WO2020192159A1 - 分配器盒、洗涤剂投放装置及洗衣机 - Google Patents

分配器盒、洗涤剂投放装置及洗衣机 Download PDF

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Publication number
WO2020192159A1
WO2020192159A1 PCT/CN2019/120812 CN2019120812W WO2020192159A1 WO 2020192159 A1 WO2020192159 A1 WO 2020192159A1 CN 2019120812 W CN2019120812 W CN 2019120812W WO 2020192159 A1 WO2020192159 A1 WO 2020192159A1
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WO
WIPO (PCT)
Prior art keywords
injection port
liquid injection
water
cavity
sink
Prior art date
Application number
PCT/CN2019/120812
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English (en)
French (fr)
Inventor
郝秀
张高见
何力
张宇
Original Assignee
无锡小天鹅电器有限公司
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Filing date
Publication date
Application filed by 无锡小天鹅电器有限公司 filed Critical 无锡小天鹅电器有限公司
Publication of WO2020192159A1 publication Critical patent/WO2020192159A1/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
    • D06F39/00Details of washing machines not specific to a single type of machines covered by groups D06F9/00 - D06F27/00 
    • D06F39/02Devices for adding soap or other washing agents

Definitions

  • the present application relates to the technical field of washing machines, and in particular to a dispenser box, a detergent dispensing device including the dispenser box, and a washing machine including the detergent dispensing device.
  • the detergent dispensing device is usually composed of a detergent box and a dispenser box slidably connected to the detergent box.
  • the dispenser box has a dispensing agent storage cavity and a dispensing cavity, and the detergent box is provided with a spray port above the corresponding dispensing cavity.
  • this part of the residual water When the consumer pulls out the dispenser box, this part of the residual water will flow along The upper part of the dispenser box flows to the ground, and because the injection agent storage cavity and the injection cavity are often set together, this part of the residual water may also flow into the injection agent storage cavity through the liquid injection port of the corresponding injection agent storage cavity, resulting in the storage cavity The detergent inside is diluted, resulting in inaccurate automatic dispensing.
  • an object of the present application is to provide a dispenser box.
  • Another object of the present application is to provide a detergent dispensing device including the above dispenser box.
  • Another object of the present application is to provide a washing machine including the above detergent dispensing device.
  • a dispenser box comprising: a box body, the box body defines an injection cavity and an injection agent storage cavity, and is provided with the injection cavity
  • the liquid outlet; the cover which is set on the box body, and is provided with a first liquid injection port corresponding to the injection cavity and a second liquid injection port corresponding to the injection agent storage cavity, and
  • the upper surface of the cover body is provided with a first sinking platform, and the first liquid injection port penetrates a part of the bottom wall surface of the first sinking platform and is connected to the injection cavity.
  • the cover body is sinked, and a first sinking platform is provided on the upper surface of the cover body. Because the first liquid injection port penetrates the partial bottom of the first sinking platform The wall surface communicates with the injection cavity, so other parts of the first sinking platform are formed as a groove structure arranged adjacent to the first liquid injection port, which can be used to collect residual water.
  • the spray port of the detergent box faces the first
  • the splashed water can collect on other parts of the first sinking platform to minimize the amount of water remaining on the upper surface of the distributor box, so as to prevent the residual water from flowing to the ground when the distributor box is drawn out or Minimize the amount of water flowing into the dispensing agent storage cavity, thereby improving the accuracy of automatic dispensing.
  • dispenser box in the above technical solution provided by this application may also have the following additional technical features:
  • the first sinking platform defines a side-by-side water collection area, and the side-by-side water collection area and the first liquid injection port are arranged side by side along the left-right direction of the washing machine and communicate with each other.
  • the first sinking platform defines the side-by-side water collection area, and the side-by-side water collection area and the first liquid injection port are arranged side by side along the left and right direction of the washing machine (it can be located on the left and/or right side of the first liquid injection port), then the detergent box
  • the spray port sprays water to the first liquid injection port
  • the residual water splashing in the left and right directions of the first liquid injection port can gather in the side-by-side water collection area.
  • the side-by-side water collection area is connected to the first liquid injection port, Therefore, the water collected in the side-by-side water collection area can again flow into the second liquid injection port and then be discharged through the liquid outlet of the automatic injection chamber, so that the user does not need to remove the cover to manually pour out the residual water, which improves the user's comfort.
  • the side-by-side water collection area is partially recessed to form an installation groove, the installation groove is provided with a first sinkhole, and the first sinkhole penetrates through the groove wall of the installation groove and communicates with the injection cavity.
  • the side-by-side water collection area is partially recessed to form a mounting slot, such as a mounting slot used to install a stopper or other components that limit the movement range of the distributor box, to achieve corresponding functions; and the first sink hole is provided in the mounting slot, and the first The sink hole penetrates the groove wall of the installation groove and is connected to the injection cavity, so that the accumulated water in the installation groove can flow into the automatic injection cavity and be discharged, preventing the components in the installation groove from being soaked for a long time and affecting its function.
  • a mounting slot such as a mounting slot used to install a stopper or other components that limit the movement range of the distributor box, to achieve corresponding functions
  • the first sink hole is provided in the mounting slot, and the first The sink hole penetrates the groove wall of the installation groove and is connected to the injection cavity, so that the accumulated water in the installation groove can flow into the automatic injection cavity and be discharged, preventing the components in the installation groove from being soaked for a long time and affecting its function.
  • the first sink hole is provided at the bottom of the side wall of the installation groove; and/or, the first sink hole extends obliquely downward in a direction close to the first liquid injection port .
  • the first sink hole is arranged at the bottom of the side wall of the installation groove, so that the accumulated water in the installation groove can be automatically discharged under the action of gravity.
  • the first sink hole is arranged on the side wall of the installation groove to ensure the integrity of the bottom wall of the installation groove, so that the bottom of the side-by-side water collection area can be configured as an area separated from the injection cavity, for example, it can be configured as an injection agent storage
  • the cavity allows the dosage agent storage cavity to extend from the front end of the dispenser box to the back end of the dispenser box, thereby expanding the capacity of the dosage agent storage cavity and making the layout more reasonable.
  • the first sink hole may also be provided on the bottom wall of the installation groove. For example, a part of the injection cavity is located below the installation groove, and the accumulated water in the installation groove can also be discharged into the injection cavity through the first sink hole.
  • the first sinkhole extends obliquely downward along the direction close to the first liquid injection port, which is convenient for the water accumulated in the installation groove to be automatically discharged under the action of gravity.
  • the first sink hole can also be arranged horizontally.
  • the first sinking platform defines a side-by-side water collection area, and the side-by-side water collection area and the first liquid injection port are arranged side by side along the front and rear direction of the washing machine and communicate with each other.
  • the first sinking platform defines a side-by-side water collection area, and the side-by-side water collection area and the first liquid injection port are arranged side by side along the front and rear direction of the washing machine (it can be located on the front and/or back side of the first liquid injection port), then the detergent box
  • the spray port sprays water to the first liquid injection port
  • the residual water splashing in the front and back direction of the first liquid injection port can be collected in the parallel water collection area. Since the parallel water collection area is connected to the first liquid injection port, Therefore, the water collected in the side-by-side water collection area can flow into the second liquid injection port again and then be discharged through the liquid outlet of the automatic injection chamber. This eliminates the need for the user to remove the cover to manually pour out the residual water, which improves the user's comfort.
  • one end of the juxtaposed water collection area and the first liquid injection port transition through a transition slope, and the transition slope extends obliquely downward in a direction close to the first liquid injection port.
  • One end of the juxtaposed water collection area transitions with the first liquid injection port through a transition slope, and the transition slope extends obliquely downward in the direction close to the first liquid injection port, that is, one end of the juxtaposed water collection area extends obliquely downward to the first injection port.
  • the transition slope can play a certain guiding role, so that the accumulated water in the juxtaposed water collection area can flow smoothly to the first liquid injection port, and then be discharged through the liquid outlet of the injection cavity.
  • the number of the injection agent storage cavity is at least one
  • the number of the second liquid injection port is equal to and corresponds to the number of the injection agent storage cavity
  • all the second injection The ports are arranged side by side on the front side of the first liquid injection port
  • the parallel water collection area is located on the back side of the first liquid injection port.
  • the number of injection agent storage cavities can be one, two, three or more.
  • the number of second liquid injection ports is equal to and corresponds to the number of injection agent storage cavities, which is convenient for storing different types of injection agents (including but Not limited to detergents, softeners, disinfectants, etc.), all the second liquid injection ports are arranged side by side on the front side of the first liquid injection port, the structure is relatively regular, which is convenient for processing and molding, and is also convenient for injection through the second liquid injection port Add the injection agent to the agent storage cavity; the side-by-side water collection area is located behind the first injection port, and other structures can be reasonably arranged under the side-by-side water collection area, for example, the injection agent storage cavity is arranged side by side under the second injection port The lower part of the water collection area extends to the lower part of the juxtaposed water collection area, which extends the length of the dosage agent storage cavity and increases the capacity of the dosage agent storage cavity.
  • the upper surface of the cover body is provided with a second sinking platform, and the second liquid injection port penetrates a part of the bottom wall surface of the second sinking platform to communicate with the dosing agent storage cavity, And the second sinking platform is provided with a first retaining edge surrounding the second liquid injection port, and a water collecting groove is defined between the first retaining edge and the side wall surface of the second sinking platform.
  • a second sinking platform is provided on the upper surface of the cover. Since the second liquid injection port penetrates the partial bottom wall surface of the second sinking platform and is connected to the injection agent storage cavity, and the second sinking platform is provided with a first rib, The rib surrounds the second liquid injection port, so the water collection trough defined between the first rib and the side wall surface of the second sink can be used to collect residual water, and the water splashed into or into the second sink will collect In the sump, it does not flow into the second liquid injection port, thereby preventing water from entering the dosage agent storage cavity to dilute the dosage agent inside, thereby further improving the accuracy of automatic dispensing.
  • the sump is provided with a second sink hole, and the second sink penetrates through the wall of the sump and communicates with the injection cavity.
  • the sump is also provided with a second sink hole, and the second sink hole penetrates through the wall of the sump to connect to the injection cavity, so that the water in the sump can automatically enter the automatic injection cavity through the second sink, and then through the automatic injection The liquid outlet of the cavity is discharged.
  • the second sink hole may not be provided, and the cover body may be removed and the accumulated water in the water collecting tank may be manually drained.
  • the second sink hole is provided on the bottom wall of the water collection tank.
  • the second sink hole is arranged on the bottom wall of the water collecting trough to facilitate automatic drainage of the accumulated water under the action of gravity.
  • the top of the injection cavity is provided with a sink, a part of the sink is located directly below the second sink hole, and the sink has a water outlet connected to the injection cavity.
  • a sink is set on the top of the throwing cavity, and the part of the sink is located directly below the second sink, so the water falling from the second sink just enters the sink, and then enters the throwing cavity along the outlet of the sink.
  • the bottom of the water outlet is provided with a water outlet slope, and the water outlet slope extends obliquely downward along a direction close to the injection cavity.
  • a water outlet slope is provided at the bottom of the water outlet, and the water outlet slope extends obliquely downward along the direction close to the injection cavity, so that the water in the sink can be quickly discharged under the action of gravity.
  • the cover body is provided with a second rib, the second rib extends to the sink and shields the sink, and the second rib and the water outlet There is a water gap between.
  • a second retaining edge is provided on the cover, and the second retaining edge extends to the sink and shields the sink.
  • This aspect can prevent the dosage agent in the injection cavity from entering the sink and remaining in the sink, thereby improving the delivery
  • it can prevent the water in the injection cavity or the mixed liquid of water and the injection agent from being splashed into the water collection tank along the sink and the second sink; and between the second rib and the water outlet With a water outlet gap, it ensures that the water in the sink can flow smoothly into the injection cavity to achieve a drainage effect.
  • the top of the placing cavity is provided with nested first and second surrounding edges, and between the first and second surrounding edges is defined for fitting
  • the positioning groove of the cover a part of the first surrounding edge protrudes toward the direction of the second liquid injection port to form a first U-shaped groove, and the second surrounding edge corresponds to the first U-shaped groove
  • the U-shaped opening is provided with a notch, the sink is defined between the first U-shaped groove and the notch, and the notch is formed as the water outlet.
  • the top of the placing cavity is provided with a first edge and a second edge.
  • the first and second edges are nested and distributed to form a double-layer edge structure.
  • the double-layer edge can improve the strength of the box and is
  • the top of the cavity defines a positioning groove to facilitate positioning when the cover is installed, thereby improving assembly efficiency; a part of the first surrounding edge protrudes toward the second liquid injection port to form a first U-shaped groove, ensuring the first U-shaped
  • the groove can be located directly below the second sink hole, and the second surrounding edge is provided with a gap corresponding to the U-shaped opening of the first U-shaped groove, which ensures that the water in the first U-shaped groove can pass through the gap and enter the injection cavity.
  • a sink is defined between the first U-shaped groove and the notch, and the notch is the outlet of the sink, which has a simple structure and a reasonable layout.
  • the lower surface of the cover body is provided with a third surrounding edge and a fourth surrounding edge that surround the first liquid injection port and are nested and distributed, and the third surrounding edge is inserted into the positioning groove ,
  • the fourth surrounding edge is located inside the second surrounding edge, and a part of the third surrounding edge protrudes toward the second liquid injection port to form a second U-shaped groove, and the second U
  • the groove is located directly below the second sink hole and is matched with the first U-shaped groove.
  • the first liquid injection port is provided with a third peripheral edge and a fourth peripheral edge, and the nested distribution of the third peripheral edge and the fourth peripheral edge also forms a double-layered peripheral edge structure, thereby improving the strength of the cover.
  • the third peripheral edge is inserted into the positioning groove to realize the insertion and fit of the cover body and the box body; and the fourth peripheral edge is located inside the second peripheral edge (in order from the inside to the outside along the first liquid injection port, the fourth Edge, second edge, third edge and first edge), the fourth edge can shield the sink, so a part of the fourth edge forms the second edge in the aforementioned technical solution ;
  • a part of the third surrounding edge protrudes toward the second injection port to form a second U-shaped groove, the second U-shaped groove is located directly below the second sinkhole, so as to play a role in the water falling from the second sinkhole
  • the blocking effect prevents it from flowing to the dosing agent storage cavity, and the second U-shaped groove is matched with the first U-shaped groove, so the second U
  • the dispenser box further includes: a liquid storage cover connected with the cover body for opening or closing the second liquid injection port.
  • the dispenser box also includes a liquid storage cover, which is connected with the cover body and can close the second liquid injection port, thereby further preventing residual water from entering the dosage agent storage cavity, and further improving the accuracy of automatic injection.
  • a liquid storage cover which is connected with the cover body and can close the second liquid injection port, thereby further preventing residual water from entering the dosage agent storage cavity, and further improving the accuracy of automatic injection.
  • the number of liquid storage caps and the number of second liquid injection ports are equal and correspond to each other one to one.
  • the technical solution of the second aspect of the present application provides a detergent dispensing device, including: a detergent box provided with a water inlet channel and a total outlet, the water inlet channel having a spray port; and as in the first aspect of the technical solution
  • the dispenser box of any one is movably mounted on the detergent box, the first liquid injection port of the dispenser box is located below the spray port, and the liquid outlet of the dispenser box is connected to The total outlet is connected.
  • the detergent dispensing device provided by the technical solution of the second aspect of the present application includes the dispenser box described in any one of the technical solutions of the first aspect, and therefore has all the beneficial effects of any of the above technical solutions, and is not here Repeat it again.
  • the technical solution of the third aspect of the present application provides a washing machine, including: a body; and the detergent dispensing device according to the technical solution of the second aspect, installed in the body.
  • the washing machine provided by the technical solution of the third aspect of the present application includes a detergent dispensing device provided by the technical solution of the second aspect, and therefore has all the beneficial effects of any of the above technical solutions, and will not be repeated here.
  • Fig. 1 is a schematic diagram of a three-dimensional structure of a dispenser box according to some embodiments of the present application
  • Fig. 2 is a three-dimensional structural diagram of the box body of the dispenser box shown in Fig. 1;
  • Figure 3 is a schematic top view of the structure of the box shown in Figure 2;
  • Fig. 4 is a schematic diagram of an enlarged structure of part A in Fig. 2;
  • Figure 5 is a schematic sectional view of the structure of the dispenser box shown in Figure 1;
  • Figure 6 is a schematic diagram of an enlarged structure of part
  • Fig. 7 is a schematic diagram of an enlarged structure of part C in Fig. 5.
  • the dispenser box provided by the embodiment of the first aspect of the present application includes: a box body 1 and a cover body 2.
  • the box body 1 defines an injection cavity 11 and an injection agent storage cavity 12, as shown in Figures 2, 3 and 5, and is provided with a liquid outlet 119 (as shown in Figure 5) communicating with the injection cavity 11;
  • the body 2 is covered on the box body 1, and is provided with a first liquid injection port 21 corresponding to the injection cavity 11 and a second liquid injection port 22 corresponding to the injection agent storage cavity 12, as shown in FIGS. 1 and 5,
  • the upper surface of the cover 2 is provided with a first sinking platform 23, and the first liquid injection port 21 penetrates a part of the bottom wall surface of the first sinking platform 23 and communicates with the injection cavity 11, as shown in FIGS. 1 and 5.
  • the cover body 2 is sinked, and a first sinker 23 is provided on the upper surface of the cover body 2.
  • a first sinker 23 is provided on the upper surface of the cover body 2.
  • a part of the bottom wall surface of the platform 23 communicates with the injection chamber 11, so other parts of the first sinking platform 23 are formed as a groove structure arranged adjacent to the first liquid injection port 21, which can be used to collect residual water.
  • the spray port of the box sprays water to the first liquid injection port 21
  • the splashed water can be collected on other parts of the first sinking platform 23 to minimize the amount of water remaining on the upper surface of the distributor box, so as to prevent distribution as much as possible
  • the container is withdrawn, the residual water flows to the ground or the amount of water flowing into the dosage storage cavity 12 is reduced as much as possible, thereby improving the accuracy of automatic dosage.
  • the first sinking platform 23 defines a side-by-side water collection area 231, and the side-by-side water collection area 231 and the first liquid injection port 21 are arranged side by side along the left and right direction of the washing machine and communicate with each other, as shown in FIG. 1.
  • the first sinking platform 23 defines a side-by-side water collection area 231, and the side-by-side water collection area 231 and the first liquid injection port 21 are arranged side by side along the left and right direction of the washing machine (may be located on the left and/or right side of the first liquid injection port 21) ,
  • the spray port of the detergent box sprays water to the first liquid injection port 21
  • the residual water splashing in the left and right directions of the first liquid injection port 21 can gather in the side-by-side water collection area 231, because the side-by-side water collection area 231 It communicates with the first liquid injection port 21, so that the water collected in the side-by-side water collection area 231 can again flow into the second liquid injection port 22 and then be discharged through the liquid outlet 119 of the automatic injection chamber, so that the user does not need to remove the cover 2
  • the residual water is poured out manually, which improves the user's comfort.
  • the side-by-side water collection area 231 is partially recessed to form an installation groove 2311.
  • the installation groove 2311 is provided with a first sink hole 2312.
  • the first sink hole 2312 penetrates The groove wall of the installation groove 2311 communicates with the injection cavity 11.
  • the side-by-side water collection area 231 is partially recessed to form a mounting groove 2311, such as a mounting groove 2311 for installing a stopper or other components that restricts the moving range of the distributor box, so as to achieve corresponding functions; and a first drain hole is provided in the mounting groove 2311 2312, and the first sink hole 2312 penetrates through the wall of the installation groove 2311 and communicates with the injection cavity 11, so that the accumulated water in the installation groove 2311 can flow into the automatic injection cavity and be discharged, preventing the components in the installation groove 2311 from being soaked for a long time and affecting its function.
  • the first sink hole 2312 is provided at the bottom of the side wall of the installation groove 2311, as shown in FIG. 1.
  • the first sink hole 2312 is arranged at the bottom of the side wall of the installation groove 2311, so that the accumulated water in the installation groove 2311 can be automatically discharged under the action of gravity.
  • the first sink hole 2312 is provided on the side wall of the installation groove 2311 to ensure the integrity of the bottom wall of the installation groove 2311, so that the side-by-side water collection area 231 can be configured as an area separated from the injection cavity 11, such as It is arranged as the dosage storage cavity 12 so that the dosage storage cavity 12 can extend from the front end of the dispenser box to the rear end of the dispenser box, thereby expanding the capacity of the dosage storage cavity 12 and the layout is more reasonable.
  • the first sink hole 2312 may also be provided on the bottom wall of the installation groove 2311.
  • the water in the installation groove 2311 can also be discharged into the injection cavity through the first sink hole 2312.
  • first sink hole 2312 extends obliquely downward along the direction close to the first liquid injection port 21.
  • the first sink hole 2312 extends obliquely and downward along the direction close to the first liquid injection port 21, so that the accumulated water in the installation groove 2311 can be automatically discharged under the action of gravity.
  • the first sink hole 2312 can also be arranged horizontally.
  • the first sinking platform 23 defines a side-by-side water collection area 232, and the side-by-side water collection area 232 and the first liquid injection port 21 are arranged side by side along the front and back direction of the washing machine and communicate with each other, as shown in FIG.
  • the first sinking platform 23 defines a side-by-side water collection area 232, and the side-by-side water collection area 232 and the first liquid injection port 21 are arranged side by side along the front and rear direction of the washing machine (may be located at the front and/or back side of the first liquid injection port 21) ,
  • the spray port of the detergent box sprays water to the first liquid injection port 21
  • the residual water splashing in the front and back direction of the first liquid injection port 21 can gather in the juxtaposed water collection area 232.
  • one end of the juxtaposed water collection area 232 and the first liquid injection port 21 transition through a transition slope 2321, and the transition slope 2321 extends obliquely downward in a direction close to the first liquid injection port 21, as shown in FIGS. 1 and 7.
  • transition slope 2321 One end of the juxtaposed water collection area 232 and the first liquid injection port 21 transition through a transition slope 2321, and the transition slope 2321 extends obliquely downward in the direction close to the first liquid injection port 21, that is, one end of the parallel water collection area 232 is inclined to Extend to the first liquid injection port 21, the transition slope 2321 can play a certain guiding role, so that the water in the juxtaposed water collection area 232 can flow smoothly to the first liquid injection port 21, and then pass through the discharge cavity 11 The liquid port 119 is discharged.
  • the number of the injection agent storage cavity 12 is at least one, the number of the second injection port 22 and the number of the injection agent storage cavity 12 are equal and one-to-one, and all the second injection ports 22 are arranged side by side in the first injection port.
  • the juxtaposed water collection area 232 is located on the rear side of the first liquid injection port 21, as shown in FIG. 1.
  • the number of dosage storage cavities 12 can be one, two, three or more, and the number of second liquid injection ports 22 is equal to the number of dosage storage cavities 12 and corresponds to one to one, which is convenient for storing different types of dosages. (Including but not limited to detergents, softeners, disinfectants, etc.), all the second liquid injection ports 22 are arranged side by side on the front side of the first liquid injection port 21, and the structure is relatively regular, which is convenient for processing and forming, and also convenient for passing through the second liquid injection port.
  • the injection port 22 adds the injection agent to the injection agent storage cavity 12; the juxtaposed water collection area 232 is located at the rear side of the first injection port 21, and other structures, such as the injection agent storage cavity, can also be reasonably arranged below the parallel water collection area 232 12 extends from below the second liquid injection port 22 through the side-by-side water collection area 231 to below the side-by-side water collection area 232, which extends the length of the dosing agent storage cavity 12 and increases the capacity of the dosing agent storage cavity 12.
  • the upper surface of the cover 2 is provided with a second sinking platform 24, as shown in FIG. 1, the second liquid injection port 22 penetrates the second sinking platform Part of the bottom wall surface of 24 is connected to the dosage storage cavity 12, as shown in FIG. 6, and the second sinking table 24 is provided with a first rib 241 surrounding the second liquid injection port 22.
  • the first rib 241 is connected to the A water collection groove 242 is defined between the side walls of the two sinking platforms 24, as shown in FIGS. 1 and 6.
  • a second sinking platform 24 is provided on the upper surface of the cover body 2. Because the second liquid injection port 22 penetrates through the partial bottom wall surface of the second sinking platform 24 to communicate with the dosage storage cavity 12, and the second sinking platform 24 is provided with a A rib 241, the first rib 241 surrounds the second liquid injection port 22, so the water collection groove 242 defined between the first rib 241 and the side wall surface of the second sink 24 can be used to collect residual water, then The water splashed or flowing into the second sink 24 will be collected in the water collection tank 242 instead of flowing into the second liquid injection port 22, thereby preventing water from entering the dosage storage cavity 12 to dilute the internal dosage, thereby further improving the automatic The accuracy of delivery.
  • the water collection tank 242 is provided with a second sink hole 243, as shown in FIGS. 1, 5 and 6, the second sink hole 243 penetrates the wall of the water collection tank 242 and communicates with the injection cavity 11.
  • the water collection tank 242 is also provided with a second sink hole 243, and the second sink hole 243 penetrates the wall of the water collection tank 242 and is connected to the injection chamber 11, so that the accumulated water in the water collection tank 242 can automatically enter the automatic injection through the second sink hole 243 The cavity is then discharged through the liquid outlet 119 of the automatic injection cavity.
  • the second sink hole 243 may not be provided, and the cover 2 is removed and the accumulated water in the water collection tank 242 is manually drained.
  • the second sink hole 243 is provided on the bottom wall of the water collection tank 242, as shown in FIG. 6.
  • the second sink hole 243 is arranged on the bottom wall of the water collecting trough 242 to facilitate the automatic drainage of the accumulated water under the action of gravity.
  • a sink 111 is provided on the top of the injection cavity 11. As shown in FIG. 6, a part of the sink 111 is located directly below the second sink 243, and the sink 111 has a water outlet 112 connected to the injection cavity 11. As shown in Figure 4.
  • a sink 111 is provided at the top of the injection cavity 11, and a part of the sink 111 is located directly below the second sink 243, so the water falling from the second sink 243 just enters the sink 111, and then follows the sink 111.
  • the water outlet 112 enters into the injection cavity 11, and there is no need to arrange components such as pipes between the second sink hole 243 and the injection cavity 11, thereby simplifying the product structure and having a more reasonable layout.
  • the bottom of the water outlet 112 is provided with a water outlet inclined surface 113. As shown in FIGS. 4 and 6, the water outlet inclined surface 113 extends obliquely downward in a direction close to the injection cavity 11.
  • a water outlet slope 113 is provided at the bottom of the water outlet 112, and the water outlet slope 113 extends obliquely downward along the direction close to the injection cavity 11, so that the water in the sink 111 can be quickly discharged under the action of gravity.
  • the cover 2 is provided with a second rib 25, the second rib 25 extends to the sink 111 and shields the sink 111, and there is a water outlet gap 114 between the second rib 25 and the water outlet 112, such as Shown in Figure 6.
  • a second rib 25 is provided on the cover 2, and the second rib 25 extends to the sink 111 and shields the sink 111.
  • This aspect can prevent the dosage agent in the injection chamber 11 from entering the sink 111 and remaining in the sink 111.
  • the use efficiency of the dosing agent is improved.
  • it can prevent the water in the dosing cavity 11 or the mixed liquid of water and the dosing agent from being splashed back into the water collection trough 242 along the sink 111 and the second sink hole 243.
  • the top of the injection cavity 11 is provided with a nested first surrounding edge 115 and a second surrounding edge 116.
  • the first surrounding edge 115 and the second surrounding edge 116 define The positioning groove 117 used to fit the cover 2 is shown in FIG. 7; a part of the first surrounding edge 115 protrudes toward the second liquid injection port 22 to form a first U-shaped groove 118, as shown in FIG. 4 ,
  • the second surrounding edge 116 is provided with a gap corresponding to the U-shaped opening of the first U-shaped groove 118, a sink 111 is defined between the first U-shaped groove 118 and the gap, and the gap is formed as a water outlet 112.
  • the top of the placing cavity 11 is provided with a first surrounding edge 115 and a second surrounding edge 116.
  • the first surrounding edge 115 and the second surrounding edge 116 are nested and distributed to form a double-layered edge structure.
  • the double-layered edge can improve the box body 1.
  • a positioning groove 117 is defined at the top of the injection cavity 11 to facilitate positioning of the cover 2 during installation, thereby improving assembly efficiency; a part of the first surrounding edge 115 protrudes toward the second injection port 22 to form a second A U-shaped groove 118 ensures that the first U-shaped groove 118 can be located directly under the second sink hole 243, and the second surrounding edge 116 is provided with a gap corresponding to the U-shaped opening of the first U-shaped groove 118 to ensure that the first U-shaped groove 118
  • the water in the groove 118 can pass through the gap and enter the injection cavity 11. Therefore, the water trough 111 is defined between the first U-shaped groove 118 and the gap, and the gap is the water outlet 112 of the water trough 111.
  • the structure is simple and the layout is reasonable.
  • the lower surface of the cover 2 is provided with a third surrounding edge 211 and a fourth surrounding edge 212 that surround the first liquid injection port 21 and are nested and distributed, and the third surrounding edge 211 is inserted into the positioning groove 117, as shown in FIG.
  • the fourth peripheral edge 212 is located inside the second peripheral edge 116, and a part of the third peripheral edge 211 protrudes toward the second liquid injection port 22 to form a second U-shaped groove, as shown in FIG.
  • the U-shaped groove is located directly below the second sink hole 243 and is matched with the first U-shaped groove 118.
  • the first liquid injection port 21 is provided with a third peripheral edge 211 and a fourth peripheral edge 212.
  • the nested distribution of the third peripheral edge 211 and the fourth peripheral edge 212 also forms a double-layered peripheral edge structure, thereby improving the strength of the cover 2 .
  • the third surrounding edge 211 is inserted into the positioning groove 117 to realize the inserting and fitting of the cover 2 and the box body 1; and the fourth surrounding edge 212 is located inside the second surrounding edge 116 (along the first liquid injection port 21 by the From the inside to the outside are the fourth edge 212, the second edge 116, the third edge 211, and the first edge 115), the fourth edge 212 can block the sink 111, so the fourth edge A part of 212 forms the second rib 25 in the foregoing embodiment; a part of the third surrounding edge 211 protrudes toward the second liquid injection port 22 to form a second U-shaped groove, and the second U-shaped groove is located in the second Directly below the sink hole 243, thereby blocking the water falling from the second sink hole 243, preventing it from flowing to the dosage storage cavity 12, and the second U-shaped groove is matched with the first U-shaped groove 118, so The two U-shaped grooves can be inserted into the first U-shaped groove 118 to ensure that the third surrounding edge 211 can
  • the dispenser box further includes: a liquid storage cover (not shown in the figure), which is connected to the cover body 2 for opening or closing the second liquid injection port 22.
  • the dispenser box also includes a liquid storage cover, which is connected to the cover 2 and can close the second liquid injection port 22, thereby further preventing residual water from entering the dosage agent storage cavity 12, and further improving the accuracy of automatic injection.
  • a liquid storage cover which is connected to the cover 2 and can close the second liquid injection port 22, thereby further preventing residual water from entering the dosage agent storage cavity 12, and further improving the accuracy of automatic injection.
  • the number of liquid storage caps and the number of second liquid injection ports 22 are equal and correspond one to one.
  • the detergent dispensing device provided by the embodiment of the second aspect of the present application includes: a detergent box (not shown in the figure) and a dispenser box as in any one of the embodiments of the first aspect.
  • the detergent box is provided with a water inlet channel and a general outlet, and the water inlet channel has a spray port; the dispenser box is movably mounted on the detergent box, and the first liquid injection port 21 of the dispenser box is located below the spray port , The liquid outlet 119 of the distributor box is communicated with the main outlet.
  • the detergent dispensing device provided by the embodiment of the second aspect of the present application includes the dispenser box of any one of the embodiments of the first aspect, and therefore has all the beneficial effects of any of the above-mentioned embodiments, and will not be repeated here. .
  • An embodiment of the third aspect of the present application provides a washing machine (not shown in the figure), comprising: a body and the detergent dispensing device according to the embodiment of the second aspect, installed in the body.
  • the washing machine provided by the embodiment of the third aspect of the present application includes the detergent dispensing device provided in the embodiment of the second aspect, and therefore has all the beneficial effects of any of the above-mentioned embodiments, and will not be repeated here.
  • the dispenser box provided in the present application has the lid body sinking, and the first sinking platform is provided on the upper surface of the lid body, because the first liquid injection port penetrates the partial bottom wall surface of the first sinking platform Connected with the injection chamber, so other parts of the first sinking table are formed as a groove structure arranged adjacent to the first liquid injection port, which can be used to collect residual water.
  • the spray port of the detergent box faces the first injection port.
  • the splashed water can collect on other parts of the first sinking platform to minimize the amount of water remaining on the upper surface of the distributor box, so as to prevent the residual water from flowing to the ground or exhausting when the distributor box is drawn out. It is possible to reduce the amount of water flowing into the dispensing agent storage cavity, thereby improving the accuracy of automatic dispensing.

Abstract

本申请提供了一种分配器盒、洗涤剂投放装置及洗衣机,分配器盒包括:盒体,盒体限定出投放腔和投放剂储存腔,并设有与投放腔相连通的出液口;盖体,盖设在盒体上,并设有对应连通投放腔的第一注液口和对应连通投放剂储存腔的第二注液口,且盖体的上表面设有第一沉台,第一注液口贯穿第一沉台的局部底壁面连通至投放腔。本申请提供的分配器盒,对盖体进行了下沉处理,可以用于汇聚残水,则洗涤剂盒的喷淋口向第一注液口喷水时,溅起的水可以汇聚在第一沉台的其他部位,尽可能减少残留在分配器盒上表面的水量,从而尽可能防止分配器盒抽出时残水流到地面上或者尽可能减少流入投放剂储存腔内的水量,进而提高了自动投放的精准度。

Description

分配器盒、洗涤剂投放装置及洗衣机
本申请要求于2019年3月22日提交中国专利局、申请号为201910219982.6、申请名称为“分配器盒、洗涤剂投放装置及洗衣机”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及洗衣机技术领域,具体而言,涉及一种分配器盒、一种包括上述分配器盒的洗涤剂投放装置及包含上述洗涤剂投放装置的洗衣机。
背景技术
目前,洗涤剂投放装置通常由洗涤剂盒以及与洗涤剂盒滑动连接的分配器盒构成,分配器盒内有投放剂储存腔和投放腔,洗涤剂盒对应投放腔的上方设有喷淋口,洗涤时水道的水经喷淋口进入投放腔,将投放腔内的投放剂冲入洗涤剂盒下方的混合腔中,进而带入内桶中。由于喷淋口喷射的水流的力度相对较大,导致喷淋口喷向投放腔的水会溅洒并残留在分配器盒上表面,当消费者抽出分配器盒时,该部分残水会沿着分配器盒上部流到地面,而且由于投放剂储存腔和投放腔往往设置在一起,该部分残水也可能会经对应投放剂储存腔的注液口流入投放剂储存腔内,造成储存腔内的洗涤剂被稀释,致使自动投放不精准。
发明内容
为了解决上述技术问题至少之一,本申请的一个目的在于提供一种分配器盒。
本申请的另一个目的在于提供一种包括上述分配器盒的洗涤剂投放装置。
本申请的又一个目的在于提供一种包括上述洗涤剂投放装置的洗衣机。
为了实现上述目的,本申请第一方面的技术方案提供了一种分配器盒,包 括:盒体,所述盒体限定出投放腔和投放剂储存腔,并设有与所述投放腔相连通的出液口;盖体,盖设在所述盒体上,并设有对应连通所述投放腔的第一注液口和对应连通所述投放剂储存腔的第二注液口,且所述盖体的上表面设有第一沉台,所述第一注液口贯穿所述第一沉台的局部底壁面连通至所述投放腔。
本申请第一方面的技术方案提供的分配器盒,对盖体进行了下沉处理,在盖体的上表面设置了第一沉台,由于第一注液口贯穿第一沉台的局部底壁面与投放腔相连通,因而第一沉台的其他部位形成为与第一注液口相邻布置的凹槽结构,可以用于汇聚残水,这样,洗涤剂盒的喷淋口向第一注液口喷水时,溅起的水可以汇聚在第一沉台的其他部位,尽可能减少残留在分配器盒上表面的水量,从而尽可能防止分配器盒抽出时残水流到地面上或者尽可能减少流入投放剂储存腔内的水量,进而提高了自动投放的精准度。
另外,本申请提供的上述技术方案中的分配器盒还可以具有如下附加技术特征:
在上述技术方案中,所述第一沉台限定出并排集水区域,所述并排集水区域与所述第一注液口沿洗衣机的左右方向并排设置且相互连通。
第一沉台限定出并排集水区域,并排集水区域与第一注液口沿洗衣机的左右方向并排设置(可以位于第一注液口的左侧和/或右侧),则洗涤剂盒的喷淋口向第一注液口喷水时,向第一注液口的左右方向溅起的残水可以汇聚在并排集水区域,由于并排集水区域与第一注液口相互连通,因而汇聚在并排集水区域的水可以再次流入第二注液口进而通过自动投放腔的出液口排出,这样无需用户将盖体取下手动倒出残水,提高了用户的使用舒适度。
在上述技术方案中,所述并排集水区域局部凹陷形成安装槽,所述安装槽设有第一落水孔,所述第一落水孔贯穿所述安装槽的槽壁连通至所述投放腔。
并排集水区域局部凹陷形成安装槽,比如用于安装限制分配器盒的移动幅度的止退件或其他部件的安装槽,以实现相应功能;而在安装槽设置第一落水孔,且第一落水孔贯穿安装槽的槽壁连通至投放腔,使得安装槽内的积水可以流入自动投放腔排出,防止安装槽内的部件长期浸泡而影响其功能。
在上述技术方案中,所述第一落水孔设置在所述安装槽的侧壁的底部;和/或,所述第一落水孔沿着靠近所述第一注液口的方向倾斜向下延伸。
将第一落水孔设置在安装槽的侧壁的底部,便于安装槽内的积水在重力的作用下自动排出。此外,将第一落水孔设置在安装槽的侧壁,保证了安装槽底壁的完整性,这样并排集水区域的下方可以构造成与投放腔相隔开的区域,比如设置成投放剂储存腔,使得投放剂储存腔可以由分配器盒的前端延伸至分配器盒的后端,从而扩大投放剂储存腔的容量,布局更加合理。当然,第一落水孔也可以设置在安装槽的底壁,比如投放腔的局部位于安装槽下方,则安装槽内的积水经第一落水孔也可以排入投放腔内。
第一落水孔沿着靠近第一注液口的方向倾斜向下延伸,便于安装槽内的积水在重力的作用下自动排出。当然,第一落水孔也可以水平设置。
在上述任一技术方案中,所述第一沉台限定出并列集水区域,所述并列集水区域与所述第一注液口沿洗衣机的前后方向并列设置且相互连通。
第一沉台限定出并列集水区域,并列集水区域与第一注液口沿洗衣机的前后方向并列设置(可以位于第一注液口的前侧和/或后侧),则洗涤剂盒的喷淋口向第一注液口喷水时,向第一注液口的前后方向溅起的残水可以汇聚在并列集水区域,由于并列集水区域与第一注液口相互连通,因而汇聚在并列集水区域的水可以再次流入第二注液口进而通过自动投放腔的出液口排出,这样无需用户将盖体取下手动倒出残水,提高了用户的使用舒适度。
在上述技术方案中,所述并列集水区域的一端与所述第一注液口通过过渡斜面过渡,所述过渡斜面向靠近所述第一注液口的方向倾斜向下延伸。
并列集水区域的一端与第一注液口通过过渡斜面过渡,且过渡斜面向靠近第一注液口的方向倾斜向下延伸,即:并列集水区域的一端倾斜向下延伸至第一注液口处,则过渡斜面能够起到一定的导向作用,便于并列集水区域的积水顺畅地流到第一注液口,进而通过投放腔的出液口排出。
在上述技术方案中,所述投放剂储存腔的数量为至少一个,所述第二注液口的数量与所述投放剂储存腔的数量相等且一一对应,所有的所述第二注液口并排设置在所述第一注液口的前侧,所述并列集水区域位于所述第一注液口的后侧。
投放剂储存腔的数量可以为一个、两个、三个或更多个,第二注液口的数量与投放剂储存腔的数量相等且一一对应,便于储存不同种类的投放剂(包括 但不限于洗涤剂、柔顺剂、消毒剂等),所有的第二注液口并排设置在第一注液口的前侧,结构较为规整,便于加工成型,也便于通过第二注液口向投放剂储存腔添加投放剂;并列集水区域位于第一注液口的后侧,则并列集水区域的下方也可以合理设置其他结构,比如投放剂储存腔由第二注液口的下方经并排集水区域的下方延伸至并列集水区域的下方,这延长了投放剂储存腔的长度,增加了投放剂储存腔的容量。
在上述任一技术方案中,所述盖体的上表面设有第二沉台,所述第二注液口贯穿所述第二沉台的局部底壁面与所述投放剂储存腔相连通,且所述第二沉台上设有环绕所述第二注液口的第一挡边,所述第一挡边与所述第二沉台的侧壁面之间限定出集水槽。
在盖体的上表面设置第二沉台,由于第二注液口贯穿第二沉台的局部底壁面与投放剂储存腔相连通,且第二沉台上设有第一挡边,第一挡边环绕第二注液口,因而第一挡边与第二沉台的侧壁面之间限定出的集水槽,可以用于汇集残水,则溅入或流入第二沉台的水会汇集在集水槽内,而不会流入第二注液口,从而防止水进入投放剂储存腔稀释内部的投放剂,进而进一步提高了自动投放的精准度。
在上述技术方案中,所述集水槽设有第二落水孔,所述第二落水孔贯穿所述集水槽的槽壁连通至所述投放腔。
集水槽还设有第二落水孔,且第二落水孔贯穿集水槽的槽壁连通至投放腔,使得集水槽内的积水可以通过第二落水孔自动进入自动投放腔内,进而通过自动投放腔的出液口排出。当然,也可以不设置第二落水孔,取下盖体采用手动的方式倒掉集水槽内的积水。
在上述技术方案中,所述第二落水孔设置在所述集水槽的底壁上。
将第二落水孔设置在集水槽的底壁上,便于积水在重力的作用下自动排出。
在上述技术方案中,所述投放腔的顶部设有落水槽,所述落水槽的局部位于所述第二落水孔的正下方,且所述落水槽具有连通至所述投放腔的出水口。
在投放腔的顶部设置落水槽,且落水槽的局部位于第二落水孔的正下方,因而由第二落水孔落下的水正好进入落水槽内,进而沿着落水槽的出水口进入 投放腔内,无需在第二落水孔与投放腔之间设置管道等部件,从而简化了产品结构,布局较为合理。
在上述技术方案中,所述出水口的底部设有出水斜面,所述出水斜面沿着靠近所述投放腔的方向倾斜向下延伸。
在出水口的底部设置出水斜面,且出水斜面沿着靠近投放腔的方向倾斜向下延伸,便于落水槽内的水在重力的作用下快速排出。
在上述技术方案中,所述盖体设有第二挡边,所述第二挡边延伸至所述落水槽处,并遮挡所述落水槽,且所述第二挡边与所述出水口之间具有出水间隙。
在盖体上设置第二挡边,且第二挡边延伸至落水槽处并遮挡落水槽,这一方面能够防止投放腔内的投放剂进入落水槽而残留在落水槽内,从而提高了投放剂的使用效率,另一方面还能防止投放腔内的水或者水与投放剂的混合液体沿着落水槽及第二落水孔反向溅入集水槽内;而第二挡边与出水口之间具有出水间隙,保证了落水槽内的水可以顺畅流入投放腔内,实现排水效果。
在上述技术方案中,所述投放腔的顶部设有嵌套分布的第一围边和第二围边,所述第一围边与所述第二围边之间限定出用于适配所述盖体的定位槽;所述第一围边的局部向靠近所述第二注液口的方向凸出形成第一U形槽,所述第二围边对应所述第一U形槽的U形开口设有缺口,所述第一U形槽与所述缺口之间限定出所述落水槽,所述缺口形成为所述出水口。
投放腔的顶部设有第一围边和第二围边,第一围边和第二围边嵌套分布,形成双层围边结构,双层围边可以提高盒体的强度,且在投放腔的顶部限定出定位槽,便于盖体安装时定位,从而提高装配效率;第一围边的局部向靠近第二注液口的方向凸出形成第一U形槽,保证了第一U形槽能位于第二落水孔的正下方,第二围边对应第一U形槽的U形开口设有缺口,保证了第一U形槽内的积水可以穿过缺口进入投放腔内,因而第一U形槽与缺口之间限定出落水槽,而缺口即为落水槽的出水口,结构简单,布局合理。
在上述技术方案中,所述盖体的下表面设有环绕所述第一注液口且嵌套分布的第三围边和第四围边,所述第三围边插入所述定位槽内,所述第四围边位于所述第二围边的内侧,所述第三围边的局部向靠近所述第二注液口的方向凸出形成第二U形槽,所述第二U形槽位于所述第二落水孔的正下方,且与所 述第一U形槽相适配。
第一注液口处设有第三围边和第四围边,第三围边和第四围边嵌套分布也形成双层围边结构,从而提高盖体的强度。其中,第三围边插入定位槽内,实现盖体与盒体的插装配合;且第四围边位于第二围边的内侧(沿着第一注液口由内向外依次为第四围边、第二围边、第三围边和第一围边),则第四围边可以对落水槽起到遮挡作用,因而第四围边的一部分即形成前述技术方案中的第二挡边;第三围边的局部向靠近第二注液口的方向凸出形成第二U形槽,第二U形槽位于第二落水孔的正下方,从而对第二落水孔落下的水起到阻挡作用,防止其流向投放剂储存腔,且第二U形槽与第一U形槽相适配,因而第二U形槽可以插入第一U形槽内,保证了第三围边整体可以插入定位槽内,且第二落水孔排出的水只能沿着落水槽进入投放腔内。
在上述任一技术方案中,所述分配器盒还包括:储液盖,与所述盖体相连,用于打开或关闭所述第二注液口。
分配器盒还包括储液盖,储液盖与盖体相连,能够关闭第二注液口,从而能够进一步防止残水进入投放剂储存腔内,进一步提高了自动投放的精准度。其中,储液盖的数量与第二注液口的数量相等且一一对应。
本申请第二方面的技术方案提供了一种洗涤剂投放装置,包括:洗涤剂盒,设有进水通道和总出口,所述进水通道具有喷淋口;和如第一方面技术方案中任一项所述的分配器盒,活动安装在所述洗涤剂盒上,所述分配器盒的第一注液口位于所述喷淋口的下方,所述分配器盒的出液口与所述总出口相连通。
本申请第二方面的技术方案提供的洗涤剂投放装置,因包括第一方面技术方案中任一项所述的分配器盒,因而具有上述任一技术方案所具有的一切有益效果,在此不再赘述。
本申请第三方面的技术方案提供了一种洗衣机,包括:机体;和如第二方面技术方案所述的洗涤剂投放装置,安装在所述机体中。
本申请第三方面的技术方案提供的洗衣机,因包括第二方面的技术方案提供洗涤剂投放装置,因而具有上述任一技术方案所具有的一切有益效果,在此不再赘述。
本申请的附加方面和优点将在下面的描述部分中变得明显,或通过本申请 的实践了解到。
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是本申请一些实施例所述的分配器盒的立体结构示意图;
图2是图1所示分配器盒的盒体的立体结构示意图;
图3是图2所示盒体的俯视结构示意图;
图4是图2中A部的放大结构示意图;
图5是图1所示分配器盒的剖视结构示意图;
图6是图5中|B部的放大结构示意图;
图7是图5中C部的放大结构示意图。
其中,图1至图7中的附图标记与部件名称之间的对应关系为:
1盒体,11投放腔,111落水槽,112出水口,113出水斜面,114出水间隙,115第一围边,116第二围边,117定位槽,118第一U形槽,119出液口,12投放剂储存腔,2盖体,21第一注液口,211第三围边,212第四围边,22第二注液口,23第一沉台,231并排集水区域,2311安装槽,2312第一落水孔,232并列集水区域,2321过渡斜面,24第二沉台,241第一挡边,242集水槽,243第二落水孔,25第二挡边。
具体实施方式
为了能够更清楚地理解本申请的上述目的、特征和优点,下面结合附图和具体实施方式对本申请进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本申请,但是,本申请还可以采用其他不同于在此描述的其他方式来实施,因此,本申请的保护范围并不受下面公开的具体实施例的限制。
下面参照图1至图7描述根据本申请一些实施例所述的分配器盒、洗涤剂投放装置及洗衣机。
如图1和图5所示,本申请第一方面的实施例提供的分配器盒,包括:盒体1和盖体2。
实施例一
盒体1限定出投放腔11和投放剂储存腔12,如图2、图3和图5所示,并设有与投放腔11相连通的出液口119(如图5所示);盖体2盖设在盒体1上,并设有对应连通投放腔11的第一注液口21和对应连通投放剂储存腔12的第二注液口22,如图1和图5所示,且盖体2的上表面设有第一沉台23,第一注液口21贯穿第一沉台23的局部底壁面连通至投放腔11,如图1和图5所示。
本申请第一方面的实施例提供的分配器盒,对盖体2进行了下沉处理,在盖体2的上表面设置了第一沉台23,由于第一注液口21贯穿第一沉台23的局部底壁面与投放腔11相连通,因而第一沉台23的其他部位形成为与第一注液口21相邻布置的凹槽结构,可以用于汇聚残水,这样,洗涤剂盒的喷淋口向第一注液口21喷水时,溅起的水可以汇聚在第一沉台23的其他部位,尽可能减少残留在分配器盒上表面的水量,从而尽可能防止分配器盒抽出时残水流到地面上或者尽可能减少流入投放剂储存腔12内的水量,进而提高了自动投放的精准度。
进一步地,第一沉台23限定出并排集水区域231,并排集水区域231与第一注液口21沿洗衣机的左右方向并排设置且相互连通,如图1所示。
第一沉台23限定出并排集水区域231,并排集水区域231与第一注液口21沿洗衣机的左右方向并排设置(可以位于第一注液口21的左侧和/或右侧),则洗涤剂盒的喷淋口向第一注液口21喷水时,向第一注液口21的左右方向溅起的残水可以汇聚在并排集水区域231,由于并排集水区域231与第一注液口21相互连通,因而汇聚在并排集水区域231的水可以再次流入第二注液口22进而通过自动投放腔的出液口119排出,这样无需用户将盖体2取下手动倒出残水,提高了用户的使用舒适度。
进一步地,并排集水区域231局部凹陷形成安装槽2311,如图1所示,安装槽2311设有第一落水孔2312,如图1、图5和图7所示,第一落水孔2312贯穿安装槽2311的槽壁连通至投放腔11。
并排集水区域231局部凹陷形成安装槽2311,比如用于安装限制分配器盒的移动幅度的止退件或其他部件的安装槽2311,以实现相应功能;而在安装槽2311设置第一落水孔2312,且第一落水孔2312贯穿安装槽2311的槽壁连通至投放腔11,使得安装槽2311内的积水可以流入自动投放腔排出,防止安装槽2311内的部件长期浸泡而影响其功能。
其中,第一落水孔2312设置在安装槽2311的侧壁的底部,如图1所示。
将第一落水孔2312设置在安装槽2311的侧壁的底部,便于安装槽2311内的积水在重力的作用下自动排出。此外,将第一落水孔2312设置在安装槽2311的侧壁,保证了安装槽2311底壁的完整性,这样并排集水区域231的下方可以构造成与投放腔11相隔开的区域,比如设置成投放剂储存腔12,使得投放剂储存腔12可以由分配器盒的前端延伸至分配器盒的后端,从而扩大投放剂储存腔12的容量,布局更加合理。
当然,第一落水孔2312也可以设置在安装槽2311的底壁,比如投放腔11的局部位于安装槽2311下方,则安装槽2311内的积水经第一落水孔2312也可以排入投放腔11内。
进一步地,第一落水孔2312沿着靠近第一注液口21的方向倾斜向下延伸。
第一落水孔2312沿着靠近第一注液口21的方向倾斜向下延伸,便于安装槽2311内的积水在重力的作用下自动排出。当然,第一落水孔2312也可以水平设置。
进一步地,第一沉台23限定出并列集水区域232,并列集水区域232与第一注液口21沿洗衣机的前后方向并列设置且相互连通,如图1所示。
第一沉台23限定出并列集水区域232,并列集水区域232与第一注液口21沿洗衣机的前后方向并列设置(可以位于第一注液口21的前侧和/或后侧),则洗涤剂盒的喷淋口向第一注液口21喷水时,向第一注液口21的前后方向溅起的残水可以汇聚在并列集水区域232,由于并列集水区域232与第一注液口21相互连通,因而汇聚在并列集水区域232的水可以再次流入第二注液口22进而通过自动投放腔的出液口119排出,这样无需用户将盖体2取下手动倒出残水,提高了用户的使用舒适度。
其中,并列集水区域232的一端与第一注液口21通过过渡斜面2321过渡, 过渡斜面2321向靠近第一注液口21的方向倾斜向下延伸,如图1和图7所示。
并列集水区域232的一端与第一注液口21通过过渡斜面2321过渡,且过渡斜面2321向靠近第一注液口21的方向倾斜向下延伸,即:并列集水区域232的一端倾斜向下延伸至第一注液口21处,则过渡斜面2321能够起到一定的导向作用,便于并列集水区域232的积水顺畅地流到第一注液口21,进而通过投放腔11的出液口119排出。
具体地,投放剂储存腔12的数量为至少一个,第二注液口22的数量与投放剂储存腔12的数量相等且一一对应,所有的第二注液口22并排设置在第一注液口21的前侧,并列集水区域232位于第一注液口21的后侧,如图1所示。
投放剂储存腔12的数量可以为一个、两个、三个或更多个,第二注液口22的数量与投放剂储存腔12的数量相等且一一对应,便于储存不同种类的投放剂(包括但不限于洗涤剂、柔顺剂、消毒剂等),所有的第二注液口22并排设置在第一注液口21的前侧,结构较为规整,便于加工成型,也便于通过第二注液口22向投放剂储存腔12添加投放剂;并列集水区域232位于第一注液口21的后侧,则并列集水区域232的下方也可以合理设置其他结构,比如投放剂储存腔12由第二注液口22的下方经并排集水区域231的下方延伸至并列集水区域232的下方,这延长了投放剂储存腔12的长度,增加了投放剂储存腔12的容量。
实施例二
与实施例一的区别在于:在实施例一的基础上,进一步地,盖体2的上表面设有第二沉台24,如图1所示,第二注液口22贯穿第二沉台24的局部底壁面与投放剂储存腔12相连通,如图6所示,且第二沉台24上设有环绕第二注液口22的第一挡边241,第一挡边241与第二沉台24的侧壁面之间限定出集水槽242,如图1和图6所示。
在盖体2的上表面设置第二沉台24,由于第二注液口22贯穿第二沉台24的局部底壁面与投放剂储存腔12相连通,且第二沉台24上设有第一挡边241,第一挡边241环绕第二注液口22,因而第一挡边241与第二沉台24的侧壁面之间限定出的集水槽242,可以用于汇集残水,则溅入或流入第二沉台24的水会汇集在集水槽242内,而不会流入第二注液口22,从而防止水进入投放 剂储存腔12稀释内部的投放剂,进而进一步提高了自动投放的精准度。
进一步地,集水槽242设有第二落水孔243,如图1、图5和图6所示,第二落水孔243贯穿集水槽242的槽壁连通至投放腔11。
集水槽242还设有第二落水孔243,且第二落水孔243贯穿集水槽242的槽壁连通至投放腔11,使得集水槽242内的积水可以通过第二落水孔243自动进入自动投放腔内,进而通过自动投放腔的出液口119排出。当然,也可以不设置第二落水孔243,取下盖体2采用手动的方式倒掉集水槽242内的积水。
具体地,第二落水孔243设置在集水槽242的底壁上,如图6所示。
将第二落水孔243设置在集水槽242的底壁上,便于积水在重力的作用下自动排出。
进一步地,投放腔11的顶部设有落水槽111,如图6所示,落水槽111的局部位于第二落水孔243的正下方,且落水槽111具有连通至投放腔11的出水口112,如图4所示。
在投放腔11的顶部设置落水槽111,且落水槽111的局部位于第二落水孔243的正下方,因而由第二落水孔243落下的水正好进入落水槽111内,进而沿着落水槽111的出水口112进入投放腔11内,无需在第二落水孔243与投放腔11之间设置管道等部件,从而简化了产品结构,布局较为合理。
进一步地,出水口112的底部设有出水斜面113,如图4和图6所示,出水斜面113沿着靠近投放腔11的方向倾斜向下延伸。
在出水口112的底部设置出水斜面113,且出水斜面113沿着靠近投放腔11的方向倾斜向下延伸,便于落水槽111内的水在重力的作用下快速排出。
进一步地,盖体2设有第二挡边25,第二挡边25延伸至落水槽111处,并遮挡落水槽111,且第二挡边25与出水口112之间具有出水间隙114,如图6所示。
在盖体2上设置第二挡边25,且第二挡边25延伸至落水槽111处并遮挡落水槽111,这一方面能够防止投放腔11内的投放剂进入落水槽111而残留在落水槽111内,从而提高了投放剂的使用效率,另一方面还能防止投放腔11内的水或者水与投放剂的混合液体沿着落水槽111及第二落水孔243反向溅入集水槽242内;而第二挡边25与出水口112之间具有出水间隙114,保 证了落水槽111内的水可以顺畅流入投放腔11内,实现排水效果。
进一步地,投放腔11的顶部设有嵌套分布的第一围边115和第二围边116,如图2和图4所示,第一围边115与第二围边116之间限定出用于适配盖体2的定位槽117,如图7所示;第一围边115的局部向靠近第二注液口22的方向凸出形成第一U形槽118,如图4所示,第二围边116对应第一U形槽118的U形开口设有缺口,第一U形槽118与缺口之间限定出落水槽111,缺口形成为出水口112。
投放腔11的顶部设有第一围边115和第二围边116,第一围边115和第二围边116嵌套分布,形成双层围边结构,双层围边可以提高盒体1的强度,且在投放腔11的顶部限定出定位槽117,便于盖体2安装时定位,从而提高装配效率;第一围边115的局部向靠近第二注液口22的方向凸出形成第一U形槽118,保证了第一U形槽118能位于第二落水孔243的正下方,第二围边116对应第一U形槽118的U形开口设有缺口,保证了第一U形槽118内的积水可以穿过缺口进入投放腔11内,因而第一U形槽118与缺口之间限定出落水槽111,而缺口即为落水槽111的出水口112,结构简单,布局合理。
进一步地,盖体2的下表面设有环绕第一注液口21且嵌套分布的第三围边211和第四围边212,第三围边211插入定位槽117内,如图7所示,第四围边212位于第二围边116的内侧,第三围边211的局部向靠近第二注液口22的方向凸出形成第二U形槽,如图6所示,第二U形槽位于第二落水孔243的正下方,且与第一U形槽118相适配。
第一注液口21处设有第三围边211和第四围边212,第三围边211和第四围边212嵌套分布也形成双层围边结构,从而提高盖体2的强度。其中,第三围边211插入定位槽117内,实现盖体2与盒体1的插装配合;且第四围边212位于第二围边116的内侧(沿着第一注液口21由内向外依次为第四围边212、第二围边116、第三围边211和第一围边115),则第四围边212可以对落水槽111起到遮挡作用,因而第四围边212的一部分即形成前述实施例中的第二挡边25;第三围边211的局部向靠近第二注液口22的方向凸出形成第二U形槽,第二U形槽位于第二落水孔243的正下方,从而对第二落水孔243落下的水起到阻挡作用,防止其流向投放剂储存腔12,且第二U形槽与第一 U形槽118相适配,因而第二U形槽可以插入第一U形槽118内,保证了第三围边211整体可以插入定位槽117内,且第二落水孔243排出的水只能沿着落水槽111进入投放腔11内。
在上述任一实施例中,分配器盒还包括:储液盖(图中未示出),与盖体2相连,用于打开或关闭第二注液口22。
分配器盒还包括储液盖,储液盖与盖体2相连,能够关闭第二注液口22,从而能够进一步防止残水进入投放剂储存腔12内,进一步提高了自动投放的精准度。其中,储液盖的数量与第二注液口22的数量相等且一一对应。
本申请第二方面的实施例提供的洗涤剂投放装置,包括:洗涤剂盒(图中未示出)和如第一方面实施例中任一项的分配器盒。
具体地,洗涤剂盒设有进水通道和总出口,进水通道具有喷淋口;分配器盒活动安装在洗涤剂盒上,分配器盒的第一注液口21位于喷淋口的下方,分配器盒的出液口119与总出口相连通。
本申请第二方面的实施例提供的洗涤剂投放装置,因包括第一方面实施例中任一项的分配器盒,因而具有上述任一实施例所具有的一切有益效果,在此不再赘述。
本申请第三方面的实施例提供了一种洗衣机(图中未示出),包括:机体和如第二方面实施例的洗涤剂投放装置,安装在机体中。
本申请第三方面的实施例提供的洗衣机,因包括第二方面的实施例提供洗涤剂投放装置,因而具有上述任一实施例所具有的一切有益效果,在此不再赘述。
综上所述,本申请提供的分配器盒,对盖体进行了下沉处理,在盖体的上表面设置了第一沉台,由于第一注液口贯穿第一沉台的局部底壁面与投放腔相连通,因而第一沉台的其他部位形成为与第一注液口相邻布置的凹槽结构,可以用于汇聚残水,这样,洗涤剂盒的喷淋口向第一注液口喷水时,溅起的水可以汇聚在第一沉台的其他部位,尽可能减少残留在分配器盒上表面的水量,从而尽可能防止分配器盒抽出时残水流到地面上或者尽可能减少流入投放剂储存腔内的水量,进而提高了自动投放的精准度。
在本申请中,术语“第一”、“第二”、“第三”仅用于描述的目的,而不能理 解为指示或暗示相对重要性;术语“多个”则指两个或两个以上,除非另有明确的限定。术语“安装”、“相连”、“连接”、“固定”等术语均应做广义理解,例如,“连接”可以是固定连接,也可以是可拆卸连接,或一体地连接;“相连”可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
本申请的描述中,需要理解的是,术语“上”、“下”、“左”、“右”、“前”、“后”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或单元必须具有特定的方向、以特定的方位构造和操作,因此,不能理解为对本申请的限制。
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”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实例。而且,描述的具体特征、结构、材料或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。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (18)

  1. 一种分配器盒,其中,包括:
    盒体(1),所述盒体(1)限定出投放腔(11)和投放剂储存腔(12),并设有与所述投放腔(11)相连通的出液口(119);
    盖体(2),盖设在所述盒体(1)上,并设有对应连通所述投放腔(11)的第一注液口(21)和对应连通所述投放剂储存腔(12)的第二注液口(22),且所述盖体(2)的上表面设有第一沉台(23),所述第一注液口(21)贯穿所述第一沉台(23)的局部底壁面连通至所述投放腔(11)。
  2. 根据权利要求1所述的分配器盒,其中,
    所述第一沉台(23)限定出并排集水区域(231),所述并排集水区域(231)与所述第一注液口(21)沿洗衣机的左右方向并排设置且相互连通。
  3. 根据权利要求2所述的分配器盒,其中,
    所述并排集水区域(231)局部凹陷形成安装槽(2311),所述安装槽(2311)设有第一落水孔(2312),所述第一落水孔(2312)贯穿所述安装槽(2311)的槽壁连通至所述投放腔(11)。
  4. 根据权利要求3所述的分配器盒,其中,
    所述第一落水孔(2312)设置在所述安装槽(2311)的侧壁的底部;和/或
    所述第一落水孔(2312)沿着靠近所述第一注液口(21)的方向倾斜向下延伸。
  5. 根据权利要求1至4中任一项所述的分配器盒,其中,
    所述第一沉台(23)限定出并列集水区域(232),所述并列集水区域(232)与所述第一注液口(21)沿洗衣机的前后方向并列设置且相互连通。
  6. 根据权利要求5所述的分配器盒,其中,
    所述并列集水区域(232)的一端与所述第一注液口(21)通过过渡斜面(2321)过渡,所述过渡斜面(2321)向靠近所述第一注液口(21)的方向倾斜向下延伸。
  7. 根据权利要求6所述的分配器盒,其中,
    所述投放剂储存腔(12)的数量为至少一个,所述第二注液口(22)的数量与所述投放剂储存腔(12)的数量相等且一一对应,所有的所述第二注液口(22)并排设置在所述第一注液口(21)的前侧,所述并列集水区域(232)位于所述第一注液口(21)的后侧。
  8. 根据权利要求1至4中任一项所述的分配器盒,其中,
    所述盖体(2)的上表面设有第二沉台(24),所述第二注液口(22)贯穿所述第二沉台(24)的局部底壁面与所述投放剂储存腔(12)相连通,且所述第二沉台(24)上设有环绕所述第二注液口(22)的第一挡边(241),所述第一挡边(241)与所述第二沉台(24)的侧壁面之间限定出集水槽(242)。
  9. 根据权利要求8所述的分配器盒,其中,
    所述集水槽(242)设有第二落水孔(243),所述第二落水孔(243)贯穿所述集水槽(242)的槽壁连通至所述投放腔(11)。
  10. 根据权利要求9所述的分配器盒,其中,
    所述第二落水孔(243)设置在所述集水槽(242)的底壁上。
  11. 根据权利要求10所述的分配器盒,其中,
    所述投放腔(11)的顶部设有落水槽(111),所述落水槽(111)的局部位于所述第二落水孔(243)的正下方,且所述落水槽(111)具有连通至所述投放腔(11)的出水口(112)。
  12. 根据权利要求11所述的分配器盒,其中,
    所述出水口(112)的底部设有出水斜面(113),所述出水斜面(113)沿着靠近所述投放腔(11)的方向倾斜向下延伸。
  13. 根据权利要求11所述的分配器盒,其中,
    所述盖体(2)设有第二挡边(25),所述第二挡边(25)延伸至所述落水槽(111)处,并遮挡所述落水槽(111),且所述第二挡边(25)与所述出水口(112)之间具有出水间隙(114)。
  14. 根据权利要求11所述的分配器盒,其中,
    所述投放腔(11)的顶部设有嵌套分布的第一围边(115)和第二围边(116),所述第一围边(115)与所述第二围边(116)之间限定出用于适配所述盖体(2) 的定位槽(117);所述第一围边(115)的局部向靠近所述第二注液口(22)的方向凸出形成第一U形槽(118),所述第二围边(116)对应所述第一U形槽(118)的U形开口设有缺口,所述第一U形槽(118)与所述缺口之间限定出所述落水槽(111),所述缺口形成为所述出水口(112)。
  15. 根据权利要求14所述的分配器盒,其中,
    所述盖体(2)的下表面设有环绕所述第一注液口(21)且嵌套分布的第三围边(211)和第四围边(212),所述第三围边(211)插入所述定位槽(117)内,所述第四围边(212)位于所述第二围边(116)的内侧,所述第三围边(211)的局部向靠近所述第二注液口(22)的方向凸出形成第二U形槽,所述第二U形槽位于所述第二落水孔(243)的正下方,且与所述第一U形槽(118)相适配。
  16. 根据权利要求1至4中任一项所述的分配器盒,其中,还包括:
    储液盖,与所述盖体(2)相连,用于打开或关闭所述第二注液口(22)。
  17. 一种洗涤剂投放装置,其中,包括:
    洗涤剂盒,设有进水通道和总出口,所述进水通道具有喷淋口;和
    如权利要求1至16中任一项所述的分配器盒,活动安装在所述洗涤剂盒上,所述分配器盒的第一注液口(21)位于所述喷淋口的下方,所述分配器盒的出液口(119)与所述总出口相连通。
  18. 一种洗衣机,其中,包括:
    机体;和
    如权利要求17所述的洗涤剂投放装置,安装在所述机体中。
PCT/CN2019/120812 2019-03-22 2019-11-26 分配器盒、洗涤剂投放装置及洗衣机 WO2020192159A1 (zh)

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