN 2020080272 W CN2020080272 W CN 2020080272W WO 2021103355 A1 WO2021103355 A1 WO 2021103355A1
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WO
WIPO (PCT)
Prior art keywords
electrolysis
water
workbench
water outlet
housing
Prior art date
Application number
PCT/CN2020/080272
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French (fr)
Chinese (zh)
Inventor
涂有明
高久兴
杨青波
钱静娴
熊明
王嘉
李广庆
Original Assignee
无锡小天鹅电器有限公司
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
Priority claimed from CN201922109181.2U external-priority patent/CN211897463U/en
Priority claimed from CN201911207271.3A external-priority patent/CN112877997A/en
Application filed by 无锡小天鹅电器有限公司 filed Critical 无锡小天鹅电器有限公司
Publication of WO2021103355A1 publication Critical patent/WO2021103355A1/en

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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

Definitions

  • the present invention relates to the technical field of clothes treatment, in particular to a clothes treatment device and a workbench assembly thereof.
  • Electrolyzed water sterilization has the advantages of low temperature, high efficiency, and no residue of harmful substances.
  • the electrolysis device is arranged on the peripheral wall of the outer barrel, and the water in the outer barrel enters the electrolysis device through the water inlet channel, and the electrolyzed water produced by electrolysis passes through The water outlet channel enters the outer barrel.
  • This structure is complicated, difficult to install, and requires high sealing, otherwise it will easily cause the outer barrel to leak; and if the water level in the outer barrel is lower than the water inlet channel, the water in the outer barrel cannot enter the electrolysis device , It can't produce electrolyzed water, and can't achieve electrolytic sterilization and disinfection.
  • the embodiments of the present invention are expected to provide a clothing treatment equipment and a workbench assembly that are reliable in electrolytic sterilization and disinfection, prevent cross-color, and are convenient to install.
  • a first aspect of the embodiments of the present invention provides a workbench assembly of a clothing treatment device, including a workbench and an electrolysis device provided on the bottom side of the workbench; the workbench is formed with a clothing insertion port
  • the electrolysis device includes a housing and an electrolysis electrode, the housing has an electrolysis chamber, the electrolysis electrode is arranged in the electrolysis chamber, the electrolyzed water in the electrolysis chamber can flow into the washing chamber of the clothing treatment device .
  • the workbench assembly includes a detergent box provided on the bottom side of the workbench, the detergent box has a storage tank for containing detergent; the electrolysis chamber is in communication with the storage tank In order to guide the electrolyzed water in the electrolysis chamber to the storage tank, the electrolyzed water in the electrolysis chamber flows into the washing chamber of the clothing processing equipment through the storage tank.
  • the detergent box is located on the front side or the back side of the workbench along the laundry inlet
  • the electrolysis electrode is located on the lateral side of the workbench along the laundry inlet
  • the electrolysis electrode extends along the front and rear direction of the worktable.
  • the housing has an electrolysis device water inlet and an electrolysis device water outlet communicating with the electrolysis chamber, and the electrolysis device water outlet is located at an end of the housing close to the detergent box.
  • the water inlet of the device is located at one end of the shell away from the water outlet of the electrolysis device.
  • the electrolysis electrode includes an electrolysis cathode and an electrolysis anode, and the electrolysis cathode and the electrolysis anode are arranged in a layered manner.
  • the electrolysis cathode and the electrolysis anode both extend in a horizontal plane, and the electrolysis cathode and the electrolysis anode are stacked in a vertical direction.
  • the electrolysis anode is formed with a plurality of first through holes penetrating the electrolysis anode along the thickness direction of the electrolysis anode; and the electrolysis cathode is formed with a plurality of first through holes penetrating the electrolysis cathode along the thickness direction of the electrolysis cathode. Of multiple second through holes.
  • the water outlet of the electrolysis device is located above the electrolysis electrode, and the electrolysis chamber is configured such that the liquid flow from the water inlet of the electrolysis device can pass through the first electrode from below the electrolysis electrode.
  • the through hole and the second through hole flow to the water outlet of the electrolysis device.
  • the housing has a drain, and the location of the drain is lower than the location of the water outlet of the electrolysis device.
  • the water outlet and the water outlet of the electrolysis device are arranged on the same side of the housing, the water outlet is in communication with the storage tank, and the flow area of the water outlet is smaller than the outlet of the electrolysis device.
  • the flow area of the nozzle is arranged on the same side of the housing, the water outlet is in communication with the storage tank, and the flow area of the water outlet is smaller than the outlet of the electrolysis device. The flow area of the nozzle.
  • the electrolysis device includes a water baffle provided in the housing, and the water baffle divides the space inside the housing into a connected buffer cavity and the electrolysis cavity, and the electrolysis device
  • the water inlet is provided on the housing corresponding to the buffer chamber
  • the water outlet of the electrolysis device is provided on the housing corresponding to the electrolysis chamber
  • a water supply is formed between the buffer chamber and the electrolysis chamber.
  • the overflow channel through which the liquid flows, the overflow channel and the water inlet of the electrolysis device are arranged staggered.
  • the flow passage is configured as a gap formed between the bottom end of the water baffle and the inner wall of the housing, and the position of the flow passage is lower than the electrolysis electrode.
  • the edge of the bottom end of the water baffle is formed with an open notch, and the open notch is the flow passage.
  • the electrolysis device includes a conductive connection body for conducting power, the conductive connection body sealingly passes through the housing, and the first end of the conductive connection body is conductively connected to the electrolysis electrode
  • the second end of the conductive connecting body is located outside the casing; the conductive connecting body and the water outlet of the electrolysis device are arranged on the same side of the casing.
  • the housing includes a housing body, a first end cover and a second end cover that are sealingly disposed at opposite ends of the housing body along the length direction, the housing body, the first end cover, and the The second end cover is jointly enclosed to form a hollow accommodating space, the electrolysis chamber is at least a part of the accommodating space, the water outlet of the electrolysis device is arranged on the first end cover, and the water inlet of the electrolysis device is arranged in The second end cover.
  • the workbench assembly includes a water inlet valve, the water inlet valve includes a water inlet, a first water outlet, and a second water outlet, the first water outlet communicates with the water inlet of the electrolysis device, so The second water outlet is in communication with the storage tank, and the water inlet valve can selectively connect the water inlet to the first water outlet or the second water outlet.
  • a second aspect of the embodiments of the present invention provides a laundry treatment device, including a cylinder assembly and any of the above-mentioned workbench assemblies; the cylinder assembly has a washing cavity, and the workbench assembly is disposed on the cylinder assembly.
  • the electrolysis chamber is in communication with the washing chamber so that the electrolyzed water in the electrolysis chamber can flow to the washing chamber through the storage tank.
  • the workbench assembly of the embodiment of the present invention integrates the electrolysis device and the workbench together, which can facilitate assembly. Specifically, when assembling, the workbench assembly can be assembled into a whole first, because the workbench structure is relatively simple and open. The structure is easy to install the electrolysis device. After the workbench assembly is assembled, the workbench assembly and the cylinder assembly can be assembled. This can reduce assembly difficulty, increase assembly speed, save production time, and reduce production costs; in addition, The installation of the electrolysis device makes full use of the space on the bottom side of the workbench, which can make the structure of the clothing treatment equipment more compact; furthermore, the electrolysis device of the embodiment of the present invention will not affect the sealing performance of the outer tub, nor will it be installed in the outer tub. The structure has an impact; moreover, no additional water pump is needed, and the electrolysis device can be used normally regardless of whether there is water in the outer barrel.
  • Fig. 1 is a schematic structural diagram of a workbench assembly according to an embodiment of the present invention
  • Figure 2 is a bottom view of the structure shown in Figure 1;
  • Fig. 3 is a schematic diagram of the structure shown in Fig. 1 from another perspective;
  • Fig. 4 is a partial exploded schematic diagram of the structure shown in Fig. 1;
  • FIG. 5 is a schematic diagram of the cooperation of the electrolysis device, the detergent box and the water inlet valve in the structure shown in FIG. 1;
  • Fig. 6 is a partial exploded schematic diagram of the structure shown in Fig. 5;
  • Figure 7 is a partial exploded schematic diagram of an electrolysis device according to an embodiment of the present invention.
  • FIG. 8 is a schematic diagram of the structure after the structure shown in FIG. 7 is matched;
  • Figure 9 is a cross-sectional view along the A-A direction in Figure 8.
  • FIG. 10 is a schematic diagram of the structure of an electrolysis electrode according to an embodiment of the present invention.
  • FIG. 11 is a schematic diagram of the structure of an electrolysis electrode according to another embodiment of the present invention.
  • FIG. 12 is a schematic diagram of the structure of the electrolysis electrode shown in FIG. 11 after being matched.
  • orientation or positional relationship of "front”, “rear”, and “lateral” is based on the orientation or positional relationship shown in FIG. 1, and the orientations of "upper”, “lower”, and “height direction” Or the positional relationship is based on the positional or positional relationship shown in FIG. 3.
  • orientation terms are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a reference to the present invention. limits.
  • An embodiment of the present invention provides a laundry treatment device, which includes a workbench assembly 1000 and a cylinder assembly (not shown in the figure).
  • the cylinder assembly has a washing cavity, and clothes are placed in the washing cavity for washing.
  • the barrel assembly includes an outer barrel and an inner barrel rotatably disposed in the outer barrel.
  • the space in the inner barrel is the washing cavity.
  • the laundry treatment device may only be provided with the above-mentioned inner barrel without the outer barrel.
  • the outer barrel and inner barrel of the barrel assembly are used as an example for description.
  • the workbench assembly 1000 is arranged on the top of the cylinder assembly.
  • the laundry treatment equipment of the embodiment of the present invention may be a pulsator washing machine or an agitator washing machine.
  • the present invention is described by taking the laundry treatment equipment as a pulsator washing machine as an example.
  • the above-mentioned inner cylinder may be a perforated inner cylinder or a non-perforated inner cylinder.
  • the inner tube is a perforated inner tube, rely on the outer bucket to hold water; when the inner tube is a non-perforated inner tube, rely on the inner tube to hold water, that is to say, the inner tube can hold water and clothes , During the washing process, the water in the inner tub will not enter the outer tub.
  • the barrel assembly has only an inner barrel and no outer barrel, the inner barrel is a non-porous inner barrel.
  • the workbench assembly 1000 includes a workbench 1 and an electrolysis device 2.
  • the workbench 1 is used as the main frame of the top of the clothing treatment equipment.
  • the workbench 1 is formed with a clothing insertion opening 1a through which the clothing is put into the inner cylinder. That is to say, the workbench assembly 1000 of the embodiment of the present invention is suitable for A clothes treatment device that puts clothes on the inner tube from the upper side.
  • an operation panel, a cover plate, etc. may be provided on the workbench 1.
  • the cover plate is arranged at the clothing insertion opening 1a. When washing is required, the cover plate is opened and the clothing is put into the inner tube from the top of the clothing treatment equipment. When washing is not required, the clothing inlet 1a can be closed by using the cover plate.
  • the operation panel can facilitate the user to select washing programs and so on.
  • the electrolysis device 2 is arranged on the bottom side of the workbench 1, that is, the electrolysis device 2 is located on the side of the workbench 1 facing the cylinder assembly. 6 and 9, the electrolysis device 2 includes a housing 21 and an electrolysis electrode 22.
  • the housing 21 has an electrolysis chamber 21a.
  • the electrolysis electrode 22 is arranged in the electrolysis chamber 21a.
  • the electrolyzed water in the electrolysis chamber 21a can flow into the clothes treatment. Set in the washing chamber.
  • the electrolysis chamber 21a When the clothing treatment equipment is working, tap water enters the electrolysis chamber 21a, the electrolyzed water electrolyzed by the electrolysis electrode 22 contains many microbubble hydroxyl radicals, etc., and the electrolyzed water then enters the washing chamber.
  • ⁇ OH hydroxyl radicals
  • ⁇ OH has a very high oxidation potential (2.80eV), and its oxidizing ability is extremely strong.
  • Most organic pollutants can undergo a rapid chain reaction.
  • ⁇ OH can be sterilized and disinfected at low temperature without harm to clothing.
  • a part of ⁇ OH reacts with chloride ions in tap water to generate active chlorine. Active chlorine can exist for a long time.
  • Antibacterial effect a large number of hydroxyl radicals will oxidize and destroy the chromophore groups of dye molecules in the colored clothes in the washing process to decolor the dyes, prevent the free dyes from contaminating light-colored clothes and cause cross-color, continuing the reaction will The dye molecules decompose into harmless carbon dioxide, water, and inorganic salts.
  • the electrode will generate a large number of hydrogen microbubbles. Because the diameter of the microbubbles is small, usually less than 50um, they can enter the clothes fibers well during the washing process. Through the blasting of the microbubbles, adsorption and floating, the microbubbles are continuously generated. Circulating flushing helps the detergent to completely remove the sebum, grease, fine dust and other dirt accumulated in the clothes fibers, which can improve the cleaning effect.
  • the workbench assembly 1000 of the embodiment of the present invention integrates the electrolysis device 2 with the workbench 1, which can be easily assembled. Specifically, when assembling, the workbench assembly 1000 can be assembled into a whole first, because the workbench 1 has a relatively structurally opposite structure. Simple and open structure, easy to install the electrolysis device 2. After the workbench assembly 1000 is assembled, the workbench assembly 1000 and the cylinder assembly can be assembled.
  • the installation of the electrolysis device 2 makes full use of the space between the bottom side of the workbench 1 and the outer barrel and the box, which can make the structure of the clothing treatment equipment more compact;
  • the electrolysis device 2 will not affect the sealing performance of the outer tub, nor will it affect the installation structure of the outer tub.
  • the electrolysis device 2 is arranged on the water inlet of the detergent box 5 without using an additional water pump, regardless of the inside of the outer tub. With or without water, the electrolysis device 2 can be used normally.
  • the electrolysis device 2 can be installed on the bottom side of the workbench, in the space above the outer barrel, or in the space between the outer barrel and the box.
  • the specific location is not limited, as long as normal use is not affected.
  • the workbench assembly 1000 further includes a detergent box 5 disposed on the bottom side of the workbench 1, that is, the detergent box 5 is located on the side of the workbench 1 facing the cylinder assembly.
  • the detergent box 5 has a storage tank 5a for containing detergent
  • the electrolysis chamber 21a communicates with the storage tank 5a to guide the electrolyzed water in the electrolysis chamber 21a to the storage tank 5a, and the electrolyzed water in the electrolysis chamber 21a It flows into the washing chamber of the laundry treatment device through the storage tank 5a.
  • the electrolyzed water in the electrolytic chamber 21a enters the storage tank 5a and dilutes the detergent stored in the storage tank 5a. Microbubbles can accelerate the dissolution of the detergent. After the detergent is dissolved, it enters the washing chamber along with the electrolyzed water. Inside, improve the washing effect.
  • the type of detergent contained in the storage tank 5a is not limited.
  • it may be granular materials such as washing machine powder, or viscous materials such as laundry liquid, which is not limited here.
  • the number of detergent boxes 5 is not limited, it can be one or more, and it is not limited here.
  • the workbench assembly 1000 includes a water inlet valve 3 having a water inlet 3a, a first water outlet 3b, and a second water outlet, wherein the first water outlet 3b and the electrolysis device
  • the water inlet 21c is in communication, for example, through the first pipeline 41; the second water outlet is in communication with the storage tank 5a, and the water inlet valve 3 can selectively connect the water inlet 3a to the first water outlet 3b or the second water outlet .
  • the water inlet When it is necessary to sterilize and disinfect by electrolyzed water, the water inlet is connected with the first water outlet 3b, the tap water enters the electrolysis chamber 21a through the inlet valve 3, the electrolyzed water after electrolysis by the electrolysis electrode 22 enters the storage tank 5a, and finally enters the outside. Inside the barrel or inner tube.
  • the water inlet When sterilization is not required, the water inlet is connected to the second water outlet, and the tap water directly enters the storage tank 5a through the water inlet valve 3, and finally enters the outer cylinder or the inner cylinder, that is, when sterilization is not required , The tap water directly enters the storage tank 5a from the water inlet valve 3 without passing through the electrolytic chamber 21a, which can speed up the water inlet speed without sterilization and shorten the washing time.
  • connection mode of the detergent box 5 and the workbench 1 is not limited.
  • the detergent box 5 is slidably arranged under the workbench 1, that is, the detergent box 5 has a pull-out structure.
  • the detergent box 5 is drawn and directed to the detergent box 5. Put detergent directly inside.
  • the detergent box 5 is fixedly arranged on the bottom side of the workbench 1.
  • the workbench 1 has a detergent injection port 1b penetrating the workbench 1 along the height direction of the laundry treatment equipment.
  • the detergent box 5 is hermetically installed around the detergent injection port 1b. When it is necessary to put detergent, it is sufficient to put the detergent into the detergent box 5 directly from the detergent injection port 1b.
  • a shielding cover may be provided at the detergent injection port 1b to cover the detergent injection port 1b to prevent debris from entering the detergent box 5.
  • the detergent box 5 can be arranged on either side of the workbench 1 along the clothes inserting opening 1a, for example, on the workbench 1 along the rear side, the front side of the clothes inserting opening 1a, or any side along the lateral direction of the clothes inserting opening 1a.
  • the detergent box 5 is arranged on the back side of the workbench 1 along the clothes inserting opening 1a.
  • the water inlet pipe is arranged on the back side of the laundry treatment equipment. Therefore, in the embodiment of the present invention, the detergent box 5 is arranged on the back side of the workbench 1 along the laundry inlet 1a, which can reduce the amount of communication with the detergent box 5.
  • the length of the water inlet pipe is convenient for pipe layout and can make the structure of the workbench assembly 1000 compact.
  • the back and front sides of the workbench 1 generally have a relatively large space, and the front side of the workbench 1 can be easily arranged with an operation panel, so that the operation panel is closer to the user, and the user can use the operation panel more conveniently.
  • the detergent box 5 is arranged on the back side of the workbench 1 along the laundry insertion opening 1a.
  • the workbench 1 along the front side, the back side, or the lateral side of the clothing inlet 1a means that in the projection of a horizontal plane, the paper surface shown in FIG. 1 is It is the horizontal plane, and the orientation with the clothing inlet 1a as the reference.
  • the electrolysis electrode 22 and the detergent box 5 are located on different sides of the workbench 1 along the clothing insertion opening 1a, which is beneficial to make full use of the installation space on the bottom side of the workbench 1.
  • the electrolysis device 2 is located on the vertical side of the workbench 1 along the clothing inlet 1a, that is to say, the electrolysis device 2 and the detergent box can be shortened in the case of a reasonable layout structure.
  • the housing 21 has an electrolysis device water inlet 21c and an electrolysis device water outlet 21d communicating with the electrolysis chamber 21a.
  • the electrolysis device water outlet 21d is located in the housing 21 close to the detergent.
  • the water inlet 21c of the electrolysis device is located at the end of the housing 21 away from the water outlet 21d of the electrolysis device.
  • the distance between the water outlet 21d of the electrolysis device and the electrolysis chamber 21a is closer than the distance between the water inlet 21c of the electrolysis device and the electrolysis chamber 21a, so that the electrolyzed water in the electrolysis chamber 21a can be shorter.
  • the distance into the storage tank 5a enables the microbubbles in the electrolyzed water to more effectively accelerate the dissolution of the detergent.
  • the housing 21 is fixedly connected to the workbench 1, for example, screw connection, snap connection, and so on.
  • the electrolysis electrode 22 includes an electrolysis cathode 221 and an electrolysis anode 222. It can be understood that, in order to ensure the normal operation of the electrolysis function of the electrolysis device 2, the electrolysis cathode 221 and the electrolysis anode 222 should be kept insulated from each other, that is, In other words, there is no contact short circuit between the electrolysis cathode 221 and the electrolysis anode 222.
  • the electrolysis cathode 221 and the electrolysis anode 222 are both plate-shaped, which can increase the electrolysis surface area of the electrolysis cathode 221 and the electrolysis anode 222 in contact with water, and increase the efficiency of electrolysis of water.
  • the electrolysis cathode 221 and the electrolysis anode 222 are stacked. It should be noted that the above-mentioned layered arrangement refers to that the electrolytic cathode 221 and the electrolytic anode 222 are arranged in parallel substantially facing each other, and the parallel distance between the electrolytic cathode 221 and the electrolytic anode 222 needs to be within an appropriate range to achieve high-efficiency electrolysis.
  • the electrolytic anode 222 is formed with a plurality of first through holes 22a that penetrate the electrolytic anode 222 along the thickness direction of the electrolytic anode 222; the electrolytic cathode 221 is formed with a plurality of first through holes 22a penetrating the electrolytic cathode 221 in the thickness direction.
  • the charge density at the edges of the first through hole 22a and the second through hole 22b is relatively large, and the electric field intensity near the edge is relatively strong, which can greatly improve the electrolysis efficiency and generate more hydroxyl radicals, active chlorine, etc.
  • the liquid flow can pass through the first through hole 22a and the second through hole from one side of the electrolysis electrode 22 22b flows to the other side of the electrolysis electrode 22, forming a liquid flow path in the electrolysis electrode 22, and the liquid flow can timely take away the microbubbles on the surface of the electrolysis electrode 22 and prevent the microbubbles from gathering on the surface of the electrolysis electrode 22 to form large bubbles.
  • the number, arrangement, and specific shape of the first through holes 22a are not limited. Similarly, the number, arrangement, and specific shape of the second through holes 22b are not limited.
  • the first through hole 22a and the second through hole 22b are substantially circular.
  • the first through hole 22a and the second through hole 22b are approximately polygonal, that is, the electrolysis electrode may have a mesh structure. Since the electrolysis electrode of the mesh structure is placed in the housing 21, In addition, the water entering the electrolysis chamber 21a is tap water, and the efficiency of generating microbubbles is high, and there is no problem of dander accumulation.
  • the electrolysis cathode 221 and the electrolysis anode 222 both extend in a horizontal plane. Please refer to FIG. 9 and FIG. 12, the electrolysis cathode 221 and the electrolysis anode 222 are stacked in a vertical direction. In this way, the electrolysis electrode 22 can basically not affect the size of the workbench 1 in the height direction of the clothes treatment equipment even when the electrolysis electrode 22 has a large electrolysis surface area, so that the workbench assembly 1000 has a compact structure.
  • the electrolytic cathode 221 may be located directly below the electrolytic anode 222, or the electrolytic anode 222 may be located directly below the electrolytic cathode 221. There is no restriction here.
  • the water outlet 21d of the electrolysis device is located above the electrolysis electrode 22, that is, the height of the water outlet 21d of the electrolysis device is higher than the electrolysis cathode 221 and the electrolysis anode 222.
  • the electrolysis chamber 21a is configured such that the liquid flow from the water inlet 21c of the electrolysis device can pass through the first through hole 22a and the second through hole 22b from below the electrolysis electrode 22 and then flow to the water outlet 21d of the electrolysis device.
  • the liquid flow can pass through the electrolysis electrode 22 while flowing in the electrolysis chamber 21a, the liquid flow can take away the microbubbles attached to the surface of the electrolysis electrode 22 in time, and can also flow from the water outlet 21d of the electrolysis device to the storage tank.
  • the water in 5a basically passes through the electrolyzed water after electrolysis by the electrolysis electrode 22 to ensure that the electrolyzed water entering the storage tank 5a contains more microbubbles and hydroxyl radicals.
  • the housing 21 has a drain port 21f, and the location of the drain port 21f is lower than that of the water outlet 21d of the electrolysis device.
  • the drain port 21f is configured to drain the water in the electrolysis chamber 21a.
  • the water discharged from the drain 21f may be discharged to the outside of the laundry treatment equipment, or may be directly or indirectly discharged into the outer tub or the inner tub.
  • the drain 21f and the water outlet 21d of the electrolysis device are arranged on the same side of the housing 21, that is, the drain 21f is also arranged on the side of the housing 21 close to the detergent box 5; 21f communicates with the storage tank 5a, for example, through the third pipe 43, that is, the water discharged from the drain 21f flows to the detergent box 5 through the third pipe 43; the flow area of the drain 21f is smaller than that of the electrolysis The flow area of the water outlet 21d of the device.
  • the drain 21f and the water outlet 21d of the electrolysis device are arranged on the same side of the housing 21, that is to say, the water discharged from the drain 21f is also the electrolyzed water after electrolysis through the electrolysis electrode 22, so ensure that it enters from the drain 21f.
  • the water in the storage tank 5a is also electrolyzed water after electrolysis.
  • the flow resistance of the liquid flow from the water outlet 21d of the electrolysis device to the storage tank 5a is less than The resistance flowing from the drain 21f to the storage tank 5a causes most of the electrolyzed water to flow from the water outlet 21d of the electrolysis device to the storage tank 5a, and a small part of the electrolyzed water flows from the drain 21f to the storage tank 5a.
  • the liquid level in the electrolysis chamber 21a drops.
  • the water in the electrolysis chamber 21a When the liquid level is lower than the height of the water outlet 21d of the electrolysis device, the water in the electrolysis chamber 21a will not Then it will be discharged from the water outlet 21d of the electrolysis device, and will be discharged from the water outlet 21f until the water in the electrolysis chamber 21a is empty.
  • the water flowing into the storage tank 5a is basically electrolyzed water that has been fully electrolyzed, and it can also ensure that the electrolysis chamber 21a is fully electrolyzed.
  • the water inside is drained, and the water from the drain 21f can be guided into the storage tank 5a through a short pipeline.
  • the structure is simple, and there is no need to set a valve, which can reduce production and manufacturing costs.
  • the electrolysis device 2 further includes a conductive connection body 24 for conducting power, the conductive connection body 24 sealingly passes through the housing 21, the first end of the conductive connection body 24 and the electrolysis electrode 22 Conductive connection, the second end of the conductive connecting body 24 is located outside the housing 21.
  • the manner in which the conductive connecting body 24 can pass through the housing 21 in a sealed manner is not limited, as long as the sealing can be ensured without water leakage.
  • the housing 21 has a through hole, the conductive connecting body 24 is inserted through the through hole, and the conductive connecting body The circumferential surface of 24 is in a sealed connection with the inner wall of the through hole; for another example, the part of the housing 21 around the conductive connecting body 24 is injection-molded on the conductive connecting body 24 and so on.
  • the conductive connecting body 24 and the water outlet 21d of the electrolysis device are arranged on the same side of the housing 21. In this way, it is convenient to centrally arrange water pipes, wires, etc. on the same side of the housing 21, so that the structure of the workbench assembly 1000 is more compact.
  • the electrolysis device 2 includes a water baffle 23 arranged in the housing 21.
  • the housing 21 has a hollow interior. Please refer to FIG. 9.
  • the water baffle 23 separates the space inside the housing 21 into a connected electrolysis chamber 21a and a buffer chamber 21b.
  • the electrolysis chamber 21a and the buffer chamber 21b are along the length of the housing 21 Layout.
  • the water inlet 21c of the electrolysis device is provided on the housing 21 corresponding to the buffer chamber 21b, and the water outlet 21d of the electrolysis device is provided on the housing 21 corresponding to the electrolysis chamber 21a.
  • a supply flow is formed between the buffer chamber 21b and the electrolysis chamber 21a.
  • the water in the buffer chamber 21b flows into the electrolysis chamber 21a through the flow passage 23a. Specifically, the liquid flow sequentially flows through the water inlet 21c of the electrolysis device, the buffer chamber 21b, the flow passage 23a, and the electrolysis chamber 21a.
  • the flow passage 23a and the water inlet 21c of the electrolysis device are arranged staggered.
  • the "staggered arrangement" means that the flow channel 23a and the water inlet 21c of the electrolysis device are not in the same straight line, so that the liquid flow from the water inlet 21c of the electrolysis device changes in the buffer chamber 21b. The process of direction plays a certain buffer role.
  • the flow passage 23a may be a hole provided on the water baffle 23, or a gap between the edge of the water baffle 23 and the inner wall of the housing body 211, or the like.
  • the flow passage 23 a is configured as a gap formed between the bottom end of the water baffle 23 and the inner wall of the housing 21, and the position of the flow passage 23 a is lower than the electrolysis electrode 22. In this way, the liquid flow entering the electrolysis chamber 21a from the flow passage 23a can be approximately located below the electrolysis electrode 22. During the flow of the liquid flow, most of the liquid flow can pass through the first through hole 22a in a downward-to-upward direction. And the second through hole 22b, and then discharged from the water outlet 21d of the electrolysis device.
  • the edge of the bottom end of the water baffle 23 is formed with an open notch 23a', and the open notch 23a' is an overflow channel 23a.
  • the partial structure of the bottom end of the water baffle 23 can abut the inner wall of the housing 21, so that the contact area between the water baffle 23 and the housing 21 can be increased, and the connection between the water baffle 23 and the housing 21 can be improved.
  • the part of the structure at the open notch 23a' at the bottom end of the water baffle 23 is spaced from the inner wall of the shell body 211 to form the above-mentioned gap.
  • the housing 21 includes a housing body 211, a first end cover 212 and a second end cover 213 that are sealed at opposite ends of the housing body 211 along the length direction, the housing body 211, the first end cover 212, and the second end.
  • the cover 213 collectively encloses a hollow accommodating space.
  • the electrolytic chamber 21a is at least a part of the accommodating space.
  • the electrolytic chamber 21a is a part of the accommodating space.
  • the electrolytic chamber 21a is the entire accommodating space.
  • the water outlet 21d of the electrolysis device is provided on the first end cover 212, and the water inlet 21c of the electrolysis device is provided on the second end cover 213. It can be understood that the connection between the first end cover 212 and the housing body 211 needs to be sealed to prevent water leakage, and the connection between the second end cover 213 and the housing body 211 needs to be sealed to prevent water leakage.

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

Abstract

The embodiments of the present invention provide a clothes treatment apparatus and a working table assembly thereof. The working table assembly comprises a working table and an electrolyzing device provided on the bottom side of the working table; the working table is provided with a clothes loading port; the electrolyzing device comprises a housing and electrolysis electrodes, the housing has an electrolyzing chamber, the electrolysis electrodes are provided in the electrolysis chamber, and electrolyzed water in the electrolyzing chamber can flow into a washing chamber of the clothes treatment apparatus. In the working table assembly of the embodiments of the present invention, the electrolyzing device and the working table are integrated together, facilitating assembly; in addition, the space at the bottom side of the working table is fully used, making the structure of the clothes treatment apparatus more compact; moreover, the electrolyzing device affects neither the sealing performance of an outer drum nor the installation structure of the outer drum; furthermore, no additional water pump is required, allowing normal use of the electrolyzing device no matter whether there is water in the outer drum.

Description

衣物处理设备及其工作台组件Clothes processing equipment and workbench components thereof
相关申请的交叉引用Cross-references to related applications
本申请要求下述***专利申请的优先权,一、申请号为201911207271.3、申请日为2019年11月29日的中国专利申请;二、申请号为201922109181.2、申请日为2019年11月29日的中国专利申请,上述***专利申请的全部内容在此引入本申请作为参考。This application claims the priority of the following two Chinese patent applications: 1. The application number is 201911207271.3 and the Chinese patent application dated November 29, 2019; 2. The application number is 201922109181.2, and the application date is November 29, 2019. Japanese Chinese patent application, the entire contents of the above two Chinese patent applications are hereby incorporated into this application for reference.
技术领域Technical field
本发明涉及衣物处理技术领域,尤其涉及一种衣物处理设备及其工作台组件。The present invention relates to the technical field of clothes treatment, in particular to a clothes treatment device and a workbench assembly thereof.
背景技术Background technique
电解水杀菌具有低温、高效、无有害物质残留的优势,相关技术中,电解装置设置在外桶外侧的周壁上,通过进水通道将外桶内的水进入电解装置,电解产生的电解水再通过出水通道进入外桶中,此结构比较复杂,安装困难,密封要求高,否则容易导致外桶漏水;而且,如果外桶中的水位低于进水通道,则外桶中的水进不了电解装置,也就不能产生电解水,无法达到电解杀菌消毒作用。Electrolyzed water sterilization has the advantages of low temperature, high efficiency, and no residue of harmful substances. In the related technology, the electrolysis device is arranged on the peripheral wall of the outer barrel, and the water in the outer barrel enters the electrolysis device through the water inlet channel, and the electrolyzed water produced by electrolysis passes through The water outlet channel enters the outer barrel. This structure is complicated, difficult to install, and requires high sealing, otherwise it will easily cause the outer barrel to leak; and if the water level in the outer barrel is lower than the water inlet channel, the water in the outer barrel cannot enter the electrolysis device , It can't produce electrolyzed water, and can't achieve electrolytic sterilization and disinfection.
发明内容Summary of the invention
有鉴于此,本发明实施例期望提供一种电解杀菌消毒可靠、防串色、安装方便的衣物处理设备及其工作台组件。In view of this, the embodiments of the present invention are expected to provide a clothing treatment equipment and a workbench assembly that are reliable in electrolytic sterilization and disinfection, prevent cross-color, and are convenient to install.
为达到上述目的,本发明实施例的第一方面提供一种衣物处理设备的工作台组件,包括工作台、以及设置于所述工作台底侧的电解装置;所述 工作台形成有衣物投放口;所述电解装置包括壳体以及电解电极,所述壳体具有电解腔,所述电解电极设置于所述电解腔内,所述电解腔内电解的电解水能够流入衣物处理设的洗涤腔内。In order to achieve the foregoing objective, a first aspect of the embodiments of the present invention provides a workbench assembly of a clothing treatment device, including a workbench and an electrolysis device provided on the bottom side of the workbench; the workbench is formed with a clothing insertion port The electrolysis device includes a housing and an electrolysis electrode, the housing has an electrolysis chamber, the electrolysis electrode is arranged in the electrolysis chamber, the electrolyzed water in the electrolysis chamber can flow into the washing chamber of the clothing treatment device .
一些实施方案中,所述工作台组件包括设置于所述工作台底侧的洗涤剂盒,所述洗涤剂盒具有用于盛放洗涤剂的存储槽;所述电解腔与所述存储槽连通以将所述电解腔内的电解水导向所述存储槽,所述电解腔内的电解水经所述存储槽流入衣物处理设备的洗涤腔内。In some embodiments, the workbench assembly includes a detergent box provided on the bottom side of the workbench, the detergent box has a storage tank for containing detergent; the electrolysis chamber is in communication with the storage tank In order to guide the electrolyzed water in the electrolysis chamber to the storage tank, the electrolyzed water in the electrolysis chamber flows into the washing chamber of the clothing processing equipment through the storage tank.
一些实施方案中,所述洗涤剂盒位于所述工作台沿所述衣物投放口的前侧或后侧,所述电解电极位于所述工作台沿所述衣物投放口的横向一侧,且所述电解电极沿所述工作台的前后方向延伸。In some embodiments, the detergent box is located on the front side or the back side of the workbench along the laundry inlet, and the electrolysis electrode is located on the lateral side of the workbench along the laundry inlet, and The electrolysis electrode extends along the front and rear direction of the worktable.
一些实施方案中,所述壳体具有与所述电解腔连通的电解装置进水口和电解装置出水口,所述电解装置出水口位于所述壳体靠近所述洗涤剂盒的一端,所述电解装置进水口位于所述壳体远离所述电解装置出水口的一端。In some embodiments, the housing has an electrolysis device water inlet and an electrolysis device water outlet communicating with the electrolysis chamber, and the electrolysis device water outlet is located at an end of the housing close to the detergent box. The water inlet of the device is located at one end of the shell away from the water outlet of the electrolysis device.
一些实施方案中,所述电解电极包括电解阴极和电解阳极,所述电解阴极和所述电解阳极层叠设置。In some embodiments, the electrolysis electrode includes an electrolysis cathode and an electrolysis anode, and the electrolysis cathode and the electrolysis anode are arranged in a layered manner.
一些实施方案中,所述电解阴极和所述电解阳极均在水平面内延伸,所述电解阴极和所述电解阳极沿竖直方向层叠设置。In some embodiments, the electrolysis cathode and the electrolysis anode both extend in a horizontal plane, and the electrolysis cathode and the electrolysis anode are stacked in a vertical direction.
一些实施方案中,所述电解阳极形成有沿所述电解阳极厚度方向贯穿所述电解阳极的多个第一通孔;所述电解阴极上形成有沿所述电解阴极厚度方向贯穿所述电解阴极的多个第二通孔。In some embodiments, the electrolysis anode is formed with a plurality of first through holes penetrating the electrolysis anode along the thickness direction of the electrolysis anode; and the electrolysis cathode is formed with a plurality of first through holes penetrating the electrolysis cathode along the thickness direction of the electrolysis cathode. Of multiple second through holes.
一些实施方案中,所述电解装置出水口位于所述电解电极的上方,所述电解腔构造为:来自所述电解装置进水口的液流能够从所述电解电极的下方穿过所述第一通孔和所述第二通孔后流向所述电解装置出水口。In some embodiments, the water outlet of the electrolysis device is located above the electrolysis electrode, and the electrolysis chamber is configured such that the liquid flow from the water inlet of the electrolysis device can pass through the first electrode from below the electrolysis electrode. The through hole and the second through hole flow to the water outlet of the electrolysis device.
一些实施方案中,所述壳体具有排水口,所述排水口的位置低于所述 电解装置出水口的位置。In some embodiments, the housing has a drain, and the location of the drain is lower than the location of the water outlet of the electrolysis device.
一些实施方案中,所述排水口与所述电解装置出水口设置于所述壳体的同一侧,所述排水口与所述存储槽连通,所述排水口的流通面积小于所述电解装置出水口的流通面积。In some embodiments, the water outlet and the water outlet of the electrolysis device are arranged on the same side of the housing, the water outlet is in communication with the storage tank, and the flow area of the water outlet is smaller than the outlet of the electrolysis device. The flow area of the nozzle.
一些实施方案中,所述电解装置包括设置于所述壳体内的挡水板,所述挡水板将所述壳体内部的空间分隔为连通的缓冲腔以及所述电解腔,所述电解装置进水口设置于所述缓冲腔对应的所述壳体上,所述电解装置出水口设置于所述电解腔对应的所述壳体上,所述缓冲腔和所述电解腔之间形成有供液流流过的过流通道,所述过流通道与所述电解装置进水口错开布置。In some embodiments, the electrolysis device includes a water baffle provided in the housing, and the water baffle divides the space inside the housing into a connected buffer cavity and the electrolysis cavity, and the electrolysis device The water inlet is provided on the housing corresponding to the buffer chamber, the water outlet of the electrolysis device is provided on the housing corresponding to the electrolysis chamber, and a water supply is formed between the buffer chamber and the electrolysis chamber. The overflow channel through which the liquid flows, the overflow channel and the water inlet of the electrolysis device are arranged staggered.
一些实施方案中,所述过流通道构造为所述挡水板底端和所述壳体的内壁之间形成的间隙,所述过流通道的位置低于所述电解电极。In some embodiments, the flow passage is configured as a gap formed between the bottom end of the water baffle and the inner wall of the housing, and the position of the flow passage is lower than the electrolysis electrode.
一些实施方案中,所述挡水板的底端的边缘形成有开放缺口,所述开放缺口为所述过流通道。In some embodiments, the edge of the bottom end of the water baffle is formed with an open notch, and the open notch is the flow passage.
一些实施方案中,所述电解装置包括用于导通电源的导电连接体,所述导电连接体密封地穿过所述壳体,所述导电连接体的第一端与所述电解电极导电连接,所述导电连接体的第二端位于所述壳体的外部;所述导电连接体与所述电解装置出水口设置于所述壳体的同一侧。In some embodiments, the electrolysis device includes a conductive connection body for conducting power, the conductive connection body sealingly passes through the housing, and the first end of the conductive connection body is conductively connected to the electrolysis electrode The second end of the conductive connecting body is located outside the casing; the conductive connecting body and the water outlet of the electrolysis device are arranged on the same side of the casing.
一些实施方案中,所述壳体包括壳本体以及密封设置于所述壳本体沿长度方向相对两端的第一端盖和第二端盖,所述壳本体、所述第一端盖和所述第二端盖共同围设成中空的容纳空间,所述电解腔为所述容纳空间的至少一部分,所述电解装置出水口设置于所述第一端盖上,所述电解装置进水口设置于所述第二端盖上。In some embodiments, the housing includes a housing body, a first end cover and a second end cover that are sealingly disposed at opposite ends of the housing body along the length direction, the housing body, the first end cover, and the The second end cover is jointly enclosed to form a hollow accommodating space, the electrolysis chamber is at least a part of the accommodating space, the water outlet of the electrolysis device is arranged on the first end cover, and the water inlet of the electrolysis device is arranged in The second end cover.
一些实施方案中,所述工作台组件包括进水阀,所述进水阀包括进水口、第一出水口以及第二出水口,所述第一出水口与所述电解装置进水口 连通,所述第二出水口与所述存储槽连通,所述进水阀能够将所述进水口选择性地连通所述第一出水口或所述第二出水口。In some embodiments, the workbench assembly includes a water inlet valve, the water inlet valve includes a water inlet, a first water outlet, and a second water outlet, the first water outlet communicates with the water inlet of the electrolysis device, so The second water outlet is in communication with the storage tank, and the water inlet valve can selectively connect the water inlet to the first water outlet or the second water outlet.
本发明实施例的第二方面提供一种衣物处理设备,包括筒体组件以及上述任一的工作台组件;所述筒体组件具有洗涤腔,所述工作台组件设置于所述筒体组件的顶部,所述电解腔与所述洗涤腔连通以使得所述电解腔内的电解水能够经所述存储槽流向所述洗涤腔。A second aspect of the embodiments of the present invention provides a laundry treatment device, including a cylinder assembly and any of the above-mentioned workbench assemblies; the cylinder assembly has a washing cavity, and the workbench assembly is disposed on the cylinder assembly. At the top, the electrolysis chamber is in communication with the washing chamber so that the electrolyzed water in the electrolysis chamber can flow to the washing chamber through the storage tank.
本发明实施例的工作台组件,将电解装置与工作台集成在一起,能够便于装配,具体地,装配时,可以首先将工作台组件装配成一个整体,由于工作台结构相对简单、且属于开放式结构,便于安装电解装置,将工作台组件装配好后,再将工作台组件与筒体组件进行装配即可,如此能够降低装配难度,提升装配速度,节约生产时间,降低生产成本;此外,电解装置的安装充分利用了工作台底侧的空间,能够使得衣物处理设备的结构更加紧凑;再者,本发明实施例的电解装置不会影响外桶的密封性能,也不会对外桶的安装结构产生影响;而且,无需使用额外的水泵,无论外桶内有没有水,均能够正常使用电解装置。The workbench assembly of the embodiment of the present invention integrates the electrolysis device and the workbench together, which can facilitate assembly. Specifically, when assembling, the workbench assembly can be assembled into a whole first, because the workbench structure is relatively simple and open. The structure is easy to install the electrolysis device. After the workbench assembly is assembled, the workbench assembly and the cylinder assembly can be assembled. This can reduce assembly difficulty, increase assembly speed, save production time, and reduce production costs; in addition, The installation of the electrolysis device makes full use of the space on the bottom side of the workbench, which can make the structure of the clothing treatment equipment more compact; furthermore, the electrolysis device of the embodiment of the present invention will not affect the sealing performance of the outer tub, nor will it be installed in the outer tub. The structure has an impact; moreover, no additional water pump is needed, and the electrolysis device can be used normally regardless of whether there is water in the outer barrel.
附图说明Description of the drawings
图1为本发明一实施例的工作台组件的结构示意图;Fig. 1 is a schematic structural diagram of a workbench assembly according to an embodiment of the present invention;
图2为图1所示结构的仰视图;Figure 2 is a bottom view of the structure shown in Figure 1;
图3为图1所示结构另一视角的示意图;Fig. 3 is a schematic diagram of the structure shown in Fig. 1 from another perspective;
图4为图1所示结构的部分***示意图;Fig. 4 is a partial exploded schematic diagram of the structure shown in Fig. 1;
图5为图1所示结构中电解装置、洗涤剂盒以及进水阀的配合示意图;5 is a schematic diagram of the cooperation of the electrolysis device, the detergent box and the water inlet valve in the structure shown in FIG. 1;
图6为图5所示结构的部分***示意图;Fig. 6 is a partial exploded schematic diagram of the structure shown in Fig. 5;
图7为本发明一实施例的电解装置的部分***示意图;Figure 7 is a partial exploded schematic diagram of an electrolysis device according to an embodiment of the present invention;
图8为图7所示结构配合后的结构示意图;FIG. 8 is a schematic diagram of the structure after the structure shown in FIG. 7 is matched;
图9为沿图8中A-A方向的剖视图;Figure 9 is a cross-sectional view along the A-A direction in Figure 8;
图10为本发明一实施例的电解电极的结构示意图;10 is a schematic diagram of the structure of an electrolysis electrode according to an embodiment of the present invention;
图11为本发明另一实施例的电解电极的结构示意图;11 is a schematic diagram of the structure of an electrolysis electrode according to another embodiment of the present invention;
图12为图11所示电解电极配合后的结构示意图。FIG. 12 is a schematic diagram of the structure of the electrolysis electrode shown in FIG. 11 after being matched.
附图标记说明Description of Reference Signs
工作台1;衣物投放口1a;洗涤剂投放口1b;电解装置2;壳体21;壳本体211;第一端盖212;第二端盖213;电解腔21a;缓冲腔21b;电解装置进水口21c;电解装置出水口21d;排水口21f;电解电极22;电解阴极221;电解阳极222;第一通孔22a;第二通孔22b;挡水板23;过流通道23a;开放缺口23a’;导电连接体24;进水阀3;进水口3a;第一出水口3b;第一管路41;第二管路42;第三管路43;洗涤剂盒5;存储槽5a;工作台组件1000 Workbench 1; clothing inlet 1a; detergent inlet 1b; electrolysis device 2; shell 21; shell body 211; first end cover 212; second end cover 213; electrolysis chamber 21a; buffer chamber 21b; electrolysis device inlet Water port 21c; water outlet 21d of the electrolysis device; drain 21f; electrolysis electrode 22; electrolysis cathode 221; electrolysis anode 222; first through hole 22a; second through hole 22b; water baffle 23; flow channel 23a; open gap 23a '; Conductive connecting body 24; water inlet valve 3; water inlet 3a; first water outlet 3b; first pipeline 41; second pipeline 42; third pipeline 43; detergent box 5; storage tank 5a; work Table assembly 1000
具体实施方式Detailed ways
需要说明的是,在不冲突的情况下,本发明中的实施例及实施例中的技术特征可以相互组合,具体实施方式中的详细描述应理解为本发明宗旨的解释说明,不应视为对本发明的不当限制。It should be noted that the embodiments of the present invention and the technical features in the embodiments can be combined with each other if there is no conflict. The detailed description in the specific implementation should be understood as an explanation of the purpose of the present invention and should not be regarded as Improper restrictions on the present invention.
在本发明实施例的描述中,“前”、“后”、“横向”方位或位置关系为基于附图1所示的方位或位置关系,“上”、“下”、“高度方向”方位或位置关系为基于附图3所示的方位或位置关系。需要理解的是,这些方位术语仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。In the description of the embodiments of the present invention, the orientation or positional relationship of "front", "rear", and "lateral" is based on the orientation or positional relationship shown in FIG. 1, and the orientations of "upper", "lower", and "height direction" Or the positional relationship is based on the positional or positional relationship shown in FIG. 3. It should be understood that these orientation terms are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a reference to the present invention. limits.
本发明实施例提供一种衣物处理设备,包括工作台组件1000以及筒体组件(图未示出)。An embodiment of the present invention provides a laundry treatment device, which includes a workbench assembly 1000 and a cylinder assembly (not shown in the figure).
筒体组件具有洗涤腔,衣物放置于洗涤腔内洗涤。示例性地,筒体组件包括外桶以及转动地设置于外桶内的内筒,该实施例中,内筒内的空间 即为洗涤腔。可以理解的是,一些实施例中,衣物处理设备可以只设置上述的内筒,而没有外桶,本发明实施例中,以筒体组件配置外桶和内筒为例进行描述。The cylinder assembly has a washing cavity, and clothes are placed in the washing cavity for washing. Exemplarily, the barrel assembly includes an outer barrel and an inner barrel rotatably disposed in the outer barrel. In this embodiment, the space in the inner barrel is the washing cavity. It is understandable that, in some embodiments, the laundry treatment device may only be provided with the above-mentioned inner barrel without the outer barrel. In the embodiment of the present invention, the outer barrel and inner barrel of the barrel assembly are used as an example for description.
工作台组件1000设置于筒体组件的顶部。本发明实施例的衣物处理设备可以是波轮式洗衣机或搅拌式洗衣机,本发明以衣物处理设备为波轮式洗衣机为例进行描述。The workbench assembly 1000 is arranged on the top of the cylinder assembly. The laundry treatment equipment of the embodiment of the present invention may be a pulsator washing machine or an agitator washing machine. The present invention is described by taking the laundry treatment equipment as a pulsator washing machine as an example.
可以理解的是,上述的内筒可以是有孔式内筒或者无孔式内筒。当内筒为有孔式内筒时,依靠外桶盛水;当内筒为无孔式内筒时,依靠内筒自身盛水,也就是说,内筒内既能够盛水又能够容纳衣物,在洗涤过程中,内筒内的水不会进入外桶内。当筒体组件仅有内筒,而没有外桶时,内筒为无孔式内筒。It is understandable that the above-mentioned inner cylinder may be a perforated inner cylinder or a non-perforated inner cylinder. When the inner tube is a perforated inner tube, rely on the outer bucket to hold water; when the inner tube is a non-perforated inner tube, rely on the inner tube to hold water, that is to say, the inner tube can hold water and clothes , During the washing process, the water in the inner tub will not enter the outer tub. When the barrel assembly has only an inner barrel and no outer barrel, the inner barrel is a non-porous inner barrel.
请结合参阅图1和图2,工作台组件1000包括工作台1、以及电解装置2。工作台1作为衣物处理设备的顶部的主体构架,工作台1形成有衣物投放口1a,衣物经过该衣物投放口1a投入内筒中,也就是说,本发明实施例的工作台组件1000适用于从上方向内筒投放衣物的衣物处理设备。示例性地,工作台1上可以设置操作面板、盖板等,盖板设置于衣物投放口1a处,当需要洗涤时,打开盖板,将衣物从衣物处理设备的顶部投放进入内筒内,当不需要洗涤时,使用盖板关闭该衣物投放口1a即可。操作面板能够便于用户选择洗涤程序等。Please refer to FIG. 1 and FIG. 2 in combination, the workbench assembly 1000 includes a workbench 1 and an electrolysis device 2. The workbench 1 is used as the main frame of the top of the clothing treatment equipment. The workbench 1 is formed with a clothing insertion opening 1a through which the clothing is put into the inner cylinder. That is to say, the workbench assembly 1000 of the embodiment of the present invention is suitable for A clothes treatment device that puts clothes on the inner tube from the upper side. Exemplarily, an operation panel, a cover plate, etc. may be provided on the workbench 1. The cover plate is arranged at the clothing insertion opening 1a. When washing is required, the cover plate is opened and the clothing is put into the inner tube from the top of the clothing treatment equipment. When washing is not required, the clothing inlet 1a can be closed by using the cover plate. The operation panel can facilitate the user to select washing programs and so on.
请继续参阅图3,电解装置2设置于工作台1底侧,即电解装置2位于工作台1朝向筒体组件的一侧。请参阅图6和图9,电解装置2包括壳体21以及电解电极22,壳体21具有电解腔21a,电解电极22设置于电解腔21a内,电解腔21a内电解的电解水能够流入衣物处理设的洗涤腔内。Please continue to refer to FIG. 3, the electrolysis device 2 is arranged on the bottom side of the workbench 1, that is, the electrolysis device 2 is located on the side of the workbench 1 facing the cylinder assembly. 6 and 9, the electrolysis device 2 includes a housing 21 and an electrolysis electrode 22. The housing 21 has an electrolysis chamber 21a. The electrolysis electrode 22 is arranged in the electrolysis chamber 21a. The electrolyzed water in the electrolysis chamber 21a can flow into the clothes treatment. Set in the washing chamber.
当衣物处理设备工作时,自来水进入电解腔21a内,经电解电极22电解后的电解水中具有很多微气泡羟基自由基等,电解水随后进入洗涤腔内。When the clothing treatment equipment is working, tap water enters the electrolysis chamber 21a, the electrolyzed water electrolyzed by the electrolysis electrode 22 contains many microbubble hydroxyl radicals, etc., and the electrolyzed water then enters the washing chamber.
进入洗涤腔内的水经过了电解电极22的电解,产生了具有强氧化活性的羟基自由基(·OH),·OH具有极高的氧化电位(2.80eV),其氧化能力极强,与大多数有机污染物都可以发生快速的链式反应,·OH可以在低温下杀菌消毒,对衣物没有损害,一部分·OH与自来水中的氯离子反应,生成活性氯,活性氯可以长期存在,具有长期抑菌的效果;大量的羟基自由基将洗涤过程中有色衣物游离到水中的染料分子的发色基团氧化破坏使染料脱色,防止游离的染料沾染到浅色衣物中造成串色,继续反应将染料分子分解成无害的二氧化碳、水、无机盐。同时电极会产生大量的氢气微气泡,由于微气泡的直径很小,通常小于50um,在洗涤过程中能很好地进入衣物纤维内部,通过微气泡***、吸附上浮作用,源源不断地产生微气泡循环冲刷,协助洗涤剂将将堆积在衣物纤维内部的皮脂、油脂、微小灰尘等污垢彻底清除,可以提高洗净效果。The water entering the washing chamber is electrolyzed by the electrolysis electrode 22 to produce hydroxyl radicals (·OH) with strong oxidizing activity. ·OH has a very high oxidation potential (2.80eV), and its oxidizing ability is extremely strong. Most organic pollutants can undergo a rapid chain reaction. ·OH can be sterilized and disinfected at low temperature without harm to clothing. A part of ·OH reacts with chloride ions in tap water to generate active chlorine. Active chlorine can exist for a long time. Antibacterial effect; a large number of hydroxyl radicals will oxidize and destroy the chromophore groups of dye molecules in the colored clothes in the washing process to decolor the dyes, prevent the free dyes from contaminating light-colored clothes and cause cross-color, continuing the reaction will The dye molecules decompose into harmless carbon dioxide, water, and inorganic salts. At the same time, the electrode will generate a large number of hydrogen microbubbles. Because the diameter of the microbubbles is small, usually less than 50um, they can enter the clothes fibers well during the washing process. Through the blasting of the microbubbles, adsorption and floating, the microbubbles are continuously generated. Circulating flushing helps the detergent to completely remove the sebum, grease, fine dust and other dirt accumulated in the clothes fibers, which can improve the cleaning effect.
本发明实施例的工作台组件1000,将电解装置2与工作台1集成在一起,能够便于装配,具体地,装配时,可以首先将工作台组件1000装配成一个整体,由于工作台1结构相对简单、且属于开放式结构,便于安装电解装置2,将工作台组件1000装配好后,再将工作台组件1000与筒体组件进行装配即可,如此能够降低装配难度,提升装配速度,节约生产时间,降低生产成本;此外,电解装置2的安装充分利用了工作台1底侧以及外桶到箱体之间的空间,能够使得衣物处理设备的结构更加紧凑;再者,本发明实施例的电解装置2不会影响外桶的密封性能,也不会对外桶的安装结构产生影响,而且,电解装置2设置于洗涤剂盒5的进水水路上,无需使用额外的水泵,无论外桶内有没有水,均能够正常使用电解装置2。The workbench assembly 1000 of the embodiment of the present invention integrates the electrolysis device 2 with the workbench 1, which can be easily assembled. Specifically, when assembling, the workbench assembly 1000 can be assembled into a whole first, because the workbench 1 has a relatively structurally opposite structure. Simple and open structure, easy to install the electrolysis device 2. After the workbench assembly 1000 is assembled, the workbench assembly 1000 and the cylinder assembly can be assembled. This can reduce the assembly difficulty, increase the assembly speed, and save production Time and reduce production costs; in addition, the installation of the electrolysis device 2 makes full use of the space between the bottom side of the workbench 1 and the outer barrel and the box, which can make the structure of the clothing treatment equipment more compact; The electrolysis device 2 will not affect the sealing performance of the outer tub, nor will it affect the installation structure of the outer tub. Moreover, the electrolysis device 2 is arranged on the water inlet of the detergent box 5 without using an additional water pump, regardless of the inside of the outer tub. With or without water, the electrolysis device 2 can be used normally.
电解装置2可以安装在工作台底侧、外桶以上的空间中,也可安装于外桶与箱体之间的空间内,具***置不做限定,只要不影响正常使用即可。The electrolysis device 2 can be installed on the bottom side of the workbench, in the space above the outer barrel, or in the space between the outer barrel and the box. The specific location is not limited, as long as normal use is not affected.
请参阅图3,一实施例中,工作台组件1000还包括设置于工作台1底 侧的洗涤剂盒5,即洗涤剂盒5位于工作台1朝向筒体组件的一侧。请参阅图4,洗涤剂盒5具有用于盛放洗涤剂的存储槽5a,电解腔21a与存储槽5a连通以将电解腔21a内的电解水导向存储槽5a,电解腔21a内的电解水经存储槽5a流入衣物处理设的洗涤腔内。该实施例中,电解腔21a内的电解水进入存储槽5a内并稀释存储于存储槽5a内的洗涤剂,微气泡能够加快洗涤剂的溶解,洗涤剂溶解后随着电解水一起进入洗涤腔内,提升洗涤效果。Referring to Fig. 3, in an embodiment, the workbench assembly 1000 further includes a detergent box 5 disposed on the bottom side of the workbench 1, that is, the detergent box 5 is located on the side of the workbench 1 facing the cylinder assembly. 4, the detergent box 5 has a storage tank 5a for containing detergent, the electrolysis chamber 21a communicates with the storage tank 5a to guide the electrolyzed water in the electrolysis chamber 21a to the storage tank 5a, and the electrolyzed water in the electrolysis chamber 21a It flows into the washing chamber of the laundry treatment device through the storage tank 5a. In this embodiment, the electrolyzed water in the electrolytic chamber 21a enters the storage tank 5a and dilutes the detergent stored in the storage tank 5a. Microbubbles can accelerate the dissolution of the detergent. After the detergent is dissolved, it enters the washing chamber along with the electrolyzed water. Inside, improve the washing effect.
存储槽5a内盛放的洗涤剂的种类不限,例如,可以是洗衣机粉等颗粒状物质,也可以是洗衣液等粘稠状物质,在此不做限制。The type of detergent contained in the storage tank 5a is not limited. For example, it may be granular materials such as washing machine powder, or viscous materials such as laundry liquid, which is not limited here.
洗涤剂盒5的数量不限,可以是一个,也可以是多个,在此不做限制。The number of detergent boxes 5 is not limited, it can be one or more, and it is not limited here.
一实施例中,请参阅图6,工作台组件1000包括进水阀3,进水阀3具有进水口3a、第一出水口3b以及第二出水口,其中,第一出水口3b与电解装置进水口21c连通,示例性地,通过第一管路41连通;第二出水口与存储槽5a连通,进水阀3能够将进水口3a选择性地连通第一出水口3b或第二出水口。当需要通过电解水杀菌消毒时,进水口与第一出水口3b连通,自来水经进水阀3进入电解腔21a内,经过电解电极22电解后的电解水进入存储槽5a内,并最终进入外桶或内筒内。当不需要杀菌消毒时,进水口与第二出水口连通,自来水经进水阀3直接进入存储槽5a内,并最终进入外筒或内筒内,也就是说,不需要杀菌消毒的情况下,自来水从进水阀3直接进入存储槽5a内,无需经过电解腔21a,如此能够加快不需要杀菌消毒情况下的进水速度,缩短洗涤时间。In one embodiment, referring to FIG. 6, the workbench assembly 1000 includes a water inlet valve 3 having a water inlet 3a, a first water outlet 3b, and a second water outlet, wherein the first water outlet 3b and the electrolysis device The water inlet 21c is in communication, for example, through the first pipeline 41; the second water outlet is in communication with the storage tank 5a, and the water inlet valve 3 can selectively connect the water inlet 3a to the first water outlet 3b or the second water outlet . When it is necessary to sterilize and disinfect by electrolyzed water, the water inlet is connected with the first water outlet 3b, the tap water enters the electrolysis chamber 21a through the inlet valve 3, the electrolyzed water after electrolysis by the electrolysis electrode 22 enters the storage tank 5a, and finally enters the outside. Inside the barrel or inner tube. When sterilization is not required, the water inlet is connected to the second water outlet, and the tap water directly enters the storage tank 5a through the water inlet valve 3, and finally enters the outer cylinder or the inner cylinder, that is, when sterilization is not required , The tap water directly enters the storage tank 5a from the water inlet valve 3 without passing through the electrolytic chamber 21a, which can speed up the water inlet speed without sterilization and shorten the washing time.
洗涤剂盒5与工作台1的连接方式不限。The connection mode of the detergent box 5 and the workbench 1 is not limited.
例如,一实施例中,洗涤剂盒5滑动地设置于工作台1下方,即洗涤剂盒5为抽拉式结构,当需要投放洗涤剂时,抽拉洗涤剂盒5,向洗涤剂盒5内直接投放洗涤剂即可。For example, in one embodiment, the detergent box 5 is slidably arranged under the workbench 1, that is, the detergent box 5 has a pull-out structure. When detergent needs to be put in, the detergent box 5 is drawn and directed to the detergent box 5. Put detergent directly inside.
例如,另一实施例中,洗涤剂盒5固定地设置于工作台1底侧,具体地,请参阅图4,工作台1具有沿衣物处理设备高度方向贯穿工作台1的洗涤剂投放口1b,洗涤剂盒5密封地设置于洗涤剂投放口1b的周围。当需要投放洗涤剂时,直接从洗涤剂投放口1b将洗涤剂投放到洗涤剂盒5中即可。可以理解的是,在一些实施例中,还可以是洗涤剂投放口1b处设置遮蔽盖以盖住洗涤剂投放口1b,防止杂物进入洗涤剂盒5中。For example, in another embodiment, the detergent box 5 is fixedly arranged on the bottom side of the workbench 1. Specifically, referring to FIG. 4, the workbench 1 has a detergent injection port 1b penetrating the workbench 1 along the height direction of the laundry treatment equipment. , The detergent box 5 is hermetically installed around the detergent injection port 1b. When it is necessary to put detergent, it is sufficient to put the detergent into the detergent box 5 directly from the detergent injection port 1b. It is understandable that, in some embodiments, a shielding cover may be provided at the detergent injection port 1b to cover the detergent injection port 1b to prevent debris from entering the detergent box 5.
洗涤剂盒5可以设置在工作台1沿衣物投放口1a的任意一侧,例如,设置于工作台1沿衣物投放口1a的后侧、前侧或者沿衣物投放口1a的横向任意一侧。本发明实施例中,请参阅图1,洗涤剂盒5设置于工作台1沿衣物投放口1a的后侧。一般地,进水管设置于衣物处理设备的后侧,因此,本发明实施例中,将洗涤剂盒5设置于工作台1沿衣物投放口1a的后侧,能够减少与洗涤剂盒5连通的进水管的长度,便于布管,能够使得工作台组件1000结构紧凑。此外,工作台1的后侧和前侧一般具有较大的空间,工作台1的前侧可以便于布置操作面板,以使得操作面板更加接近用户,使得用户更便捷地使用操作面板,因此,可将洗涤剂盒5布置在工作台1沿衣物投放口1a的后侧。The detergent box 5 can be arranged on either side of the workbench 1 along the clothes inserting opening 1a, for example, on the workbench 1 along the rear side, the front side of the clothes inserting opening 1a, or any side along the lateral direction of the clothes inserting opening 1a. In the embodiment of the present invention, please refer to FIG. 1, the detergent box 5 is arranged on the back side of the workbench 1 along the clothes inserting opening 1a. Generally, the water inlet pipe is arranged on the back side of the laundry treatment equipment. Therefore, in the embodiment of the present invention, the detergent box 5 is arranged on the back side of the workbench 1 along the laundry inlet 1a, which can reduce the amount of communication with the detergent box 5. The length of the water inlet pipe is convenient for pipe layout and can make the structure of the workbench assembly 1000 compact. In addition, the back and front sides of the workbench 1 generally have a relatively large space, and the front side of the workbench 1 can be easily arranged with an operation panel, so that the operation panel is closer to the user, and the user can use the operation panel more conveniently. The detergent box 5 is arranged on the back side of the workbench 1 along the laundry insertion opening 1a.
需要说明的是,本发明实施例中,所述的工作台1沿衣物投放口1a的前侧、后侧或者横向一侧指的是,在水平面的投影中,图1所示的纸面即为水平面,以衣物投放口1a为参照的方位。It should be noted that, in the embodiment of the present invention, the workbench 1 along the front side, the back side, or the lateral side of the clothing inlet 1a means that in the projection of a horizontal plane, the paper surface shown in FIG. 1 is It is the horizontal plane, and the orientation with the clothing inlet 1a as the reference.
电解电极22与洗涤剂盒5位于工作台1沿衣物投放口1a的不同侧,如此有利于充分利用工作台1底侧的安装空间。The electrolysis electrode 22 and the detergent box 5 are located on different sides of the workbench 1 along the clothing insertion opening 1a, which is beneficial to make full use of the installation space on the bottom side of the workbench 1.
具体地,本发明实施例中,电解装置2位于工作台1沿衣物投放口1a的竖向一侧,也就是说,如此能够在合理布局结构分布的情况下,缩短电解装置2与洗涤剂盒5之间的距离,减少管路长度,结构布置更加合理。Specifically, in the embodiment of the present invention, the electrolysis device 2 is located on the vertical side of the workbench 1 along the clothing inlet 1a, that is to say, the electrolysis device 2 and the detergent box can be shortened in the case of a reasonable layout structure. The distance between 5, reduce the length of the pipeline, the structure layout is more reasonable.
一实施例中,请参阅图5、图7、图9,壳体21具有与电解腔21a连通 的电解装置进水口21c和电解装置出水口21d,电解装置出水口21d位于壳体21靠近洗涤剂盒5的一端,电解装置进水口21c位于壳体21远离电解装置出水口21d的一端。在电解装置2位置不变的情况下,电解装置出水口21d与电解腔21a的距离比电解装置进水口21c与电解腔21a的距离更近,使得电解腔21a内的电解水能够以较短的距离进入存储槽5a内,使得电解水内的微气泡能够更有效地加快洗涤剂的溶解。In an embodiment, referring to Figures 5, 7, and 9, the housing 21 has an electrolysis device water inlet 21c and an electrolysis device water outlet 21d communicating with the electrolysis chamber 21a. The electrolysis device water outlet 21d is located in the housing 21 close to the detergent. At one end of the box 5, the water inlet 21c of the electrolysis device is located at the end of the housing 21 away from the water outlet 21d of the electrolysis device. When the position of the electrolysis device 2 remains unchanged, the distance between the water outlet 21d of the electrolysis device and the electrolysis chamber 21a is closer than the distance between the water inlet 21c of the electrolysis device and the electrolysis chamber 21a, so that the electrolyzed water in the electrolysis chamber 21a can be shorter The distance into the storage tank 5a enables the microbubbles in the electrolyzed water to more effectively accelerate the dissolution of the detergent.
一实施例中,壳体21与工作台1固定连接,例如,螺钉连接,卡接等。In an embodiment, the housing 21 is fixedly connected to the workbench 1, for example, screw connection, snap connection, and so on.
请参阅图9至图12,电解电极22包括电解阴极221和电解阳极222,可以理解的是,为了保证电解装置2电解功能的正常运行,电解阴极221和电解阳极222应保持绝缘间隔,也就是说,电解阴极221和电解阳极222不存在接触短路。9-12, the electrolysis electrode 22 includes an electrolysis cathode 221 and an electrolysis anode 222. It can be understood that, in order to ensure the normal operation of the electrolysis function of the electrolysis device 2, the electrolysis cathode 221 and the electrolysis anode 222 should be kept insulated from each other, that is, In other words, there is no contact short circuit between the electrolysis cathode 221 and the electrolysis anode 222.
一实施例中,请参阅10至图12,电解阴极221和电解阳极222均呈板状,如此能够增加电解阴极221和电解阳极222与水接触的电解表面积,增大电解水效率。在一些实施例中,电解阴极221和电解阳极222层叠设置。需要说明的是,所述的层叠设置指的是,电解阴极221和电解阳极222大致面对面地平行设置,电解阴极221和电解阳极222的平行间距需要在合适范围内才可以实现高效地电解,如果间距太大,电解效率太低,产生的活性物质浓度低;如果间距太小,会造成电解电极损耗快,缩短电解电极寿命,同时造成功率增加、电解电极发热严重,电能利用率低的问题。一些实施例中,请参阅图10和图11,电解阳极222形成有沿电解阳极222厚度方向贯穿电解阳极222的多个第一通孔22a;电解阴极221上形成有沿电解阴极221厚度方向贯穿电解阴极221的多个第二通孔22b。一方面,第一通孔22a和第二通孔22b的边缘处部位电荷密度比较大,边缘处附近的电场强度较强,可以极大地提升电解效率,产生更多的羟基自由基、活性氯等活性物质,同时有更多的微气泡产生,有利于提升洗涤剂的溶解速度 和提高洗涤效果;另一方面,液流能够从电解电极22的一侧经第一通孔22a和第二通孔22b流动至电解电极22的另一侧,在电解电极22中形成液流通路,液流能够及时带走电解电极22表面的微气泡,防止微气泡在电解电极22表面聚集形成大气泡。In one embodiment, referring to FIGS. 10 to 12, the electrolysis cathode 221 and the electrolysis anode 222 are both plate-shaped, which can increase the electrolysis surface area of the electrolysis cathode 221 and the electrolysis anode 222 in contact with water, and increase the efficiency of electrolysis of water. In some embodiments, the electrolysis cathode 221 and the electrolysis anode 222 are stacked. It should be noted that the above-mentioned layered arrangement refers to that the electrolytic cathode 221 and the electrolytic anode 222 are arranged in parallel substantially facing each other, and the parallel distance between the electrolytic cathode 221 and the electrolytic anode 222 needs to be within an appropriate range to achieve high-efficiency electrolysis. If the distance is too large, the electrolysis efficiency is too low, and the active material concentration produced is low; if the distance is too small, it will cause the electrolysis electrode to wear quickly, shorten the life of the electrolysis electrode, and cause the problems of increased power, serious heating of the electrolysis electrode, and low electric energy utilization. In some embodiments, referring to FIGS. 10 and 11, the electrolytic anode 222 is formed with a plurality of first through holes 22a that penetrate the electrolytic anode 222 along the thickness direction of the electrolytic anode 222; the electrolytic cathode 221 is formed with a plurality of first through holes 22a penetrating the electrolytic cathode 221 in the thickness direction. A plurality of second through holes 22b of the electrolytic cathode 221. On the one hand, the charge density at the edges of the first through hole 22a and the second through hole 22b is relatively large, and the electric field intensity near the edge is relatively strong, which can greatly improve the electrolysis efficiency and generate more hydroxyl radicals, active chlorine, etc. Active material, at the same time, more microbubbles are generated, which is beneficial to increase the dissolution rate of detergent and improve the washing effect; on the other hand, the liquid flow can pass through the first through hole 22a and the second through hole from one side of the electrolysis electrode 22 22b flows to the other side of the electrolysis electrode 22, forming a liquid flow path in the electrolysis electrode 22, and the liquid flow can timely take away the microbubbles on the surface of the electrolysis electrode 22 and prevent the microbubbles from gathering on the surface of the electrolysis electrode 22 to form large bubbles.
第一通孔22a的数量、排布方式以及具体形状不限,同理,第二通孔22b的数量、排布方式以及具体形状不限。The number, arrangement, and specific shape of the first through holes 22a are not limited. Similarly, the number, arrangement, and specific shape of the second through holes 22b are not limited.
示例性地,请参阅图10,一实施例中,第一通孔22a和第二通孔22b大致呈圆形。请参阅图11,在另一实施例中,第一通孔22a和第二通孔22b大致呈多边形,即电解电极可以为网状结构,由于网状结构的电解电极放置在壳体21内,且进入电解腔21a内的水为自来水,产生微气泡的效率高,无毛屑堆积问题。For example, referring to FIG. 10, in one embodiment, the first through hole 22a and the second through hole 22b are substantially circular. Referring to FIG. 11, in another embodiment, the first through hole 22a and the second through hole 22b are approximately polygonal, that is, the electrolysis electrode may have a mesh structure. Since the electrolysis electrode of the mesh structure is placed in the housing 21, In addition, the water entering the electrolysis chamber 21a is tap water, and the efficiency of generating microbubbles is high, and there is no problem of dander accumulation.
一实施例中,电解阴极221和电解阳极222均在水平面内延伸,请参阅,9和图12,电解阴极221和电解阳极222沿竖直方向层叠设置。如此能够使得电解电极22在具有较大的电解表面积的情况下还能基本不影响工作台1在衣物处理设备高度方向上的尺寸,使得工作台组件1000结构紧凑。In one embodiment, the electrolysis cathode 221 and the electrolysis anode 222 both extend in a horizontal plane. Please refer to FIG. 9 and FIG. 12, the electrolysis cathode 221 and the electrolysis anode 222 are stacked in a vertical direction. In this way, the electrolysis electrode 22 can basically not affect the size of the workbench 1 in the height direction of the clothes treatment equipment even when the electrolysis electrode 22 has a large electrolysis surface area, so that the workbench assembly 1000 has a compact structure.
需要说明的是,电解阴极221和电解阳极222沿竖直方向层叠设置的方案中,既可以是电解阴极221位于电解阳极222的正下方,也可以是电解阳极222位于电解阴极221的正下方,在此不做限制。It should be noted that in the solution where the electrolytic cathode 221 and the electrolytic anode 222 are stacked in a vertical direction, the electrolytic cathode 221 may be located directly below the electrolytic anode 222, or the electrolytic anode 222 may be located directly below the electrolytic cathode 221. There is no restriction here.
一实施例中,电解装置出水口21d位于电解电极22的上方,也就是说,电解装置出水口21d的高度高于电解阴极221和电解阳极222。电解腔21a构造为:来自电解装置进水口21c的液流能够从电解电极22的下方穿过第一通孔22a和第二通孔22b后流向电解装置出水口21d。也就是说,液流在电解腔21a中流动过程中能够穿过电解电极22,液流能够及时带走附着在电解电极22表面的微气泡,且还能够使得从电解装置出水口21d流向存储槽5a的水基本都经过了电解电极22电解后的电解水,以保障进入存储槽 5a内的电解水中含有较多的微气泡和羟基自由基。In one embodiment, the water outlet 21d of the electrolysis device is located above the electrolysis electrode 22, that is, the height of the water outlet 21d of the electrolysis device is higher than the electrolysis cathode 221 and the electrolysis anode 222. The electrolysis chamber 21a is configured such that the liquid flow from the water inlet 21c of the electrolysis device can pass through the first through hole 22a and the second through hole 22b from below the electrolysis electrode 22 and then flow to the water outlet 21d of the electrolysis device. That is to say, the liquid flow can pass through the electrolysis electrode 22 while flowing in the electrolysis chamber 21a, the liquid flow can take away the microbubbles attached to the surface of the electrolysis electrode 22 in time, and can also flow from the water outlet 21d of the electrolysis device to the storage tank. The water in 5a basically passes through the electrolyzed water after electrolysis by the electrolysis electrode 22 to ensure that the electrolyzed water entering the storage tank 5a contains more microbubbles and hydroxyl radicals.
一实施例中,请参阅图9,壳体21具有排水口21f,排水口21f的位置低于电解装置出水口21d的位置,排水口21f构造为:能够将电解腔21a内的水排空。当衣物处理设备不需要使用杀菌消毒功能时,也就是说,不需要启动电解装置2时,能够通过排水口21f将电解腔21a内的水排空,避免洗衣机在长久不使用的情况下,电解腔21a内的水变质发臭。In one embodiment, referring to FIG. 9, the housing 21 has a drain port 21f, and the location of the drain port 21f is lower than that of the water outlet 21d of the electrolysis device. The drain port 21f is configured to drain the water in the electrolysis chamber 21a. When the clothes processing equipment does not need to use the sterilization and disinfection function, that is, when the electrolysis device 2 does not need to be activated, the water in the electrolysis chamber 21a can be drained through the drain 21f to prevent the washing machine from being electrolyzed when the washing machine is not used for a long time. The water in the cavity 21a deteriorates and stinks.
需要说明的是,从排水口21f排出的水可以是排到衣物处理设备的外部,也可以是直接或间接地排到外桶或内筒内。本发明实施例中,请参阅图5,排水口21f与电解装置出水口21d设置于壳体21的同一侧,即排水口21f也设置于壳体21靠近洗涤剂盒5的一侧;排水口21f与存储槽5a连通,示例性地,通过第三管路43连通,也就是说,从排水口21f排出的水经第三管路43流向洗涤剂盒5;排水口21f的流通面积小于电解装置出水口21d的流通面积。具体地,由于排水口21f与电解装置出水口21d设置于壳体21的同一侧,也就是说,从排水口21f排出的水也是经过电解电极22电解后的电解水,确保从排水口21f进入存储槽5a内的水也是经过电解后的电解水;再者,由于排水口21f的流通面积小于电解装置出水口21d的流通面积,液流从电解装置出水口21d流向存储槽5a的流动阻力小于从排水口21f流向存储槽5a的阻力,使得大部分电解水还是会从电解装置出水口21d流向存储槽5a,小部分电解水会从排水口21f流向存储槽5a。当不需要使用电解水时,电解腔21a中不再进水,电解腔21a内的液面高度下降,当液面高度低于电解装置出水口21d的高度时,电解腔21a内的水不会再从电解装置出水口21d排出,而会从排水口21f排出,直至电解腔21a内的水排空。本发明实施例中,通过同时设置上述的电解装置出水口21d和上述的排水口21f,既能保证流向存储槽5a内的水基本都是经过充分电解的电解水,也能保证将电解腔21a内的水排空,只需通过较短的管路即可将 排水口21f的水引导至存储槽5a内,结构简单,且无需设置阀门,能够降低生产制造成本。It should be noted that the water discharged from the drain 21f may be discharged to the outside of the laundry treatment equipment, or may be directly or indirectly discharged into the outer tub or the inner tub. In the embodiment of the present invention, referring to Fig. 5, the drain 21f and the water outlet 21d of the electrolysis device are arranged on the same side of the housing 21, that is, the drain 21f is also arranged on the side of the housing 21 close to the detergent box 5; 21f communicates with the storage tank 5a, for example, through the third pipe 43, that is, the water discharged from the drain 21f flows to the detergent box 5 through the third pipe 43; the flow area of the drain 21f is smaller than that of the electrolysis The flow area of the water outlet 21d of the device. Specifically, since the drain 21f and the water outlet 21d of the electrolysis device are arranged on the same side of the housing 21, that is to say, the water discharged from the drain 21f is also the electrolyzed water after electrolysis through the electrolysis electrode 22, so ensure that it enters from the drain 21f. The water in the storage tank 5a is also electrolyzed water after electrolysis. Furthermore, since the flow area of the drain 21f is smaller than the flow area of the water outlet 21d of the electrolysis device, the flow resistance of the liquid flow from the water outlet 21d of the electrolysis device to the storage tank 5a is less than The resistance flowing from the drain 21f to the storage tank 5a causes most of the electrolyzed water to flow from the water outlet 21d of the electrolysis device to the storage tank 5a, and a small part of the electrolyzed water flows from the drain 21f to the storage tank 5a. When there is no need to use electrolyzed water, no more water enters the electrolysis chamber 21a, and the liquid level in the electrolysis chamber 21a drops. When the liquid level is lower than the height of the water outlet 21d of the electrolysis device, the water in the electrolysis chamber 21a will not Then it will be discharged from the water outlet 21d of the electrolysis device, and will be discharged from the water outlet 21f until the water in the electrolysis chamber 21a is empty. In the embodiment of the present invention, by simultaneously providing the above-mentioned water outlet 21d of the electrolysis device and the above-mentioned water outlet 21f, it can be ensured that the water flowing into the storage tank 5a is basically electrolyzed water that has been fully electrolyzed, and it can also ensure that the electrolysis chamber 21a is fully electrolyzed. The water inside is drained, and the water from the drain 21f can be guided into the storage tank 5a through a short pipeline. The structure is simple, and there is no need to set a valve, which can reduce production and manufacturing costs.
一实施例中,请参阅图6,电解装置2还包括用于导通电源的导电连接体24,导电连接体24密封地穿过壳体21,导电连接体24的第一端与电解电极22导电连接,导电连接体24的第二端位于壳体21的外部。导电连接体24密封地穿过壳体21的方式不限,只要能保证密封不漏水即可,例如,壳体21上具有贯穿孔,导电连接体24穿设于贯穿孔中,且导电连接体24的周向表面与贯穿孔的内壁密封连接;再例如,导电连接体24周边的部分壳体21注塑成型在导电连接体24上等。In an embodiment, referring to FIG. 6, the electrolysis device 2 further includes a conductive connection body 24 for conducting power, the conductive connection body 24 sealingly passes through the housing 21, the first end of the conductive connection body 24 and the electrolysis electrode 22 Conductive connection, the second end of the conductive connecting body 24 is located outside the housing 21. The manner in which the conductive connecting body 24 can pass through the housing 21 in a sealed manner is not limited, as long as the sealing can be ensured without water leakage. For example, the housing 21 has a through hole, the conductive connecting body 24 is inserted through the through hole, and the conductive connecting body The circumferential surface of 24 is in a sealed connection with the inner wall of the through hole; for another example, the part of the housing 21 around the conductive connecting body 24 is injection-molded on the conductive connecting body 24 and so on.
导电连接体24与电解装置出水口21d设置于壳体21的同一侧。如此,便于在壳体21的同一侧集中布设水管和电线等,使得工作台组件1000的结构更加紧凑。The conductive connecting body 24 and the water outlet 21d of the electrolysis device are arranged on the same side of the housing 21. In this way, it is convenient to centrally arrange water pipes, wires, etc. on the same side of the housing 21, so that the structure of the workbench assembly 1000 is more compact.
一实施例中,请参阅图7,电解装置2包括设置于壳体21内的挡水板23。壳体21具内部中空,请结合参阅图9,挡水板23将壳体21内部的空间分隔为连通的电解腔21a以及缓冲腔21b,电解腔21a和缓冲腔21b沿壳体21的长度方向布置。电解装置进水口21c设置于缓冲腔21b对应的壳体21上,电解装置出水口21d设置于电解腔21a对应的壳体21上,缓冲腔21b和电解腔21a之间形成有供液流流过的过流通道23a,缓冲腔21b内的水经过流通道23a流向电解腔21a内。具体地,液流依次流经电解装置进水口21c、缓冲腔21b、过流通道23a以及电解腔21a。In an embodiment, referring to FIG. 7, the electrolysis device 2 includes a water baffle 23 arranged in the housing 21. The housing 21 has a hollow interior. Please refer to FIG. 9. The water baffle 23 separates the space inside the housing 21 into a connected electrolysis chamber 21a and a buffer chamber 21b. The electrolysis chamber 21a and the buffer chamber 21b are along the length of the housing 21 Layout. The water inlet 21c of the electrolysis device is provided on the housing 21 corresponding to the buffer chamber 21b, and the water outlet 21d of the electrolysis device is provided on the housing 21 corresponding to the electrolysis chamber 21a. A supply flow is formed between the buffer chamber 21b and the electrolysis chamber 21a. The water in the buffer chamber 21b flows into the electrolysis chamber 21a through the flow passage 23a. Specifically, the liquid flow sequentially flows through the water inlet 21c of the electrolysis device, the buffer chamber 21b, the flow passage 23a, and the electrolysis chamber 21a.
在一些实施例中,过流通道23a与电解装置进水口21c错开布置。所述的“错开布置”指的是过流通道23a与电解装置进水口21c的进水方向不在同一直线上,如此,使得来自电解装置进水口21c的液流在缓冲腔21b中有一个改变流动方向的过程,起到一定的缓冲作用。In some embodiments, the flow passage 23a and the water inlet 21c of the electrolysis device are arranged staggered. The "staggered arrangement" means that the flow channel 23a and the water inlet 21c of the electrolysis device are not in the same straight line, so that the liquid flow from the water inlet 21c of the electrolysis device changes in the buffer chamber 21b. The process of direction plays a certain buffer role.
过流通道23a可以是设置于挡水板23上的孔,也可以是设置于挡水板 23边缘与壳本体211内壁之间的间隙等。The flow passage 23a may be a hole provided on the water baffle 23, or a gap between the edge of the water baffle 23 and the inner wall of the housing body 211, or the like.
一实施例中,请参阅图7和图9,过流通道23a构造为挡水板23底端和壳体21的内壁之间形成的间隙,过流通道23a的位置低于电解电极22。如此,能够使得从过流通道23a进入电解腔21a内的液流大致位于电解电极22的下方,液流在流动过程中,大部分液流能够沿从下至上的方向穿过第一通孔22a和第二通孔22b,然后从电解装置出水口21d排出。In one embodiment, referring to FIGS. 7 and 9, the flow passage 23 a is configured as a gap formed between the bottom end of the water baffle 23 and the inner wall of the housing 21, and the position of the flow passage 23 a is lower than the electrolysis electrode 22. In this way, the liquid flow entering the electrolysis chamber 21a from the flow passage 23a can be approximately located below the electrolysis electrode 22. During the flow of the liquid flow, most of the liquid flow can pass through the first through hole 22a in a downward-to-upward direction. And the second through hole 22b, and then discharged from the water outlet 21d of the electrolysis device.
具体地,一实施例中,请继续参阅图7,挡水板23的底端的边缘形成有开放缺口23a’,开放缺口23a’为过流通道23a。该实施例中,挡水板23的底端的部分结构能够与壳体21的内壁抵接,如此能够增加挡水板23与壳体21的接触面积,提升挡水板23与壳体21的连接可靠性,挡水板23底端的开放缺口23a’处的部分结构与壳本体211的内壁间隔,以形成上述的间隙。Specifically, in an embodiment, please continue to refer to FIG. 7, the edge of the bottom end of the water baffle 23 is formed with an open notch 23a', and the open notch 23a' is an overflow channel 23a. In this embodiment, the partial structure of the bottom end of the water baffle 23 can abut the inner wall of the housing 21, so that the contact area between the water baffle 23 and the housing 21 can be increased, and the connection between the water baffle 23 and the housing 21 can be improved. Reliability, the part of the structure at the open notch 23a' at the bottom end of the water baffle 23 is spaced from the inner wall of the shell body 211 to form the above-mentioned gap.
一实施例中,壳体21包括壳本体211以及密封设置于壳本体211沿长度方向相对两端的第一端盖212和第二端盖213,壳本体211、第一端盖212和第二端盖213共同围设成中空的容纳空间,电解腔21a为容纳空间的至少一部分,例如,本实施例中,电解腔21a为容纳空间的一部分,容纳空间包括上述的电解腔21a和缓冲腔21b,再例如,在没有设置上述的缓冲腔21b的实施例中,电解腔21a为全部的容纳空间。In one embodiment, the housing 21 includes a housing body 211, a first end cover 212 and a second end cover 213 that are sealed at opposite ends of the housing body 211 along the length direction, the housing body 211, the first end cover 212, and the second end. The cover 213 collectively encloses a hollow accommodating space. The electrolytic chamber 21a is at least a part of the accommodating space. For example, in this embodiment, the electrolytic chamber 21a is a part of the accommodating space. For another example, in an embodiment where the above-mentioned buffer chamber 21b is not provided, the electrolytic chamber 21a is the entire accommodating space.
电解装置出水口21d设置于第一端盖212上,电解装置进水口21c设置于第二端盖213上。可以理解的是,第一端盖212和壳本体211的连接处需要密封连接以防止漏水,第二端盖213和壳本体211的连接处需要密封连接以防止漏水。The water outlet 21d of the electrolysis device is provided on the first end cover 212, and the water inlet 21c of the electrolysis device is provided on the second end cover 213. It can be understood that the connection between the first end cover 212 and the housing body 211 needs to be sealed to prevent water leakage, and the connection between the second end cover 213 and the housing body 211 needs to be sealed to prevent water leakage.
以上所述,仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。The above are only preferred embodiments of the present invention, and are not used to limit the protection scope of the present invention.

Claims (17)

  1. 衣物处理设备的工作台组件,包括:Workbench components of laundry treatment equipment, including:
    工作台,所述工作台形成有衣物投放口;A workbench, the workbench is formed with a clothing insertion opening;
    设置于所述工作台底侧的电解装置,所述电解装置包括壳体以及电解电极,所述壳体具有电解腔,所述电解电极设置于所述电解腔内,所述电解腔内电解的电解水能够流入衣物处理设的洗涤腔内。An electrolysis device arranged on the bottom side of the workbench, the electrolysis device comprising a casing and an electrolysis electrode, the casing has an electrolysis cavity, the electrolysis electrode is arranged in the electrolysis cavity, the electrolysis in the electrolysis cavity The electrolyzed water can flow into the washing chamber of the laundry treatment device.
  2. 根据权利要求1所述的工作台组件,所述工作台组件包括设置于所述工作台底侧的洗涤剂盒,所述洗涤剂盒具有用于盛放洗涤剂的存储槽;所述电解腔与所述存储槽连通以将所述电解腔内的电解水导向所述存储槽,所述电解腔内的电解水经所述存储槽流入衣物处理设备的洗涤腔内。The workbench assembly according to claim 1, the workbench assembly comprising a detergent box provided on the bottom side of the workbench, the detergent box having a storage tank for containing detergent; the electrolysis chamber It is in communication with the storage tank to guide the electrolyzed water in the electrolysis chamber to the storage tank, and the electrolyzed water in the electrolysis chamber flows into the washing chamber of the laundry treatment device through the storage tank.
  3. 根据权利要求2所述的工作台组件,所述洗涤剂盒位于所述工作台沿所述衣物投放口的前侧或后侧,所述电解电极位于所述工作台沿所述衣物投放口的横向一侧,且所述电解电极沿所述工作台的前后方向延伸。The workbench assembly according to claim 2, wherein the detergent box is located on the front side or the back side of the workbench along the clothing insertion opening, and the electrolysis electrode is located on the workbench along the clothing insertion opening. One side of the lateral direction, and the electrolysis electrode extends along the front and rear direction of the worktable.
  4. 根据权利要求3所述的工作台组件,所述壳体具有与所述电解腔连通的电解装置进水口和电解装置出水口,所述电解装置出水口位于所述壳体靠近所述洗涤剂盒的一端,所述电解装置进水口位于所述壳体远离所述电解装置出水口的一端。The workbench assembly according to claim 3, the housing has an electrolysis device water inlet and an electrolysis device water outlet communicating with the electrolysis chamber, and the electrolysis device water outlet is located in the housing close to the detergent box The water inlet of the electrolysis device is located at the end of the housing away from the water outlet of the electrolysis device.
  5. 根据权利要求1所述的工作台组件,所述电解电极包括电解阴极和电解阳极,所述电解阴极和所述电解阳极层叠设置。The workbench assembly according to claim 1, wherein the electrolysis electrode comprises an electrolysis cathode and an electrolysis anode, and the electrolysis cathode and the electrolysis anode are arranged in a layered manner.
  6. 根据权利要求5所述的工作台组件,所述电解阴极和所述电解阳极均在水平面内延伸,所述电解阴极和所述电解阳极沿竖直方向层叠设置。The workbench assembly according to claim 5, wherein the electrolysis cathode and the electrolysis anode both extend in a horizontal plane, and the electrolysis cathode and the electrolysis anode are stacked in a vertical direction.
  7. 根据权利要求6所述的工作台组件,所述电解阳极形成有沿所述电解阳极厚度方向贯穿所述电解阳极的多个第一通孔;所述电解阴极上形成有沿所述电解阴极厚度方向贯穿所述电解阴极的多个第二通孔。The workbench assembly according to claim 6, wherein the electrolysis anode is formed with a plurality of first through holes penetrating the electrolysis anode along the thickness direction of the electrolysis anode; and the electrolysis cathode is formed with a thickness along the thickness of the electrolysis cathode. The direction penetrates the plurality of second through holes of the electrolytic cathode.
  8. 根据权利要求7所述的工作台组件,所述电解装置出水口位于所述电解电极的上方,所述电解腔构造为:来自所述电解装置进水口的液流能够从所述电解电极的下方穿过所述第一通孔和所述第二通孔后流向所述电解装置出水口。The workbench assembly according to claim 7, wherein the water outlet of the electrolysis device is located above the electrolysis electrode, and the electrolysis chamber is configured such that the liquid flow from the water inlet of the electrolysis device can flow from below the electrolysis electrode After passing through the first through hole and the second through hole, it flows to the water outlet of the electrolysis device.
  9. 根据权利要求2所述的工作台组件,所述壳体具有排水口,所述排水口的位置低于所述电解装置出水口的位置。The workbench assembly according to claim 2, wherein the housing has a drain port, and the location of the drain port is lower than the location of the water outlet of the electrolysis device.
  10. 根据权利要求9所述的工作台组件,所述排水口与所述电解装置出水口设置于所述壳体的同一侧,所述排水口与所述存储槽连通,所述排水口的流通面积小于所述电解装置出水口的流通面积。The workbench assembly according to claim 9, wherein the water outlet and the water outlet of the electrolysis device are arranged on the same side of the housing, the water outlet is in communication with the storage tank, and the flow area of the water outlet is It is smaller than the flow area of the water outlet of the electrolysis device.
  11. 根据权利要求1所述的工作台组件,所述电解装置包括设置于所述壳体内的挡水板,所述挡水板将所述壳体内部的空间分隔为连通的缓冲腔以及所述电解腔,所述电解装置进水口设置于所述缓冲腔对应的所述壳体上,所述电解装置出水口设置于所述电解腔对应的所述壳体上,所述缓冲腔和所述电解腔之间形成有供液流流过的过流通道,所述过流通道与所述电解装置进水口错开布置。The workbench assembly according to claim 1, wherein the electrolysis device comprises a water baffle provided in the housing, and the water baffle divides the space inside the housing into a communicating buffer cavity and the electrolysis The water inlet of the electrolysis device is provided on the housing corresponding to the buffer cavity, the water outlet of the electrolysis device is provided on the housing corresponding to the electrolysis cavity, and the buffer cavity and the electrolysis An overflow channel for liquid flow is formed between the cavities, and the overflow channel is arranged staggered with the water inlet of the electrolysis device.
  12. 根据权利要求11所述的工作台组件,所述过流通道构造为所述挡水板底端和所述壳体的内壁之间形成的间隙,所述过流通道的位置低于所述电解电极。The workbench assembly according to claim 11, the flow passage is configured as a gap formed between the bottom end of the water baffle and the inner wall of the housing, and the position of the flow passage is lower than that of the electrolysis electrode.
  13. 根据权利要求11所述的工作台组件,所述挡水板的底端的边缘形成有开放缺口,所述开放缺口为所述过流通道。11. The workbench assembly according to claim 11, wherein the edge of the bottom end of the water baffle is formed with an open notch, and the open notch is the flow passage.
  14. 根据权利要求1所述的工作台组件,所述电解装置包括用于导通电源的导电连接体,所述导电连接体密封地穿过所述壳体,所述导电连接体的第一端与所述电解电极导电连接,所述导电连接体的第二端位于所述壳体的外部;所述导电连接体与所述电解装置出水口设置于所述壳体的同一侧。The workbench assembly according to claim 1, wherein the electrolysis device comprises a conductive connecting body for conducting power, the conductive connecting body sealingly passes through the housing, and the first end of the conductive connecting body is connected to The electrolysis electrode is conductively connected, and the second end of the conductive connecting body is located outside the housing; the conductive connecting body and the water outlet of the electrolysis device are arranged on the same side of the housing.
  15. 根据权利要求1所述的工作台组件,所述壳体包括壳本体以及密封设置于所述壳本体沿长度方向相对两端的第一端盖和第二端盖,所述壳本体、所述第一端盖和所述第二端盖共同围设成中空的容纳空间,所述电解腔为所述容纳空间的至少一部分,所述电解装置出水口设置于所述第一端盖上,所述电解装置进水口设置于所述第二端盖上。The workbench assembly according to claim 1, wherein the housing includes a housing body, and a first end cover and a second end cover that are sealingly disposed at opposite ends of the housing body along the length direction, the housing body and the second end cover. One end cover and the second end cover jointly enclose a hollow receiving space, the electrolysis chamber is at least a part of the receiving space, the water outlet of the electrolysis device is arranged on the first end cover, the The water inlet of the electrolysis device is arranged on the second end cover.
  16. 根据权利要求2所述的工作台组件,所述工作台组件包括进水阀,所述进水阀包括进水口、第一出水口以及第二出水口,所述第一出水口与所述电解装置进水口连通,所述第二出水口与所述存储槽连通,所述进水阀能够将所述进水口选择性地连通所述第一出水口或所述第二出水口。The workbench assembly according to claim 2, the workbench assembly includes a water inlet valve, the water inlet valve includes a water inlet, a first water outlet, and a second water outlet, the first water outlet and the electrolysis The water inlet of the device is in communication, the second water outlet is in communication with the storage tank, and the water inlet valve can selectively connect the water inlet to the first water outlet or the second water outlet.
  17. 衣物处理设备,包括:Clothes treatment equipment, including:
    权利要求1-16任一项所述的工作台组件;The workbench assembly of any one of claims 1-16;
    筒体组件,所述筒体组件具有洗涤腔,所述工作台组件设置于所述筒体组件的顶部,所述电解腔与所述洗涤腔连通以使得所述电解腔内的电解水能够流向所述洗涤腔。A cylinder assembly, the cylinder assembly has a washing cavity, the workbench assembly is arranged on the top of the cylinder assembly, and the electrolysis cavity is in communication with the washing cavity so that the electrolyzed water in the electrolysis cavity can flow to The washing cavity.
PCT/CN2020/080272 2019-11-29 2020-03-19 Clothes treatment apparatus and working table assembly thereof WO2021103355A1 (en)

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Application Number Priority Date Filing Date Title
CN201922109181.2U CN211897463U (en) 2019-11-29 2019-11-29 Clothes treatment equipment and workbench assembly thereof
CN201911207271.3 2019-11-29
CN201911207271.3A CN112877997A (en) 2019-11-29 2019-11-29 Clothes treatment equipment and workbench assembly thereof
CN201922109181.2 2019-11-29

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