WO2023216657A1 - 电解组件、储液箱及清洁设备 - Google Patents

电解组件、储液箱及清洁设备 Download PDF

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Publication number
WO2023216657A1
WO2023216657A1 PCT/CN2023/075194 CN2023075194W WO2023216657A1 WO 2023216657 A1 WO2023216657 A1 WO 2023216657A1 CN 2023075194 W CN2023075194 W CN 2023075194W WO 2023216657 A1 WO2023216657 A1 WO 2023216657A1
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WIPO (PCT)
Prior art keywords
conductive
electrolytic
assembly
electrolysis
liquid storage
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Application number
PCT/CN2023/075194
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English (en)
French (fr)
Inventor
倪文翊
张亚林
Original Assignee
追觅创新科技(苏州)有限公司
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Publication of WO2023216657A1 publication Critical patent/WO2023216657A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/28Floor-scrubbing machines, motor-driven
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/40Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/46Treatment of water, waste water, or sewage by electrochemical methods
    • C02F1/461Treatment of water, waste water, or sewage by electrochemical methods by electrolysis

Definitions

  • This application relates to the technical field of cleaning, specifically to an electrolytic component, a liquid storage tank and cleaning equipment.
  • Traditional cleaning equipment such as mops, floor washers, etc.
  • an electrolytic component is usually installed in the liquid storage tank to electrolyze water or other liquids in the liquid storage tank, so that the liquid in the liquid storage cavity is cleaner, so that the cleaning equipment is cleaner.
  • the traditional electrolytic component is installed at a higher position in the liquid storage tank, and there is a certain distance between the electrolytic component and the bottom of the liquid storage tank. When the amount of liquid in the liquid storage tank is small and the liquid level is low, the electrolytic component cannot Electrolysis of the liquid at the bottom of the liquid storage tank results in low electrolysis efficiency and poor user experience.
  • the technical problem to be solved by this application is that the structure of the traditional electrolytic component causes a certain distance between the electrolytic component and the bottom of the liquid storage tank. As a result, the electrolytic component cannot electrolyze the liquid at the bottom of the tank, and the electrolysis efficiency is low.
  • the present application provides an electrolytic component for use in a liquid storage tank.
  • a valve body assembly is provided at the opening at the bottom of the liquid storage tank.
  • the electrolytic component includes:
  • the bracket assembly includes a mounting structure and a conductive structure, a gap is provided on at least one circumferential side of the mounting structure, and the gap is used to accommodate the valve body assembly;
  • At least two electrode members are arranged on the mounting structure and are electrically connected to the conductive structure respectively.
  • the electrolysis assembly the installation structure includes an electrolysis chamber, and a cover located on the The cover of the electrolysis chamber, at least a part of the electrolysis chamber is arranged in a "U" shape to form the notch; at least two of the electrode members are provided in the electrolysis chamber and located on the sides of the notch.
  • each of the conductive structures Structure includes:
  • a conductive component connected to the corresponding electrode member and used to fix the corresponding electrode member
  • the docking component is used to electrically connect the conductive component and the external power supply device.
  • each of the docking components includes:
  • the butt joint is provided on the electrolysis chamber and is at least partially exposed outside the electrolysis chamber;
  • the two ends of the conductive telescopic member along its telescopic direction are connected to the conductive component and the butt joint respectively.
  • the electrolysis assembly at least part of the conductive component is exposed outside the electrolysis chamber, and the butt joint is provided outside the electrolysis chamber;
  • the docking component also includes a sealing cover, the sealing cover covers the peripheral side of the conductive component exposed on the outer part of the electrolytic chamber, the sealing cover is provided with a through hole, and the docking head is provided on the The sealing cover can be at least partially exposed from the via hole.
  • the conductive component includes a first conductive member and a second conductive member, the first conductive member is connected to the conductive telescopic member and is spaced apart from the electrode member. , the second conductive member connects the first conductive member and the electrode member.
  • the second conductive member is configured as a fastener
  • the first conductive member is provided with a first mounting hole
  • the electrolytic chamber is provided with a first mounting hole.
  • the electrode member is provided with a third mounting hole, and the fastener is inserted into the first mounting hole, the second mounting hole and the third mounting hole.
  • the electrolysis assembly further includes a separator, the separator and the two electrode members are arranged in a stacked manner, and the separator is located between the two electrode members.
  • This application also provides a liquid storage tank, including:
  • the liquid storage tank body includes a first tank and a second tank that are detachably connected, and the bottom of the first tank is provided with an opening;
  • valve body assembly located on the first box and located at the opening
  • the electrolytic component is located on the second box;
  • valve body assembly is accommodated in the gap of the electrolytic assembly.
  • This application also provides a cleaning device, including the liquid storage tank.
  • the electrolysis assembly provided by this application includes a bracket assembly and at least two electrode members.
  • the electrolysis assembly can be used in a liquid storage tank to electrolyze the liquid in the liquid storage tank to make the liquid cleaner; the conduction through the bracket assembly
  • the structure can connect the electrode member to the external power supply equipment, so that the electrode member can realize electrolysis; the electrode member can be installed and fixed in the liquid storage tank through the installation structure of the bracket assembly, and there is a gap on at least one circumferential side of the installation structure of the bracket assembly. , through the gap, the valve body component can be accommodated in the gap, so that the electrolysis component can be closer to the bottom opening of the liquid storage tank, so that the electrolyzable liquid level is lower and the electrolysis efficiency is higher.
  • Figure 1 is a schematic structural diagram of an embodiment of a liquid storage tank provided by the present application.
  • Figure 2 is a schematic diagram of the exploded structure of the liquid storage tank in Figure 1;
  • Figure 3 is a partial cross-sectional structural diagram of the liquid storage tank in Figure 1;
  • FIG 4 is a schematic structural diagram of the valve body assembly and the electrolytic assembly in Figure 1;
  • Figure 5 is a schematic cross-sectional structural view of the valve body assembly and the electrolytic assembly in Figure 4;
  • Figure 6 is an exploded structural diagram of the valve body assembly and the electrolytic assembly in Figure 4.
  • FIG. 7 is a schematic structural diagram of the valve body assembly and the electrolytic assembly in FIG. 4 from another perspective.
  • 100-liquid storage tank 100-liquid storage tank; 1-liquid storage tank body; 11-first tank body; 111-opening; 12-second tank body; 2-valve body assembly; 3-electrolytic assembly; 31-bracket assembly; 311-installation Structure; 3111-electrolysis chamber; 3111a-notch; 3112-cover; 312-conduction structure; 3121-conduction component; 3121a-first conduction member; 3121b- Second conductive member; 3122-butt component; 3122a-butt joint; 3122b-conducting telescopic member; 3122c-sealing cover; 32-electrode member; 33-partition plate.
  • the directional words used such as “upper, lower, top, and bottom” usually refer to the direction shown in the drawings, or to the vertical or vertical position of the component itself. Vertically or in the direction of gravity; similarly, for ease of understanding and description, “inside and outside” refers to the inside and outside relative to the outline of each component itself, but the above directional terms are not used to limit this application.
  • An embodiment of the present application provides an electrolysis component 3.
  • the electrolysis component 3 can be used in a liquid storage tank 100 to perform electrolysis on the liquid stored in the liquid storage tank 100, so that the cleanliness of the liquid is higher. It can be understood that the electrolytic component 3 is not limited to use in the liquid storage tank 100, but can also be used in other containers for storing liquid. For convenience of explanation, the specific structure of the electrolytic assembly 3 will be described below, taking the electrolytic assembly 3 being applied in the liquid storage tank 100 as an example.
  • the electrolytic assembly 3 includes a bracket assembly 31 and at least two electrode members 32.
  • the bracket assembly 31 includes a mounting structure 311 and a conductive structure 312.
  • the mounting structure 311 can be used to connect to the liquid storage tank 100.
  • a notch 3111a is provided on at least one circumferential side of the mounting structure 311.
  • At least two electrode members 32 are disposed on the mounting structure 311 and are electrically connected to the conductive structure 312 respectively.
  • the conductive structure 312 is made of conductive material, and the conductive structure 312 can connect the electrode member 32 with the external power supply equipment, so that the electrode member 32 can realize electrolysis.
  • the electrolytic assembly 3 When the electrolytic assembly 3 is installed in the liquid storage tank 100, the electrolytic assembly 3 is disposed close to the opening 111 at the bottom of the liquid storage tank 100, and when the valve body assembly 2 is provided at the opening 111 of the liquid storage tank 100, the above-mentioned notch 3111a can be used to accommodate the valve body assembly 2 so that the electrolytic assembly 3 can be closer to the liquid storage tank With the bottom opening 111 of 100, the electrolyte level of the electrolytic component 3 is lower, so the electrolysis efficiency is higher.
  • the valve body assembly 2 at the bottom of the liquid storage tank 100 is located in the gap 3111a of the electrolytic assembly 3, so that the electrolytic assembly 3 half-covers the valve body assembly 2.
  • the installation position of the electrolytic assembly in the liquid storage tank 100 can be significantly reduced, thereby allowing the electrolytic assembly 3 to electrolyze the liquid at the bottom of the liquid storage tank 100 , to improve the electrolysis efficiency of the electrolysis component 3.
  • the overflow port of the valve body assembly 2 is disposed on the side of the valve body assembly 2 and faces the electrolytic component 3, so that the overflow port of the valve body assembly 2 is disposed correspondingly to the electrolytic component 3.
  • the liquid after electrolysis directly flows out through the valve body assembly 2 (or enters the liquid storage tank 100 from the valve body assembly 2 and flows directly to the electrolysis assembly 3), which further improves the electrolysis of the liquid in the liquid storage tank 100 by the electrolysis assembly. efficiency.
  • the installation structure 311 includes an electrolytic chamber 3111 and a cover 3112. At least two electrode members 32 are provided in the electrolytic chamber 3111.
  • the electrolysis chamber 3111 is arranged in a concave shape and has an upwardly facing opening.
  • the cover 3112 is disposed at the opening of the electrolysis chamber 3111 to wrap the electrode component 32 in the cavity of the electrolysis chamber 3111. 32 for protection.
  • at least a part of the electrolytic chamber 3111 is arranged in a "U" shape to form the above-mentioned notch 3111a.
  • the opening of the "U"-shaped part is arranged toward one side laterally, and the electrode member 32 is located on the side of the notch 3111a.
  • the electrode member 32 of the electrolytic assembly 3 can be arranged around the circumference of the valve body assembly 2, so that the electrolyte on the circumference of the opening 111 is more evenly distributed.
  • the electrolysis chamber 3111 includes a first cavity arranged in a "U" shape and a second cavity connected with the first cavity. The second cavity protrudes from the "U" of the first cavity.
  • the connecting section is located on the side opposite to the "U"-shaped opening, and the opening of the first cavity and the opening of the second cavity are arranged vertically, and the cover 3112 is arranged in an "L" shape. , to cover the opening of the first cavity and the opening of the second cavity, so that the overall length, width and height of the installation structure 311 are more uniform and the structure is more compact.
  • one of the two electrode members 32 may be a positive electrode member and the other may be a negative electrode member, so that electrolysis can be achieved in a conductive state.
  • the two electrode members 32 cannot be connected to each other, but are connected to the positive and negative poles of the external power supply equipment through different conductive structures 312.
  • the positive and negative poles of the pool are connected.
  • the two conductive structures 312 may be arranged differently, or the two conductive structures 312 may be arranged in a consistent manner. Preferably, the two conductive structures 312 are arranged in the same form, which is more convenient to manufacture. As shown in Figure 5 and Figure 6, the two conductive structures 312 can both include a conductive component 3121 and a docking component 3122.
  • the conductive component 3121 and its corresponding electrode member 32 are connected, the docking component 3122 electrically connects the conductive component 3121 and the external power supply equipment, and is connected to the external power supply device through the docking component 3122, and then conducts the electrode component 32 and the docking component 3122 through the conductive component 3121, thereby making the electrode component 32 can be charged with electricity, the electrode member 32 can be arranged in a sheet shape to be laid flat in the first cavity, the docking component 3122 is provided on the second cavity, and the conductive component 3121 is connected to the first cavity and the second cavity. Since the distance between the butting component 3122 and the electrode component 32 is short, the conductive component 3121 can be set shorter, thereby reducing the ineffective loss on the conductive component 3121 to relatively improve the electrolysis efficiency.
  • the above-mentioned conductive component 3121 can not only be used for electrical conduction, but also can be used to fix the corresponding electrode component 32 to fix the electrode component 32 in the electrolytic chamber 3111, thereby reducing the number of components, saving costs, and facilitating assembly.
  • the conductive member 3121 includes a first conductive member 3121a and a second conductive member 3121b, wherein the first conductive member 3121a is connected to the docking member 3122, and the second conductive member 3121b is connected to the docking member 3122.
  • the first conductive member 3121a and the electrode member 32, and the second conductive member 3121b are used to electrically connect the first conductive member 3121a and the electrode member 32, and at the same time, the first conductive member 3121a and the electrode member 32 can be fixed to the electrolytic chamber 3111. on, making assembly easier.
  • the second conductive member 3121b is configured as a fastener, such as a connecting bolt, a connecting screw, etc.
  • a first mounting hole is provided on the first conductive member 3121a
  • a first mounting hole is provided on the electrolytic chamber 3111 corresponding to the first mounting hole.
  • the second mounting hole is provided with a third mounting hole on the electrode member 32, and the fastener is penetrated in the first mounting hole, the second mounting hole and the third mounting hole, thereby connecting the first conductive member 3121a and the electrode member 32 is connected to the electrolytic chamber 3111.
  • the fastener is made of conductive material, and realizes electrical conduction while connecting with the first conductive member 3121a and the electrode member 32, avoiding the need for additional connection structures, saving costs, and facilitating assembly.
  • the docking part 3122 includes a docking joint 3122a and a conductive telescopic part 3122b, the docking joint 3122a is provided on the electrolytic chamber 3111, and At least part of it is exposed outside the electrolytic chamber 3111.
  • the part exposed outside the electrolytic chamber 3111 is connected to the external power supply equipment through the butt joint 3122a.
  • the two ends of the conductive telescopic part 3122b along its telescopic direction are respectively connected to the conductive component 3121 and the pair.
  • the joint 3122a allows the butt joint 3122a to float and stretch under the telescopic action of the conductive telescopic member 3122b, thereby tightly connecting with the external power supply equipment and ensuring connection reliability.
  • the conductive telescopic member 3122b may be a conductive telescopic rod or a conductive elastic member.
  • the conductive telescopic member 3122b can be a telescopic spring
  • the first conductive member 3121a is arranged in an "L"-shaped sheet shape
  • the first conductive member 3121a is plugged into the connection between the first cavity and the second cavity
  • the first end of the first conductive member 3121a extends toward the bottom of the second cavity and is partially exposed outside the electrolytic chamber 3111.
  • the conductive telescopic member 3122b and the first conductive member 3121a are exposed outside the electrolytic cavity 3111.
  • the two electrode members 32 include a first electrode sheet and a second electrode sheet.
  • the first electrode sheet The first electrode sheet and the second electrode sheet are arranged in a sheet shape along the transverse direction.
  • the first electrode sheet and the second electrode sheet are stacked at intervals along the up and down direction.
  • the first electrode sheet and the second electrode sheet are arranged along the horizontal direction.
  • the direction of the cross section of the liquid storage tank 100 is set flat, so that the electrolysis area is larger and the electrolysis capacity is stronger.
  • first electrode piece and the second electrode piece are both provided with avoidance holes, so that the electrode pieces can avoid their non-corresponding fasteners and prevent the two electrode pieces 32 from being connected.
  • the butt joint 3122a is also disposed outside the electrolytic chamber 3111.
  • the butt component 3122 also includes a sealing cover 3122c, and the sealing cover 3122c covers the conductive component 3121. It is exposed on the peripheral side of the outer part of the electrolytic chamber 3111, and the sealing cover 3122c is provided with a through hole.
  • the butt joint 3122a is provided in the sealing cover 3122c, and at least part of it can be exposed through the through hole, so as to connect with the external power supply equipment.
  • the sealing cover 3122c is detachably provided on the outside of the electrolytic chamber 3111.
  • a plurality of latching protrusions can be provided on the outside of the electrolytic chamber 3111, and a plurality of latching grooves are provided on the sealing cover 3122c.
  • the plurality of slots cooperate one by one to fix the sealing cover 3122c on the outside of the electrolytic chamber 3111 and wrap the docking component 3122 to effectively protect the docking component 3122.
  • the electrolytic assembly 3 also includes a separator 33 , the separator 33 and the two electrode members 32 are stacked, and the separator 33 is located between the two electrode members 32 to avoid two Each electrode member 32 deforms and is connected after long-term use.
  • the partition 33 is made of non-conductive material, which can effectively isolate the two electrode members 32.
  • the partition 33 is also provided with escape holes for the fasteners to pass through, so that the fasteners can separate the two electrodes.
  • the member 32, the partition 33 and the first conductive member 3121a are all fixed in the electrolytic chamber 3111, and are easy to assemble.
  • a plurality of through holes are provided on the electrolysis chamber 3111 , the cover 3112 and the partition 33 so that the liquid in the liquid storage tank 100 can enter the electrolysis chamber 3111 and achieve electrolysis through the two electrode members 32 .
  • the above-mentioned electrode member 32 and the first conductive member 3121a can both be made of titanium sheets or other inert metal materials, which have stronger oxidation resistance and extend the service life of the electrolytic assembly 3 components.
  • Table 1 is the chlorine content in the liquid measured using the traditional electrolysis scheme for electrolysis.
  • Table 2 is the chlorine content in the liquid measured using the electrolysis component 3 provided by the present application.
  • the chlorine content table, Table 1 and Table 2 are based on the detection in the same experimental environment. As the electrolysis time increases, the chlorine gas generated in the liquid storage tank will gradually increase. As the chlorine gas dissolves into the liquid, the amount of chlorine in the liquid will decrease. The chlorine content will gradually increase, making the disinfection and sterilization effect of the electrolyzed liquid better.
  • the concentration of chlorine content in the liquid after electrolysis by the traditional electrolysis scheme is 0.52ppm
  • the concentration of chlorine in the liquid after electrolysis for 3 minutes by the electrolysis component 3 provided by the application is 0.52ppm
  • the concentration of chlorine in the liquid after electrolysis for 3 minutes by the electrolysis component 3 provided by the application is The concentration of chlorine content
  • the electrolysis efficiency is increased by nearly 13 times
  • the electrolysis component 3 provided by the application has an electrolysis efficiency that is nearly 5 times increased compared to the traditional electrolysis solution
  • the electrolysis component 3 provided by this application has an electrolysis efficiency that is nearly doubled compared to the traditional electrolysis solution
  • the electrolysis component 3 provided by this application has an electrolysis efficiency that is higher than the traditional electrolysis solution.
  • the liquid storage tank 100 includes a liquid storage tank body 1, a valve body assembly 2 and the above-mentioned electrolytic assembly 3.
  • the liquid storage tank body 1 includes a first box 11 and a second box 12 that are detachably connected. An opening 111 is provided at the bottom of the first box 11 for liquid to enter or drain out of the liquid storage tank body 1.
  • the valve body assembly 2 is located at On the first box 11 and located at the opening 111, the valve assembly 2 is used to open or close the opening 111 to control the entry or discharge of liquid; the electrolytic component 3 is located on the second box 12, at the first box 11 is connected to the second tank 12, the valve body assembly 2 is accommodated in the gap 3111a of the electrolytic assembly 3, so that the electrolytic assembly 3 can be closer to the bottom opening 111 of the liquid storage tank body 1, and the electrolytic assembly 3 can perform electrolysis.
  • the liquid level is lower, so the electrolysis efficiency is higher, and the valve body assembly 2 is set on the first box 11, and the electrolysis assembly 3 is set on the second box 12.
  • valve body assembly 2 and the electrolysis assembly 3 are respectively The assembly is fixed, and the openings 111 of the first box 11 and the second box 12 are larger, making the installation more convenient.
  • the valve body assembly 2 can automatically enter In the gap 3111a of the electrolytic component 3, assembly is faster.
  • the above-mentioned splicing and assembly method of the first box 11 and the second box 12 also facilitates the staff to install the first valve body assembly 2 on the first box 11 in a larger operating space, and to install the electrolytic assembly. 3 is provided on the second box 12, which avoids the inconvenience of installing the valve body assembly 2 and the electrolytic assembly 3 in a small space, further improving the assembly efficiency of the liquid storage tank 100.
  • the first box 11 and the second box 12 are arranged oppositely in the transverse direction.
  • the opening 111 is located at the bottom of the first box 11.
  • the first box 11 and the second box 12 are arranged opposite each other.
  • the two boxes 12 can be arranged opposite each other along the left and right directions, or oppositely arranged along the front and rear directions.
  • the notch 3111a is located in the direction in which the electrolytic component 3 is connected. The front end allows the valve body assembly 2 to extend into the gap 3111a, making installation easy.
  • a snap-in groove can be provided on the peripheral side of the opening 111 .
  • the valve body assembly 2 includes a valve body and a valve core located in the valve body.
  • the valve body is hollow and can be snap-on.
  • a water hole is provided on the peripheral side of the valve body.
  • the liquid in the liquid storage tank 100 can enter the valve body through the water hole.
  • the valve core It is movably provided in the valve body to have an open state of opening the opening 111 and a closed state of closing the opening 111. In the open state, liquid can flow into the valve body from the opening 111 or the liquid in the liquid storage tank 100 can discharged from the opening 111.
  • one of the electrolytic component 3 and the second box 12 is provided with a mounting part, and the other is provided with a mating part that matches the mounting part.
  • the mounting part and the mating part are mated, so that the electrolytic component is 3 is fixed on the second box 12 to facilitate the disassembly and assembly of the electrolytic component 3.
  • the installation part can be configured as a hook
  • the matching part can be configured as a buckle part.
  • the hook and the buckle part are snap-fitted, making installation and disassembly more convenient.
  • the mounting part and the mating part may be configured as corresponding screw holes, and the electrolytic component 3 and the second box 12 are connected by threading parts, such as screws, through the screw holes. This makes the connection between the electrolytic component 3 and the second box 12 more reliable.
  • An embodiment of the present application provides a cleaning equipment.
  • the cleaning equipment may be a floor washing machine, a floor mopping machine, or an integrated sweeping and mopping machine.
  • the cleaning equipment includes the above-mentioned liquid storage tank 100.
  • the liquid storage tank 100 can be used to store clean water or to store inhaled sewage.
  • the chlorine content in the clean water can be reduced through the electrolysis assembly 3. Higher, so when the ground is cleaned with this cleaning water, the cleaning effect of the cleaning equipment is better.
  • the liquid storage tank 100 is used to store inhaled sewage, the sewage can be electrolytically sterilized to facilitate reuse and save energy.
  • the liquid storage tank body 1 is preferably in the shape of a long column to be installed on the body of the cleaning equipment and adapt to the shape of the cleaning equipment body. Moreover, the long columnar liquid storage tank body 1 has a larger storage capacity and is open at the same time. The water pressure at 111 is greater and the liquid output rate is higher, which can improve the cleaning ability of the cleaning equipment.
  • the cleaning equipment proposed in this embodiment is a floor washing machine.

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  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
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Abstract

一种电解组件(3)、储液箱(100)及清洁设备。电解组件(3)用于储液箱(100),储液箱(100)底部的开口(111)处设置有阀体组件(2),电解组件(3)包括支架组件(31)和至少两个电极件(32),支架组件(31)包括安装结构(311)和传导结构(312),安装结构(311)的至少一周侧设置有缺口(3111a),缺口(3111a)用于容纳阀体组件(2);至少两个电极件(32)设置于安装结构(311)上,并分别电连接于传导结构(312)。在电解组件(3)安装于储液箱(100)内时,使得阀体组件(2)可容纳于电解组件(3)的缺口(3111a)内,电解组件(3)可更靠近储液箱(100)的底部开口(111),从而可电解的液位更低,电解效率更高。

Description

电解组件、储液箱及清洁设备
本公开要求如下专利申请的优先权:于2022年5月9日提交中国专利局、申请号为CN202221090023.2、发明名称为“电解组件、储液箱及清洁设备”的中国专利申请,上述专利申请的全部内容通过引用结合在本公开中。
技术领域
本申请涉及清洁的技术领域,具体涉及一种电解组件、储液箱及清洁设备。
背景技术
传统的清洁设备,如拖地机、洗地机等,通过设置在其内的储液箱可提供清洁用水或存储污水。为了提高清洁度,通常会在储液箱内设有电解组件,用于对储液箱内的水或其他液体进行电解,使得储液腔内的液体更干净,从而清洁设备的清洁度更好。而传统的电解组件在储液箱内的设置位置较高,电解组件与储液箱的箱底之间存在一定距离,当储液箱内的液体量较少,液位较低时,电解组件无法对储液箱底部处的液体进行电解,导致电解效率较低,用户使用体验感不好。
发明内容
因此,本申请所要解决的技术问题是传统的电解组件的结构使得电解组件与储液箱的箱底之间存在一定距离,导致电解组件无法对箱底处的液体进行电解,电解效率较低。
为解决上述技术问题,本申请提供一种电解组件,用于储液箱,所述储液箱底部的开口处设置有阀体组件,所述电解组件包括:
支架组件,所述支架组件包括安装结构和传导结构,所述安装结构的至少一周侧设置有缺口,所述缺口用于容纳所述阀体组件;
至少两个电极件,设置于所述安装结构上,并分别电连接于所述传导结构。
可选地,所述的电解组件,所述安装结构包括电解腔、以及盖设于所述 电解腔的盖体,所述电解腔的至少一部分呈“U”型设置以形成所述缺口;至少两个所述电极件设于所述电解腔内,并位于所述缺口的侧方。
可选地,所述的电解组件,所述电极件设有两个,所述传导结构设有两个、两个所述传导结构与两个所述电极件呈一一对应;各所述传导结构包括:
传导部件,与对应的所述电极件相连接,并用于固定所述对应的所述电极件;
对接部件,电连接所述传导部件和外部供电设备。
可选地,所述的电解组件,各所述对接部件包括:
对接头,设于所述电解腔上、且至少部分露设于所述电解腔外;
导接伸缩件,沿其伸缩方向的两端分别连接所述传导部件和所述对接头。
可选地,所述的电解组件,所述传导部件的至少部分露设于所述电解腔的外侧,所述对接头设于所述电解腔的外侧;
所述对接部件还包括密封盖,所述密封盖罩设于所述传导部件露设于所述电解腔外侧部分的周侧,所述密封盖上设有过孔,所述对接头设于所述密封盖内、且至少部分可自所述过孔显露出。
可选地,所述的电解组件,所述传导部件包括第一传导件和第二传导件,所述第一传导件与所述导接伸缩件相连接、且与所述电极件呈间隔设置,所述第二传导件连接所述第一传导部件和所述电极件。
可选地,所述的电解组件,所述第二传导件设置为紧固件,所述第一传导件上设有第一安装孔,所述电解腔上设有与所述第一安装孔相对应的第二安装孔,所述电极件上设有第三安装孔,所述紧固件穿设于所述第一安装孔、所述第二安装孔和所述第三安装孔内。
可选地,所述的电解组件,所述电解组件还包括隔板,所述隔板和两个所述电极件呈层叠设置、且所述隔板位于两个所述电极件之间。
本申请还提供一种储液箱,包括:
储液箱本体,包括呈可拆卸连接的第一箱体和第二箱体,所述第一箱体的底部设有开口;
阀体组件,设于所述第一箱体上,位于所述开口处;
所述的电解组件,所述电解组件设于所述第二箱体上;
在所述第一箱体和所述第二箱体相连接的情况下,所述阀体组件容设于所述电解组件的缺口内。
本申请还提供一种清洁设备,包括所述的储液箱。
本申请提供的技术方案,具有以下优点:
本申请提供的电解组件,包括有支架组件和至少两个电极件,电解组件可用于储液箱内,对储液箱内的液体进行电解,使得液体的洁净度更好;通过支架组件的传导结构可将电极件与外部供电设备导通,使得电极件可实现电解;通过支架组件的安装结构可将电极件安装固定于储液箱内,而且支架组件的安装结构的至少一周侧设有缺口,通过该缺口从而使得阀体组件可容纳于缺口内,使得电解组件可更靠近储液箱的底部开口,从而可电解的液位更低,电解效率更高。
附图说明
为了更清楚地说明本申请具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见,下面描述中的附图是本申请的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请提供的一种储液箱的一实施例的结构示意图;
图2为图1中所述储液箱的分解结构示意图;
图3为图1中所述储液箱的局部剖面结构示意图;
图4为图1中所述阀体组件和所述电解组件的结构示意图;
图5为图4中所述阀体组件和所述电解组件的剖面结构示意图;
图6为图4中所述阀体组件和所述电解组件的分解结构示意图;
图7为图4中所述阀体组件和所述电解组件的另一视角的结构示意图。
附图标记说明:
100-储液箱;1-储液箱本体;11-第一箱体;111-开口;12-第二箱体;2-阀体组件;3-电解组件;31-支架组件;311-安装结构;3111-电解腔;3111a-缺口;3112-盖体;312-传导结构;3121-传导部件;3121a-第一传导件;3121b- 第二传导件;3122-对接部件;3122a-对接头;3122b-导接伸缩件;3122c-密封盖;32-电极件;33-隔板。
具体实施方式
下面将结合附图对本申请的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。下文中将参考附图并结合实施例来详细说明本申请。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
需要说明的是,本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
在本申请中,在未作相反说明的情况下,使用的方位词如“上、下、顶、底”通常是针对附图所示的方向而言的,或者是针对部件本身在竖直、垂直或重力方向上而言的;同样地,为便于理解和描述,“内、外”是指相对于各部件本身的轮廓的内、外,但上述方位词并不用于限制本申请。
本申请一本实施例提供一种电解组件3,该电解组件3可用于储液箱100内,对储液箱100内存储的液体进行电解,使得液体的洁净度更高。可以理解的是,该电解组件3不仅限于在储液箱100内使用,还可用于存储液体的其他容器内。为方便说明,下述以电解组件3适用于储液箱100内为例,对电解组件3的具体结构进行说明。
结合图3和图4,电解组件3包括有支架组件31、以及至少两个电极件32,支架组件31包括有安装结构311和传导结构312,安装结构311可用于与储液箱100相连接,以便于将电解组件3固定于储液箱100内,在安装结构311的至少一周侧设置有缺口3111a,至少两个电极件32设置于安装结构311上,并分别电连接于传导结构312,其中,传导结构312为导电性材质制成,传导结构312可将电极件32与外部供电设备导通,使得电极件32可实现电解。在电解组件3安装于储液箱100内的情况下,电解组件3靠近储液箱100的底部的开口111设置,且在储液箱100的开口111处设有阀体组件2时,上述缺口3111a可用于容纳阀体组件2,使得电解组件3可更靠近储液箱 100的底部开口111,电解组件3的电解液位更低,从而电解效率更高。
具体的,在电解组件3应用到储液箱100时,储液箱100底部的阀体组件2位于电解组件3的缺口3111a内,进而使得电解组件3半包阀体组件2设置。这样,相较于相关技术中电解组件位于阀体组件上方的布置形式,可以明显降低电解组件在储液箱100内的安装位置,进而使得电解组件3可以对储液箱100底部的液体进行电解,以提升电解组件3的电解效率。
更进一步的,阀体组件2的过流口设在阀体组件2的侧方,并面向电解组件3设置,进而使得阀体组件2的过流口与电解组件3对应设置。如此,使得经过电解后液体直接经过阀体组件2流出(或者是从阀体组件2进入到储液箱100直接流向电解组件3),也进一步提升了电解组件对于储液箱100内液体的电解效率。
优选地,结合图5和图6所示,安装结构311包括有电解腔3111及盖体3112,至少两个电极件32设于电解腔3111内,在电解组件3安装于储液箱100内正常使用时,电解腔3111呈内凹状设置、且具有朝上设置的腔口,盖体3112盖设于电解腔3111的腔口处,将电极件32包裹于电解腔3111的腔体内,对电极件32进行保护。其中,电解腔3111的至少一部分呈“U”型设置以形成上述的缺口3111a,“U”型部分的敞口朝横向的一侧设置,电极件32位于缺口3111a的侧方,在电解组件3安装于储液箱100内时,电解组件3的电极件32可围设于阀体组件2的周侧,使得开口111周侧的电解液的分布更均匀。具体地,电解腔3111包括有呈“U”型设置的第一腔体、以及与第一腔体相连通的第二腔体,第二腔体凸出设于第一腔体的“U”型连接段处、以位于与“U”字型的敞口相对的一侧,且第一腔体的腔口和第二腔体的腔口呈垂直设置,盖体3112呈“L”型设置,以盖设于第一腔体的腔口和第二腔体的腔口上,使得安装结构311的整体长宽高更均匀,结构更紧凑。
优选地,如图6中所示,电极件32设有两个,两个电极件32其中一个可为正电极件,另一个为负电极件,从而在导电状态下,可实现电解。两个电极件32不可相连接,而是通过不同的传导结构312与外部供电设备的正负极相导接,具体地,传导结构312设有两个,两个传导结构312与两个电极件32呈一一对应设置,使得两个电极件32可分别与外部供电设备,如蓄电 池的正极和负极相导接。
两个传导结构312的设置形式可呈差异设置,或者,两个传导结构312的设置形式也可呈一致设置。优选地,两个传导结构312的设置形式一致,更方便制作,结合图5和图6所示,两个传导结构312可均包括传导部件3121和对接部件3122,传导部件3121与其对应的电极件32相连接,对接部件3122电连接传导部件3121和外部供电设备,通过对接部件3122与外部供电调备相导接,再通过传导部件3121使得电极件32与对接部件3122导通,从而使得电极件32上可带有电量,电极件32可呈片状设置,以平铺设于第一腔体内,对接部件3122设于第二腔体上,传导部件3121连接于第一腔体和第二腔体之间,由于对接部件3122和电极件32之间的距离较短,因此传导部件3121的可设置更短,从而可减少传导部件3121上的无效损耗,以相对提高电解效率。
而且,上述传导部件3121不仅可用于电传导,而且传导部件3121还可用于固定与其对应的电极件32,以将电极件32固定于电解腔3111内,进而减少部件量,节约成本,且便于组装。优选地,结合图5至图7中所示,传导部件3121包括有第一传导件3121a和第二传导件3121b,其中,第一传导件3121a与对接部件3122相连接,第二传导件3121b连接第一传导件3121a和电极件32,第二传导件3121b用于与第一传导件3121a和电极件32相电连接的同时,可将第一传导件3121a和电极件32均固定于电解腔3111上,从而组装更方便。
优选地,第二传导件3121b设置为紧固件,如连接螺栓、连接螺钉等,在第一传导件3121a上设有第一安装孔,在电解腔3111上设有与第一安装孔相对应的第二安装孔,在电极件32上设有第三安装孔,紧固件穿设于第一安装孔、第二安装孔和第三安装孔内,从而将第一传导件3121a、电极件32和电解腔3111相连接。其中,紧固件为导电材质制成,在与第一传导件3121a和电极件32相连接的同时实现电传导,避免需要额外设置连接结构,节约成本,且便于组装。
对于对接部件3122而言,优选地,如图5中所示,对接部件3122包括有对接头3122a和导接伸缩件3122b,对接头3122a设于电解腔3111上,且 至少部分露设于电解腔3111外,通过对接头3122a露设于电解腔3111外的部分从而与外部供电设备相对接,导接伸缩件3122b沿其伸缩方向的两端分别连接传导部件3121和对接头3122a,使得对接头3122a在导接伸缩件3122b的伸缩作用下可浮动伸缩,从而与外部供电设备对接紧密,保证连接可靠性。其中,导接伸缩件3122b可为导电的伸缩杆,或是导电的弹性件。
优选地,导接伸缩件3122b可为伸缩弹簧,第一传导件3121a呈“L”型的片状设置,第一传导件3121a插接于第一腔体和第二腔体的连接处,且第一传导件3121a的第一端朝向第二腔体的腔底方向延伸、且有部分露设于电解腔3111的外侧,导接伸缩件3122b与第一传导件3121a露设于电解腔3111外的部分相抵接,以实现导接;第一传导件3121a的第二端延伸至第一腔体的腔底外侧,两个电极件32包括第一电极片和第二电极片,第一电极片和第二电极片均沿横向呈片状设置,第一电极片和第二电极片沿上下方向呈间隔层叠设置,在安装于储液箱100内时,第一电极片和第二电极片沿储液箱100的横截面的方向平展设置,使得电解面积更大,从而电解能力更强。紧固件可对应设置有两个,其中一个紧固件连接对应的一第一传导件3121a和第一电极片,另一个紧固件连接对应的另一个第一传导件3121a和第二电极片,且第一电极片和第二电极片上均设有避让孔,使得电极片可与其不对应的紧固件相避位,避免两个电极件32相导接。
而且,在传导部件3121的至少部分露设于电解腔3111的外侧时,对接头3122a也设置于电解腔3111的外侧,对接部件3122还包括有密封盖3122c,密封盖3122c罩设于传导部件3121露设于电解腔3111的外侧部分的周侧,密封盖3122c上设有过孔,对接头3122a设于密封盖3122c内,且至少部分可自过孔显露出,从而与外部供电设备相对接,密封盖3122c呈可拆卸地设于电解腔3111的外侧,具体地,在电解腔3111的外侧可设有多个卡凸,在密封盖3122c上设有多个卡槽,通过多个卡凸和多个卡槽一一配合,从而将密封盖3122c固定于电解腔3111的外侧,并将对接部件3122进行包裹,有效保护对接部件3122。
进一步地,结合图5和图6所示,电解组件3还包括有隔板33,隔板33和两个电极件32呈层叠设置,且隔板33位于两个电极件32之间,以避免两 个电极件32在长期使用后变形相导接。隔板33为不导电材质制成,可有效将两个电极件32进行隔离,在隔板33上还设有供上述紧固件穿设的避位孔,使得紧固件可将两个电极件32、隔板33及第一传导件3121a均固定于电解腔3111内,组装方便。
可以理解的是,在电解腔3111、盖体3112及隔板33上均设有多个通孔,使得储液箱100内的液体可进入电解腔3111内,通过两个电极件32实现电解。
上述电极件32和第一传导件3121a可均为钛片或其它惰性金属材质,抗氧化能力更强,以延长电解组件3组件的使用寿命。
而且,可参考如下表一和表二,表一为使用传统电解方案进行电解而测得的液体中的氯含量表,表二为使用本申请提供的电解组件3进行电解而测得的液体中的氯含量表,表一和表二是基于相同实验环境进行的检测,随着电解时间的增加,储液箱内产生的氯气会逐渐增加,在随着氯气溶入液体中后,液体中的氯含量会逐渐增加,从而使得电解后的液体的消毒除菌效果更好。从表图数据可看出,在同样进行电解3分钟时长时,经传统电解方案电解后的液体中的氯含量的浓度为0.52ppm,而本申请提供的电解组件3电解3分钟后的液体中的氯含量的浓度为6.95ppm,电解效率将近提高了13倍;而在同样电解5分钟后,本申请提供的电解组件3相对于传统的电解方案,电解效率提高了将近5倍;在同样电解8分钟后,本申请提供的电解组件3相对于传统的电解方案,电解效率提高了将近2倍;而在同样电解15分钟后,本申请提供的电解组件3相对于传统的电解方案,电解效率也提高了将近2倍多。因此,基于表图的实验数据可以看出,在相同实验环境下,同等时长下,本申请提供的电解组件3的电解效率相对于传统方案提高了2到13倍,电解效率得到了显著提升。
表一
表二
本申请一实施例提供一种储液箱100,如图1和图2中所示,该储液箱100包括储液箱本体1、阀体组件2及上述的电解组件3,储液箱本体1包括呈可拆卸连接的第一箱体11和第二箱体12,在第一箱体11的底部设有开口111,以供液体进入或排出储液箱本体1,阀体组件2设于第一箱体11上,且位于开口111处,阀体组件2用于开启或关闭开口111,以控制液体的进入或排出;电解组件3设于第二箱体12上,在第一箱体11和第二箱体12相连接的情况下,阀体组件2容设于电解组件3的缺口3111a内,使得电解组件3可更靠近储液箱本体1的底部开口111,电解组件3可电解的液位更低,从而电解效率更高,而且将阀体组件2设于第一箱体11上,将电解组件3设于第二箱体12上,阀体组件2和电解组件3分别进行组装固定,且第一箱体11和第二箱体12的开口111度较大,安装更为方便,当第一箱体11和第二箱体12相对接时,阀体组件2可自动进入电解组件3的缺口3111a内,组装更快捷。
并且,采用上述第一箱体11和第二箱体12拼接组装的方式,也便于工作人员在较大的操作空间内将第一阀体组件2设于第一箱体11上,将电解组件3设于第二箱体12上,避免了在狭小空间内安装阀体组件2和电解组件3的不便,进一步提升了储液箱100的装配效率。
具体地,第一箱体11和第二箱体12沿横向呈相对设置,当储液箱100正常工作时,开口111位于第一箱体11的底部,此时,第一箱体11和第二箱体12可沿左右方向呈相对设置,或是沿前后方向呈相对设置,在沿第一箱体11和第二箱体12相对接的方向上,缺口3111a位于电解组件3沿对接方向的前端,使得阀体组件2可伸入至缺口3111a内,安装方便。
其中,可结合图3所示,在开口111的周侧可设有卡接槽,阀体组件2包括阀体、以及位于阀体内的阀芯,阀体呈中空设置,以卡设于卡接槽内,阀体的周侧设有过水孔,储液箱100内的液体可自过水孔进入阀体内,阀芯 可移动地设于阀体内,以具有打开开口111的开启状态、以及封闭开口111的闭合状态,在开启状态时,开口111处可有液体液进阀体内或是储液箱100内的液体可自开口111排出。
进一步地,在电解组件3和第二箱体12其中之一上设有安装部,其中另一上设有与安装部相配合的配合部,通过安装部和配合部相配合,从而将电解组件3固定于第二箱体12上,以便于电解组件3的拆装。
在一实施方式中,安装部可设置为卡勾,配合部可设置为扣部,通过卡勾与扣部卡接配合,安装和拆卸均较为方便。
在另一实施方式中,安装部和配合部可设置为相对应地螺接孔,电解组件3和第二箱体12通过螺接件,如螺钉,穿设于螺接孔中从而进行连接,使得电解组件3和第二箱体12的连接更为可靠。
本申请一实施例提供一种清洁设备,该清洁设备可为洗地机、拖地机或扫拖一体机等。清洁设备包括有上述的储液箱100,储液箱100可用于存储清洁用水,或存储吸入的污水,当储液箱100用于存储清洁用水时,通过电解组件3可使得清洁水中的氯含量更高,从而通过该清洁用水清洁地面时,清洁设备的清洁效果更好。当储液箱100用于存储吸入的污水时,可对污水进行电解消毒,以便于再利用,更节约能源。
其中,储液箱本体1优选呈长柱型,以安装于清洁设备的本体上,与清洁设备本体的形状相适配,而且长柱型的储液箱本体1存储量更大,且同时开口111处的水压更大,出液率更高,可提高清洁设备的清洁能力。
具体的,本实施例提出的清洁设备为洗地机。
显然,上述所描述的实施例仅仅是本申请一部分的实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下,可以做出其它不同形式的变化或变动,都应当属于本申请保护的范围。

Claims (20)

  1. 一种电解组件,用于储液箱,其特征在于,所述储液箱底部的开口处设置有阀体组件,所述电解组件包括:
    支架组件,所述支架组件包括安装结构和传导结构,所述安装结构的至少一周侧设置有缺口,所述缺口用于容纳所述阀体组件;
    至少两个电极件,设置于所述安装结构上,并分别电连接于所述传导结构。
  2. 如权利要求1所述的电解组件,其特征在于,所述安装结构包括电解腔、以及盖设于所述电解腔的盖体,所述电解腔的至少一部分呈“U”型设置以形成所述缺口;至少两个所述电极件设于所述电解腔内,并位于所述缺口的侧方。
  3. 如权利要求2所述的电解组件,其特征在于,所述电极件设有两个,所述传导结构设有两个,两个所述传导结构与两个所述电极件呈一一对应;各所述传导结构包括:
    传导部件,与对应的所述电极件相连接,并用于固定所述对应的所述电极件;
    对接部件,电连接所述传导部件和外部供电设备。
  4. 如权利要求3所述的电解组件,其特征在于,各所述对接部件包括:
    对接头,设于所述电解腔上、且至少部分露设于所述电解腔外;
    导接伸缩件,沿其伸缩方向的两端分别连接所述传导部件和所述对接头。
  5. 如权利要求4所述的电解组件,其特征在于,所述传导部件的至少部分露设于所述电解腔的外侧,所述对接头设于所述电解腔的外侧;
    所述对接部件还包括密封盖,所述密封盖罩设于所述传导部件露设于所述电解腔外侧部分的周侧,所述密封盖上设有过孔,所述对接头设于所述密封盖内、且至少部分可自所述过孔显露出。
  6. 如权利要求4或5所述的电解组件,其特征在于,所述传导部件包括第一传导件和第二传导件,所述第一传导件与所述导接伸缩件相连接、且与所述电极件呈间隔设置,所述第二传导件连接所述第一传导部件和所述电极件。
  7. 如权利要求6所述的电解组件,其特征在于,所述第二传导件设置 为紧固件,所述第一传导件上设有第一安装孔,所述电解腔上设有与所述第一安装孔相对应的第二安装孔,所述电极件上设有第三安装孔,所述紧固件穿设于所述第一安装孔、所述第二安装孔和所述第三安装孔内。
  8. 如权利要求3至5中任一项所述的电解组件,其特征在于,所述电解组件还包括隔板,所述隔板和两个所述电极件呈层叠设置、且所述隔板位于两个所述电极件之间。
  9. 一种储液箱,其特征在于,包括:
    储液箱本体,包括呈可拆卸连接的第一箱体和第二箱体,所述第一箱体的底部设有开口;
    阀体组件,设于所述第一箱体上,位于所述开口处;
    电解组件,设于所述第二箱体上;
    所述电解组件包括:
    支架组件,所述支架组件包括安装结构和传导结构,所述安装结构的至少一周侧设置有缺口,所述缺口用于容纳所述阀体组件;
    至少两个电极件,设置于所述安装结构上,并分别电连接于所述传导结构,
    在所述第一箱体和所述第二箱体相连接的情况下,所述阀体组件容设于所述电解组件的缺口内。
  10. 如权利要求9所述的储液箱,其特征在于,所述安装结构包括电解腔、以及盖设于所述电解腔的盖体,所述电解腔的至少一部分呈“U”型设置以形成所述缺口;至少两个所述电极件设于所述电解腔内,并位于所述缺口的侧方。
  11. 如权利要求10所述的储液箱,其特征在于,所述电极件设有两个,所述传导结构设有两个、两个所述传导结构与两个所述电极件呈一一对应;各所述传导结构包括:
    传导部件,与对应的所述电极件相连接,并用于固定所述对应的所述电极件;
    对接部件,电连接所述传导部件和外部供电设备。
  12. 如权利要求11所述的储液箱,其特征在于,各所述对接部件包括:
    对接头,设于所述电解腔上、且至少部分露设于所述电解腔外;
    导接伸缩件,沿其伸缩方向的两端分别连接所述传导部件和所述对接头。
  13. 如权利要求12所述的储液箱,其特征在于,所述传导部件的至少部分露设于所述电解腔的外侧,所述对接头设于所述电解腔的外侧;
    所述对接部件还包括密封盖,所述密封盖罩设于所述传导部件露设于所述电解腔外侧部分的周侧,所述密封盖上设有过孔,所述对接头设于所述密封盖内、且至少部分可自所述过孔显露出。
  14. 如权利要求12或13所述的储液箱,其特征在于,所述传导部件包括第一传导件和第二传导件,所述第一传导件与所述导接伸缩件相连接、且与所述电极件呈间隔设置,所述第二传导件连接所述第一传导部件和所述电极件。
  15. 如权利要求14所述的储液箱,其特征在于,所述第二传导件设置为紧固件,所述第一传导件上设有第一安装孔,所述电解腔上设有与所述第一安装孔相对应的第二安装孔,所述电极件上设有第三安装孔,所述紧固件穿设于所述第一安装孔、所述第二安装孔和所述第三安装孔内。
  16. 如权利要求11至13中任一项所述的储液箱,其特征在于,所述电解组件还包括隔板,所述隔板和两个所述电极件呈层叠设置、且所述隔板位于两个所述电极件之间。
  17. 一种清洁设备,其特征在于,包括储液箱,所述储液箱包括:
    储液箱本体,包括呈可拆卸连接的第一箱体和第二箱体,所述第一箱体的底部设有开口;
    阀体组件,设于所述第一箱体上,位于所述开口处;
    电解组件,设于所述第二箱体上;
    所述电解组件包括:
    支架组件,所述支架组件包括安装结构和传导结构,所述安装结构的至少一周侧设置有缺口,所述缺口用于容纳所述阀体组件;
    至少两个电极件,设置于所述安装结构上,并分别电连接于所述传导结构,
    在所述第一箱体和所述第二箱体相连接的情况下,所述阀体组件容设于所述电解组件的缺口内。
  18. 如权利要求17所述的清洁设备,其特征在于,所述安装结构包括电解腔、以及盖设于所述电解腔的盖体,所述电解腔的至少一部分呈“U”型设置以形成所述缺口;至少两个所述电极件设于所述电解腔内,并位于所述缺口的侧方。
  19. 如权利要求18所述的清洁设备,其特征在于,所述电极件设有两个,所述传导结构设有两个,两个所述传导结构与两个所述电极件呈一一对应;各所述传导结构包括:
    传导部件,与对应的所述电极件相连接,并用于固定所述对应的所述电极件;
    对接部件,电连接所述传导部件和外部供电设备。
  20. 如权利要求19所述的清洁设备,其特征在于,各所述对接部件包括:
    对接头,设于所述电解腔上、且至少部分露设于所述电解腔外;
    导接伸缩件,沿其伸缩方向的两端分别连接所述传导部件和所述对接头。
PCT/CN2023/075194 2022-05-09 2023-02-09 电解组件、储液箱及清洁设备 WO2023216657A1 (zh)

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Publication number Priority date Publication date Assignee Title
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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016159445A1 (ko) * 2015-04-01 2016-10-06 주식회사 디앤티 전해세척수 생성장치가 구비된 물걸레 청소기
CN112741577A (zh) * 2019-10-31 2021-05-04 宁波方太厨具有限公司 一种清洗机及清洗方法
CN112932350A (zh) * 2021-03-31 2021-06-11 北京小狗吸尘器集团股份有限公司 一种清洁液容器及地面清洁设备
CN113069047A (zh) * 2021-03-31 2021-07-06 深圳市无限动力发展有限公司 具有电解功能的水箱及扫地机
CN113367623A (zh) * 2021-05-14 2021-09-10 美智纵横科技有限责任公司 清洁设备的基站及清洁系统
CN215626968U (zh) * 2021-09-09 2022-01-25 无锡睿米信息技术有限公司 一种净水箱及清洁设备
CN215687613U (zh) * 2020-11-25 2022-02-01 佛山市顺德区美的洗涤电器制造有限公司 洗碗机及水杯组件
CN215874485U (zh) * 2021-09-24 2022-02-22 苏州翰维工业设计有限公司 可自制消毒水的洗地机
CN217592757U (zh) * 2022-05-09 2022-10-18 追觅创新科技(苏州)有限公司 电解组件、储液箱及清洁设备

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016159445A1 (ko) * 2015-04-01 2016-10-06 주식회사 디앤티 전해세척수 생성장치가 구비된 물걸레 청소기
CN112741577A (zh) * 2019-10-31 2021-05-04 宁波方太厨具有限公司 一种清洗机及清洗方法
CN215687613U (zh) * 2020-11-25 2022-02-01 佛山市顺德区美的洗涤电器制造有限公司 洗碗机及水杯组件
CN112932350A (zh) * 2021-03-31 2021-06-11 北京小狗吸尘器集团股份有限公司 一种清洁液容器及地面清洁设备
CN113069047A (zh) * 2021-03-31 2021-07-06 深圳市无限动力发展有限公司 具有电解功能的水箱及扫地机
CN113367623A (zh) * 2021-05-14 2021-09-10 美智纵横科技有限责任公司 清洁设备的基站及清洁系统
CN215626968U (zh) * 2021-09-09 2022-01-25 无锡睿米信息技术有限公司 一种净水箱及清洁设备
CN215874485U (zh) * 2021-09-24 2022-02-22 苏州翰维工业设计有限公司 可自制消毒水的洗地机
CN217592757U (zh) * 2022-05-09 2022-10-18 追觅创新科技(苏州)有限公司 电解组件、储液箱及清洁设备

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