WO2023184641A1 - 衣物处理装置的内筒及衣物处理装置 - Google Patents

衣物处理装置的内筒及衣物处理装置 Download PDF

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Publication number
WO2023184641A1
WO2023184641A1 PCT/CN2022/090705 CN2022090705W WO2023184641A1 WO 2023184641 A1 WO2023184641 A1 WO 2023184641A1 CN 2022090705 W CN2022090705 W CN 2022090705W WO 2023184641 A1 WO2023184641 A1 WO 2023184641A1
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WIPO (PCT)
Prior art keywords
water
drainage
barrel
lifting
barrel body
Prior art date
Application number
PCT/CN2022/090705
Other languages
English (en)
French (fr)
Inventor
薛二鹏
丁浩
李事成
王嘉
苗雨来
高弘锡
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 CN202220765320.6U external-priority patent/CN217052758U/zh
Priority claimed from CN202210344684.1A external-priority patent/CN114703637A/zh
Priority claimed from CN202220773125.8U external-priority patent/CN217052768U/zh
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 WO2023184641A1 publication Critical patent/WO2023184641A1/zh

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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
    • D06F37/00Details specific to washing machines covered by groups D06F21/00 - D06F25/00
    • D06F37/02Rotary receptacles, e.g. drums
    • D06F37/04Rotary receptacles, e.g. drums adapted for rotation or oscillation about a horizontal or inclined axis
    • D06F37/06Ribs, lifters, or rubbing means forming part of the receptacle
    • 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 
    • D06F39/12Casings; Tubs

Definitions

  • the present application relates to the technical field of clothing treatment, specifically to an inner cylinder of a clothing treatment device and a clothing treatment device.
  • some drainage holes are usually arranged on the wall of the inner cylinder covered by the lifting ribs, and at the same time, the lifting ribs are installed on the inner cylinder.
  • Multiple water inlets are provided on the top to ensure that the water in the inner cylinder can flow smoothly towards the drainage hole.
  • this application proposes an inner cylinder of a clothes treatment device, which can achieve rapid and efficient drainage, can also prevent the structure in the inner cylinder from scratching the clothes, and can also ensure the aesthetics of the inner cylinder to enhance the user experience. experience.
  • the present application also aims to propose a laundry treatment device having the above-mentioned inner cylinder.
  • the inner cylinder of the clothes processing device includes: a cylinder body, the cylinder body includes a cylinder bottom and a cylinder body; a lifting rib, the lifting rib is provided on the inside of the cylinder body, and the lifting rib is located on the inner side of the cylinder body.
  • a plurality of drainage holes are provided at the covered position of the barrel; wherein, the first side wall of the lifting rib has a plurality of first water inlets, and the first side wall of the lifting rib is arranged opposite to the first side wall.
  • the second side wall has a plurality of second water openings. A plurality of first water openings and a plurality of second water openings are staggered.
  • the drainage holes pass through the first water openings and the second water openings. Communicated with the inner cavity of the barrel body.
  • this application also provides a plurality of first water inlets and a plurality of second water inlets staggered on the side walls of the lifting ribs.
  • the multiple first water inlets and the multiple second water inlets cooperate to Realize the connection between the drainage hole and the inner cavity of the cylinder body to ensure that the water in the cylinder body can smoothly flow toward the drainage hole, and multiple first water openings and multiple second water openings are staggered to avoid flowing from the first water opening to the drainage hole.
  • the water flowing through the drainage hole directly flows out through the second water opening, and it also prevents the water flowing from the second water opening toward the drainage hole from directly flowing out from the first water opening, which means that the water in the inner cavity of the barrel body can smoothly flow to the drainage port.
  • the holes are then drained through the drainage holes to improve drainage efficiency and drainage quality, thereby achieving fast and efficient drainage and improving user experience.
  • first side wall and the second side wall are arranged oppositely in the width direction of the lifting rib, a plurality of first water inlets are arranged at intervals in the length direction of the lifting rib, and a plurality of first water inlets are arranged at intervals in the length direction of the lifting rib.
  • the second water inlets are arranged at intervals in the length direction of the lifting rib.
  • the first side wall also has a first water blocking portion located between two adjacent first water openings, and at least one second water opening is disposed facing the first water blocking portion.
  • the second side wall also has a second water blocking portion located between two adjacent second water inlets, and at least one of the first water inlets is facing the second water blocking portion set up.
  • the first water inlet and/or the second water inlet are defined between the lifting rib itself or the lifting rib and the barrel body.
  • the edge of the first side wall is provided with a first notch, and the barrel cooperates with the opening of the first notch to define the first water inlet; the edge of the second side wall is provided with a third inlet.
  • a plurality of drainage hole groups are provided at the position where the lifting rib covers the barrel body, each of the drainage hole groups includes a plurality of the drainage holes, and the plurality of drainage hole groups are arranged along the barrel.
  • the length direction of the lifting ribs extends along the axial direction of the barrel body, and in each of the drainage hole groups, a plurality of the drainage holes are arranged along the length of the barrel body. They are arranged at intervals in the axial direction, and the plurality of drainage holes in two adjacent groups of drainage holes are arranged staggeredly in the axial direction of the barrel.
  • each of the first water openings and/or the second water openings corresponds to the position of at least one of the drainage holes.
  • the inner peripheral wall of the barrel body has a rubbing area, and the rubbing area is provided with a plurality of rubbing convex portions, and the plurality of rubbing convex portions are spaced apart in the circumferential direction of the barrel body, wherein two adjacent ones A flow guide channel is formed between the kneading convex portions, and one end of at least a part of the flow guide channel is disposed facing the lifting rib; and/or, one end of at least a part of the flow guide channel is facing the first pass. water inlet or the second water inlet.
  • the rubbing area is a non-porous area; and/or the rubbing convex portion and/or the flow guide channel form a curve.
  • the barrel body is provided with a plurality of clamping holes, and a plurality of hooks are respectively provided on both sides of the lifting rib, and the plurality of hooks and the plurality of clamping holes are snap-fitted in a one-to-one correspondence. .
  • the inner cylinder of the clothes processing device includes: a cylinder body, the cylinder body includes a cylinder bottom and a cylinder body; a lifting rib, the lifting rib is provided on the inside of the cylinder body, and the lifting rib is located on the inner side of the cylinder body.
  • a drainage hole is provided at the covered position of the cylinder body, and the side wall of the lifting rib has a water outlet to connect the drainage hole and the inner cavity of the cylinder body, wherein the outer surface of the side wall of the lifting rib
  • a blocking member is provided for blocking the water outlet.
  • a drainage hole is provided at the position of the cylinder body covered by the lifting rib, and a water outlet is provided on the lifting rib to ensure that the water in the cylinder body can be drained smoothly, and This prevents the drainage hole from directly contacting the clothes and causing wear and tear on the clothes.
  • this application also sets a blocking piece on the side wall of the lifting rib to block the water outlet. On the one hand, it prevents the water outlet from scratching the clothes. On the other hand, it also prevents the water outlet from being used.
  • the water opening on the lifting rib can be directly observed, thereby improving the aesthetics of the inner cylinder. That is to say, the inner cylinder of the present application can achieve smooth drainage while also preventing the inner cylinder from scratching clothes, while ensuring the aesthetics of the inner cylinder.
  • the water inlet is located between the barrel body and the blocking member, and there is a gap between the blocking member and the barrel body to connect the water inlet and the inner cavity of the barrel body.
  • one end of the shielding member is connected to the side wall of the lifting rib and the other end extends in a direction away from the side wall of the lifting rib.
  • the water passages include a plurality of water passages, and at least a part of the plurality of water passages are arranged at intervals along the length direction of the lifting rib; and/or, opposite sides of the lifting rib in the width direction are provided with Multiple water inlets.
  • the shielding member includes a first shielding part and a second shielding part, and the first shielding part and the second shielding part are respectively provided on opposite sides of the width direction of the lifting rib, and the third shielding part A shielding part and the second shielding part respectively extend along the length direction of the lifting rib to shield a plurality of the water inlets at corresponding positions.
  • the shielding member is formed into an annular shielding rib, and the annular shielding rib is sleeved on the outer peripheral wall of the lifting rib.
  • a laundry treatment device includes: an outer tub; and an inner drum according to the aforementioned laundry treatment device, the inner drum being rotatably provided in the outer tub.
  • the clothes processing device by using the aforementioned inner cylinder of the clothes processing device, the wear and tear caused by the clothes processing device to the clothes when processing clothes can be effectively reduced, while the aesthetics of the clothes processing device can be improved, and the user experience can be improved .
  • Figure 1 is a schematic structural diagram of an inner cylinder in some embodiments of the present application.
  • Figure 2 is a schematic structural diagram of a lifting rib in some embodiments of the present application.
  • Figure 3 is a front view of a lifting rib in some embodiments of the present application.
  • Figure 4 is a cross-sectional view of a lifting rib according to some embodiments of the present application.
  • Figure 5 is a partial structural diagram of the inner cylinder of some embodiments of the present application.
  • Figure 6 is a cross-sectional view of the inner cylinder of some embodiments of the present application.
  • Figure 7 is a partial enlarged view of area I in Figure 6.
  • Figure 8 is a schematic block diagram of a laundry treatment device according to some embodiments of the present application.
  • 200 Lifting rib; 210. First side wall; 211. First water inlet; 212. First water retaining portion; 220. Second side wall; 221. Second water inlet; 222. Second water retaining portion; 230 , hook; 240, water outlet; 260, blocking piece;
  • the inner cylinder 1000 of the clothes treatment device includes: a cylinder body 100 and a lifting rib 200 .
  • the barrel body 100 includes a barrel bottom 110 and a barrel body 120 .
  • the barrel bottom 110 is suitable for closing the barrel body 120, and the barrel body 120 is suitable for placing clothes to facilitate subsequent cleaning of the clothes.
  • the lifting ribs 200 are provided on the inner side of the barrel body 120 , and a plurality of drainage holes 1231 are provided at the positions of the barrel body 120 covered by the lifting ribs 200 .
  • the drainage hole 1231 is used to realize the communication between the barrel body 100 and the external flow path, ensuring that the water in the barrel body 100 can be smoothly discharged through the drainage hole 1231, so as to achieve the purpose of processing the clothes, and the present application is provided with multiple drainage holes 1231, and many Each drainage hole 1231 cooperates with drainage at the same time to improve the drainage efficiency of the inner cylinder 1000, and at the same time achieve the purpose of completely draining washing water and dirt, and improve the laundry processing capacity of the inner cylinder 1000.
  • the plurality of drainage holes 1231 in this application are arranged at the position of the barrel 120 covered by the lifting ribs 200. That is to say, the lifting ribs 200 can cover multiple drainage holes 1231, which ensures that the user will not directly The drainage hole 1231 is observed to improve the aesthetics of the inner tube 1000. At the same time, during the process of clothes processing, the lifting ribs 200 can ensure that the drainage hole 1231 does not directly contact the clothes, thereby preventing the edge of the drainage hole 1231 from wearing the clothes. It effectively solves the problem of the drain hole 1231 wearing clothes in the prior art, greatly reduces the wear rate of clothes, and improves user experience.
  • the lifting ribs 200 are arranged inside the barrel body 120.
  • the lifting ribs 200 can drive the clothes to rotate as the barrel body 100 rotates.
  • the lifting ribs 200 can improve the quality of the clothes. Height, clothes with a certain height will fall back under the action of gravity, thereby achieving the purpose of beating the clothes up and down and turning the clothes over to achieve the purpose of processing the clothes; on the other hand, the lifting ribs 200 can be used to increase the number of clothes and the inner cylinder
  • the contact area of 1000 allows the clothes close to the lifting ribs 200 to rub against each other to produce a kneading effect, thereby improving the clothes processing capacity of the inner cylinder 1000 and improving the user experience.
  • the lifting ribs 200 of the present application can not only improve the clothes processing capacity of the inner cylinder 1000 but also improve the aesthetics of the inner cylinder 1000. At the same time, it can also prevent the edge of the drainage hole 1231 from wearing clothes. Through the above settings, there is no need to install any more.
  • Other structural components that cover the drainage holes 1231 not only simplify the structure of the inner cylinder 1000, but also reduce the production cost of the inner cylinder 1000.
  • the first side wall 210 of the lifting rib 200 has a plurality of first water openings 211
  • the second side wall 220 of the lifting rib 200 opposite to the first side wall 210 has a plurality of second water openings 221.
  • the first side wall 210 and the second side wall 220 of the lifting rib 200 are arranged oppositely, and a plurality of water openings are provided on the two opposite sidewalls.
  • a plurality of first water inlets 211 and a plurality of second water inlets 221 are arranged in a staggered manner, and the drainage holes 1231 are connected to the inner cavity of the barrel body 100 through the first water inlets 211 and the second water inlets 221 .
  • the staggered arrangement of the plurality of first water inlets 211 and the plurality of second water inlets 221 mentioned here can be understood as the projection of one of the first water inlets 211 on the first side wall 210 on the second side wall 220 is located between two adjacent second water inlets 221.
  • the projection of one of the second water inlets 221 on the second side wall 220 on the first side wall 210 is located between the two adjacent first water inlets 211. space, so that the plurality of first water inlets 211 and the plurality of second water inlets 221 are staggered.
  • the water in the inner cavity of the barrel body 100 can pass through the lifting rib 200 It flows smoothly to the drainage hole 1231, and then is discharged through the drainage hole 1231, thereby achieving the purpose of dehydration.
  • the present application is provided with water openings on both the first side wall 210 and the second side wall 220 of the lifting rib 200.
  • it can Increase the number of water openings to ensure that water in the barrel body 100 can flow to the drainage hole 1231 in large quantities, and there are multiple first water openings 211 and second water openings 221, and multiple first water openings 211 and multiple The second water inlets 221 cooperate with each other to maximize the number of water inlets and ensure that the water in the inner cavity of the barrel body 100 can flow quickly and in large quantities to the drainage holes 1231, thereby facilitating the rapid discharge of water through the multiple drainage holes 1231. to improve drainage efficiency.
  • this application uses a plurality of first water inlets 211, a plurality of second water inlets 221 and a plurality of drainage holes 1231 to maximize the drainage efficiency, especially when draining during the dehydration stage, rapid and efficient drainage can be achieved. Drainage, reducing the moisture content on clothes and improving user experience.
  • the two side walls (the first side wall 210 and the second side wall 220 ) of the lifting rib 200 of the present application are both provided with water openings, and the first side wall 210 and the second side wall 220 are arranged oppositely, In this way, during the drainage process, since the water has a certain speed during the flow, if the first water inlet 211 and the second water inlet 221 are arranged oppositely, that is, one of the first water inlets on the first side wall 210 The projection of the water opening 211 on the second side wall 220 overlaps with one of the second water openings 221 on the second side wall 220 and one of the second water openings 221 on the second side wall 220 is on the first side wall 210 The projection overlaps with one of the first water openings 211 on the first side wall 210, so that part of the water flowing through the first water opening 211 to the area covered by the lifting rib 200 will directly flow from the second water opening 211 to the area covered by the lifting rib 200 under the action of in
  • the water outlet 221 flows out.
  • part of the water flowing through the second water outlet 221 to the area covered by the lifting rib 200 will also directly flow out from the first water outlet 211 under the action of inertia, which means that part of the water cannot pass through.
  • the drainage holes 1231 are discharged to the outside of the inner cylinder 1000, thereby reducing the drainage efficiency and drainage quality.
  • the inner cylinder 1000 of the clothes treatment device in the embodiment of the present application has a plurality of first water inlets 211 and a plurality of second water inlets 221 staggered It is arranged to prevent the water flowing from the first water opening 211 towards the drainage hole 1231 from flowing out directly through the second water opening 221, and also to prevent the water flowing from the second water opening 221 towards the drainage hole 1231 from directly flowing out from the first water opening 211. , that is, to ensure that the water in the inner cavity of the barrel body 100 can smoothly flow to the drainage hole 1231, and then be discharged through the drainage hole 1231, thereby improving drainage efficiency and improving drainage quality, thereby achieving rapid and efficient drainage and improving user experience.
  • the inner cylinder 1000 of the laundry treatment device of the present application can ensure that the water flowing through the first water inlet 211 and the second water inlet 221 can smoothly flow to the drainage hole 1231 to ensure that At the same time, the present application also arranges multiple drainage holes 1231 at the positions covered by the lifting ribs 200 to ensure that the drainage holes 1231 will not directly contact the clothes when the clothes processing device is processing clothes, thereby preventing the drainage holes 1231 from drawing or Scratch clothing to improve user experience.
  • the first side wall 210 and the second side wall 220 are arranged oppositely in the width direction of the lifting rib 200 .
  • the width direction mentioned here can be understood as the left-right direction shown in Figure 1.
  • the water inlet 211 and the second water inlet 221 are used to increase the flow area on the lifting rib 200 and ensure that the water in the barrel body 100 can flow to the drainage hole 1231; on the other hand, during the process of processing clothes in the inner barrel 1000, Most of the water in the barrel body 100 will remain on the left and right sides of the lifting rib 200. Therefore, with the above arrangement, when the first water inlet 211 is provided on the first side wall 210 and the second water inlet 211 is provided on the second side wall 220, When the water inlet 221 is opened, it can be ensured that the water in the barrel body 100 can smoothly flow through the first water inlet 211 and the second water inlet 221 toward the drainage hole 1231.
  • a plurality of first water inlets 211 are arranged at intervals in the length direction of the lifting rib 200
  • a plurality of second water inlets 221 are arranged at intervals in the length direction of the lifting rib 200 .
  • the plurality of first water inlets 211 and the plurality of second water inlets 221 are spaced apart along the length direction of the lifting rib 200 to make full use of the space on the lifting rib 200 and ensure that a larger space can be provided on the lifting rib 200.
  • a large number of water openings are provided to further increase the flow area of the lifting rib 200, thereby ensuring that the water in the inner cavity of the barrel body 100 can flow quickly and in large quantities toward the drainage hole 1231 through the first water opening 211 and the second water opening 221. to improve drainage efficiency.
  • the first side wall 210 also has a first water blocking portion 212 located between two adjacent first water openings 211 , and at least one second water opening 221 is located directly between the two adjacent first water openings 211 .
  • the first water blocking part 212 is provided. That is to say, the first side wall 210 is not only provided with the first water inlet 211, but also is provided with a first water blocking portion 212, so that part of the water flowing from the second water inlet 221 to the area covered by the lifting rib 200 will Under the action of inertia, it directly acts on the first water blocking part 212.
  • the first water blocking part 212 is used to resist the flow of water and prevent water from flowing into the cylinder body 100 through the lifting ribs 200, so that it flows to the lifting All water in the area covered by the ribs 200 can flow out through the drainage holes 1231 to achieve the purpose of drainage and improve the drainage efficiency of the inner cylinder 1000.
  • a plurality of first water blocking parts 212 are provided on the first side wall 210 , and each second water opening 221 is disposed directly opposite the first water blocking part 212 . It is ensured that most of the water flowing from the second water inlet 221 to the area covered by the lifting ribs 200 can be discharged through the drainage holes 1231, so as to improve the drainage efficiency of the inner cylinder 1000.
  • the second side wall 220 also has a second water blocking portion 222 located between two adjacent second water openings 221, and at least one first water opening 211 faces the second water blocking portion.
  • the first water inlet 211 and the second water retaining part 222 are arranged in cooperation, so that part of the water flowing from the first water inlet 211 to the area covered by the lifting rib 200 will directly act on the second water retaining part 222 under the action of inertia.
  • the second water retaining part 222 is used to resist the flow of water and prevent water from flowing into the barrel body 100 through the lifting ribs 200. In this way, all water flowing into the area covered by the lifting ribs 200 can be drained.
  • the hole 1231 flows out to achieve the purpose of drainage and improve the drainage efficiency of the inner cylinder 1000.
  • a plurality of second water blocking portions 222 are provided on the second side wall 220 , and each first water opening 211 is disposed directly opposite the second water blocking portion 222 . It is ensured that most of the water flowing from the first water inlet 211 to the area covered by the lifting ribs 200 can be discharged through the drainage holes 1231, so as to improve the drainage efficiency of the inner cylinder 1000.
  • the first water blocking portion 212 is provided on the first side wall 210 and the second water blocking portion 222 is provided on the second side wall 220, thus combining the plurality of first water inlets 211 and the plurality of second water blocking portions 222.
  • the first water inlets 211 can be arranged facing the second water blocking part 222, and the second water inlets 221 can be arranged facing the first water blocking part 212, thereby ensuring that the water inlets (the first water inlets) can pass through.
  • 211 and the second water inlet 221) that enters the area covered by the lifting rib 200 can be discharged through the drainage hole 1231 to improve drainage efficiency.
  • the dotted line part in Figure 2 shows the flow path of part of the water entering the area covered by the lifting rib 200 under the action of inertia. It can be clearly seen from the dotted line part that the water enters from the first water inlet 211 to the lifting rib 200 Part of the water in the covered area acts on the second water blocking part 222, and part of the water that enters from the second water inlet 221 to the area covered by the lifting rib 200 acts on the first water blocking part 212 to avoid entering. Part of the water in the area covered by the lifting ribs 200 flows toward the inner cavity of the barrel body 100 .
  • the outer surface of the side wall of the lifting rib 200 is provided with a blocking member 260 , and the blocking member 260 is used to block the first water inlet 211 and/or the second water inlet 221 .
  • the blocking member 260 avoids the edge of the first water inlet 211 and/or the second water inlet 221 from scratching the clothes when the inner cylinder 1000 is processing clothes, thereby reducing the wear and tear of the inner cylinder 1000 on the clothes; on the other hand, it avoids the user from visually observing to the first water inlet 211 and/or the second water inlet 221 to enhance the visual aesthetics of the inner cylinder 1000, that is, to improve the aesthetics of the inner cylinder 1000.
  • the shielding member 260 is provided on the side of the first water inlet 211 and the second water inlet 221 away from the barrel body 120 .
  • the shielding member 260 can be arranged away from the barrel body 120, and at the same time, the first water outlet 211 and the second water outlet 221 can be located between the barrel body 120 and the shielding member. 260, in this way, the shielding member 260 can effectively cover the first water inlet 211 and the second water inlet 221, thereby preventing the user from directly observing the first water inlet 211 and the second water inlet 221 of the lifting rib 200 to improve the inner cylinder. 1000 aesthetics.
  • the lifting rib 200 itself defines a first water inlet 211 and/or a second water inlet 221 (not shown in this example figure).
  • first water inlet 211 and/or the second water inlet 221 can be directly defined on the lifting rib 200 to realize the communication between the drainage hole 1231 and the inner cavity of the barrel body 100, thereby ensuring the water in the inner cavity of the barrel body 100. It can flow smoothly to the drainage hole 1231, and then be discharged through the drainage hole 1231, thereby achieving the purpose of dehydration.
  • a through hole may be directly opened on the first side wall 210 to form the first water inlet 211 and/or a through hole may be opened on the second side wall 220 to form the second water inlet 221 , thereby realizing the improvement of the lifting rib.
  • the structure of 200 itself defines a first water inlet 211 and/or a second water inlet 221 .
  • the The aperture of the through hole is set to be smaller.
  • Such setting ensures that more through holes can be provided on the lifting rib 200 to increase the number of through holes, thereby increasing the number of the first water inlets 211 and the second water inlets 221
  • it can also prevent the edges of the through holes on the lifting ribs 200 from scratching the clothes.
  • first water inlet 211 and/or the second water inlet 221 on the structure of the lifting rib 200, there is no need to provide the first water inlet 211 and the second water inlet 221 between the lifting rib 200 and the barrel body 120. /or the second water inlet 221, so that the lifting rib 200 can be closely attached to the barrel body 120 to improve the position stability of the lifting rib 200, thereby effectively improving the cleanliness of laundry processing.
  • the distance between the first water outlet 211 and/or the second water outlet 221 and the barrel body 120 can be increased. In this way, during the process of washing clothes, the water flow in the inner cylinder 1000 can flow out slowly, so that the water level in the inner cylinder 1000 can be maintained at a high level, thereby saving the water consumption of the inner cylinder 1000, thereby achieving water conservation.
  • the above arrangement can also prevent water from flowing between the inner barrel 1000 and the outer barrel, so that dirt and bacteria between the inner barrel 1000 and the outer barrel will not flow into the inner barrel 1000 through the first water outlet 211 and/or the second water outlet 221 within, thereby achieving a healthy washing effect.
  • the lifting rib 200 itself is not limited to defining the first water opening 211 and/or the second water opening 221 , the first water opening 211 can also be defined between the lifting rib 200 and the barrel body 120 and/or the second water inlet 221.
  • the first water inlet 211 and/or the second water inlet 221 can also realize the communication between the drainage hole 1231 and the inner cavity of the barrel body 100, thereby ensuring that the water in the inner cavity of the barrel body 100 can smoothly flow to the drainage hole 1231.
  • the first water inlet 211 and the second water inlet 221 are both defined by the lifting rib 200 itself; in the example of the second aspect, the first water inlet 211 and the second water inlet 221 are both defined by the lifting rib 200 itself; The water inlets 221 are defined between the lifting ribs 200 and the barrel body 120; in the third example, the first water inlets 211 are defined by the lifting ribs 200 themselves, and the second water inlets 221 are defined between the lifting ribs 200 and the barrel. In the example of the fourth aspect, the second water inlet 221 is defined by the lifting rib 200 itself, and the first water inlet 211 is defined between the lifting rib 200 and the barrel body 120 .
  • This application does not limit the specific definition of the first water outlet 211 and the second water outlet 221, as long as it is ensured that the water in the inner cavity of the barrel body 100 can smoothly flow to the drainage hole 1231 and the first water outlet 211 and the second water outlet 221 are not limited.
  • the nozzles 221 can be arranged staggeredly.
  • a first notch is provided on the edge of the first side wall 210 , and the barrel 120 cooperates with the opening of the first notch to define the first water inlet 211 .
  • the first water inlet 211 is defined between the lifting rib 200 and the barrel body 120 to realize the communication between the drainage hole 1231 and the inner cavity of the barrel body 100 .
  • the above arrangement can make the first water inlet 211 close to the barrel body 120. In this way, during the rotation of the inner barrel 1000, the water in the barrel body 100 is close to the inside of the barrel body 120 under the action of centrifugal force, ensuring that the water can flow smoothly. It flows through the first water inlet 211 to the drainage hole 1231.
  • the lifting rib 200 due to the first water blocking portion 212 between the two adjacent first water openings 211 of the first side wall 210, when the first water opening 211 is formed between the lifting rib 200 and the barrel body 120, the lifting rib 200 The first water retaining portion 212 can be used to abut against the barrel body 120 to increase the contact area between the lifting ribs 200 and the barrel body 120, thereby ensuring that the lifting ribs 200 can be stably placed inside the barrel body 120.
  • the edge of the first notch is formed in one or more combinations of an arc shape, a straight line shape, or a polygonal shape.
  • the edges of the first notch are different, and accordingly the shape of the first water outlet 211 is also different.
  • the flow area of the first water outlet 211 is also different.
  • Those skilled in the art can select different shapes of first gaps based on actual drainage requirements. edge to ensure that the first water outlet 211 can smoothly guide water to the drainage hole 1231 and at the same time improve the aesthetics of the first water outlet 211.
  • a second notch is provided on the edge of the second side wall 220 , and the barrel 120 cooperates with the opening of the second notch to define a second water inlet 221 .
  • the second water inlet 221 is defined between the lifting rib 200 and the barrel body 120 to realize the communication between the drainage hole 1231 and the inner cavity of the barrel body 100 .
  • the second water inlet 221 between the lifting rib 200 and the barrel body 120 there is no need to open a through hole in the structure of the lifting rib 200 to form the second water inlet 221, thereby reducing the number of lifting ribs.
  • the number of through holes on the lifting rib 200 can reduce the manufacturing difficulty of the lifting rib 200, thereby reducing the wear of the lifting rib 200 on the clothing.
  • the above arrangement can make the second water inlet 221 close to the barrel body 120. In this way, during the rotation of the inner barrel 1000, the water in the barrel body 100 is close to the inside of the barrel body 120 under the action of centrifugal force, ensuring that the water can flow smoothly. It flows through the second water inlet 221 to the drainage hole 1231.
  • the lifting ribs 200 are formed into a similar non-porous structure to minimize the wear of the lifting ribs 200 on clothing.
  • the lifting rib 200 due to the second water blocking portion 222 between the two adjacent second water openings 221 of the second side wall 220, when the second water opening 221 is formed between the lifting rib 200 and the barrel body 120, the lifting rib 200
  • the second water retaining portion 222 can be used to abut against the barrel body 120 to increase the contact area between the lifting ribs 200 and the barrel body 120, thereby ensuring that the lifting ribs 200 can be stably placed inside the barrel body 120.
  • the edge of the second notch is formed in one or more combinations of an arc shape, a straight line shape, or a polygonal shape.
  • the edges of the second notch are different, and accordingly the shape of the second water inlet 221 is also different.
  • the flow area of the second water inlet 221 is also different.
  • Those skilled in the art can select different shapes of second notches based on actual drainage requirements. edge to ensure that the second water outlet 221 can smoothly guide water to the drainage hole 1231 and at the same time improve the aesthetics of the second water outlet 221.
  • the barrel 120 is provided with a plurality of clamping holes 121 , and a plurality of hooks 230 are respectively provided on both sides of the lifting rib 200 .
  • the plurality of hooks 230 are connected to
  • the plurality of snap holes 121 are snap-fitted in one-to-one correspondence.
  • the snap-fit connection method allows the lifting ribs 200 to be fixedly arranged on the barrel body 120, which not only ensures the stability of the lifting ribs 200 relative to the barrel body 120, but also facilitates the cooperation between the lifting ribs 200 and the barrel body 120, reducing the cost.
  • the assembly of the inner cylinder 1000 is difficult and makes the structure of the inner cylinder 1000 simple.
  • the cooperation between the hook 230 and the hole 121 makes the lifting rib 200 and the barrel body 120 form a detachable connection, that is, the lifting rib 200 and the barrel body 120 can be completely disassembled, which facilitates the replacement or disassembly of the lifting rib 200.
  • connection method between the lifting ribs 200 and the barrel body 120 is not limited to the snap fit between the hook 230 and the locking hole 121. It can also be other connection methods, such as: the lifting ribs 200
  • a plurality of first connection holes are provided on both sides of the barrel 120.
  • a plurality of second connection holes are provided on the barrel 120 to match the first connection holes.
  • the second connection holes are formed as internal threaded holes, and the bolts pass through the first connection holes.
  • the connecting hole is fixedly connected to the second connecting hole to realize the detachable connection between the lifting rib 200 and the barrel body 120; alternatively, the barrel body 120 is provided with multiple slots, and multiple buckles are provided on both sides of the lifting rib 200. , multiple buckles are plugged in and matched with multiple slots one by one, and the detachable connection between the lifting rib 200 and the barrel body 120 can also be realized.
  • each drainage hole group 123 includes a plurality of drainage holes 1231 .
  • each drainage hole group 123 includes a plurality of drainage holes 1231 .
  • the arrangement positions of the plurality of drainage holes 1231 covered by the lifting ribs 200 can be relatively uniform, thereby improving the aesthetics of the arrangement of the drainage holes 1231 and reducing the difficulty of manufacturing the drainage holes 1231.
  • multiple drainage hole groups 123 are arranged at intervals along the circumferential direction of the barrel 120 .
  • the water flow at multiple locations in the inner cylinder 1000 can be discharged simultaneously through the drainage hole 1231, especially the water flow at different positions in the circumferential direction of the cylinder body 120 can be discharged at the same time, thereby improving the drainage efficiency, especially when using the inner cylinder 1000 for drainage.
  • the cooperation of multiple drainage hole groups 123 can improve the dehydration quality and reduce the moisture content of the clothes.
  • each drainage hole group 123 a plurality of drainage holes 1231 are provided at intervals along the axial direction of the barrel 120 .
  • multiple drainage holes 1231 in each drainage hole group 123 can cooperate to discharge water at different positions in the axial direction of the barrel 120 at the same time, thereby further improving drainage efficiency.
  • the length direction of the lifting rib 200 extends along the axial direction of the barrel body 100 .
  • each lifting rib 200 can completely cover the plurality of drainage holes 1231 to avoid exposure of some of the drainage holes 1231 spaced along the axial direction of the barrel 120 to solve the problem of clothing wear.
  • the lifting ribs 200 can effectively drive the clothes to turn over and increase the contact area between the inner cylinder 1000 and the clothes, so as to achieve the effect of processing the clothes and improve the cleanliness of the clothes processing; thirdly, the axially extending The lifting ribs 200 can increase the areas of the first side wall 210 and the second side wall 220, so that a plurality of first water openings 211 can be formed on the first side wall 210, and a plurality of second water openings 211 can be formed on the second side wall 220.
  • the barrel body 120 is provided with a plurality of lifting ribs 200.
  • the plurality of lifting ribs 200 are arranged at circumferential intervals of the barrel body 100.
  • a plurality of drainage holes are provided at the position of the barrel body 120 covered by each lifting rib 200. holes 1231 to further increase the number of drainage holes 1231 and improve drainage efficiency.
  • the multiple lifting ribs 200 cooperate to further increase the contact area between the inner tube 1000 and the clothes, thereby improving the cleanliness of clothes processing.
  • the barrel 120 is provided with three lifting ribs 200 , and the three lifting ribs 200 are evenly distributed on the inner wall of the inner barrel 1000 .
  • the lifting ribs 200 will rotate together with the inner tube 1000.
  • the lifting ribs 200 can lift the clothes. 200 continues to rotate, the clothes will break away from the lifting ribs 200 under the action of gravity and fall freely to hit the rolling water or other clothes.
  • the purpose of cleaning the clothes is achieved, and the washing effect of the clothes treatment device is improved.
  • a plurality of drainage holes 1231 in two adjacent drainage hole groups 123 are staggered in the axial direction of the barrel 120 .
  • the plurality of drainage holes 1231 staggered in the axial direction of the barrel 120 can drain water at different positions of the barrel 120 at the same time, making the drainage of the inner barrel 1000 more convenient and improving the drainage efficiency.
  • each drainage hole group 123 the distance between two adjacent drainage holes 1231 in the axial direction of the barrel 120 is H1.
  • the plurality of drainage holes 1231 in each drainage hole group 123 can be arranged at intervals along the axial direction of the barrel body 120, so as to discharge water at different positions in the axial direction of the barrel body 120.
  • the above-mentioned spacing H1 between two adjacent drainage holes 1231 in the same drainage hole group 123 means that no other fixing parts or fixtures are provided in the area where the same drainage hole group 123 is arranged.
  • Structural components for example: as shown in Figure 1 and Figure 5, when a stuck hole 121 is provided in the area of the leftmost drainage hole group 123, the two adjacent drainage holes 1231 need to avoid the stuck hole 121, and also There will be a phenomenon that the distance between two adjacent drainage holes 1231 in the axial direction of the barrel 120 is greater than H1.
  • the distance between two adjacent drainage holes 1231 in the axial direction of the barrel 120 is H1; when other structural components are provided between two adjacent drainage holes 1231, the spacing between the two adjacent drainage holes 1231 in the axial direction of the barrel 120 is adjusted accordingly according to the size of the structural component.
  • the distance between the holes 1231 in the axial direction of the barrel 120 is set to H1.
  • the drainage hole 1231 in one drainage hole group 123 and the adjacent drainage hole 1231 in the other drainage hole group 123 are on the barrel body.
  • the distance along the axis of 120 is H2, where H1 is twice as long as H2. That is to say, the distance between the drainage holes 1231 in one drainage hole group 123 and the adjacent drainage holes 1231 in the other drainage hole group 123 in the axial direction of the barrel 120 is smaller than that between adjacent drainage holes 1231 in the same drainage hole group 123 .
  • the distance between the two drainage holes 1231 in the axial direction of the barrel body 120 allows multiple drainage holes 1231 in two adjacent drainage hole groups 123 to be staggered in the axial direction of the barrel body 120 to improve the inner barrel 1000. Drainage efficiency while improving drainage effect.
  • the spacing between two adjacent drainage hole groups 123 in the circumferential direction of the barrel body 120 is equal to the spacing between two adjacent drainage holes 1231 in each drainage hole group 123 in the axial direction of the barrel body 120 .
  • the spacing between two adjacent drainage hole groups 123 in the circumferential direction of the barrel body 120 is H1 (as shown in FIG. 5 ), so that the adjacent two drainage hole groups 123 can be located in the circumferential direction of the barrel body 120 . They are arranged at intervals to ensure that the multiple drainage hole groups 123 can cooperate to drain water at different positions in the circumferential direction of the barrel 120, thereby improving drainage efficiency.
  • the drainage hole 1231 is in a normally open state to communicate with the inside and outside of the barrel body 100 . This ensures that the drainage hole 1231 can always connect the inner and outer sides of the barrel body 100, which can not only improve the drainage efficiency, but also completely discharge the washing water and dirt in the inner barrel 1000, improve the drainage effect, and thereby improve the clothing processing capacity of the inner barrel 1000. .
  • the drain hole 1231 in a normally open state, there is no need to install a seal to seal the drain hole 1231 at the drain hole 1231, which reduces the production cost and manufacturing difficulty of the inner cylinder 1000 of the present application while also making the inner tube
  • the structure of the barrel 1000 is simple and easy to control.
  • each first water outlet 211 corresponds to at least one drainage hole 1231.
  • the position correspondence mentioned here can be understood as that in the axial direction of the barrel body 120, each first water outlet 211 is arranged directly opposite to at least one drainage hole 1231, so that the water flows through the first water outlet 211 to the lifting rib 200. Part of the water in the covered area can flow directly to the drainage hole 1231 and then be discharged through the drainage hole 1231 to improve the drainage efficiency of the inner cylinder 1000 .
  • each second water inlet 221 corresponds to the position of at least one drainage hole 1231. That is to say, in the axial direction of the barrel 120, each second water outlet 221 is arranged directly opposite to at least one drainage hole 1231, so that part of the water flowing through the second water outlet 221 to the area covered by the lifting rib 200 can also It flows directly to the drainage hole 1231 and then is discharged through the drainage hole 1231 to improve the drainage efficiency of the inner cylinder 1000 .
  • each first water opening 211 and each second water opening 221 correspond to the position of at least one drainage hole 1231. This ensures that part of the water flowing into the area covered by the lifting rib 200 through each first water outlet 211 and the second water outlet 221 can directly flow to the drainage hole 1231, further improving the drainage efficiency of the inner cylinder 1000.
  • the inner peripheral wall of the barrel 120 has a rubbing area, and the rubbing area is provided with a plurality of rubbing convex portions 310 , and the plurality of rubbing convex portions 310 are spaced apart in the circumferential direction of the barrel 120 set up.
  • the kneading convex parts 310 can contact with the clothes and rub against each other to produce a kneading effect, thereby improving the ability of the inner barrel 1000 to handle clothes.
  • the cooperation of multiple kneading convex parts 310 can increase the contact between the barrel 120 and the clothes. The contact area of the inner cylinder 1000 is thereby further improved.
  • a guide channel 320 is formed between two adjacent rubbing convex portions 310 , and at least one end of the guide channel 320 is disposed facing the lifting rib 200 .
  • the diversion channel 320 can guide the flow of water in the barrel 120 to ensure that the water flow can flow in a predetermined direction.
  • the diversion channel 320 can guide the water to the lifting rib 200, and then flow to the drainage hole 1231 through the first water opening 211 or the second water opening 221 on the lifting rib 200 to achieve the purpose of dehydration and improve drainage. efficiency.
  • one end of at least a portion of the flow guide channel 320 faces the first water inlet 211 or the second water inlet 221 .
  • the diversion channel 320 can directly guide the water flow to the first water inlet 211 or the second water inlet 221 to further improve drainage efficiency.
  • the present application forms the flow guide channel 320 through its own structure (the rubbing convex portion 310) on the barrel body 120, so that there is no need to install other flow guides, thereby further simplifying the structure of the inner barrel 1000, so that the inner barrel 1000 has a simple structure.
  • the kneading convex portion 310 is formed into a curved shape.
  • it can also prevent the rubbing convex portion 310 from hindering the rotation of the clothes, that is, to ensure that when the inner cylinder 1000 is used to process the clothes, the clothes can be smoothly placed in the inner tube 1000.
  • the inner cylinder 1000 rotates and generates friction with the kneading convex portion 310, thereby achieving the purpose of treating the clothes and improving the cleanliness of the clothes.
  • the flow guide channel 320 forms a curved shape; or, the rubbing convex portion 310 and the flow guide channel 320 both form a curved shape. While improving the internal aesthetics of the inner cylinder 1000, it can also prevent the rubbing convex portion 310 and the guide channel 320 from hindering the rotation of the clothes, that is, ensuring that when the inner cylinder 1000 is used to process clothes, the clothes can smoothly rotate in the inner cylinder 1000 and Friction occurs with the kneading convex portion 310, thereby achieving the purpose of treating the clothes and improving the cleanliness of the clothes.
  • the barrel body 120 also has a drainage area 122 .
  • the drainage area 122 and a plurality of kneading convex portions 310 are arranged in the axial direction of the barrel body 120 .
  • the drainage area 122 is provided close to the barrel bottom 110 . In order to rationally utilize the space of the barrel body 120, it is ensured that the drainage area 122 and the plurality of rubbing convex portions 310 can be arranged on the barrel body 120.
  • the drainage area 122 includes a plurality of drainage openings 1221 in a normally open state.
  • a plurality of normally open drainage openings 1221 are provided close to the cylinder bottom 110, because during the installation process of the lifting ribs 200, in order to avoid clamping due to the close distance between the lifting ribs 200 and the cylinder bottom 110
  • the lifting ribs 200 are usually spaced apart from the tube bottom 110 and leave a long distance.
  • the distance between the rear end of the lifting ribs 200 and the tube bottom 110 is set to be greater than 10 mm to ensure that the clothes will not get stuck.
  • this application provides a drainage opening 1221 close to the bottom of the tube 110.
  • the drainage passage 1221 is used to discharge water that cannot be discharged by the drainage hole 1231, thereby improving the drainage effect of the inner cylinder 1000.
  • the present application uses the drainage holes 1231 and the drainage openings 1221 to cooperate for drainage, which can greatly improve the drainage efficiency and drainage quality, thereby reducing the moisture content on the clothes.
  • a plurality of drainage passages 1221 are provided at intervals along the circumference of the barrel 120 .
  • the plurality of drainage openings 1221 are used together to discharge water at different positions near the bottom of the tube 110 to achieve the purpose of treating clothes.
  • the plurality of drainage openings 1221 are used together with drainage to improve drainage efficiency.
  • the drainage port 1221 is in a normally open state to communicate with the inner and outer sides of the cylinder body 100.
  • the drainage port 1221 is in a normally open state to communicate with the inner and outer sides of the cylinder body 100.
  • the radial size of the barrel body 120 gradually increases from the barrel mouth 140 to the barrel bottom 110 .
  • the barrel 120 can be formed into a cone-like shape, so that when the barrel 120 is arranged parallel to the horizontal plane, the overall structure of the barrel 120 can be tilted relative to the horizontal plane, and the barrel 120 close to the barrel bottom 110 can be The lowest end is below the water level.
  • the water flow in the inner cylinder 1000 will flow toward the cylinder bottom 110 along the extension direction of the cylinder body 120. Since the drainage area 122 is disposed close to the cylinder bottom 110, this can be achieved Part of the water in the inner cylinder 1000, especially the water located at the cylinder mouth 140, is directed to the drainage area 122, and then discharged through the drainage port 1221, thereby improving the drainage efficiency of the inner cylinder 1000 and ensuring the water in the inner cylinder 1000. Water can be drained quickly to improve drainage effect.
  • the diversion channel 320 can guide part of the water in the barrel body 100 to the drainage area 122. At this time, the water is discharged through the drainage opening 1221 in the drainage area 122 to achieve the purpose of dehydration and improve drainage. efficiency.
  • one end of the partial guide channel 320 faces the drainage opening 1221 .
  • the diversion channel 320 can directly guide the water flow to the drainage opening 1221 and discharge it directly through the drainage opening 1221, further improving the drainage efficiency.
  • a part of the plurality of guide channels 320 is a first guide channel 321 , one end of the first guide channel 321 extends toward the drainage area 122 , and the other end of the first guide channel 321 extends towards the drainage area 122 .
  • One end extends toward the direction of the barrel mouth 140 .
  • the first diversion channel 321 can guide the water located at the barrel mouth 140 to the drainage area 122, and then discharge it through the drainage opening 1221 in the drainage area 122 to achieve the purpose of drainage.
  • the first guide channel 321 includes a first guide section 3211 and a second guide section 3212.
  • One end of the first guide section 3211 extends toward the drainage area 122, and the second guide section 3211 extends toward the drainage area 122.
  • One end of the first guide section 3212 extends toward the barrel mouth 140, and the other end of the first guide section 3211 is connected to the other end of the second guide section 3212. In this way, the water at the mouth 140 can enter the second guide section 3212 and flow along the extension direction of the second guide section 3212. During the flow, the other end of the second guide section 3212 is connected to the second guide section 3212.
  • the other end of the first guide section 3211 is connected, so that the water in the second guide section 3212 can smoothly flow to the first guide section 3211, and then flow along the extension direction of the first guide section 3211. And flows to the drainage area 122, and finally the water is discharged through the drainage opening 1221 in the drainage area 122, so as to achieve the purpose of using the drainage opening 1221 for drainage.
  • the bending direction of the first flow guide section 3211 is opposite to the bending direction of the second flow guide section 3212 .
  • the opposite ends of the interconnected first guide section 3211 and the second guide section 3212 can extend towards the direction of the drainage area 122 and the barrel mouth 140 respectively, thereby realizing the use of the first guide section 3211 and the second guide section 3212
  • the water flow at the barrel mouth 140 is directed to the drainage area 122 .
  • the above arrangement can also increase the aesthetics of the first guide channel 321, thereby increasing the aesthetics of the inner cylinder 1000.
  • a part of the plurality of flow guide channels 320 is a second flow guide channel 322 , one end of the second flow guide channel 322 extends toward the barrel mouth 140 , and the other end of the second flow guide channel 322 extends toward the lifting rib 200 .
  • the second diversion channel 322 can guide part of the water at the barrel mouth 140 to the lifting rib 200, and then use the drainage holes 1231 to drain the water, thereby achieving the purpose of dehydration and improving drainage efficiency.
  • a part of the plurality of flow guide channels 320 is a second flow guide channel 322 , one end of the second flow guide channel 322 extends toward the barrel bottom 110 , and the other end of the second flow guide channel 322 Extend towards the lifting rib 200.
  • the second diversion channel 322 can guide part of the water located at the lifting rib 200 to the tube bottom 110, and then drain the water through the drainage area 122 located at the tube bottom 110, so that the drainage holes 1231 and the drainage opening 1221 cooperate with drainage to achieve the purpose of dehydration and improve drainage efficiency.
  • a plurality of rubbing convex portions 310 are provided on the inner peripheral wall of the barrel body 120, and a plurality of guiding channels 320 are formed between the plurality of rubbing convex portions 310.
  • the water is guided to the drainage hole 1231, and the other part of the guide channel 320 can guide the water in the cylinder body 100 to the drainage opening 1221, thereby realizing the water discharge at different positions in the cylinder body 100 to improve the efficiency of the inner cylinder 1000. Drainage efficiency.
  • part of the structure of the barrel bottom 110 extends toward the inner cavity of the barrel body 120 to cover the drainage area 122 .
  • the coverage mentioned here can be understood as the bottom 110 of the drum is provided with a drainage area 122 within the projection range of the circumferential surface where the drum body 120 is located, so that the bottom 110 of the drum 110 can be used to cover the drainage area 122, that is, to cover the drainage channel. 1221, during the process of clothes processing, it can ensure that the drainage opening 1221 will not directly contact the clothes, thereby avoiding the hole edge of the drainage opening 1221 from wearing the clothes, so as to effectively solve the problem of clothing wear and greatly reduce the wear rate of the clothes. Improve user experience.
  • a water flow channel 150 is formed between the outer peripheral wall of the barrel bottom 110 and the barrel body 120 .
  • the water flow channel 150 communicates with the drainage opening 1221 and the inner cavity of the barrel body 120 .
  • the water flow channel 150 here is mainly used to avoid the water flow flowing toward the drainage opening 1221, and at the same time, it can also guide the flow of water to ensure that the water in the inner cavity of the barrel body 100 can be smoothly discharged through the drainage opening 1221, thereby achieve the purpose of dehydration.
  • the arrow in FIG. 5 shows the direction in which the water in the inner cavity of the barrel body 100 flows through the water flow channel 150 toward the drainage opening 1221 .
  • the kneading area is a non-porous area. That is to say, no holes are made in the kneading area, because during the process of the inner cylinder 1000 processing clothes, the kneading area will directly contact the clothes.
  • the rubbing area can be avoided from wearing and scratching the clothes, and also This is to avoid the wear and tear caused by the inner cylinder 1000 on the clothes when handling the clothes, thereby improving the user experience.
  • the drainage holes 1231 and drainage openings 1221 of the present application are shielded by structural members (lifting ribs 200 and cylinder bottom 110) and the kneading area is set into a non-porous structure, so that the inner cylinder 1000 is similar to a non-porous structure. , to improve the aesthetics of the inner cylinder 1000, and at the same time, to prevent the inner cylinder 1000 from scratching clothes, thereby improving the user experience.
  • a drainage outlet (not shown in the figure) can also be provided at a position not covered by the lifting rib 200 and the barrel bottom 110 , for example: between a plurality of kneading convex portions 310 or between the kneading convex portions 310 Drainage outlets are provided on the inner cylinder 1000 to further increase the number of drainage structures on the inner cylinder 1000, thereby improving the drainage efficiency of the inner cylinder 1000.
  • the inner cylinder 1000 of the clothes treatment device includes: a cylinder body 100 and a lifting rib 200 .
  • the cylinder body 100 includes a cylinder bottom 110 and a cylinder body 120.
  • the lifting ribs 200 are arranged on the inside of the cylinder body 120.
  • the position of the cylinder body 120 covered by the lifting ribs 200 is provided with a drainage hole 1231.
  • the side wall of the lifting ribs 200 has a water outlet. 240.
  • the water outlet 240 communicates with the drainage hole 1231 and the inner cavity of the barrel body 100. In this way, the water in the inner cavity of the barrel body 100 can smoothly flow to the drainage hole 1231 through the water outlet 240, and then be discharged through the drainage hole 1231.
  • the outer surface of the side wall of the lifting rib 200 is provided with a blocking member 260 , and the blocking member 260 is used to block the water inlet 240 .
  • the blocking mentioned here is mainly to prevent the user from visually observing the water outlet 240 through the barrel mouth 140, but it will not affect the connection between the water outlet 240 and the drainage hole 1231 and the inner cavity of the barrel body 100, thus ensuring the water flow in the inner cavity of the barrel body 100. While it can be discharged normally, it can also enhance the visual aesthetics of the inner cylinder 1000, that is, improve the aesthetics of the inner cylinder 1000.
  • the inner cylinder 1000 causes wear on the clothes; on the other hand, it prevents the user from visually observing the water outlet 240 .
  • the present application chooses to provide a blocking member 260 on the outer surface of the side wall of the lifting rib 200 to block the water inlet 240, thereby improving the The aesthetics of the inner cylinder is 1000.
  • the inner barrel 1000 of the laundry treatment device of the present application is provided with drainage holes 1231 at the position of the barrel body 120 covered by the lifting ribs 200 and on the side walls of the lifting ribs 200.
  • the water outlet 240 and the shielding member 260 are provided on the outer surface of the side wall of the lifting rib 200, which ensures that the water in the inner cavity of the barrel body 100 can be drained smoothly, and can also prevent the drainage hole 1231 from scratching the clothes, and at the same time, the inner cavity can be improved.
  • the overall aesthetics of the barrel 1000 is provided with drainage holes 1231 at the position of the barrel body 120 covered by the lifting ribs 200 and on the side walls of the lifting ribs 200.
  • the water inlet 240 is located between the barrel 120 and the shielding member 260 . That is to say, compared with the position of the shielding member 260 , the water outlet 240 of the present application is arranged closer to the barrel 120 , so that the shielding member 260 can effectively cover the water outlet 240 , thus preventing the user from directly observing the lifting ribs 200
  • the water outlet 240 is provided to improve the aesthetics of the inner cylinder 1000.
  • the shielding member 260 and the barrel body 120 there is a gap between the shielding member 260 and the barrel body 120 to connect the water inlet 240 and the inner cavity of the barrel body 100 .
  • This gap is mainly used to avoid the water outlet 240 and prevent the shielding member 260 or the barrel body 120 from directly blocking the water outlet 240 and causing the water outlet 240 to be unable to communicate with the drainage hole 1231 and the inner cavity of the barrel body 100. That is to say, by removing the shielding member A gap is provided between 260 and the barrel body 120 to ensure that the water outlet 240 can normally communicate with the drainage hole 1231 and the inner cavity of the barrel body 100, thereby ensuring that the water in the inner cavity of the barrel body 100 can smoothly flow to the drainage hole 1231.
  • This gap can also guide the flow of water in the inner cavity of the barrel body 100, ensuring that the water in the inner cavity of the barrel body 100 can smoothly flow to the water outlet 240, and finally flow to the drainage hole 1231 through the water outlet 240. It is convenient to drain water through the drainage hole 1231.
  • one end of the shielding member 260 is connected to the side wall of the lifting rib 200 , and the other end of the shielding member 260 extends in a direction away from the side wall of the lifting rib 200 .
  • the lifting rib 200 is used to support the shielding member 260 to improve the structural stability of the shielding member 260, and at the same time, the other end of the shielding member 260 is directed away from the lifting rib 200.
  • the direction of the side wall is extended to ensure that the blocking member 260 can effectively block the water inlet 240, thereby improving the aesthetics of the inner barrel 1000.
  • the other end wall of the shielding member 260 is smoothed. That is to say, the end wall of the shielding member 260 away from the lifting rib 200 is smoothed to prevent the end wall of the shielding member 260 from scratching the clothes, thereby further reducing the wear caused by the inner tube 1000 to the clothes.
  • the other end wall of the shielding member 260 can be rounded, so that the end of the shielding member 260 away from the lifting rib 200 can be smoothed.
  • the water inlets 240 include multiple water inlets 240 , and at least a portion of the multiple water inlets 240 are spaced apart along the length direction of the lifting rib 200 .
  • the multiple water openings 240 cooperate to ensure that the water in the inner cavity of the cylinder body 100 can quickly and massively flow toward the drainage holes 1231, and then be discharged to the outside of the cylinder body 100 through the multiple drainage holes 1231 to achieve the purpose of drainage, and Improve drainage efficiency.
  • the present application arranges multiple water inlets 240 at intervals along the length direction of the lifting rib 200 to ensure that the multiple water inlets 240 can guide water located at different positions in the length direction of the barrel body 100 to the drainage hole 1231, and also This is to ensure that water at different positions along the length of the barrel body 100 can be directed to and through the drainage holes 1231 at the same time to further improve drainage efficiency.
  • the length direction of the lifting rib 200 mentioned above can be understood as the front-to-back direction shown in FIG. 1 , that is, the axial direction of the barrel body 100 .
  • a plurality of water inlets 240 are provided on opposite sides of the lifting rib 200 in the width direction.
  • the width direction mentioned here can be understood as the left and right direction as shown in Figure 1.
  • the plurality of water outlets 240 are cooperatively used to guide water located at different positions in the circumferential direction of the barrel body 100 to the drainage hole 1231 and pass through the drainage hole 1231, that is, to ensure that the barrel Water at different positions around the body 100 can be drained simultaneously to further improve drainage efficiency.
  • the present application provides a plurality of water inlets 240 spaced apart along the length direction of the lifting rib 200 to simultaneously discharge water located at different positions in the axial direction of the barrel body 100;
  • a plurality of water inlets 240 are provided on the opposite sides of the cylinder body 100 for draining water at different positions in the circumferential direction of the cylinder body 100 at the same time, thereby ensuring that water at multiple positions in the axial direction and circumferential direction of the cylinder body 100 can be discharged at the same time. Drainage to maximize the drainage efficiency of the inner cylinder 1000, especially when the inner cylinder 1000 is performing a dehydration process, it can minimize the moisture content on the clothes and improve the user experience.
  • each water outlet 240 corresponds to at least one drainage hole 1231.
  • the position correspondence mentioned here can be understood as that in the axial direction of the barrel 120, each water outlet 240 is arranged directly opposite to at least one drainage hole 1231, so that the inner cavity of the barrel 120 can be drained through the water outlet 240. Part of the water is directly directed to the drainage hole 1231, and then discharged through the drainage hole 1231 to improve the drainage efficiency of the inner cylinder 1000.
  • the shielding member 260 includes a first shielding part and a second shielding part, and the first shielding part and the second shielding part are respectively provided on opposite sides of the width direction of the lifting rib 200 .
  • the shielding member 260 is composed of two separate structural components. In the process of connecting the shielding member 260 to the lifting rib 200, the first shielding part can be connected to one side of the lifting rib 200 in the width direction first, and then the first shielding part can be connected to one side of the lifting rib 200 in the width direction.
  • the second shielding part is connected to the other side of the lifting rib 200 in the width direction, so that the first shielding part and the second shielding part cooperate to effectively block the water passages 240 on opposite sides of the lifting rib 200 in the width direction, so as to achieve the purpose of blocking.
  • the purpose of the component 260 is to cover the water outlet 240 to improve the aesthetics of the inner cylinder 1000.
  • the first shielding part and the second shielding part respectively extend along the length direction of the lifting rib 200 to shield the plurality of water inlets 240 at corresponding positions. That is to say, the first shielding part and the second shielding part of the present application are respectively provided on opposite sides of the width direction of the lifting rib 200, and the first shielding part and the second shielding part respectively extend along the length direction of the lifting rib 200. , this ensures that the multiple water openings 240 spaced along the length direction of the lifting rib 200 can be effectively blocked, ensuring that the user will not observe the water opening 240 on any lifting rib 200, so as to maximize the appearance of the inner cylinder 1000 Spend.
  • both the first shielding part and the second shielding part are formed as shielding plates, and the two shielding plates are disposed on opposite sides of the lifting rib 200 in the width direction to effectively shield the plurality of water inlets 240 while also allowing the first The shielding part and the second shielding part are simple to manufacture.
  • the first shielding part and the second shielding part are integrally formed on the lifting rib 200 . That is to say, the first shielding part, the second shielding part and the lifting rib 200 are formed into one piece to reduce the manufacturing difficulty of the lifting rib 200. At the same time, through the above arrangement, the first shielding part and the second shielding part can be stably connected to each other. Lift the ribs 200 to improve the structural stability of the first shielding part and the second shielding part, that is, to improve the structural stability of the shielding member 260 to ensure that the shielding member 260 can effectively shield the water inlet 240.
  • the first shielding part and the second shielding part can also be connected to the lifting rib 200 through bonding, snapping, etc., that is to say, the lifting rib 200 and the first shielding part and the second shielding part
  • the assembly process is not limited to the above-mentioned integrated molding, and can also be connected through other connection methods. This application does not specifically limit the connection method between the lifting rib 200 and the first shielding part and the second shielding part, as long as the first shielding part is ensured , the second shielding part only needs to be stable in position relative to the lifting rib 200 .
  • the shielding member 260 is formed as an annular shielding rib, and the annular shielding rib is sleeved on the outer peripheral wall of the lifting rib 200 .
  • the shielding member 260 is not limited to being composed of two separate structures as described above.
  • the shielding member 260 can also be formed as an integrated piece. In this way, during the assembly process of the shielding member 260 and the lifting rib 200, it only needs to be formed into a shielding member.
  • the annular shielding ribs 260 are set on the outer peripheral walls of the lifting ribs 200 to form a matching connection between the shielding member 260 and the lifting ribs 200. At this time, the annular shielding ribs are used to block the water outlet 240, which can also effectively prevent users from observing The water outlet 240 is provided to improve the aesthetics of the inner cylinder 1000.
  • the end of the annular shielding rib can be connected to the outer peripheral wall of the lifting rib 200 by bonding or snapping to realize the annular shielding rib.
  • the fixed connection with the lifting rib 200 improves the position stability of the annular shielding rib and ensures that the annular shielding rib can effectively shield the water inlet 240.
  • the annular shielding ribs can also be integrally formed on the lifting ribs 200 to reduce the difficulty of assembling the annular shielding ribs and the lifting ribs 200 while ensuring the connection strength of the annular shielding ribs and the lifting ribs 200 to ensure the annular shape.
  • the blocking ribs can be stably connected to the lifting ribs 200 .
  • the ends of the annular shielding ribs away from the lifting ribs 200 are smoothed to prevent the ends of the annular shielding ribs from scratching the clothes, thereby reducing the wear caused by the inner tube 1000 to the clothes.
  • the inner cylinder 1000 can be made of stainless steel.
  • the stainless steel cylinder can enhance the strength and rigidity of the inner cylinder 1000, thereby extending the service life of the inner cylinder 1000 of the clothes treatment device.
  • the stainless steel cylinder has a metallic texture and is suitable for use with
  • the rubbing convex portion 310 on the inner cylinder 1000 can enhance the visual beauty of the inner cylinder 1000.
  • the inner cylinder 1000 of the clothes treatment device includes: a cylinder body 100 and a lifting rib 200 .
  • the barrel body 100 includes a barrel bottom 110 and a barrel body 120.
  • the barrel body 120 is provided with a clamping hole 121.
  • the lifting rib 200 is provided with a hook 230 that matches the clamping hole 121.
  • the hook 230 is clamped in the clamping hole 121. In order to achieve the connection of the lifting rib 200 to the inside of the barrel body 120.
  • Each drainage hole group 123 includes a plurality of drainage holes 1231.
  • the four drainage hole groups 123 are spaced along the circumferential direction of the barrel 120. It is provided that in each drainage hole group 123, a plurality of drainage holes 1231 are arranged at intervals along the axial direction of the barrel 120, and the plurality of drainage holes 1231 in two adjacent drainage hole groups 123 are arranged in a staggered manner.
  • a first side wall 210 and a second side wall 220 are arranged oppositely in the width direction of the lifting rib 200.
  • the first side wall 210 has a plurality of first water inlets 211 and a plurality of first water retaining holes.
  • the second side wall 220 has a plurality of second water openings 221 and a plurality of second water blocking parts 222.
  • the second water openings 221 are arranged facing the first water blocking parts 212, and the first water openings 211 are facing the first water blocking parts 212.
  • the two water retaining parts 222 are arranged so that a plurality of first water openings 211 and a plurality of second water openings 221 are staggered, and the drainage hole 1231 is connected to the inner cavity of the barrel body 100 through the first water openings 211 and the second water openings 221 .
  • a plurality of first water inlets 211 and a plurality of second water inlets 221 are formed between the lifting ribs 200 and the barrel body 120 .
  • the outer surface of the side wall of the lifting rib 200 is also provided with a shielding member 260.
  • the water inlet 240 is located between the barrel 120 and the shielding member 260.
  • the shielding member 260 is formed into an annular shielding rib, and the annular shielding rib is set on the outer peripheral wall of the lifting rib 200. Used to block the water inlet 240, wherein at least a part of the blocking member 260 is disposed on the side of the water inlet 240 away from the barrel body 120 and one end of the blocking member 260 is connected to the side wall of the lifting rib 200, and the other end of the blocking member 260 faces away.
  • the direction of the side wall of the lifting rib 200 extends, and there is a gap between the shielding member 260 and the barrel body 120 to connect the water inlet 240 and the inner cavity of the barrel body 100 .
  • the inner peripheral wall of the barrel body 120 also has a plurality of curved rubbing convex portions 310 and a drainage area 122.
  • the drainage area 122 and the plurality of rubbing convex portions 310 are arranged in the axial direction of the barrel body 120, and the drainage area 122 is close to the bottom of the barrel. 110 is provided, the drainage area 122 includes a plurality of normally open drainage openings 1221, the plurality of drainage openings 1221 are arranged at intervals along the circumferential direction of the barrel body 120, and the plurality of kneading convex portions 310 are arranged at intervals along the circumferential direction of the barrel body 120.
  • a guide channel 320 is formed between two adjacent kneading convex portions 310 , at least one end of the guide channel 320 is disposed facing the lifting rib 200 , and one end of at least a portion of the guide channel 320 is disposed facing the drainage area 122 .
  • Part of the structure of the barrel bottom 110 extends toward the inner cavity of the barrel body 120 to cover the drainage area 122.
  • a water flow channel 150 is formed between the outer peripheral wall of the barrel bottom 110 and the barrel body 120. The water flow channel 150 connects the drainage opening 1221 and the barrel body. 120 lumen.
  • a laundry treatment device includes an outer tub and an inner tub 1000 .
  • the inner cylinder 1000 is the inner cylinder 1000 of the aforementioned clothes treatment device.
  • the structure of the inner cylinder 1000 will not be described in detail here.
  • the inner cylinder 1000 is rotatably arranged in the outer tub.
  • the inner cylinder 1000 can drive the clothes to rotate during the rotation relative to the outer bucket, so as to achieve the purpose of processing the clothes and ensure that the inner cylinder 100 of the inner cylinder 100 is
  • the water in the cavity can smoothly flow to the drainage hole 1231 through the first water outlet 211 and the second water outlet 221, and then be discharged through the drainage hole 1231, thereby improving the drainage efficiency of the clothes processing device and improving the drainage quality, thereby achieving fast and efficient Ground drainage improves user experience.
  • the drainage hole 1231 and the drainage opening 1221 of the present application are both set to a normally open state, during the process of cleaning clothes in the clothes processing device, since there is an outer bucket outside the inner cylinder 1000, when the inner cylinder When the space between 1000 and the outer barrel is filled with water, the water in the inner barrel 1000 will not be discharged through the drainage hole 1231 and the drainage opening 1221. At this time, the water in the inner barrel 1000 can be used to clean the clothes. When the clothes are washed, they need to be dehydrated.
  • the water outlet of the outer barrel is opened so that the water between the inner barrel 1000 and the outer barrel can be discharged, thereby ensuring that the water in the inner barrel 1000 can be discharged through the drainage hole 1231 and the drainage opening 1221 to achieve dehydration. Purpose.
  • the clothes processing device of the present application can be a drum washing machine, that is, the inner drum 1000 of the present application can be applied to a drum washing machine. Of course, it can also be applied to clothes dryers and pulsator washing machines currently on the market. If the inner drum 1000 When used in a clothes dryer, the dehydration efficiency of the clothes dryer can be improved. If the inner drum 1000 is used in a pulsator washing machine or a drum washing machine, the washing and dehydration efficiency of the pulsator washing machine or a roller washing machine can be improved.
  • the inner cylinder 1000 of the laundry treatment device according to the embodiment of the present application and other components of the laundry treatment device, such as the rotation process and control process of the inner cylinder 1000, are all known to those of ordinary skill in the art and will not be described in detail here.

Abstract

一种衣物处理装置的内筒及衣物处理装置,内筒(1000)包括筒本体(100)和提升筋(200),筒本体(100)有筒身(120),提升筋(200)设于筒身(120)且覆盖排水孔(1231),提升筋(200)的第一侧壁(210)有第一过水口(211),第二侧壁(220)有第二过水口(221),第一过水口(211)和第二过水口(221)交错设置并通过排水孔(1231)与筒本体(100)的内腔连通。

Description

衣物处理装置的内筒及衣物处理装置
相关申请的交叉引用
本申请基于申请号为202210344684.1、202220773125.8、202220765320.6,申请日为2022年03月31日的中国专利申请“衣物处理装置的内筒及衣物处理装置”提出,并要求上述中国专利申请的优先权,上述中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及衣物处理技术领域,具体是涉及一种衣物处理装置的内筒及衣物处理装置。
背景技术
现有的衣物处理装置的内筒,为了避免在衣物处理的过程中筒身上的排水孔刮坏衣物,通常选择将部分排水孔设置在提升筋盖住的内筒筒壁上,同时在提升筋上设置多个过水口,以确保内筒中的水能够顺利朝向排水孔流动。
但是,这些过水口的设置在确保内筒中的水能够朝向排水孔处流动的同时,还会使得部分位于排水孔处的水通过过水口流至内筒中,也就是导致部分水流无法通过排水孔排出,从而降低排水效率,尤其是在脱水阶段进行排水时,其排水效果较不理想,较难实现快速高效地排水,同时这些过水口的存在一方面有刮坏衣物的风险,另一方面还会降低内筒的美观度,降低用户体验。
发明内容
为此,本申请提出一种衣物处理装置的内筒,所述内筒能够实现快速高效地排水,还可避免内筒中的结构刮坏衣物,同时还可保证内筒的美观度,以提升用户体验。
本申请还旨在提出一种具有上述内筒的衣物处理装置。
根据本申请实施例的衣物处理装置的内筒,包括:筒本体,所述筒本体包括筒底和筒身;提升筋,所述提升筋设于所述筒身的内侧,所述提升筋所覆盖的所述筒身的位置上设有多个排水孔;其中,所述提升筋的第一侧壁具有多个第一过水口,所述提升筋的与所述第一侧壁相对设置的第二侧壁具有多个第二过水口,多个所述第一过水口和多个所述第二过水口交错设置,所述排水孔通过所述第一过水口、所述第二过水口与所述筒本体的内腔连通。
根据本申请实施例的衣物处理装置的内筒,通过在提升筋所覆盖的筒身的位置上设置排水孔,在确保筒本体内的水能够顺利排出的同时还可避免排水孔直接接触衣物而对衣物造成磨损,同时,本申请还在提升筋的侧壁上设置交错设置的多个第一过水口和多个第二过水口,多个第一过水口和多个第二过水口配合以实现排水孔与筒本体内腔的连通,确保筒本体内的水能够顺利朝向排水孔流动,且将多个第一过水口和多个第二过水口交错设置,以避免从第一过水口朝向排水孔流动的水直接通过第二过水口流出,同时也避免从第二过水口朝向排水孔流动的水直接从第一过水口流出,也就是保证筒本体内腔中的水能够顺利流至排水孔处随后再通过排水孔排出,提高排水效率,同时提高排水 质量,从而实现快速高效地排水,提升用户体验。
可选地,所述第一侧壁和所述第二侧壁在所述提升筋的宽度方向上相对设置,多个所述第一过水口在所述提升筋的长度方向间隔布置,多个所述第二过水口在所述提升筋的长度方向间隔布置。
可选地,所述第一侧壁还具有位于相邻两个所述第一过水口之间的第一挡水部,至少一个所述第二过水口正对所述第一挡水部设置;和/或,所述第二侧壁还具有位于相邻两个所述第二过水口之间的第二挡水部,至少一个所述第一过水口正对所述第二挡水部设置。
可选地,所述提升筋自身或者所述提升筋与所述筒身之间限定出所述第一过水口和/或所述第二过水口。
可选地,所述第一侧壁边缘设有第一缺口,所述筒身与所述第一缺口的开口配合以限定出所述第一过水口;所述第二侧壁边缘设有第二缺口,所述筒身与所述第二缺口的开口配合以限定出所述第二过水口;和/或,所述第一缺口和/或所述第二缺口的边沿形成为弧形、直线形或折线形中的一种或者多种组合。
可选地,所述提升筋覆盖所述筒身的位置上设有多个排水孔组,每个所述排水孔组包括多个所述排水孔,多个所述排水孔组沿所述筒身的周向间隔设置;和/或,所述提升筋的长度方向沿所述筒本体的轴向延伸,在每个所述排水孔组中,多个所述排水孔沿所述筒身的轴向间隔设置,相邻两个所述排水孔组中的多个所述排水孔在所述筒身的轴向交错设置。
可选地,每个所述第一过水口和/或所述第二过水口与至少一个所述排水孔位置对应。
可选地,所述筒身的内周壁具有揉搓区,所述揉搓区设有多个揉搓凸部,多个所述揉搓凸部在所述筒身的周向上间隔设置,其中,相邻两个所述揉搓凸部之间形成导流通道,至少一部分所述导流通道的一端正对所述提升筋设置;和/或,至少一部分所述导流通道的一端正对所述第一过水口或所述第二过水口。
可选地,所述揉搓区为无孔区域;和/或,所述揉搓凸部和/或所述导流通道形成曲线形。
可选地,所述筒身设有多个卡孔,所述提升筋的两侧分别设有多个卡勾,多个所述卡勾与多个所述卡孔一一对应地卡接配合。
根据本申请实施例的衣物处理装置的内筒,包括:筒本体,所述筒本体包括筒底和筒身;提升筋,所述提升筋设于所述筒身的内侧,所述提升筋所覆盖的所述筒身的位置上设有排水孔,所述提升筋的侧壁具有过水口以连通所述排水孔和所述筒本体的内腔,其中,所述提升筋的侧壁外表面设有遮挡件,用于遮挡所述过水口。
根据本申请实施例的衣物处理装置的内筒,通过在提升筋所覆盖的筒身的位置上设置排水孔,同时在提升筋上设置过水口,以确保筒本体内的水能够顺利排出,并避免排水孔直接接触衣物而对衣物造成磨损,此外,本申请还在提升筋的侧壁上设置遮挡件用于遮挡过水口,一方面避免过水口刮坏衣物,另一方面还可避免用于直接观察到提升筋上的过水口,从而提高内筒的美观度。也就是说,本申请的内筒,在实现顺利排水的同时还可避免内筒刮坏衣物,同时保证内筒的美观度。
可选地,所述过水口位于所述筒身与所述遮挡件之间,所述遮挡件与所述筒身之间 具有间隙,以连通所述过水口和所述筒本体的内腔。
可选地,所述遮挡件的一端连接所述提升筋的侧壁且另一端朝向远离所述提升筋的侧壁的方向延伸。
可选地,所述过水口包括多个,多个所述过水口的至少一部分沿所述提升筋的长度方向间隔设置;和/或,所述提升筋的宽度方向的相对两侧均设置有多个所述过水口。
可选地,所述遮挡件包括第一遮挡部和第二遮挡部,所述第一遮挡部和所述第二遮挡部分别设置在所述提升筋的宽度方向的相对两侧,所述第一遮挡部和所述第二遮挡部分别沿所述提升筋的长度方向延伸以遮挡对应位置上的多个所述过水口。
可选地,所述遮挡件形成为环形遮挡筋,所述环形遮挡筋套设在所述提升筋的外周壁。
根据本申请实施例的衣物处理装置,包括:外桶;根据前述的衣物处理装置的内筒,所述内筒可转动地设在所述外桶内。
根据本申请实施例的衣物处理装置,通过采用前述的衣物处理装置的内筒,能够有效减小衣物处理装置在处理衣物时对衣物造成的磨损,同时提高衣物处理装置的美观度,提升用户体验。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1为本申请一些实施例的内筒的结构示意图。
图2为本申请一些实施例的提升筋的结构示意图。
图3为本申请一些实施例的提升筋的主视图。
图4为本申请一些实施例的提升筋的剖视图。
图5为本申请一些实施例的内筒的部分结构示意图。
图6为本申请一些实施例的内筒的剖视图。
图7为图6中区域Ⅰ的局部放大图。
图8为本申请一些实施例的衣物处理装置的示意框图。
附图标记:
1000、内筒;
100、筒本体;110、筒底;120、筒身;121、卡孔;122、排水区;1221、排水通口;123、排水孔组;1231、排水孔;140、筒口;150、水流通道;
200、提升筋;210、第一侧壁;211、第一过水口;212、第一挡水部;220、第二侧壁;221、第二过水口;222、第二挡水部;230、卡勾;240、过水口;260、遮挡件;
310、揉搓凸部;320、导流通道;321、第一导流通道;3211、第一导流段;3212、第二导流段;322、第二导流通道;
2000、衣物处理装置。
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。
下面参考说明书附图描述本申请实施例的衣物处理装置的内筒1000。
如图1和图2所示,根据本申请实施例的衣物处理装置的内筒1000包括:筒本体100和提升筋200。
筒本体100包括筒底110和筒身120。筒底110适于封闭筒身120,筒身120内适于放置衣物,便于后续对衣物进行清洗。
提升筋200设于筒身120的内侧,提升筋200所覆盖的筒身120的位置上设有多个排水孔1231。排水孔1231用于实现筒本体100与外部流路的连通,确保筒本体100内的水能够通过排水孔1231顺利排出,达到对衣物进行处理的目的,且本申请设置多个排水孔1231,多个排水孔1231同时配合排水,以提高内筒1000的排水效率,同时达到彻底排掉洗涤水及污垢的目的,提高内筒1000的衣物处理能力。
值得注意的是,本申请的多个排水孔1231设置在提升筋200所覆盖的筒身120的位置上,也就是说,提升筋200可以覆盖多个排水孔1231,这样可确保用户不会直接观察到排水孔1231,以提升内筒1000的美观度,同时,在衣物处理的过程中,提升筋200可确保排水孔1231不会直接接触衣物,从而避免排水孔1231的孔沿磨损衣物,以有效解决现有技术中排水孔1231磨损衣物的问题,使衣物的磨损率大大降低,提升用户体验。
此外,将提升筋200设于筒身120的内侧,在衣物处理装置洗涤衣物的过程中,随着筒本体100的转动,提升筋200可以带动衣物转动,一方面可通过提升筋200提升衣物的高度,具有一定高度的衣物会在重力作用下回落,从而实现对衣物的上下摔打以及实现对衣物的翻转,达到对衣物进行处理的目的;另一方面,可通过提升筋200增加衣物与内筒1000的接触面积,使得靠近提升筋200的衣物能够与提升筋200互相摩擦产生揉搓作用,从而提高内筒1000的衣物处理能力,提升用户体验。
也就是说,本申请的提升筋200不仅可提高内筒1000的衣物处理能力还可提升内筒1000的美观度,同时还可避免排水孔1231的孔沿磨损衣物,通过上述设置就无需再设置其他遮蔽排水孔1231的结构件,在使内筒1000的结构简单的同时,还可降低内筒1000的生产成本。
如图2所示,提升筋200的第一侧壁210具有多个第一过水口211,提升筋200的与第一侧壁210相对设置的第二侧壁220具有多个第二过水口221。这里可以理解为,提升筋200的第一侧壁210和第二侧壁220相对设置,相对设置的两个侧壁上均设置有多个过水口。
多个第一过水口211和多个第二过水口221交错设置,排水孔1231通过第一过水口211、第二过水口221与筒本体100的内腔连通。其中,这里所说的多个第一过水口211和多个第二过水口221交错设置可以理解为,第一侧壁210上的其中一个第一过水口211在第二侧壁220上的投影位于相邻两个第二过水口221之间,相应地,第二侧壁220上的其中一个第二过水口221在第一侧壁210上的投影位于相邻两个第一过水口211之间,从而使得多个第一过水口211和多个第二过水口221交错设置。
通过在提升筋200的第一侧壁210设置第一过水口211以及在提升筋200的第二侧壁220设置第二过水口221,这样筒本体100内腔中的水即可通过提升筋200顺利流动 至排水孔1231处,随后再通过排水孔1231排出,从而达到脱水的目的。
此外,本申请在提升筋200的第一侧壁210和第二侧壁220上均设置有过水口,相比于现有技术只在提升筋的其中一个侧壁上设置过水口而言,可增加过水口的数量,确保筒本体100内的水能够大量地流至排水孔1231处,且第一过水口211和第二过水口221均设置有多个,多个第一过水口211和多个第二过水口221配合,以最大化增加过水口的数量,确保筒本体100内腔中的水能够快速且大量地流动至排水孔1231处,从而方便多个排水孔1231将水流快速排出,以提高排水效率。
也就是说,本申请通过多个第一过水口211、多个第二过水口221以及多个排水孔1231配合,以最大提高排水效率,尤其是在脱水阶段进行排水时,可实现快速高效地排水,减少衣物上的含水量,提升用户体验。
需要说明的是,因本申请的提升筋200的两侧壁(第一侧壁210和第二侧壁220)上均设置有过水口,且第一侧壁210和第二侧壁220相对设置,这样在进行排水的过程中,因水在流动的过程中具有一定的速度,若将第一过水口211和第二过水口221相对设置,也就是第一侧壁210上的其中一个第一过水口211在第二侧壁220上的投影与第二侧壁220上的其中一个第二过水口221重叠且第二侧壁220上的其中一个第二过水口221在第一侧壁210上的投影与第一侧壁210上的其中一个第一过水口211重叠,这样通过第一过水口211流至提升筋200所覆盖的区域内的部分水在惯性的作用下就会直接从第二过水口221流出,相应地,通过第二过水口221流至提升筋200所覆盖的区域内的部分水在惯性的作用下也会直接从第一过水口211流出,也就是导致部分水无法通过排水孔1231排出至内筒1000外部,从而降低排水效率和排水质量,因此,本申请实施例的衣物处理装置的内筒1000,将多个第一过水口211和多个第二过水口221交错设置,以避免从第一过水口211朝向排水孔1231流动的水直接通过第二过水口221流出,同时也避免从第二过水口221朝向排水孔1231流动的水直接从第一过水口211流出,也就是保证筒本体100内腔中的水能够顺利流至排水孔1231处,随后再通过排水孔1231排出,提高排水效率,同时提高排水质量,从而实现快速高效地排水,提升用户体验。
可以理解的是,相比于现有技术,本申请的衣物处理装置的内筒1000可确保经第一过水口211和第二过水口221流动的水能够顺利流至排水孔1231处,以确保排水质量,同时,本申请还将多个排水孔1231设置在提升筋200所覆盖的位置上,确保衣物处理装置在处理衣物时排水孔1231不会直接与衣物接触,从而避免排水孔1231拉丝或划破衣物,以提升用户体验。
在本申请的一些实施例中,如图2所示,第一侧壁210和第二侧壁220在提升筋200的宽度方向上相对设置。其中,这里所说的宽度方向可以理解为是图1中所示出的左右方向,通过上述设置,一方面当在第一侧壁210上设置第一过水口211以及在第二侧壁220上设置第二过水口221时,即可实现将第一过水口211和第二过水口221在提升筋200的宽度方向上相对设置,从而实现利用提升筋200自身的形状设置较多个第一过水口211和第二过水口221,以增加提升筋200上的过流面积,确保筒本体100内的水能够水利流至排水孔1231处;另一方面,在内筒1000处理衣物的过程中,筒本体100内的水大多会存留在提升筋200的左右两侧,因此,通过上述设置,当在第一侧壁210上设置第一过水口211以及在第二侧壁220上设置第二过水口221时,可保证筒本体 100内的水能够顺利经过第一过水口211、第二过水口221朝向排水孔1231流动。
可选地,如图2所示,多个第一过水口211在提升筋200的长度方向间隔布置,多个第二过水口221在提升筋200的长度方向间隔布置。这里是指,多个第一过水口211和多个第二过水口221均沿着提升筋200的长度方向间隔布置,以充分利用提升筋200上的空间,确保在提升筋200上能够设置较多数量的过水口,以进一步增加提升筋200的过流面积,从而保证筒本体100内腔中的水能够通过第一过水口211、第二过水口221快速且大量地朝向排水孔1231流动,以提高排水效率。
在本申请的一些实施例中,如图2所示,第一侧壁210还具有位于相邻两个第一过水口211之间的第一挡水部212,至少一个第二过水口221正对第一挡水部212设置。也就是说,第一侧壁210上不仅设置有第一过水口211,还设置有第一挡水部212,这样从第二过水口221流至提升筋200所覆盖的区域内的部分水会在惯性的作用下直接作用在第一挡水部212上,第一挡水部212用于对水的流动起抵挡作用,避免水通过提升筋200再流至筒本体100内,这样流至提升筋200所覆盖的区域内的水即可全部通过排水孔1231流出,以达到排水的目的,并提高内筒1000的排水效率。
可选地,如图2所示,第一侧壁210上设有多个第一挡水部212,每个第二过水口221均正对第一挡水部212设置。确保从第二过水口221流至提升筋200所覆盖的区域内的绝大部分水均可通过排水孔1231排出,以提高内筒1000的排水效率。
可选地,如图2所示,第二侧壁220还具有位于相邻两个第二过水口221之间的第二挡水部222,至少一个第一过水口211正对第二挡水部222设置。第一过水口211和第二挡水部222配合设置,这样从第一过水口211流至提升筋200所覆盖的区域内的部分水会在惯性的作用下直接作用在第二挡水部222上,第二挡水部222用于对水的流动起抵挡作用,避免水通过提升筋200再流至筒本体100内,这样流至提升筋200所覆盖的区域内的水即可全部通过排水孔1231流出,以达到排水的目的,并提高内筒1000的排水效率。
可选地,如图2所示,第二侧壁220上设有多个第二挡水部222,每个第一过水口211均正对第二挡水部222设置。确保从第一过水口211流至提升筋200所覆盖的区域内的绝大部分水均可通过排水孔1231排出,以提高内筒1000的排水效率。
也就是说,本申请通过第一侧壁210上设置第一挡水部212,在第二侧壁220上设置第二挡水部222,这样将多个第一过水口211和多个第二过水口221交错设置时,可实现第一过水口211正对第二挡水部222设置,实现第二过水口221正对第一挡水部212设置,从而确保通过过水口(第一过水口211和第二过水口221)进入提升筋200所覆盖的区域内的水能够通过排水孔1231排出,以提高排水效率。
其中,图2中虚线部分示出了在惯性作用下,部分水进入提升筋200所覆盖的区域内的流动路径,由该虚线部分可清楚得知,从第一过水口211进入至提升筋200所覆盖的区域内的部分水作用在第二挡水部222上,从第二过水口221进入至提升筋200所覆盖的区域内的部分水作用在第一挡水部212上,以避免进入至提升筋200所覆盖的区域内的部分水朝向筒本体100的内腔流动。
可选地,如图4所示,提升筋200的侧壁外表面设有遮挡件260,遮挡件260用于遮挡第一过水口211和/或第二过水口221。一方面避免在内筒1000处理衣物时,第一过水口211和/或第二过水口221的口沿刮坏衣物,从而减少内筒1000对衣物的磨损; 另一方面,避免用户直观地观察到第一过水口211和/或第二过水口221,以增强内筒1000的视觉美感,也就是提高内筒1000的美观度。
可选地,遮挡件260的至少一部分设置在第一过水口211和第二过水口221的远离筒身120的一侧。通过上述设置,当将提升筋200设置在筒身120的内侧后,可使得遮挡件260远离筒身120设置,同时使得第一过水口211和第二过水口221能够位于筒身120与遮挡件260之间,这样遮挡件260即可有效遮蔽第一过水口211和第二过水口221,从而避免用户直接观察到提升筋200的第一过水口211和第二过水口221,以提高内筒1000的美观度。
在本申请的一些实施例中,提升筋200自身限定出第一过水口211和/或第二过水口221(该示例图中未示出)。这里是指,第一过水口211和/或第二过水口221可直接限定在提升筋200上,以实现排水孔1231与筒本体100内腔的连通,从而确保筒本体100内腔中的水能够顺利流动至排水孔1231处,随后再通过排水孔1231排出,从而达到脱水的目的。
在具体的示例中,可在第一侧壁210上直接开设通孔以形成第一过水口211和/或在第二侧壁220上开设通孔形成第二过水口221,从而实现在提升筋200自身结构上限定出第一过水口211和/或第二过水口221。
可选地,当在提升筋200的第一侧壁210上开设通孔形成第一过水口211以及在提升筋200的第二侧壁220上开设通孔形成第二过水口221时,可将通孔的孔径设置的较小,如此设置,一方面确保提升筋200上能够设置较多个通孔,以增加通孔的数量,进而实现增加第一过水口211和第二过水口221的数量;另一方面,还可以避免提升筋200上的通孔的边沿划伤衣物。
需要说明的是,通过在提升筋200的自身结构上限定出第一过水口211和/或第二过水口221,这样就无需在提升筋200和筒身120之间设置第一过水口211和/或第二过水口221,从而使得提升筋200可紧密贴合在筒身120上,以提高提升筋200的位置稳定性,从而有效提升衣物处理的清洁度。
此外,通过在提升筋200的自身结构上设置第一过水口211和/或第二过水口221,可增加第一过水口211和/或第二过水口221与筒身120之间的距离,这样在洗涤衣物的过程中,内筒1000内的水流即可较慢的流出,从而使得内筒1000内能够保持较高的水位,这样就可以节省内筒1000的用水量,从而达到节水的作用,且上述设置还可实现内筒1000与外桶不串水,使内筒1000和外桶之间的污垢细菌不会通过第一过水口211和/或第二过水口221流入内筒1000内,从而达到健康洗涤的效果。
当然,在另一些示例中,不限于是提升筋200自身限定出第一过水口211和/或第二过水口221,也可以在提升筋200与筒身120之间限定出第一过水口211和/或第二过水口221。该第一过水口211和/或第二过水口221也可实现排水孔1231与筒本体100内腔的连通,从而确保筒本体100内腔的水能够顺利流至排水孔1231处。
通过上述设置,在第一方面的示例中,第一过水口211和第二过水口221均是提升筋200自身限定出的;在第二方面的示例中,第一过水口211和第二过水口221均是提升筋200与筒身120之间限定出的;在第三方面的示例中,第一过水口211是提升筋200自身限定出的、第二过水口221是提升筋200与筒身120之间限定出的;在第四方面的示例中,第二过水口221是提升筋200自身限定出的、第一过水口211是提升筋 200与筒身120之间限定出的。本申请对第一过水口211和第二过水口221的具体限定方式不做限制,只要保证筒本体100内腔中的水能够顺利流至排水孔1231处且第一过水口211和第二过水口221能够交错设置即可。
可选地,如图2所示,第一侧壁210边缘设有第一缺口,筒身120与第一缺口的开口配合以限定出第一过水口211。从而实现在提升筋200与筒身120之间限定出第一过水口211,以实现排水孔1231与筒本体100内腔的连通。
需要说明的是,通过在提升筋200与筒身120之间限定出第一过水口211,这样就无需在提升筋200的自身结构上开设通孔以形成第一过水口211,从而减少提升筋200上的通孔数量,以降低提升筋200的制造难度,从而减小提升筋200对衣物的磨损。同时,上述设置可以使得第一过水口211紧贴筒身120设置,这样在内筒1000转动的过程中,筒本体100内的水在离心力作用下紧贴筒身120的内侧,确保水能够顺利通过第一过水口211流至排水孔1231处。
此外,因第一侧壁210的相邻两个第一过水口211之间的第一挡水部212,当第一过水口211形成在提升筋200与筒身120之间时,提升筋200可利用第一挡水部212抵接在筒身120上,以增加提升筋200与筒身120的接触面积,从而确保提升筋200能够稳定设置筒身120内侧。
可选地,第一缺口的边沿形成为弧形、直线形或折线形中的一种或者多种组合。第一缺口的边沿不同,相应地第一过水口211形成的形状也不同,同时第一过水口211的过流面积也不同,本领域的技术人员可通过实际排水需求选择不同形状的第一缺口的边沿,以保证第一过水口211能够顺利将水导流至排水孔1231处的同时,同时还可提升第一过水口211的美观度。
可选地,如图2所示,第二侧壁220边缘设有第二缺口,筒身120与第二缺口的开口配合以限定出第二过水口221。从而实现在提升筋200与筒身120之间限定出第二过水口221,以实现排水孔1231与筒本体100内腔的连通。
需要说明的是,通过在提升筋200与筒身120之间限定出第二过水口221,这样就无需在提升筋200的自身结构上开设通孔以形成第二过水口221,从而减少提升筋200上的通孔数量,以降低提升筋200的制造难度,从而减小提升筋200对衣物的磨损。同时,上述设置可以使得第二过水口221紧贴筒身120设置,这样在内筒1000转动的过程中,筒本体100内的水在离心力作用下紧贴筒身120的内侧,确保水能够顺利通过第二过水口221流至排水孔1231处。
值得注意的是,在具体的一些示例中,若将第一过水口211和第二过水口221均设置在提升筋200与筒身120之间,这样就无需在提升筋200的自身结构上开设通孔,从而使得提升筋200形成为类似无孔结构,以最大化减小提升筋200对衣物的磨损。
此外,因第二侧壁220的相邻两个第二过水口221之间的第二挡水部222,当第二过水口221形成在提升筋200与筒身120之间时,提升筋200可利用第二挡水部222抵接在筒身120上,以增加提升筋200与筒身120的接触面积,从而确保提升筋200能够稳定设置筒身120内侧。
可选地,第二缺口的边沿形成为弧形、直线形或折线形中的一种或者多种组合。第二缺口的边沿不同,相应地第二过水口221形成的形状也不同,同时第二过水口221的过流面积也不同,本领域的技术人员可通过实际排水需求选择不同形状的第二缺口的 边沿,以保证第二过水口221能够顺利将水导流至排水孔1231处的同时,同时还可提升第二过水口221的美观度。
在本申请的一些实施例中,结合图1和图4所示,筒身120设有多个卡孔121,提升筋200的两侧分别设有多个卡勾230,多个卡勾230与多个卡孔121一一对应地卡接配合。采用卡接配合的连接方式可使提升筋200固定设置在筒身120上,在确保提升筋200相对于筒身120位置稳定的同时,还可使得提升筋200与筒身120的配合方便,降低内筒1000的装配难度,并使得内筒1000的结构简单。且卡勾230与卡孔121的配合使得提升筋200与筒身120形成可拆卸连接,即提升筋200与筒身120可以完全拆卸开,便于更换或拆卸提升筋200。
当然,在其他的一些示例中,提升筋200和筒身120的连接方式也不限于是上述的卡勾230与卡孔121的卡接配合,也可以为其他的连接方式,例如:提升筋200的两侧分别设有多个第一连接孔,筒身120上设有多个与第一连接孔相配合的第二连接孔,其中第二连接孔形成为内螺纹孔,螺栓穿过第一连接孔固定连接在第二连接孔中,以实现提升筋200与筒身120的可拆卸连接;或者,筒身120设有多个插槽,提升筋200的两侧分别设有多个插扣,多个插扣与多个插槽一一对应地插接配合,也可实现提升筋200与筒身120的可拆卸连接。
在本申请的一些实施例中,如图1和图5所示,提升筋200覆盖筒身120的位置上设有多个排水孔组123,每个排水孔组123包括多个排水孔1231。以增加提升筋200覆盖筒身120的位置上的排水孔1231的数量,从而提高内筒1000的排水能力以及提升排水效率,同时,通过将多个排水孔1231设置成由多个排水孔组123配合组成,可使得提升筋200所覆盖的多个排水孔1231的排布位置能够较为均匀,以提升排水孔1231布设的美观度,同时降低排水孔1231的制造难度。
可选地,如图1和图5所示,多个排水孔组123沿筒身120的周向间隔设置。使得位于内筒1000内的多处的水流均可通过排水孔1231同时排出,特别是使得位于筒身120周向上的不同位置处的水流能够同时排出,提升排水效率,尤其在利用内筒1000进行脱水的过程中,多个排水孔组123配合可提升脱水质量,以降低衣物上的含水率。
可选地,如图5所示,在每个排水孔组123中,多个排水孔1231沿筒身120的轴向间隔设置。这样每个排水孔组123中的多个排水孔1231配合即可将位于筒身120轴向上的不同位置处的水流能够同时排出,以进一步提升排水效率。
可选地,如图1所示,提升筋200的长度方向沿筒本体100的轴向延伸。以增加提升筋200的面积,第一方面,确保每个提升筋200均可完全覆盖多个排水孔1231,避免沿筒身120的轴向间隔设置的部分排水孔1231外露,以解决衣物磨损的问题;第二方面,确保提升筋200能够有效带动衣物翻转并增加内筒1000与衣物的接触面积,达到对衣物进行处理的效果,并提高衣物处理的清洁度;第三方面,轴向延伸的提升筋200可增加第一侧壁210和第二侧壁220的面积,这样即可在第一侧壁210形成多个第一过水口211,同时在第二侧壁220形成多个第二过水口221。
可选地,筒身120设置有多个提升筋200,多个提升筋200均筒本体100的周向间隔设置,每个提升筋200所覆盖的筒身120的位置上均设有多个排水孔1231,以进一步增加排水孔1231的数量,提高排水效率。
此外,通过设置多个提升筋200,多个提升筋200配合用于进一步增加内筒1000 与衣物的接触面积,提高衣物处理的清洁度。
在一些具体示例中,筒身120设置有三个提升筋200,三个提升筋200均匀分布在内筒1000的内壁。当衣物处理装置处于运行状态下,提升筋200会随着内筒1000一起转动,在提升筋200由较低位置转动至较高位置的过程中,提升筋200可将衣物提起,随着提升筋200的继续转动,衣物在重力的作用下将会脱离提升筋200并自由下落,以摔打在翻滚的水流或其他衣物上。由此,达到清洗衣物的目的,并提高衣物处理装置的洗涤效果。
可选地,如图5所示,相邻两个排水孔组123中的多个排水孔1231在筒身120的轴向交错设置。在筒身120的轴向交错设置的多个排水孔1231配合即可同时将位于筒身120不同位置处的水排出,使得内筒1000的排水更加方便,同时提升排水效率。
可选地,如图5所示,在每个排水孔组123中,相邻两个排水孔1231在筒身120的轴向上的间距为H1。以实现每个排水孔组123中的多个排水孔1231能够沿筒身120的轴向间隔设置,从而实现将位于筒身120轴向上的不同位置处的水流排出。
这里需要说明的是,上述所说的同一个排水孔组123中相邻两个排水孔1231之间的间距为H1是指在这同一个排水孔组123布设的区域内未设置其他固定件或结构件,例如:结合图1和图5所示,当位于最左侧的排水孔组123的区域内设置有卡孔121时,则相邻两个排水孔1231需要避让该卡孔121,也就会出现相邻两个排水孔1231在筒身120轴向上的间距大于H1的现象。也就是说,同一个排水孔组123中,当相邻两个排水孔1231之间未设置其他结构件时,相邻两个排水孔1231在筒身120的轴向上的间距为H1;当相邻两个排水孔1231之间设置有其他结构件时,相邻两个排水孔1231在筒身120的轴向上的间距随结构件的尺寸相应调整,不限于必须将相邻两个排水孔1231在筒身120的轴向上的间距设置为H1。
可选地,如图5所示,在相邻两个排水孔组123中,其中一个排水孔组123中的排水孔1231与另一个排水孔组123中的相邻的排水孔1231在筒身120的轴向上的间距为H2,其中,H1为H2的两倍。也就是说,其中一个排水孔组123中的排水孔1231与另一个排水孔组123中的相邻的排水孔1231在筒身120的轴向上的间距小于同一个排水孔组123中相邻两个排水孔1231在筒身120的轴向上的间距,从而使得相邻两个排水孔组123中的多个排水孔1231能够在筒身120的轴向交错设置,以提升内筒1000的排水效率,同时提高排水效果。
可选地,相邻两个排水孔组123在筒身120的周向上的间距等于每个排水孔组123中的相邻两个排水孔1231在筒身120的轴向上的间距。这里也可以理解为,相邻两个排水孔组123在筒身120的周向上的间距为H1(如图5所示),使得相邻两个排水孔组123能够在筒身120的周向上间隔设置,从而保证多个排水孔组123配合能够将位于筒身120周向上的不同位置处的水流排出,提升排水效率。
可选地,排水孔1231处于常开状态以连通筒本体100的内外两侧。以保证排水孔1231能够始终连通筒本体100的内外两侧,既可以提高排水效率,又可以将内筒1000内的洗涤水及污垢彻底排出,提高排水效果,进而提高内筒1000的衣物处理能力。
此外,通过设置处于常开状态的排水孔1231,这样就无需在排水孔1231处设置密封排水孔1231的密封件,在降低本申请内筒1000生产成本、降低生产制造难度的同时还可使得内筒1000的结构简单,便于控制。
可选地,每个第一过水口211与至少一个排水孔1231位置对应。其中,这里所说的位置对应可以理解为,在筒身120的轴向上,每个第一过水口211至少与一个排水孔1231正对设置,这样经第一过水口211流至提升筋200所覆盖的区域内的部分水即可直接流至排水孔1231处,随后再通过排水孔1231排出,以提高内筒1000的排水效率。
在一些示例中,每个第二过水口221与至少一个排水孔1231位置对应。也就是在筒身120的轴向上,每个第二过水口221至少与一个排水孔1231正对设置,这样经第二过水口221流至提升筋200所覆盖的区域内的部分水也可直接流至排水孔1231处,随后再通过排水孔1231排出,以提高内筒1000的排水效率。
在具体的示例中,每个第一过水口211和每个第二过水口221均与至少一个排水孔1231位置对应。以确保经每个第一过水口211和第二过水口221流至提升筋200所覆盖的区域内的部分水均可直接流至排水孔1231处,进一步提高内筒1000的排水效率。
在本申请的一些实施例中,如图1所示,筒身120的内周壁具有揉搓区,揉搓区设有多个揉搓凸部310,多个揉搓凸部310在筒身120的周向上间隔设置。在处理衣物的过程中,揉搓凸部310可与衣物接触并与衣物互相摩擦产生揉搓作用,从而提高内筒1000处理衣物的能力,同时,多个揉搓凸部310配合可增加筒身120与衣物的接触面积,从而进一步提高内筒1000的衣物处理能力。
可选地,结合图1和图5所示,相邻两个揉搓凸部310之间形成导流通道320,至少一部分导流通道320的一端正对提升筋200设置。在排水的过程中,导流通道320可对筒身120内的水流的流动起导向作用,确保水流能够沿既定方向进行流动,同时,因部分导流通道320的一端正对提升筋200,这样导流通道320即可将水流导流至提升筋200处,随后再通过提升筋200上的第一过水口211或第二过水口221流至排水孔1231处,达到脱水的目的,并提高排水效率。
可选地,至少一部分导流通道320的一端正对第一过水口211或第二过水口221。导流通道320可直接将水流导流至第一过水口211或第二过水口221处,以进一步提高排水效率。
需要说明的是,本申请通过筒身120上的自身结构(揉搓凸部310)形成导流通道320,这样就无需再设置其他的导流件,以进一步简化内筒1000的结构,使得内筒1000结构简单。
可选地,揉搓凸部310形成曲线形。以提高揉搓凸部310的美观度,从而提高内筒1000内部的美观度,同时,还可避免揉搓凸部310阻碍衣物的转动,也就是确保在利用内筒1000处理衣物时,衣物能够顺利在内筒1000中转动并与揉搓凸部310产生摩擦,从而达到处理衣物的目的,提高衣物的清洁度。
在另一些示例中,导流通道320形成曲线形;或者,揉搓凸部310和导流通道320均形成曲线形。在提高内筒1000内部美观度的同时,还可避免揉搓凸部310和导流通道320阻碍衣物的转动,也就是确保在利用内筒1000处理衣物时,衣物能够顺利在内筒1000中转动并与揉搓凸部310产生摩擦,从而达到处理衣物的目的,提高衣物的清洁度。
可选地,如图1所示,筒身120还具有排水区122,排水区122和多个揉搓凸部310在筒身120的轴向排布,排水区122靠近筒底110设置。以合理化利用筒身120的空间,确保排水区122和多个揉搓凸部310均可设置在筒身120上。
可选地,如图1所示,排水区122包括多个处于常开状态的排水通口1221。这里也可以理解为,多个处于常开状态的排水通口1221靠近筒底110设置,因在提升筋200设置的过程中,为了避免提升筋200和筒底110之间间距较近而夹持衣物,通常将提升筋200与筒底110间隔设置且留有较长一段距离,例如,将提升筋200的后端与筒底110之间的间距设置成大于10mm,从而保证衣物不会卡在提升筋200和筒底110之间,也就是保证在内筒1000转动的过程中,衣物能够正常在内筒1000中移动,从而达到清洗衣物的目的。但是,通过上述设置就会导致排水孔1231与筒底110间隔设置,从而导致排水孔1231与筒底110之间的水无法正常排出,因此,本申请设置靠近筒底110的排水通口1221,排水通口1221用于将排水孔1231无法排出的水排出,从而提高内筒1000的排水效果。
也就是说,本申请利用排水孔1231和排水通口1221配合进行排水,可极大地提升排水效率以及排水质量,从而降低衣物上的含水率。
可选地,结合图1和图5所示,多个排水通口1221沿筒身120的周向间隔设置。多个排水通口1221配合用于将靠近筒底110不同位置处的水排出,达到对衣物进行处理的目的,同时,多个排水通口1221配合排水可提高排水效率。
可选地,排水通口1221处于常开状态以连通筒本体100的内外两侧,如此设置,就无需在排水通口1221处设置密封件,以进一步降低内筒1000的生产成本,同时使得内筒1000的结构简单,便于控制。
可选地,筒身120的径向尺寸从筒口140到筒底110逐渐增大。这样可以使得筒身120形成为类似于锥形状,这样当筒身120平行于水平面设置时,可实现筒身120的整体结构相对于水平面倾斜设置,且使得靠近筒底110处的筒身120的最低端低于水平面。
通过上述设置,在排水的过程中,由于重力的原因,内筒1000内的水流会沿着筒身120的延伸方向朝向筒底110流动,由于排水区122靠近筒底110设置,这样即可实现将内筒1000内的部分水,尤其是位于筒口140处的水导流至排水区122处,随后再通过排水通口1221排出,从而提高内筒1000的排水效率,并保证内筒1000内的水均可快速排出,以提高排水效果。
可选地,结合图5和图6所示,至少一部分导流通道320的一端正对排水区122。在排水的过程中,导流通道320可将筒本体100内的部分水导流至排水区122,此时通过排水区122内的排水通口1221将水排出,达到脱水的目的,并提高排水效率。
可选地,结合图1和图5所示,部分导流通道320的一端正对排水通口1221。这样导流通道320即可将水流直接导流至排水通口1221处,直接通过排水通口1221排出,进一步提高排水效率。
在具体的示例中,如图6所示,多个导流通道320的一部分为第一导流通道321,第一导流通道321的一端朝排水区122延伸,第一导流通道321的另一端朝筒口140的方向延伸。这样第一导流通道321即可将位于筒口140处的水导流至排水区122处,随后再通过排水区122内的排水通口1221排出,以达到排水的目的。
可选地,如图6所示,第一导流通道321包括第一导流段3211和第二导流段3212,第一导流段3211的一端朝排水区122延伸,第二导流段3212的一端朝筒口140的方向延伸,第一导流段3211的另一端和第二导流段3212的另一端连通。这样处于筒口140处的水即可进入第二导流段3212内,并沿着第二导流段3212的延伸方向进行流动,在 流动的过程中,因第二导流段3212的另一端与第一导流段3211的另一端连通,这样位于第二导流段3212内的水即可顺利流动至第一导流段3211,随后再沿着第一导流段3211的延伸方向进行流动,并流动至排水区122,最后再通过排水区122内的排水通口1221将水排出,以达到利用排水通口1221排水的目的。
可选地,如图6所示,第一导流段3211的弯曲方向与第二导流段3212的弯曲方向相反。确保相互连接的第一导流段3211和第二导流段3212的相对两端能够分别朝向排水区122和筒口140的方向延伸,从而实现利用第一导流段3211和第二导流段3212将位于筒口140处的水流导流至排水区122处。此外,通过上述设置还可增加第一导流通道321的美观度,从而增加内筒1000的美观度。
可选地,多个导流通道320的一部分为第二导流通道322,第二导流通道322的一端朝筒口140延伸,第二导流通道322的另一端朝提升筋200延伸。这样在排水的过程中第二导流通道322即可将处于筒口140处的部分水导流至提升筋200处,随后在利用排水孔1231将水排出,达到脱水的目的,并提高排水效率。
在一些示例中,如图6所示,多个导流通道320的一部分为第二导流通道322,第二导流通道322的一端朝筒底110延伸,第二导流通道322的另一端朝提升筋200延伸。这样在排水的过程中第二导流通道322即可将位于提升筋200处的部分水导流至筒底110处,随后再通过位于筒底110处的排水区122将水排出,这样排水孔1231和排水通口1221配合排水,以达到脱水的目的,并提高排水效率。
也就是说,本申请通过在筒身120的内周壁设置多个揉搓凸部310,多个揉搓凸部310之间形成多个导流通道320,一部分导流通道320可将筒本体100内的水导流至排水孔1231,另一部分导流通道320可将筒本体100内的水导流至排水通口1221,从而实现将筒本体100内不同位置处的水导出,以提升内筒1000的排水效率。
可选地,结合图6和图7所示,筒底110的部分结构朝向筒身120的内腔延伸以覆盖排水区122。其中,这里所说的覆盖可以理解为,筒底110在筒身120所在的圆周面的投影范围内设置有排水区122,以此实现利用筒底110覆盖排水区122,也就是实现覆盖排水通口1221,在衣物处理的过程中,可确保排水通口1221不会直接接触衣物,从而避免排水通口1221的孔沿磨损衣物,以有效解决衣物磨损的问题,使衣物的磨损率大大降低,提升用户体验。
可选地,如图7所示,筒底110的外周壁与筒身120之间形成水流通道150,水流通道150连通排水通口1221和筒身120的内腔。其中,这里的水流通道150主要用于避让朝向排水通口1221流动的水流,同时还可对水流的流动起导向作用,确保筒本体100内腔中的水能够通过排水通口1221顺利排出,从而达到脱水的目的。其中图5中的箭头示出了筒本体100内腔中的水通过水流通道150朝向排水通口1221流动的方向。
可选地,揉搓区为无孔区域。也就是说,不在揉搓区上开孔,因在内筒1000处理衣物的过程中,揉搓区会直接接触衣物,通过将揉搓区设置成无孔区域,可避免揉搓区磨损、刮伤衣物,也就是避免内筒1000在处理衣物时对衣物造成的磨损,从而提升用户体验。
综上可知,本申请的排水孔1231和排水通口1221均通过结构件(提升筋200和筒底110)进行遮蔽以及将揉搓区设置成无孔结构,使得内筒1000类似于形成无孔结构,以提升内筒1000的美观度,同时还可避免内筒1000划伤衣物,以提升用户体验。
当然,在其他的一些示例中,也可以在提升筋200和筒底110未遮蔽的位置处设置排水口(图中未示出),例如:在多个揉搓凸部310之间或揉搓凸部310上设置排水口,以进一步增加内筒1000上的排水结构的数量,从而提高内筒1000的排水效率。
下面参考说明书附图描述本申请实施例的衣物处理装置的内筒1000。
如图1和图2所示,根据本申请实施例的衣物处理装置的内筒1000包括:筒本体100和提升筋200。
筒本体100包括筒底110和筒身120,提升筋200设于筒身120的内侧,提升筋200所覆盖的筒身120的位置上设有排水孔1231,提升筋200的侧壁具有过水口240,过水口240连通排水孔1231和筒本体100的内腔。这样筒本体100内腔中的水即可通过过水口240顺利流动至排水孔1231处,随后再通过排水孔1231排出。
如图2和图3所示,提升筋200的侧壁外表面设有遮挡件260,遮挡件260用于遮挡过水口240。这里所说的遮挡主要是避免用户通过筒口140直观地观察到过水口240,但不会影响过水口240连通排水孔1231和筒本体100的内腔,这样在确保筒本体100内腔中的水流能够正常排出的同时,还可增强内筒1000的视觉美感,也就是提高内筒1000的美观度,同时还可避免在内筒1000处理衣物时,过水口240的口沿刮坏衣物,从而减少内筒1000对衣物的磨损;另一方面,避免用户直观地观察到过水口240。
根据本申请实施例的衣物处理装置的内筒1000,为了避免用户直观地观察到过水口240,本申请选择在提升筋200的侧壁外表面设有遮挡件260以遮挡过水口240,从而提高内筒1000的美观度。
可以理解的是,相比于现有技术,本申请的衣物处理装置的内筒1000通过在提升筋200所覆盖的筒身120的位置上设有排水孔1231、在提升筋200的侧壁上设置过水口240以及在提升筋200的侧壁外表面设置遮挡件260,在确保筒本体100内腔中的水能够顺利排出的同时,还可避免排水孔1231刮坏衣物,同时还可提高内筒1000整体的美观度。
在本申请的一些实施例中,过水口240位于筒身120与遮挡件260之间。也就是说,相比于遮挡件260的设置位置而言,本申请的过水口240靠近筒身120设置,这样遮挡件260即可有效遮蔽过水口240,从而避免用户直接观察到提升筋200的过水口240,以提高内筒1000的美观度。
可选地,遮挡件260与筒身120之间具有间隙,以连通过水口240和筒本体100的内腔。该间隙主要用于避让过水口240,避免遮挡件260或筒身120直接封堵过水口240而导致过水口240无法连通排水孔1231和筒本体100的内腔,也就是说,通过将遮挡件260与筒身120之间设置间隙,以确保过水口240能够正常连通排水孔1231和筒本体100的内腔,从而确保筒本体100内腔中的水能够顺利流至排水孔1231处,同时,该间隙还可对筒本体100内腔中的水的流动起导向作用,确保筒本体100内腔中的水能够顺利流动至过水口240处,最后再通过过水口240流至排水孔1231处,方便通过排水孔1231进行排水。
可选地,如图3和图4所示,遮挡件260的一端连接提升筋200的侧壁,遮挡件260的另一端朝向远离提升筋200的侧壁的方向延伸。通过将遮挡件260的一端连接在提升筋200的侧壁,提升筋200用于支撑遮挡件260,以提高遮挡件260的结构稳定性,同时将遮挡件260的另一端朝向远离提升筋200的侧壁的方向延伸,以确保遮挡件260 能够有效遮挡过水口240,从而提升内筒1000的美观度。
可选地,遮挡件260的另一端端壁做光滑处理。也就是说,远离提升筋200的遮挡件260的端壁做光滑处理,以避免遮挡件260的端壁刮伤衣物,从而进一步减小内筒1000对衣物造成的磨损。
在具体的示例中,可以在遮挡件260的另一端端壁上倒圆角,从而实现在遮挡件260远离提升筋200的端部做光滑处理。
在本申请的一些实施例中,如图2所示,过水口240包括多个,多个过水口240的至少一部分沿提升筋200的长度方向间隔设置。多个过水口240配合以确保筒本体100内腔中的水能够快速且大量的朝向排水孔1231流动,随后再通过多个排水孔1231排出至筒本体100的外部,以达到排水的目的,并提高排水效率。此外,本申请将多个过水口240沿提升筋200的长度方向间隔设置,确保多个过水口240配合能够将位于筒本体100长度方向上不同位置处的水导流至排水孔1231处,也就是保证筒本体100长度方向上不同位置处的水均能够同时导流至排水孔1231处并通过排水孔1231,以进一步提高排水效率。
其中,上述所说的提升筋200的长度方向可以理解为是图1中所示出的前后方向,也就是筒本体100的轴向。
可选地,如图2所示,提升筋200的宽度方向的相对两侧均设置有多个过水口240。这里所说的宽度方向可以理解为是图1中所示出的左右方向,通过在提升筋200的宽度方向的两侧上均设置过水口240,这样当将提升筋200设置在筒身120时,提升筋200上的多个过水口240配合可同时将位于提升筋200两侧的筒本体100内腔中的水导流至排水孔1231处,也可以理解为,通过在提升筋200宽度方向的相对两侧上设置多个过水口240,多个过水口240配合用于将位于筒本体100周向上不同位置处的水同时导流至排水孔1231处并通过排水孔1231,也就是保证筒本体100周向上不同位置处的水均能够同时排出,以进一步提高排水效率。
综上可知,本申请通过设置多个沿提升筋200的长度方向间隔设置的过水口240,用于将位于筒本体100轴向上不同位置处的水同时排出;通过在提升筋200的宽度方向的相对两侧上设置有多个过水口240,用于将位于筒本体100周向上不同位置处的水同时排出,由此保证筒本体100轴向上以及周向上多处位置的水均能够同时排出,以最大化提高内筒1000的排水效率,尤其是在内筒1000在进行脱水程序时,可最大化减小衣物上的含水量,提升用户体验。
可选地,每个过水口240与至少一个排水孔1231位置对应。其中,这里所说的位置对应可以理解为,在筒身120的轴向上,每个过水口240至少与一个排水孔1231正对设置,这样通过过水口240即可将筒身120内腔中的部分水直接导流至排水孔1231处,随后再通过排水孔1231排出,以提高内筒1000的排水效率。
可选地,遮挡件260包括第一遮挡部和第二遮挡部,第一遮挡部和第二遮挡部分别设置在提升筋200的宽度方向的相对两侧。可以理解为,遮挡件260由两个单独的结构组件,在遮挡件260与提升筋200连接的过程中,可先将第一遮挡部连接在提升筋200宽度方向上的一侧,随后再将第二遮挡部连接在提升筋200宽度方向上的另一侧,这样第一遮挡部和第二遮挡部配合即可有效遮挡提升筋200宽度方向相对两侧上的过水口240,以达到利用遮挡件260遮蔽过水口240的目的,以提高内筒1000的美观度。
可选地,第一遮挡部和第二遮挡部分别沿提升筋200的长度方向延伸以遮挡对应位置上的多个过水口240。也就是说,本申请的第一遮挡部和第二遮挡部分别设置在提升筋200宽度方向的相对两侧上,且第一遮挡部和第二遮挡部分别沿着提升筋200的长度方向延伸,这样确保沿提升筋200的长度方向间隔设置的多个过水口240均能被有效遮挡,确保用户不会观察到任意一个提升筋200上的过水口240,以最大化提升内筒1000的美观度。
可选地,第一遮挡部和第二遮挡部均形成为遮挡板,两个遮挡板设置在提升筋200宽度方向上的相对两侧以有效遮挡多个过水口240,同时还可使得第一遮挡部和第二遮挡部的制造简单。
可选地,第一遮挡部、第二遮挡部一体形成在提升筋200上。也就是说,第一遮挡部、第二遮挡部和提升筋200形成为一体件,以降低提升筋200的制造难度,同时通过上述设置可使得第一遮挡部、第二遮挡部能够稳定连接在提升筋200上,以提高第一遮挡部、第二遮挡部的结构稳定性,也就是提高遮挡件260的结构稳定性,确保遮挡件260能够有效遮蔽过水口240。
在另一些示例中,第一遮挡部、第二遮挡部也可通过粘接、卡接等连接方式连接在提升筋200上,也就是说,提升筋200与第一遮挡部、第二遮挡部的装配工艺不限于上述的一体成型,也可通过其他的连接方式进行配合连接,本申请不对提升筋200与第一遮挡部、第二遮挡部的连接方式做具体限定,只要保证第一遮挡部、第二遮挡部能够相对于提升筋200位置稳定即可。
可选地,遮挡件260形成为环形遮挡筋,环形遮挡筋套设在提升筋200的外周壁。这里是指,遮挡件260不限于设置成上述由两个单独结构组成,遮挡件260也可形成为一体件,这样在遮挡件260与提升筋200装配的过程中,只需将形成为遮挡件260的环形遮挡筋套设在提升筋200的外周壁上,即可形成遮挡件260与提升筋200的配合连接,此时利用环形遮挡筋对过水口240进行遮挡,也可有效避免用户观察到过水口240,以提高内筒1000的美观度。
可选地,将环形遮挡筋套设在提升筋200的外周壁上后,环形遮挡筋的端部可通过粘接或卡接的方式连接在提升筋200的外周壁上,以实现环形遮挡筋与提升筋200的固定连接,从而提高环形遮挡筋的位置稳定性,确保环形遮挡筋能够有效遮蔽过水口240。
当然,在另一些示例中,环形遮挡筋也可一体成型在提升筋200上,以降低环形遮挡筋与提升筋200的装配难度,同时保证了环形遮挡筋与提升筋200的连接强度,确保环形遮挡筋能够稳定连接在提升筋200上。
可选地,环形遮挡筋远离提升筋200的端部做光滑处理,以避免环形遮挡筋的端部刮伤衣物,从而减小内筒1000对衣物造成的磨损。
在本申请具体的实施例中,内筒1000可选用不锈钢筒,不锈钢筒可增强内筒1000的强度和刚度,从而延长衣物处理装置的内筒1000的使用寿命,且不锈钢筒具有金属质感,搭配内筒1000上的揉搓凸部310,可增强内筒1000的视觉美感。
下面结合附图描述本申请的衣物处理装置的内筒1000的一个具体实施例。
如图1和图2所示,根据本申请实施例的衣物处理装置的内筒1000包括:筒本体100和提升筋200。筒本体100包括筒底110和筒身120,筒身120上设置有卡孔121,提升筋200上设置有与卡孔121相配合的卡勾230,卡勾230卡接在卡孔121中,以实 现将提升筋200连接在筒身120的内侧。
其中,提升筋200所覆盖的筒身120的位置上设有四个排水孔组123,每个排水孔组123包括多个排水孔1231,四个排水孔组123沿筒身120的周向间隔设置,在每个排水孔组123中,多个排水孔1231沿筒身120的轴向间隔设置且相邻两个排水孔组123中的多个排水孔1231交错设置。
如图2所示,在提升筋200的宽度方向上相对设置有第一侧壁210和第二侧壁220,第一侧壁210上具有多个第一过水口211和多个第一挡水部212,第二侧壁220上具有多个第二过水口221和多个第二挡水部222,第二过水口221正对第一挡水部212设置,第一过水口211正对第二挡水部222设置,以使得多个第一过水口211和多个第二过水口221交错设置,排水孔1231通过第一过水口211、第二过水口221与筒本体100的内腔连通。其中,多个第一过水口211和多个第二过水口221形成在提升筋200与筒身120之间。
提升筋200的侧壁外表面还设有遮挡件260,过水口240位于筒身120与遮挡件260之间,遮挡件260形成为环形遮挡筋,环形遮挡筋套设在提升筋200的外周壁用于遮挡过水口240,其中,遮挡件260的至少一部分设置在过水口240的远离筒身120的一侧且遮挡件260的一端连接提升筋200的侧壁,遮挡件260的另一端朝向远离提升筋200的侧壁的方向延伸,遮挡件260与筒身120之间具有间隙,以连通过水口240和筒本体100的内腔。
筒身120的内周壁上还具有多个呈曲线形的揉搓凸部310以及排水区122,排水区122和多个揉搓凸部310在筒身120的轴向排布且排水区122靠近筒底110设置,排水区122包括多个处于常开状态的排水通口1221,多个排水通口1221沿筒身120的周向间隔设置,多个揉搓凸部310在筒身120的周向上间隔设置,相邻两个揉搓凸部310之间形成导流通道320,至少一部分导流通道320的一端正对提升筋200设置,至少一部分导流通道320的一端正对排水区122设置。
筒底110的部分结构朝向筒身120的内腔延伸以覆盖排水区122,同时,筒底110的外周壁与筒身120之间形成水流通道150,水流通道150连通排水通口1221和筒身120的内腔。
下面结合附图描述本申请实施例的衣物处理装置。
根据本申请实施例的衣物处理装置包括:外桶和内筒1000。
其中,内筒1000为前述的衣物处理装置的内筒1000,内筒1000的结构在此不做赘述,内筒1000可转动地设在外桶内。
根据本申请实施例的衣物处理装置,通过采用前述的内筒1000,内筒1000在相对于外桶转动的过程中可带动衣物旋转,以达到对衣物进行处理的目的,并保证筒本体100内腔中的水能够通过第一过水口211和第二过水口221顺利流至排水孔1231处,随后再通过排水孔1231排出,提高衣物处理装置的排水效率,同时提高排水质量,从而实现快速高效地排水,提升用户体验。
需要说明的是,虽然本申请的排水孔1231和排水通口1221均设置为常开状态,但在衣物处理装置清洗衣物的过程中,因内筒1000的外侧还设有外桶,当内筒1000和外桶之间充满水时,内筒1000中的水将不会通过排水孔1231和排水通口1221排出,此时即可利用内筒1000中的水清洗衣物,当衣物清洗完成需要脱水时,此时将外桶的出 水口打开,使得内筒1000和外桶之间的水能够排出,进而确保内筒1000中的水能够通过排水孔1231和排水通口1221排出,以达到脱水的目的。
本申请的衣物处理装置可以是滚筒洗衣机,也就是本申请的内筒1000可应用在滚筒洗衣机上,当然,还可以应用于目前市场上的干衣机、波轮洗衣机中,若该内筒1000应用在干衣机上时,可以提高该干衣机的脱水效率,若该内筒1000应用在波轮洗衣机或滚筒洗衣机上时,可以提高该波轮洗衣机或滚动洗衣机的洗涤、脱水效率。
根据本申请实施例的衣物处理装置的内筒1000及衣物处理装置的其他构成例如内筒1000的转动过程及控制过程对于本领域普通技术人员而言都是已知的,这里不再详细描述。
在本说明书的描述中,参考术语“实施例”、“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 (17)

  1. 一种衣物处理装置的内筒,其中,包括:
    筒本体,所述筒本体包括筒底和筒身;
    提升筋,所述提升筋设于所述筒身的内侧,所述提升筋所覆盖的所述筒身的位置上设有多个排水孔;
    其中,所述提升筋的第一侧壁具有多个第一过水口,所述提升筋的与所述第一侧壁相对设置的第二侧壁具有多个第二过水口,多个所述第一过水口和多个所述第二过水口交错设置,所述排水孔通过所述第一过水口、所述第二过水口与所述筒本体的内腔连通。
  2. 根据权利要求1所述的衣物处理装置的内筒,其中,所述第一侧壁和所述第二侧壁在所述提升筋的宽度方向上相对设置,多个所述第一过水口在所述提升筋的长度方向间隔布置,多个所述第二过水口在所述提升筋的长度方向间隔布置。
  3. 根据权利要求1或2所述的衣物处理装置的内筒,其中,
    所述第一侧壁还具有位于相邻两个所述第一过水口之间的第一挡水部,至少一个所述第二过水口正对所述第一挡水部设置;和/或,
    所述第二侧壁还具有位于相邻两个所述第二过水口之间的第二挡水部,至少一个所述第一过水口正对所述第二挡水部设置。
  4. 根据权利要求1-3中任一项所述的衣物处理装置的内筒,其中,所述提升筋自身或者所述提升筋与所述筒身之间限定出所述第一过水口和/或所述第二过水口。
  5. 根据权利要求1-4中任一项所述的衣物处理装置的内筒,其中,
    所述第一侧壁边缘设有第一缺口,所述筒身与所述第一缺口的开口配合以限定出所述第一过水口;所述第二侧壁边缘设有第二缺口,所述筒身与所述第二缺口的开口配合以限定出所述第二过水口;和/或,
    所述第一缺口和/或所述第二缺口的边沿形成为弧形、直线形或折线形中的一种或者多种组合。
  6. 根据权利要求1-5中任一项所述的衣物处理装置的内筒,其中,所述提升筋覆盖所述筒身的位置上设有多个排水孔组,每个所述排水孔组包括多个所述排水孔,多个所述排水孔组沿所述筒身的周向间隔设置;和/或,
    所述提升筋的长度方向沿所述筒本体的轴向延伸,在每个所述排水孔组中,多个所述排水孔沿所述筒身的轴向间隔设置,相邻两个所述排水孔组中的多个所述排水孔在所述筒身的轴向交错设置。
  7. 根据权利要求1-6中任一项所述的衣物处理装置的内筒,其中,每个所述第一过水口和/或所述第二过水口与至少一个所述排水孔位置对应。
  8. 根据权利要求1-7中任一项所述的衣物处理装置的内筒,其中,所述筒身的内周壁具有揉搓区,所述揉搓区设有多个揉搓凸部,多个所述揉搓凸部在所述筒身的周向上间隔设置,
    其中,相邻两个所述揉搓凸部之间形成导流通道,至少一部分所述导流通道的一端正对 所述提升筋设置;
    和/或,至少一部分所述导流通道的一端正对所述第一过水口或所述第二过水口。
  9. 根据权利要求8所述的衣物处理装置的内筒,其中,所述揉搓区为无孔区域;和/或,
    所述揉搓凸部和/或所述导流通道形成曲线形。
  10. 根据权利要求1-9中任一项所述的衣物处理装置的内筒,其中,所述筒身设有多个卡孔,所述提升筋的两侧分别设有多个卡勾,多个所述卡勾与多个所述卡孔一一对应地卡接配合。
  11. 一种衣物处理装置的内筒,其中,包括:
    筒本体,所述筒本体包括筒底和筒身;
    提升筋,所述提升筋设于所述筒身的内侧,所述提升筋所覆盖的所述筒身的位置上设有排水孔,所述提升筋的侧壁具有过水口以连通所述排水孔和所述筒本体的内腔,
    其中,所述提升筋的侧壁外表面设有遮挡件,用于遮挡所述过水口。
  12. 根据权利要求11所述的衣物处理装置的内筒,其中,所述过水口位于所述筒身与所述遮挡件之间,所述遮挡件与所述筒身之间具有间隙,以连通所述过水口和所述筒本体的内腔。
  13. 根据权利要求11或12所述的衣物处理装置的内筒,其中,所述遮挡件的一端连接所述提升筋的侧壁且另一端朝向远离所述提升筋的侧壁的方向延伸。
  14. 根据权利要求11-13中任一项所述的衣物处理装置的内筒,其中,所述过水口包括多个,多个所述过水口的至少一部分沿所述提升筋的长度方向间隔设置;和/或,
    所述提升筋的宽度方向的相对两侧均设置有多个所述过水口。
  15. 根据权利要求11-14中任一项所述的衣物处理装置的内筒,其中,所述遮挡件包括第一遮挡部和第二遮挡部,所述第一遮挡部和所述第二遮挡部分别设置在所述提升筋的宽度方向的相对两侧,所述第一遮挡部和所述第二遮挡部分别沿所述提升筋的长度方向延伸以遮挡对应位置上的多个所述过水口。
  16. 根据权利要求11-14中任一项所述的衣物处理装置的内筒,其中,所述遮挡件形成为环形遮挡筋,所述环形遮挡筋套设在所述提升筋的外周壁。
  17. 一种衣物处理装置,其中,包括:
    外桶;
    根据权利要求1-16中任一项所述的衣物处理装置的内筒,所述内筒可转动地设在所述外桶内。
PCT/CN2022/090705 2022-03-31 2022-04-29 衣物处理装置的内筒及衣物处理装置 WO2023184641A1 (zh)

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