WO2023184697A1 - 可溶剂存储装置、过滤器、衣物处理设备 - Google Patents

可溶剂存储装置、过滤器、衣物处理设备 Download PDF

Info

Publication number
WO2023184697A1
WO2023184697A1 PCT/CN2022/096681 CN2022096681W WO2023184697A1 WO 2023184697 A1 WO2023184697 A1 WO 2023184697A1 CN 2022096681 W CN2022096681 W CN 2022096681W WO 2023184697 A1 WO2023184697 A1 WO 2023184697A1
Authority
WO
WIPO (PCT)
Prior art keywords
solvent
mesh structure
stopper
inner cavity
storage device
Prior art date
Application number
PCT/CN2022/096681
Other languages
English (en)
French (fr)
Inventor
吴艳婧
杨宇
朱磊
高弘锡
丁鹏飞
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
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 WO2023184697A1 publication Critical patent/WO2023184697A1/zh

Links

Images

Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/02Devices for adding soap or other washing agents
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/08Liquid supply or discharge arrangements
    • D06F39/088Liquid supply arrangements
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/10Filtering arrangements

Definitions

  • the present application relates to the field of clothing treatment equipment, and in particular, to a solvent storage device, a filter, and clothing treatment equipment.
  • clothing processing equipment can perform washing operations on clothes, and the water flow for washing clothes can be processed by placing special substances in the clothes processing equipment.
  • Different special substances can enable the clothes processing equipment to perform different processes on the clothes while washing the clothes.
  • the special substance is used as a descaling agent, the scale in the water flowing through the special substance can react with the antiscalant to produce crystals and precipitate.
  • Clothes treatment equipment containing special substances has rich functions and various ways of treating clothes. The user experience is better.
  • the box structure for storing special substances is located in the water circulation path of the clothing treatment equipment.
  • the box structure has a water inlet and a water outlet.
  • the water flow can only enter the box structure through the water inlet and come into contact with the special substances and flow through
  • the water flow of special substances can only flow out of the box structure through the water outlet.
  • the direction of the water flow in the box structure is limited and the flow path is single. The solvent cannot be fully dissolved.
  • the dissolved amount of the solvent cannot meet the requirements, and during long-term use, In the box, the water flow partially dissolves the solvent, but the remaining solvent solidifies and accumulates in the water flow channel and cannot continue to dissolve, causing the water flow channel in the box to be blocked and the water flow rate to decrease, affecting the normal operation of the clothing processing equipment.
  • the present application aims to solve at least one of the technical problems existing in the prior art.
  • the present application proposes a solvent storage device on the one hand.
  • the solvent storage device according to the present application can store the solvent inside the mesh structure by setting the stopper. When the water flow passes through the solvent storage device, it is fully mixed with the solvent.
  • the mesh structure allows the water flow to enter the solvent from multiple directions.
  • the solvent storage chamber increases the dissolved amount of solvent, avoids water flow clogging, and improves user experience.
  • embodiments of the present application also provide a filter having the above solvent storage device.
  • embodiments of the present application also provide a clothes treatment device having the above filter.
  • the solvent storage device includes: a mesh structure that encloses an inner cavity; a stopper that is disposed in the inner cavity and stops against the mesh structure.
  • a solvent storage chamber is defined for storing the solvent.
  • the solvent storage device is provided with a stopper.
  • the stopper and the mesh structure jointly define a solvent storage cavity to facilitate providing a solvent storage space within the mesh structure.
  • the water flow through the solvent storage device It can be contacted and mixed with the solvent from multiple directions.
  • the various water flow paths can fully dissolve the solvent, and there will be no local dissolution of the solvent blocking the water flow path.
  • the structure of the solvent storage device is simple.
  • the solvent storage device designed using the solution of the present application can fully dissolve the solvent and avoid stagnant water flow, thereby improving the user experience.
  • the mesh structure is configured in a cylindrical shape and defines the inner cavity, and the mesh structure is provided with a limiting member adapted to limit the movement of the stopper.
  • the stop portions are configured in multiples and are spaced apart from each other in the inner cavity. Two adjacent stop portions and the gap between two adjacent stop portions are A mesh structure defines the solvent storage chamber.
  • the stopper portion is provided with a fitting groove suitable for receiving the limiting member and cooperating with the limiting member.
  • the fitting groove includes: a first fitting section extending in the axial direction of the mesh structure; a second fitting section disposed on The free end of the first matching section extends in the circumferential direction of the mesh structure.
  • the stop part includes: an outer frame part, the outer frame part is configured in an annular shape and stops against the mesh structure, and the outer frame part is provided with the matching groove; A water passage portion is provided on the inner periphery of the outer frame portion, and the communication hole is provided on the water passage portion; wherein the thickness of the outer frame portion is greater than the thickness of the water passage portion.
  • the filter according to the present application includes: a housing provided with a water inlet and a water outlet; and a solvent storage device configured as the solvent storage device described in any one of the above embodiments. Device; wherein the solvent storage device is disposed in the housing, and the mesh structure divides the internal space of the housing into an outer cavity connected to the water inlet and an inner cavity connected to the water outlet. . Since the filter according to the present application is provided with the solvent storage device of the above embodiment, the filter makes full use of the space inside the filter screen, and adds solvent to the water flow while filtering the lint in the water flow. The water flow enters the inner cavity from multiple directions and fully contacts and mixes with the solvent. The amount of dissolved solvent in the water flow is large and will not be stagnant. At the same time, the solvent storage device has a simple structure and is easy to install.
  • the water inlet is connected to the circulation pump outlet of the laundry treatment equipment, and the water outlet is connected to the water inlet of the washing chamber of the laundry treatment equipment.
  • a plurality of mesh holes are formed on the mesh structure for filtering fluid entering the inner cavity from the outer cavity, and the mesh holes are configured to allow water in the outer cavity to flow into the inner cavity through it. cavity and the hair debris in the outer cavity cannot enter the inner cavity through it.
  • the clothes processing equipment according to the present application includes the filter described in any one of the above embodiments. Since the clothes processing equipment according to the present application is provided with the filter of the above embodiments, a solvent is placed in the clothes processing equipment, and the washing The water is mixed with the solvent while filtering the lint, so the washing water flows smoothly and the user experience is better.
  • Figure 1 is an overall structural diagram of a filter according to some embodiments of the present application.
  • Figure 2 is an overall cross-sectional view of a filter according to some embodiments of the present application.
  • Figure 3 is a partial cross-sectional view of a filter provided with a stopper according to other embodiments of the present application.
  • Figure 4 is an overall structural diagram of the stopper according to other embodiments of the present application.
  • Figure 5 is an overall structural diagram of the stopper according to other embodiments of the present application.
  • Solvent storage device 1 mesh structure 10; inner cavity 10a; water outlet 10b; limiter 13;
  • Stop part 20 solvent storage cavity 20a; communication hole 20b; outer frame part 21; water passage part 22; fitting groove 23; first fitting section 231; second fitting section 232.
  • the solvent storage device 1 according to the embodiment of the present application is described below with reference to FIGS. 1 to 5 .
  • the solvent storage device 1 includes: a mesh structure 10 and a stopper 20 .
  • the mesh structure 10 encloses an inner cavity 10a; the stopper 20 is disposed in the inner cavity 10a and stops against the mesh structure 10 to define a solvent storage cavity 20a.
  • the solvent storage cavity 20a is used to store the solvent.
  • the mesh structure 10 encloses an inner cavity 10a.
  • the mesh structure 10 serves as the peripheral wall of the inner cavity 10a.
  • the inner cavity 10a contains a solvent.
  • a plurality of mesh holes (not shown) suitable for water flow to pass through are formed on the surface of the mesh structure 10. (out), the water flow can flow from the outside to the inside of the mesh structure 10 through the mesh.
  • a stopper 20 is provided in the mesh structure 10.
  • the stopper 20 and the peripheral wall of the inner cavity 10a jointly define a solvent storage cavity 20a.
  • the solvent is placed in the solvent storage cavity 20a.
  • the mesh structure The water flow outside 10 can enter the solvent storage chamber 20a from multiple directions, the water flow mixes with the solvent, and the water flow carries the solvent out of the mesh structure 10.
  • solubilizers can achieve different improvements in water quality, thereby achieving different methods of sterilizing and disinfecting water, adding fragrance, removing scale and stains, etc.
  • the water flow flows from the outside of the mesh structure 10 into the solvent storage chamber 20a. Since the multiple mesh holes on the surface of the mesh structure 10 are evenly distributed on the peripheral wall of the solvent storage chamber 20a, a large amount of water flow can enter from multiple directions.
  • the solvent storage chamber 20a has various water flow paths. The solvent and water are fully mixed, thereby increasing the dissolved amount of the solvent.
  • the water carrying the solvent flows out from the multiple mesh holes of the mesh structure 10, and the stopper 20 will The solvent is limited to a certain space in the inner cavity 10a, and the accumulation of solvent will not cause the water flow rate to slow down.
  • the solvent storage device 1 of the present application is provided with a stopper 20.
  • the stopper 20 and the mesh structure 10 jointly define a solvent storage cavity 20a, so as to provide a solvent storage space in the mesh structure 10.
  • the water flow of the solvent storage device 1 can contact and mix with the solvent from multiple directions.
  • the various water flow paths can fully dissolve the solvent, and there will be no local dissolution of the solvent blocking the water flow channel.
  • the structure of the solvent storage device 1 is simple.
  • the solvent storage device 1 designed using the solution of the present application can fully dissolve the solvent and avoid stagnant water flow, thereby improving the user experience.
  • the mesh structure 10 is configured in a cylindrical shape and defines an inner cavity 10 a.
  • the mesh structure 10 is provided with a limiting member 13 suitable for limiting the movement of the stopper 20 .
  • the stopper 13 can protrude toward the inner cavity 10a of the mesh structure 10 to stop against the stopper 20 to limit the movement of the stopper 20 .
  • the stopper 13 can be in contact with the stopper 20 . 20 stops on one side.
  • the stopper 20 When installing the stopper 20, push the stopper 20 until it stops against the stopper 13 to complete the cooperation between the stopper 20 and the mesh structure 10; in other embodiments, the stopper 20 is The parts 13 are configured as multiple, and the arrangement distance between two adjacent stop parts 13 is equal to the thickness of the stop part 20. The stop part 13 can stop against both sides of the stop part 20. When installing the stop part 20, The stopper 20 can be pushed between two adjacent limiters 13 to complete the cooperation between the stopper 20 and the mesh structure 10. It can be understood that the stops on both sides of the limiter 13 and the stopper 20 When the stopper 13 and/or the stopper 20 are reached, the stopper 20 can be slightly deformed so that the stopper 20 can be pushed smoothly between the two adjacent limiters 13 . Providing the limiter 13 on the mesh structure 10 can facilitate assembly between the mesh structure 10 and the stopper 20 .
  • the limiter 13 has a simple structure and is easy to process.
  • the stopper portions 20 are constructed in multiples and are spaced apart from each other in the inner cavity 10 a .
  • the mesh structure 10 defines a solvent storage chamber 20a.
  • a plurality of stoppers 20 are provided in the inner cavity 10a of the cylindrical mesh structure 10, and the two adjacent stoppers 20 and the inner cavity 10a between the two adjacent stoppers 20 together form a
  • the outer edges of the plurality of stoppers 20 on the wall of the solvent storage chamber 20a are in contact with the inner wall of the inner cavity 10a.
  • the water flow flowing through the solvent storage chamber 20a will bring one or more of the above substances out of the inner cavity 10a.
  • the plurality of stoppers 20 can divide the inner cavity 10a into a plurality of solvent storage chambers 20a.
  • the water flow can be mixed with part of the solvent and carry the solvent to the net. outside of the shaped structure 10.
  • Providing multiple stoppers 20 facilitates the formation of one or more solvent storage chambers 20a, which facilitates the placement of one or more solvents in the solvent storage device 1.
  • the water flow can dissolve multiple solvents at the same time and the water flow can be smooth.
  • the stopper 20 is provided with a matching groove 23 suitable for receiving the limiting member 13 and cooperating with the limiting member 13 .
  • the stopper 20 is provided with a mating groove 23, and the mesh structure 10 is provided with a limiter 13.
  • the limiter 13 can be protruding toward the inner cavity 10a, and the mating groove 23 is recessed toward the inside of the stopper 20 to be adapted to fit with the stopper 20.
  • the limiting member 13 has a matching structure. The limiting member 13 extends into the matching groove 23 so that the stopper 20 matches and is installed with the mesh structure 10 .
  • the solution of using the matching groove 23 to cooperate with the stopper 13 to install the stopper 20 limits the position of the stopper 20.
  • the stopper 20 will not be affected by the impact of the water flow and will be displaced and fall.
  • the installation is more stable and the limiter is limited.
  • the cooperation between the position piece 13 and the matching groove 23 makes the assembly between the stopper 20 and the mesh structure 10 simple and easy to operate.
  • the limiting member 13 is configured as a notch on the mesh structure 10
  • the fitting groove 23 is configured as a protrusion protruding toward the inside of the inner cavity 10 a
  • the fitting groove 23 extends into the limiting member 13 such that The stopper 20 snap-fits with the mesh structure 10 .
  • the outer peripheral shape of the stopper 20 is consistent with the internal shape of the mesh structure 10.
  • the stopper 20 is made of metal or plastic, the stopper 20 It is fixedly connected to the mesh structure 10 by welding, so the fit is stable and the fixing is reliable.
  • the fitting groove 23 includes a first fitting section 231 and a second fitting section 232.
  • the first fitting section 231 extends in the axial direction of the mesh structure 10;
  • the two matching sections 232 are disposed at the free end of the first matching section 231 and extend in the circumferential direction of the mesh structure 10 .
  • the fitting groove 23 is in an “L” shape, the first fitting section 231 is an “L” shaped vertical section, and the first fitting section 231 is along the axial direction of the mesh structure 10
  • the second fitting section 232 is provided at the free end of the first fitting section 231 and extends along the circumferential direction of the mesh structure 10 .
  • the second fitting section 232 is an “L” shaped horizontal section.
  • the stopper 20 moves in the circumferential direction of the mesh structure 10.
  • the portion 20 is limited in the axial direction, circumferential direction and radial direction.
  • the structure of the matching groove is arranged in this way to make the installation of the stopper 20 and the mesh structure 10 more stable and reliable, and to ensure that the stopper 20 will not be displaced when the mesh structure 10 is extruded, deformed or impacted by water flow, thus ensuring that the A large amount of solvent stored in the solvent storage chamber 20a will not be swept into other locations in the inner chamber 10a by the water flow.
  • two opposing stoppers 13 are protrudingly provided in the inner cavity 10a, and the stopper 20 is also provided with two matching grooves 23, and The connection line of the two fitting grooves 23 just passes through the center of the cross-sectional circle of the mesh structure 10.
  • the two second fitting sections 232 are provided at the free ends of the two first fitting sections 231 and both extend in a clockwise or counterclockwise direction, limiting the position.
  • the above structure of the component 13 and the matching groove 23 facilitates the stable installation of the stopper 20 in the inner cavity 10a, facilitates the installation and removal of the stopper 20, and facilitates the replenishment or replacement of the solvent.
  • the stopper 20 includes an outer frame 21 and a water passage 22 .
  • the outer frame 21 is configured in an annular shape and stops against the inner wall of the mesh structure 10 .
  • the outer frame part 21 is provided with a fitting groove 23;
  • the water passage part 22 is provided on the inner periphery of the outer frame part 21, and the water passage part 22 is provided with a communication hole 20b; wherein the thickness of the outer frame part 21 is greater than the thickness of the water passage part 22 .
  • the annular outer frame part 21 of the stopper part 20 abuts against the peripheral wall of the inner cavity 10a, and the fitting groove 23 is provided in the outer frame part 21.
  • the stopper 20 When installing the stopper part 20, you only need to push the stopper part 20 into the fitting groove. 23 cooperates with the stopper 13 and rotates at a certain angle, the stopper 20 can be fixed in the mesh structure 10 . More specifically, the communication holes 20b are configured in plural, and the plurality of communication holes 20b are suitable for passing water flow. Since the stopper 20 is provided with the communication holes 20b, in order to avoid the stopper 20 being too thin, causing the stopper 20 to deform or block. The position of the stop part 20 is unstable, and the thickness of the stop part 20 should be appropriately increased. At the same time, in order to prevent the overall thickness of the stop part 20 from being too thick and affecting the water passing performance of the stop part 20, the thickness of the water passage part 22 inside the stop part 20 is reduced.
  • the thickness of the outer frame part 21 is greater than the thickness of the water passage part 22, and the water flow enters the solvent storage chamber 20a through the communication hole 20b at the water passage part 22 and mixes with the solvent.
  • the water flow outside the mesh structure 10 can directly enter the solvent storage cavity 20a through the peripheral wall of the solvent storage cavity 20a.
  • the water flow outside the mesh structure 10 can also enter the inner cavity 10a first, and then the water flow entering the inner cavity 10a passes through the connecting hole. 20b enters the solvent storage chamber 20a.
  • the plurality of communication holes 20b may be circular, square or other shapes, and the shapes of the plurality of communication holes 20b may be the same or different, as long as the water flow rate and flow rate are not affected.
  • the solvent storage device 1 includes a mesh structure 10 and a stopper 20 .
  • the mesh structure 10 is encircled into a cylindrical shape.
  • An inner cavity 10a is formed on the inside of the mesh structure 10.
  • a mesh is formed on the surface of the mesh structure 10.
  • the water flow outside the mesh structure 10 enters the inner cavity 10a through the mesh.
  • the stopper 20 is provided in the inner cavity 10a, and the stopper 20 is configured as two.
  • the two stoppers 20 and the wall of the inner cavity 10a between the two stoppers 20 define a solvent storage chamber 20a.
  • the solvent is placed in the storage cavity 20a; the stopper 20 includes an outer frame part 21 and a water passage part 22.
  • the thickness of the outer frame part 21 is greater than the thickness of the water passage part 22.
  • a plurality of communication holes 20b are formed on the water passage part 22.
  • the outer frame part 21 is annular and stops against the wall of the inner cavity 10a.
  • the outer frame 21 is provided with an "L" shaped matching groove 23.
  • the inner wall of the inner cavity 10a protrudes to form a limiting member 13.
  • the limiting member 13 can cooperate with the matching groove 23. .
  • the solvent storage device 1 When installing the solvent storage device 1, first install one of the two stoppers 20 and push the stopper 20 into the inner cavity 10a. When the stopper 20 contacts the stopper 13, continue to push the stopper 20. 20 until the stopper 13 slides in the first fitting section 231 of the fitting groove 23. After the stopper 13 abuts against the free end of the first fitting section 231, the stopper 20 is rotated so that the stopper 13 is in the fitting position. The second fitting section 232 of the groove 23 slides in, thereby completing the installation of the stopper 20. At this time, the solvent can be put in, and then the other stopper 20 is installed, thereby completing the release of the solvent.
  • the solvent storage device 1 involved in this application is provided with a stopper 20 and a solvent storage cavity 20a.
  • the water flow passing through the solvent storage device 1 fully contacts and mixes the solvent from multiple directions, and the solvent in the water flow dissolves. The amount is large and the water flow will not be stagnant.
  • the solvent storage device 1 has a simple structure and is easy to install.
  • the filter according to the present application includes: a housing and a solvent storage device 1 .
  • the shell is provided with a water inlet and a water outlet 10b; the solvent storage device 1 is configured as the solvent storage device 1 described in any one of the above embodiments; wherein the solvent storage device 1 is arranged in the shell, and the mesh structure 10
  • the internal space of the housing is divided into an outer cavity connected to the water inlet and an inner cavity 10a connected to the water outlet 10b.
  • the mesh structure 10 divides the internal space of the housing into an inner cavity 10a and an outer cavity, and the water outlet 10b is connected with the inner cavity 10a.
  • the water flow enters the outer cavity of the filter through the water inlet, and the water flows under the action of water pressure.
  • the filter makes full use of the space inside the filter, and the filter itself has the function of filtering water flow.
  • the filter of the present application adds a solvent
  • the storage device 1 can filter the lint in the water flow and add a solvent to the water flow at the same time.
  • the water flow in the outer cavity enters the inner cavity 10a from multiple directions and fully contacts and mixes with the solvent.
  • the amount of solvent dissolved in the water flow is large. Moreover, there will be no stagnant water flow.
  • the solvent storage device 1 has a simple structure and is easy to install.
  • the water inlet is connected to the circulation pump outlet of the laundry treatment equipment, and the water outlet 10b is connected to the water inlet of the washing chamber of the laundry treatment equipment.
  • the clothing processing equipment has a washing tub, a washing cavity is formed in the washing tub, and a water pipe is provided between the washing tub and the filter. The water pipe connects the washing cavity and the filter.
  • the washing tub, water pipe and filter together constitute the clothing processing equipment.
  • the washing water circulation path, the washing water containing lint in the washing chamber flows into the filter under the action of the circulation pump, the filter filters the lint, and the cleaner washing water flows into the washing chamber through the water pipe, and the filtered washing water is cleaner clean.
  • the filter is arranged in the wash water circulation path.
  • the mesh structure 10 is cylindrical and divides the interior of the filter into an inner cavity 10a and an outer cavity. Both the inner cavity 10a and the outer cavity are at least one section of the wash water circulation path.
  • the wash water filtered by the mesh structure 10 becomes relatively clean wash water, and the wash water containing lint flows from the outer cavity to the inner cavity 10a.
  • the mesh structure 10 A stopper 20 is provided inside.
  • the stopper 20 and the inner wall of the inner cavity 10a jointly define a solvent storage chamber 20a.
  • the solvent storage chamber 20a stores the solvent.
  • the communication hole 20b of the stopper 20 connects the solvent storage chamber to the 20a is connected with the inner cavity 10a.
  • the washing water in the inner cavity 10a flows into the solvent storage chamber 20a through the communication hole 20b and mixes with the solvent.
  • the washing water in the outer cavity flows into the solvent storage chamber 20a through the peripheral wall of the solvent storage chamber 20a. And mixed with the solvent, the washing water carrying the solvent flows into the inner cavity 10a through the communication hole 20b, and the relatively clean washing water mixed with the solvent enters the washing water circulation path and participates in the clothes washing process again.
  • different special substances allow the laundry treatment equipment to process the clothes in different ways while washing the clothes.
  • the special substance is hypochlorous acid
  • the water flow flowing through the special substance carries hypochlorous acid to participate in the washing process.
  • the clothes are sterilized and disinfected.
  • the special substance is a fragrance-retaining product
  • the water flowing through the special substance carries the fragrance and participates in the washing process and adds fragrance factors to the clothes.
  • the special substance is a descaling agent
  • the water flowing through the special substance The scale in the water flow can react with the antiscalant to produce crystals and precipitate.
  • Clothes treatment equipment containing special substances has rich functions, various ways of treating clothes, and a better user experience.
  • a plurality of mesh holes are formed on the mesh structure 10 for filtering the fluid entering the inner cavity 10a from the outer cavity.
  • the mesh holes are configured to allow water in the outer cavity to flow into the inner cavity 10a through it and the outer cavity 10a.
  • the hair debris in the cavity cannot enter the inner cavity 10a through it.
  • the mesh structure 10 is configured as a filter screen suitable for filtering wash water. The wash water containing lint enters the outer cavity of the filter through the water inlet, and the wash water flows to the inner cavity of the mesh structure 10 under the action of water pressure.
  • the solvent storage chamber 20a is arranged inside the filter. It can filter the lint in the washing water and add the solvent to the washing water at the same time, making full use of the internal space of the filter.
  • the solvent in the solvent storage chamber 20a can enter the filter. The internal washing water is fully contacted, so that the solvent will not block the filter and cause the water flow to become stagnant, and the dissolved amount of the solvent in the washing water will also increase accordingly.
  • the cylindrical mesh structure 10 has one end and the other end in the extending direction, and the inner cavity 10a is located inside the cylindrical mesh structure 10.
  • the inner cavity 10a has one end in the extending direction. and the other end, the stopper 20 is disposed between one end and the other end of the inner cavity 10a, the stopper 20 and part of the inner wall of the inner cavity 10a define a solvent storage chamber 20a, and the solvent storage chamber 20a is also located at the end of the inner cavity 10a. between one end and the other. Since the wash water can flow throughout the inner cavity 10a, the amount of wash water passing through one end or the other end of the inner cavity 10a is small. If the solvent is placed between one end and the other end of the inner cavity 10a, the wash water can be fully mixed with the available solvent. Solvent contact, thereby increasing the amount of solvent dissolved in water.
  • the clothes processing equipment according to the present application includes the filter described in any one of the above embodiments. Since the clothes processing equipment according to the present application is provided with the filter of the above embodiments, a solvent is placed in the clothes processing equipment, and the washing The water is mixed with the solvent while filtering the lint, so the washing water flows smoothly and the user experience is better.
  • the filter of the present application is provided with a cylindrical mesh structure 10, which can filter a large amount of washing water at the same time, and a stopper 20 is provided in the filter to limit the solvent in the inner cavity 10a.
  • a stopper 20 is provided in the filter to limit the solvent in the inner cavity 10a.
  • the solvent dissolves in a large amount and the washing water flows smoothly, and the user experience is better; between the stopper 20 and the mesh structure 10
  • the connection between them is simple and reliable, the cooperation is stable, and it is easy to disassemble and assemble, making it convenient to replenish or replace the solvent.
  • One or more solvent storage chambers 20a can be formed by changing the number of the stoppers 20, making it convenient to put one or more solvents in the filter.
  • a variety of soluble solvents the washing water can dissolve a variety of soluble solvents at the same time and the water flow can be smooth.

Abstract

一种可溶剂存储装置(1)、过滤器、衣物处理设备,所述可溶剂存储装置(1)具有网状结构(10),所述网状结构(10)合围形成内腔(10a);止挡部(20),所述止挡部(20)设置于所述内腔(10a)内并与所述网状结构(10)止抵以限定出可溶剂储存腔(20a),所述可溶剂储存腔(20a)用于存储可溶剂。

Description

可溶剂存储装置、过滤器、衣物处理设备
相关申请的交叉引用
本申请要求于2022年3月31日提交的申请号为202210337472.0、名称为“可溶剂存储装置、过滤器、衣物处理设备”的中国专利的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及衣物处理设备领域,尤其是涉及一种可溶剂存储装置、过滤器、衣物处理设备。
背景技术
相关技术中,衣物处理设备可对衣物进行洗涤作业,通过在衣物处理设备内投放特殊物质可对洗涤衣物的水流进行处理,不同的特殊物质可使衣物处理设备在洗涤衣物的同时对衣物进行不同方式的处理,特殊物质为除垢剂时,流经特殊物质的水流中的水垢可与阻垢剂反应产生结晶并沉淀,投放有特殊物质的衣物处理设备功能丰富,对衣物处理的方式多样,用户使用体验更好。
现有设计中,储放特殊物质的盒体结构位于衣物处理设备的水循环路径中,盒体结构具有进水口和出水口,水流仅能通过进水口进入盒体结构并与特殊物质接触,流经特殊物质的水流仅能由出水口流出盒体结构,盒体结构内水流的方向局限且流动路径单一,无法将可溶剂充分溶解,可溶剂的溶解量无法满足要求,并且在长时间的使用过程中,水流将可溶剂局部溶解,但剩余的可溶剂凝固并堆积在水流的通道内,无法继续溶解,导致盒体内的水流通道堵塞、水流流速降低,影响衣物处理设备的正常工作。
发明内容
本申请旨在至少解决现有技术中存在的技术问题之一。为此,本申请一方面提出了一种可溶剂存储装置。根据本申请的可溶剂存储装置通过设置止挡部可在网状结构的内部储存可溶剂,水流经过可溶剂储存装置时与可溶剂充分混合,网状结构使水流可以由多个方向进入至可溶剂储存腔,提高了可溶剂的溶解量,避免水流堵塞,提升用户使用体验。
另一方面,本申请实施例还提供了一种具有上述可溶剂存储装置的过滤器。
再一方面,本申请实施例还提供了一种具有上述过滤器的衣物处理设备。
根据本申请的可溶剂存储装置包括:网状结构,所述网状结构合围形成内腔;止挡部,所述止挡部设置于所述内腔内并与所述网状结构止抵以限定出可溶剂储存腔,所述可溶剂储存腔用于存储可溶剂。
根据本申请的可溶剂存储装置中设置有止挡部,止挡部与网状结构共同限定出可溶剂储存腔,便于在网状结构内提供可溶剂的储存空间,通过可溶剂存储装置的水流可从多个方向与可溶剂接触并混合,多样的水流流动路径可将可溶剂充分溶解,不会出现可溶剂局部溶解堵塞水流流道的情况。可溶剂存储装置的结构简单,采用本申请的方案设计的可溶剂存储装置可将可溶剂充分溶解,且能避免水流滞涩,提升用户使用体验。
在本申请的一些示例中,所述网状结构构造为筒状且限定出所述内腔,所述网状结构上设置有适于限制所述止挡部移动的限位件。
在本申请的一些示例中,所述止挡部构造为多个且间隔布置于所述内腔,相邻两个所述止挡部与相邻两个所述止挡部之间的所述网状结构限定出所述可溶剂储存腔。
在本申请的一些示例中,所述止挡部上设置有适于收容所述限位件并与所述限位件配合的配合槽。
在本申请的一些示例中,所述配合槽包括:第一配合段,所述第一配合段在所述网状结构的轴向上延伸;第二配合段,所述第二配合段设置于所述第一配合段的自由端且在所述网状结构的周向上延伸。
在本申请的一些示例中,所述止挡部包括:外框部,所述外框部构造为环形并与所述网状结构止抵,所述外框部上设置有所述配合槽;通水部,所述通水部设置于所述外框部的内周,所述通水部上设置有所述连通孔;其中所述外框部的厚度大于所述通水部的厚度。
根据本申请的过滤器包括:壳体,所述壳体上设置有进水口和出水口;可溶剂存储装置,所述可溶剂存储装置构造为上述实施例中任意一项所述的可溶剂存储装置;其中所述可溶剂存储装置设置于所述壳体内,所述网状结构将所述壳体的内部空间分隔为与所述进水口连通的外腔和与所述出水口连通的内腔。由于根据本申请的过滤器设置有上述实施例的可溶剂存储装置,因此该过滤器充分利用了滤网内部的空间,在过滤水流中的毛屑的同时向水流中添加可溶剂,外腔的水流由多个方向进入内腔并与可溶剂充分接触并混合,水流中的可溶剂溶解量大且不会滞涩,同时可溶剂存储装置的结构简单、便于安装。
在本申请的一些示例中,所述进水口与所述衣物处理设备的循环泵出口连接,所述出水口与所述衣物处理设备的洗涤腔的进水口连接。
在本申请的一些示例中,所述网状结构上形成有多个网孔以用于过滤由外腔进入内腔的流体,所述网孔构造为使所述外腔的水通过其流入内腔且所述外腔中的毛屑无法通过其进入内腔。
根据本申请的衣物处理设备包括上述实施例中任意一项所述的过滤器,由于根据本申请的衣物处理设备设置有上述实施例的过滤器,因此该衣物处理设备内投放有可溶剂,洗涤水在被过滤毛屑的同时与可溶剂混合,洗涤水流通顺畅,用户使用体验更好。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
图1是根据本申请一些实施例的过滤器整体结构图。
图2是根据本申请一些实施例的过滤器整体剖视图。
图3是根据本申请另一些实施例的设置有止挡部的过滤器局部剖视图。
图4是根据本申请另一些实施例的止挡部整体结构图。
图5是根据本申请另一些实施例的止挡部整体结构图。
说明书中的附图标记如下:
可溶剂存储装置1;网状结构10;内腔10a;出水口10b;限位件13;
止挡部20;可溶剂储存腔20a;连通孔20b;外框部21;通水部22;配合槽23;第一配合段231;第二配合段232。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
下面参考图1-图5描述根据本申请实施例的可溶剂存储装置1。
如图1-图3所示,根据本申请的可溶剂存储装置1包括:网状结构10以及止挡部20。网状结构10合围形成内腔10a;止挡部20设置于内腔10a内并与网状结构10止抵以限定出可溶剂储存腔20a,可溶剂储存腔20a用于存储可溶剂。具体地,网状结构10合围形成内腔10a,网状结构10作为内腔10a的周壁,内腔10a容纳有可溶剂,网状结构10表面形成多个适于水流通过的网孔(未示出),水流可通过所述网孔从网状结构10的外侧流至内侧。为便于安置可溶剂,在网状结构10内设置止挡部20,止挡 部20与内腔10a周壁共同限定出可溶剂储存腔20a,可溶剂放置于可溶剂储存腔20a内,网状结构10外侧的水流可由多个方向进入可溶剂储存腔20a,水流与可溶剂混合,水流携带可溶剂流出网状结构10。不同种类的可溶剂能够实现对水流水质的不同改善,从而实现对水流杀菌消毒、添加香味、除垢去渍等不同方式的处理。
更具体地,水流由网状结构10外侧向可溶剂储存腔20a内流动,由于网状结构10表面的多个网孔均匀分布于可溶剂储存腔20a的周壁,大量水流可从多个方向进入可溶剂储存腔20a,水流流动路径多样,可溶剂与水充分混合,从而增加可溶剂的溶解量,携带有可溶剂的水流从网状结构10的多个网孔流出,止挡部20将可溶剂限制在内腔10a的一定空间内,不会出现可溶剂堆积导致水流流速变慢的情况。
本申请的可溶剂存储装置1中设置有止挡部20,止挡部20与网状结构10共同限定出可溶剂储存腔20a,便于在网状结构10内提供可溶剂的储存空间,通过可溶剂存储装置1的水流可从多个方向与可溶剂接触并混合,多样的水流流动路径可将可溶剂充分溶解,不会出现可溶剂局部溶解堵塞水流流道的情况。可溶剂存储装置1的结构简单,采用本申请的方案设计的可溶剂存储装置1可将可溶剂充分溶解,且能避免水流滞涩,提升用户使用体验。
根据本申请的一些实施例,如图2所示,网状结构10构造为筒状且限定出内腔10a,网状结构10上设置有适于限制止挡部20移动的限位件13。具体地,限位件13可朝向网状结构10的内腔10a凸出以与止挡部20止抵从而限制止挡部20移动,在一些实施例中,限位件13可与止挡部20一侧止抵,安装止挡部20时将止挡部20推至与限位件13止抵即可完成止挡部20与网状结构10的配合;在另一些实施例中,限位件13构造为多个,两个邻近的限位件13之间的排列间距为止挡部20的厚度,限位件13可与止挡部20的两侧止抵,安装止挡部20时将止挡部20推至两个相邻限位件13之间即可完成止挡部20与网状结构10的配合,可以理解的是,在限位件13与止挡部20的两侧止抵时,限位件13和/或止挡部20可发生轻微形变,以便止挡部20顺利推入两个相邻限位件13之间。网状结构10上设置限位件13可使网状结构10与止挡部20之间装配方便,限位件13的结构简单,便于加工。
根据本申请的一些实施例,如图2所示,止挡部20构造为多个且间隔布置于内腔10a,相邻两个止挡部20与相邻两个止挡部20之间的网状结构10限定出可溶剂储存腔20a。具体地,在筒状网状结构10的内腔10a中设置有多个止挡部20,相邻两个止挡部20与相邻两个止挡部20之间的内腔10a共同构成一个可溶剂储存腔20a的腔壁,多个止挡部20的外沿均与内腔10a内壁止抵,可溶剂储存腔20a也设置有多个,每个可 溶剂储存腔20a内可投放不同可溶剂,例如阻垢剂、杀菌剂、香氛等可溶性物质,流经可溶剂储存腔20a的水流将上述物质中的一种或多种带出内腔10a。更具体地,多个止挡部20可将内腔10a划分为多个可溶剂储存腔20a,在水流流动至可溶剂储存装置1时,水流可与部分可溶剂混合并携带可溶剂流至网状结构10外侧。设置多个止挡部20利于形成一个或多个可溶剂储存腔20a,便于在可溶剂储存装置1内投放一种或多种可溶剂,水流可同时溶解多种可溶剂且水流流通通畅。
根据本申请的一些实施例,如图1-图5所示,止挡部20上设置有适于收容限位件13并与限位件13配合的配合槽23。具体地,止挡部20设置配合槽23,网状结构10上设置限位件13,限位件13可朝向内腔10a凸出设置,配合槽23朝向止挡部20内部凹陷形成适于与限位件13配合的结构,限位件13伸入配合槽23使得止挡部20与网状结构10配合并安装。采用配合槽23与限位件13配合从而安装止挡部20的方案使得止挡部20的位置被限定,止挡部20不会受到水流的冲击发生移位掉落,安装更稳定,并且限位件13和配合槽23的配合使得止挡部20与网状结构10之间装配简单,易于操作。
在本申请的另一些实施例中,限位件13构造为网状结构10上的缺口,配合槽23构造为朝向内腔10a内部凸出的凸起,配合槽23伸入限位件13使得止挡部20与网状结构10卡接配合。
在本申请的一些实施例中,如图1-图5所示,止挡部20外周形状与网状结构10内部形状一致,当止挡部20采用金属材质或塑料材质时,止挡部20与网状结构10之间通过焊接的方式固定连接,配合稳定,固定可靠。
根据本申请的一些实施例,如图3-图5所示,配合槽23包括第一配合段231以及第二配合段232,第一配合段231在网状结构10的轴向上延伸;第二配合段232设置于第一配合段231的自由端且在网状结构10的周向上延伸。具体地,在配合槽23的正视图中,配合槽23呈“L”型,第一配合段231为“L”型的竖直段,第一配合段231沿着网状结构10的轴向延伸,第二配合段232设置于第一配合段231的自由端且沿着网状结构10的周向延伸,第二配合段232为“L”型的水平段。安装止挡部20时,将止挡部20推至配合槽23与限位件13接触,此时止挡部20在网状结构10的轴向上移动,限位件13在配合槽23的第一配合段231内滑动,直至限位件13与第一配合段231的自由端止抵,止挡部20无法在网状结构10的轴向上进一步移动,此时旋转止挡部20使得止挡部20在网状结构10的周向上移动,限位件13在配合槽23的第二配合段232内滑动,限位件13与第二配合段232的内壁止抵,此时止挡部20的轴向、周向、径向均被限位。配合槽的结构这样设置使得止挡部20与网状结构10的安装更稳定可靠, 可保证在网状结构10受到挤压变形或水流冲击时止挡部20不会位移掉落,从而确保可溶剂储存腔20a内储存的大量可溶剂不会被水流卷入内腔10a的其他位置。
在本申请的一些实施例中,如图3-图5所示,内腔10a内凸出设置有两个正对的限位件13,止挡部20也设置有两个配合槽23,并且两个配合槽23的连线恰过网状结构10截面圆的圆心,两个第二配合段232设置于两个第一配合段231自由端且均以顺时针或逆时针方向延伸,限位件13与配合槽23为上述结构便于止挡部20稳定安装于内腔10a内,并且便于止挡部20的安装与拆卸,方便对可溶剂进行补充或更换。
根据本申请的一些实施例,如图4-图5所示,止挡部20包括外框部21以及通水部22,外框部21构造为环形并与网状结构10的内壁止抵,外框部21上设置有配合槽23;通水部22设置于外框部21的内周,通水部22上设置有连通孔20b;其中外框部21的厚度大于通水部22的厚度。具体地,止挡部20的环形外框部21与内腔10a周壁止抵,配合槽23设置于外框部21,在安装止挡部20时,只需将止挡部20推至配合槽23与限位件13配合且旋转一定角度,止挡部20即可固定于网状结构10内。更具体地,连通孔20b构造为多个,多个连通孔20b适于通过水流,由于止挡部20设置有连通孔20b,为避免止挡部20过薄以致止挡部20形变或止挡部20位置不稳定,应适当增加止挡部20厚度,同时为防止止挡部20整体厚度过厚影响止挡部20过水性能,将止挡部20内部即通水部22的厚度减小,此时外框部21厚度大于通水部22厚度,水流通过通水部22处的连通孔20b进入可溶剂储存腔20a内并与可溶剂混合。网状结构10外侧的水流可通过可溶剂储存腔20a的周壁直接进入可溶剂储存腔20a,同时网状结构10外侧的水流也可以先进入内腔10a,进入到内腔10a的水流再通过连通孔20b进入可溶剂储存腔20a。
在本申请的一些实施例中,多个连通孔20b可为圆形或方形或其它形状,多个连通孔20b形状可相同或相异,不影响水流流量和流速即可。
在本申请的一些实施例中,可溶剂存储装置1包括网状结构10以及止挡部20。网状结构10环绕为筒状,网状结构10内侧形成内腔10a,网状结构10表面形成有网孔,网状结构10外侧的水流通过网孔进入到内腔10a。止挡部20设置于内腔10a,止挡部20构造为两个,两个止挡部20与两个止挡部20之间的内腔10a腔壁限定出可溶剂储存腔20a,可溶剂储存腔20a内放置可溶剂;止挡部20包括外框部21与通水部22,外框部21厚度大于通水部22厚度,通水部22上形成多个连通孔20b,外框部21为环形且与内腔10a腔壁止抵,外框部21上设置有“L”型配合槽23,内腔10a内壁凸出形成限位件13,限位件13可与配合槽23配合。
安装可溶剂存储装置1时,先安装两个止挡部20中的一个,将该止挡部20推入内腔10a,当止挡部20与限位件13接触时,继续推动止挡部20至限位件13在配合槽23的第一配合段231中滑动,限位件13与第一配合段231的自由端止抵后,旋转该止挡部20,使限位件13在配合槽23的第二配合段232中滑动,从而完成该止挡部20的安装,此时可投放可溶剂,再将另一个止挡部20安装,从而完成可溶剂的投放工作。当水流经网状结构10时,部分水流直接流入可溶剂储存腔20a,剩余部分水流流入内腔10a,流入内腔10a的水流通过连通孔20b进入到可溶剂储存腔20a,进入到可溶剂储存腔20a的水流与可溶剂混合,接着携带有可溶剂的水流可通过连通孔20b离开可溶剂储存腔20a或通过网孔离开可溶剂储存腔20a。
本申请所涉及的可溶剂存储装置1中设置有止挡部20与可溶剂储存腔20a,通过可溶剂存储装置1的水流由多个方向与可溶剂充分接触并混合,水流中的可溶剂溶解量大且不会出现水流滞涩的情况,同时可溶剂存储装置1的结构简单、便于安装。
下面简单描述根据本申请第二方面实施例的过滤器。
根据本申请的过滤器包括:壳体以及可溶剂存储装置1。壳体上设置有进水口和出水口10b;可溶剂存储装置1构造为上述实施例中任意一项所述的可溶剂存储装置1;其中可溶剂存储装置1设置于壳体内,网状结构10将壳体的内部空间分隔为与进水口连通的外腔和与出水口10b连通的内腔10a。具体地,网状结构10将壳体内部空间分隔为内腔10a与外腔,且出水口10b与内腔10a连通,水流经由进水口进入过滤器的外腔,在水压的作用下水流流至网状结构10的内腔10a与可溶剂充分混合,水流携带可溶剂从出水口10b处流出过滤器。由于根据本申请的过滤器设置有上述实施例的可溶剂存储装置1,因此该过滤器充分利用了过滤器内部的空间,过滤器本身具有过滤水流的功能,本申请的过滤器增添了可溶剂储存装置1,可在过滤水流中的毛屑的同时向水流中添加可溶剂,外腔的水流由多个方向进入内腔10a并与可溶剂充分接触并混合,水流中的可溶剂溶解量大且不会出现水流滞涩的情况,同时可溶剂存储装置1的结构简单、便于安装。
根据本申请的一些实施例,进水口与衣物处理设备的循环泵出口连接,出水口10b与衣物处理设备的洗涤腔的进水口连接。具体地,衣物处理设备具有洗涤筒,洗涤筒内形成有洗涤腔,洗涤筒与过滤器之间设置有水管,水管将洗涤腔与过滤器连通,洗涤筒、水管以及过滤器共同构成衣物处理设备的洗涤水循环路径,洗涤腔内含有毛屑的洗涤水在循环泵的作用下流入过滤器,过滤器将毛屑过滤,较为洁净的洗涤水通过水管流入洗涤腔,经过过滤后的洗涤水更为洁净。
更具体地,过滤器设置于洗涤水循环路径内,网状结构10为筒状并将过滤器内部分隔为内腔10a和外腔,内腔10a和外腔均为洗涤水循环路径中的至少一段,经过网状结构10过滤后的洗涤水成为较为洁净的洗涤水,并且包含毛屑的洗涤水由外腔流至内腔10a后洗涤水中的毛屑附着于网状结构10外侧,网状结构10内设置有止挡部20,止挡部20与内腔10a内壁共同限定出可溶剂储存腔20a,可溶剂储存腔20a内储存有可溶剂,止挡部20的连通孔20b将可溶剂储存腔20a与内腔10a连通,内腔10a内的洗涤水通过连通孔20b流入可溶剂储存腔20a并与可溶剂混合、外腔内的洗涤水通过可溶剂储存腔20a的周壁流入可溶剂储存腔20a并与可溶剂混合,携带可溶剂的洗涤水通过连通孔20b流入内腔10a,混合有可溶剂且较为洁净的洗涤水进入洗涤水循环路径中并再次参与衣物洗涤过程。
可以理解的是,不同的特殊物质可使衣物处理设备在洗涤衣物的同时对衣物进行不同方式的处理,例如当特殊物质为次氯酸时,流经特殊物质的水流携带次氯酸参与洗衣过程并对衣物进行杀菌消毒处理,当特殊物质为留香产品时,流经特殊物质的水流携带香氛参与洗衣过程并向衣物添加香味因子,当特殊物质为除垢剂时,流经特殊物质的水流中的水垢可与阻垢剂反应产生结晶并沉淀,投放有特殊物质的衣物处理设备功能丰富,对衣物处理的方式多样,用户使用体验更好。
根据本申请的一些实施例,网状结构10上形成有多个网孔以用于过滤由外腔进入内腔10a的流体,网孔构造为使外腔的水通过其流入内腔10a且外腔中的毛屑无法通过其进入内腔10a。具体地,网状结构10构造为适于过滤洗涤水的滤网,含有毛屑的洗涤水经由进水口进入过滤器的外腔,在水压的作用下洗涤水流至网状结构10的内腔10a,毛屑附着于网状结构10外侧,较为洁净的洗涤水进入网状结构1并与可溶剂充分混合,洗涤水携带可溶剂从出水口10b处流出过滤器。可溶剂储存腔20a设置于滤网内部,可在过滤洗涤水中的毛屑的同时向洗涤水中添加可溶剂,充分利用过滤器内部空间,并且可溶剂储存腔20a内的可溶剂能够与进入滤网内部的洗涤水充分接触,可溶剂不会堵塞滤网以致水流滞涩,并且可溶剂在洗涤水中的溶解量也相应提高。
在本申请的一些实施例中,筒状网状结构10具有延长方向上的一端与另一端,内腔10a位于筒状网状结构10的内侧,同样的,内腔10a具有延伸方向上的一端与另一端,止挡部20设置于内腔10a的一端与另一端之间,止挡部20与部分内腔10a内壁限定出可溶剂储存腔20a,可溶剂储存腔20a也位于内腔10a的一端与另一端之间。由于洗涤水可在整个内腔10a内流动,经由内腔10a的一端或另一端的洗涤水水量较小,将可溶剂投放于内腔10a的一端与另一端之间,洗涤水可充分与可溶剂接触,从而提高可 溶剂在水中的溶解量。
下面简单描述根据本申请第三方面实施例的衣物处理设备。
根据本申请的衣物处理设备包括上述实施例中任意一项所述的过滤器,由于根据本申请的衣物处理设备设置有上述实施例的过滤器,因此该衣物处理设备内投放有可溶剂,洗涤水在被过滤毛屑的同时与可溶剂混合,洗涤水流通顺畅,用户使用体验更好。
综上所述,本申请的过滤器内设置有筒状网状结构10,可同时对大量洗涤水进行过滤,并且在过滤器内设置有止挡部20以将可溶剂限制在内腔10a的一定空间内,由多个方向进入网状结构10的洗涤水被过滤并与可溶剂混合,可溶剂溶解量大且洗涤水流通顺畅,用户体验更好;止挡部20与网状结构10之间的连接简单可靠、配合稳定、拆装方便,方便补充或更换可溶剂,并且通过改变止挡部20数目可形成一个或多个可溶剂储存腔20a,方便在过滤器内投放一种或多种可溶剂,洗涤水可同时溶解多种可溶剂且水流流通通畅。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (10)

  1. 一种可溶剂存储装置,其特征在于,包括:
    网状结构,所述网状结构合围形成内腔;
    止挡部,所述止挡部设置于所述内腔内并与所述网状结构止抵以限定出可溶剂储存腔,所述可溶剂储存腔用于存储可溶剂。
  2. 根据权利要求1所述的可溶剂存储装置,其特征在于,所述网状结构构造为筒状且限定出所述内腔,所述网状结构上设置有适于限制所述止挡部移动的限位件。
  3. 根据权利要求2所述的可溶剂存储装置,其特征在于,所述止挡部构造为多个且间隔布置于所述内腔,相邻两个所述止挡部与相邻两个所述止挡部之间的所述网状结构限定出所述可溶剂储存腔。
  4. 根据权利要求2或3所述的可溶剂存储装置,其特征在于,所述止挡部上设置有适于收容所述限位件并与所述限位件配合的配合槽。
  5. 根据权利要求4所述的可溶剂存储装置,其特征在于,所述配合槽包括:
    第一配合段,所述第一配合段在所述网状结构的轴向上延伸;
    第二配合段,所述第二配合段设置于所述第一配合段的自由端且在所述网状结构的周向上延伸。
  6. 根据权利要求4或5所述的可溶剂存储装置,其特征在于,所述止挡部包括:
    外框部,所述外框部构造为环形并与所述网状结构止抵,所述外框部上设置有所述配合槽;
    通水部,所述通水部设置于所述外框部的内周,所述通水部上设置有所述连通孔;其中所述外框部的厚度大于所述通水部的厚度。
  7. 一种用于衣物处理设备的过滤器,其特征在于,包括:
    壳体,所述壳体上设置有进水口和出水口;
    可溶剂存储装置,所述可溶剂存储装置构造为权利要求1-6中任意一项所述的可溶剂存储装置;其中
    所述可溶剂存储装置设置于所述壳体内,所述网状结构将所述壳体的内部空间分隔为与所述进水口连通的外腔和与所述出水口连通的内腔。
  8. 根据权利要求7所述的用于衣物处理设备的过滤器,其特征在于,所述进水口与所述衣物处理设备的循环泵出口连接,所述出水口与所述衣物处理设备的洗涤腔的进水口连接。
  9. 根据权利要求7或8所述的用于衣物处理设备的过滤器,其特征在于,所述网 状结构上形成有多个网孔以用于过滤由外腔进入内腔的流体,所述网孔构造为使所述外腔的水通过其流入内腔且所述外腔中的毛屑无法通过其进入内腔。
  10. 一种衣物处理设备,其特征在于,包括权利要求7-9中任意一项所述的过滤器。
PCT/CN2022/096681 2022-03-31 2022-06-01 可溶剂存储装置、过滤器、衣物处理设备 WO2023184697A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202210337472.0A CN116926892A (zh) 2022-03-31 2022-03-31 可溶剂存储装置、过滤器、衣物处理设备
CN202210337472.0 2022-03-31

Publications (1)

Publication Number Publication Date
WO2023184697A1 true WO2023184697A1 (zh) 2023-10-05

Family

ID=88198830

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2022/096681 WO2023184697A1 (zh) 2022-03-31 2022-06-01 可溶剂存储装置、过滤器、衣物处理设备

Country Status (2)

Country Link
CN (1) CN116926892A (zh)
WO (1) WO2023184697A1 (zh)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000189693A (ja) * 1998-12-28 2000-07-11 Sanyo Electric Co Ltd 洗濯機
JP2005253990A (ja) * 2005-04-11 2005-09-22 Sharp Corp 洗濯機
JP2011092330A (ja) * 2009-10-28 2011-05-12 Toshiba Corp 洗濯機用の濾過装置
CN107815821A (zh) * 2016-09-12 2018-03-20 青岛海尔洗衣机有限公司 一种絮凝洗衣机
CN207749326U (zh) * 2017-06-16 2018-08-21 合肥美的洗衣机有限公司 过滤网组件以及洗衣机

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000189693A (ja) * 1998-12-28 2000-07-11 Sanyo Electric Co Ltd 洗濯機
JP2005253990A (ja) * 2005-04-11 2005-09-22 Sharp Corp 洗濯機
JP2011092330A (ja) * 2009-10-28 2011-05-12 Toshiba Corp 洗濯機用の濾過装置
CN107815821A (zh) * 2016-09-12 2018-03-20 青岛海尔洗衣机有限公司 一种絮凝洗衣机
CN207749326U (zh) * 2017-06-16 2018-08-21 合肥美的洗衣机有限公司 过滤网组件以及洗衣机

Also Published As

Publication number Publication date
CN116926892A (zh) 2023-10-24

Similar Documents

Publication Publication Date Title
JP6679805B2 (ja) ドラム式洗濯機およびその洗浄方法
KR101375715B1 (ko) 세제 공급 장치 및 이를 포함하는 세탁기
KR101332286B1 (ko) 세탁기
JP7366254B2 (ja) 衣類処理剤収容装置及び衣類処理機器
CN109944027B (zh) 衣物处理设备
WO2023184697A1 (zh) 可溶剂存储装置、过滤器、衣物处理设备
EP3695768A1 (de) Haushaltsgerät mit einem filterelement
WO2007042269A1 (en) Improved drain pump
KR100982699B1 (ko) 정수용 필터와 이를 위한 필터 카트리지
CN217052749U (zh) 水盒组件及具有其的衣物处理设备
KR20100086621A (ko) 드럼 세탁기
CN205024471U (zh) 一种具有净水功能的洗衣机水处理装置及洗衣机
CN217052750U (zh) 可溶剂存储装置、过滤器、衣物处理设备
EP3789530A1 (en) A filter group suitable for use in laundry washing and/or drying machines
CN105506930B (zh) 用于洗衣机的过滤组件及洗衣机
CN210420591U (zh) 一种洗衣机进水盒组件及洗衣机
CN105316913B (zh) 洗衣机以及对洗衣机的过滤组件进行清洗的控制方法
CN209967872U (zh) 一种具有自清洁功能的印刷用水循环系统
CN209741494U (zh) 衣物处理设备
CN214736779U (zh) 一种用于衣物处理装置的抑垢结构、洗衣机外筒、洗衣机
CN217459975U (zh) 过滤器及具有其的衣物处理设备
US11795605B2 (en) Washing machine appliance and filtration assembly
CN217438458U (zh) 显色皂洗机
CN215758143U (zh) 过滤机构及干衣机
JP5198968B2 (ja) フィルタ装置及びそれを備える洗濯機

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 22934522

Country of ref document: EP

Kind code of ref document: A1