Dispensing assembly for a shoe washing apparatus and shoe washing apparatus
By incorporating a guide component within the shoe washing equipment's dispensing unit, the water flow area and velocity are increased, thus solving the problem of incomplete detergent dissolution and improving the washing effect.
Patent Information
- Application Number
- CN202210870440.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-22
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2042-07-22
AI Technical Summary
The detergent in existing shoe washing equipment is not completely dissolved, resulting in poor washing effect.
A guide device is installed inside the dispensing component to increase the water flow area and flow rate, so that the detergent can be completely dissolved and flushed into the washing chamber.
It achieves complete dissolution of detergent and strong water flow, thus improving the washing effect.
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Figure CN115074965B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to a dispensing assembly for a shoe washing device and the shoe washing device. BACKGROUND
[0002] In the related art, before washing shoes, the detergent needs to be dispensed into the washing cavity of the shoe washing device in advance, and the solution of the detergent is obtained after the washing cavity is filled with water, so that the water flow with the detergent can wash the shoes. It is found in use that there is still undissolved detergent in the washing cavity after washing, which leads to poor washing effect of the shoe washing device. SUMMARY
[0003] The present application aims to at least solve one of the technical problems in the related art. To this end, the present application provides a dispensing assembly for a shoe washing device, which can make the detergent and care agent dispensed into the dispensing cavity completely dissolved and washed into the washing cavity by water to wash the shoes, thereby achieving good washing effect.
[0004] The present application provides a shoe washing device.
[0005] According to the dispensing assembly for a shoe washing device provided by the embodiments of the present application, the dispensing assembly comprises:
[0006] A dispensing body is internally configured with a dispensing cavity, and the dispensing body is provided with a dispensing opening and a water inlet opening in communication with the dispensing cavity;
[0007] A flow guide member is arranged in the dispensing cavity and located between the dispensing opening and the water inlet opening, and at least part of the flow guide member is located in the water flow path of the water inlet opening.
[0008] According to the dispensing assembly for a shoe washing device provided by the embodiments of the present application, the flow guide member is arranged in the dispensing body, which can not only increase the flow area of the water flow, so that the water flow completely covers the cavity wall of the dispensing cavity, and the detergent and care agent dispensed into the dispensing cavity are completely dissolved and washed into the washing cavity by water to wash the shoes, but also can increase the flow rate of the water flow, so that the impact force of the water flow is stronger, and the detergent is completely brought into the washing cavity to wash the shoes, thereby achieving good washing effect.
[0009] According to one embodiment of the present application, a flow guide channel is formed between the flow guide member and the cavity wall of the dispensing cavity.
[0010] According to one embodiment of the present application, the flow guide member has oppositely arranged first and second end portions, the first end portion is arranged close to the water inlet opening, the second end portion extends obliquely away from the water inlet opening, and the second end portion is a free end.
[0011] According to one of the embodiments of the present application, the flow guide member has oppositely arranged first and second end portions, the first end portion is arranged close to the water inlet, and the second end portion extends obliquely away from the water inlet;
[0012] The second end portion is configured with an extension, one end of the extension is connected with the second end portion, and the other end of the extension extends away from the flow guide channel and is connected with the cavity wall of the dispensing cavity.
[0013] According to one of the embodiments of the present application, at least one first reinforcing rib is arranged on the side of the flow guide member opposite to the water inlet.
[0014] According to one of the embodiments of the present application, a dispensing cover is further included, the dispensing cover is arranged at the dispensing opening through an elastic sealing member, and the dispensing cover is adapted to open or close the dispensing opening.
[0015] According to one of the embodiments of the present application, the elastic sealing member has first and second contact surfaces;
[0016] The dispensing cover is provided with a receiving groove corresponding to the structure of the first contact surface, the elastic sealing member is embedded in the receiving groove, and the dispensing opening is provided with an abutting edge corresponding to the structure of the second contact surface, and the second contact surface is adapted to abut against the abutting edge.
[0017] According to one of the embodiments of the present application, a deformation groove is arranged between the first and second contact surfaces.
[0018] According to one of the embodiments of the present application, the dispensing body includes a top wall and a plurality of side walls, the plurality of side walls are sequentially connected end to end, and the top wall is connected with at least one of the side walls.
[0019] The dispensing opening is arranged on the top wall, and the water inlet is arranged on any one of the side walls.
[0020] According to one of the embodiments of the present application, a shoe washing device is provided, which includes a machine body and the dispensing assembly for the shoe washing device as described in any one of the above embodiments.
[0021] The inside of the machine body is configured with a washing cavity, the washing cavity is connected with a water inlet pipe, and the dispensing assembly is arranged on the water inlet path of the water inlet pipe and is adapted to dispense detergent into the washing cavity under the action of water flow.
[0022] According to one of the embodiments of the present application, the machine body includes an inner container and an outer shell arranged in a buckling manner, and the top wall of the inner container is provided with a liquid inlet connected with the washing cavity.
[0023] The dispensing body is arranged on the top wall of the inner container, and one side wall of the dispensing body opposite to the water inlet is arranged at the liquid inlet.
[0024] According to one embodiment of the present application, the end face of the delivery body in contact with the inner container is provided with a sealing groove, and the inner container is provided with a sealing flange matched with the sealing groove.
[0025] According to one embodiment of the present application, the sealing groove and / or the sealing flange is provided with a sealing member.
[0026] Additional aspects and advantages of the present application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the related art, the following will briefly introduce the drawings needed to be used in the embodiments or the related art description. Obviously, the drawings in the following description only some of the embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0028] Figure 1 is a structural schematic diagram of a shoe washing device provided by the embodiment of the present application (the door assembly is in the second position);
[0029] Figure 2 is a structural schematic diagram of a shoe washing device provided by the embodiment of the present application (the door assembly is in the first position);
[0030] Figure 3 is Figure 2 is an enlarged view of part A in FIG. 6;
[0031] Figure 4 is one of the structural exploded schematic diagrams of a shoe washing device provided by the embodiment of the present application;
[0032] Figure 5 is Figure 4 is an enlarged view of part B in FIG. 7;
[0033] Figure 6 is the second exploded schematic diagram of a shoe washing device provided by the embodiment of the present application;
[0034] Figure 7 is the third exploded schematic diagram of a shoe washing device provided by the embodiment of the present application;
[0035] Figure 8 is the fourth exploded schematic diagram of a shoe washing device provided by the embodiment of the present application;
[0036] Figure 9 is one of the sectional views of a shoe washing device provided by the embodiment of the present application;
[0037] Figure 10 is a cross-sectional view of the shoe washing equipment provided by the embodiment of the present application;
[0038] Figure 11 is a cross-sectional view of the shoe support assembly in the shoe washing equipment provided by the embodiment of the present application;
[0039] Figure 12 is a cross-sectional view of the local structure in the shoe washing equipment provided by the embodiment of the present application;
[0040] Figure 13 is Figure 12 is an enlarged view of the C part in the shoe washing equipment provided by the embodiment of the present application;
[0041] Figure 14 is Figure 12 is an enlarged view of the D part in the shoe washing equipment provided by the embodiment of the present application;
[0042] Figure 15 is a structural schematic view of the dispensing assembly and the liquid supply assembly in the shoe washing equipment provided by the embodiment of the present application;
[0043] Figure 16 is a structural schematic view of the dispensing assembly in the shoe washing equipment provided by the embodiment of the present application.
[0044] Reference signs:
[0045] 10, machine body; 11, inner container; 111, liquid inlet; 112, liquid outlet; 113, first spray opening; 114, leg; 115, opening; 12, outer shell; 121, opening groove; 122, avoiding groove; 123, handle groove; 13, washing cavity; 14, connecting support; 15, rotating piece; 16, first magnetic piece;
[0046] 20, door assembly; 21, first door body; 211, clamping groove; 212, positioning recess; 213, communication hole; 214, mounting groove; 215, insertion groove; 216, protruding part; 217, second spray opening; 218, third spray opening; 22, second door body; 221, clamping block; 222, positioning protrusion; 223, reinforcing part; 23, avoiding part; 24, connecting support piece; 25, second magnetic piece;
[0047] 30, flow guide part; 31, flow guide plate; 311, containing groove; 312, limiting tooth; 32, sealing piece;
[0048] 40, spraying mechanism; 41, first spraying assembly; 411, first spraying body; 412, first spraying cavity; 413, sealing groove; 42, second spraying assembly; 421, second spraying body; 422, reserved opening;
[0049] 50, brushing mechanism; 51, brush assembly; 511, brush; 5111, first brush part; 5112, second brush part; 512, brush shaft; 513, cover; 52, driven assembly; 521, first driven gear; 522, second driven gear; 523, third driven gear; 524, fourth driven gear; 525, fifth driven gear; 53, driving assembly; 531, motor; 532, driving gear;
[0050] 60, shoe stretcher assembly; 61, shoe stretcher part; 611, first shoe stretcher part; 612, second shoe stretcher part; 613, mounting flange; 614, insertion flange; 615, drainage part; 616, linking part; 62, shoe stretcher channel;
[0051] 70, dispensing assembly; 71, dispensing body; 711, dispensing cavity; 712, dispensing opening; 713, water inlet; 714, top wall; 715, side wall; 716, sealing groove; 717, second reinforcing rib; 72, flow guide; 721, first end part; 722, second end part; 723, extension part; 724, first reinforcing rib; 73, dispensing cover; 731, cover handle; 74, elastic sealing member; 741, first contact surface; 742, second contact surface; 743, deformation groove;
[0052] 80, liquid supply assembly; 81, liquid collecting body; 82, first water pump; 83, connecting pipe; 84, liquid supply pipe assembly; 841, main liquid supply pipe; 842, branch liquid supply pipe; 8421, first branch liquid supply pipe; 8422, second branch liquid supply pipe; 8422-1, first time branch liquid supply pipe; 8422-2, second time branch liquid supply pipe; 843, four-way valve; 844, three-way valve; 85, filtering part; 851, filter cartridge; 852, water passing hole; 853, flow guide groove; 86, heating part;
[0053] 90, drying assembly; 91, air inlet pipeline; 911, first air inlet pipe; 912, second air inlet pipe; 913, third air inlet pipe; 92, drying part; 921, fan; 922, heating chamber;
[0054] 100, adjusting assembly; 101, adjusting cabin; 1011, first input opening; 102, flow guide; 1021, first equal division part; 1022, second equal division part; 1023, first flow guide part; 1024, second flow guide part; 103, first check valve; 104, second check valve;
[0055] 200, water inlet pipe; 201, water inlet valve;
[0056] 300, water outlet pipe; 301, second water pump. DETAILED DESCRIPTION
[0057] The embodiments of the present application will be described in further detail below with reference to the drawings and embodiments. The following examples are used to illustrate the present application, but cannot be used to limit the scope of the present application.
[0058] In the description of the embodiments of the present application, it should be noted that the terms "center", "longitudinal", "lateral", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the embodiments of the present application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the embodiments of the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0059] In the description of the embodiments of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the embodiments of the present application can be understood according to the specific circumstances.
[0060] In the embodiments of the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0061] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms is not necessarily for the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine the different embodiments or examples described in the present application and the features of the different embodiments or examples without contradiction.
[0062] Referring to Figures 1 to 16 The embodiments of the present application provide a shoe washing device, which is used for washing various types of shoes, such as casual shoes, sports shoes, travel shoes, negative heel shoes, height-increasing shoes, rain shoes, dance shoes, etc. Figure 1 and Figure 2 As shown in the drawings, the shoe washing device comprises a machine body 10 and a door assembly 20. The machine body 10 is the main body of the entire shoe washing device, and a washing cavity 13 is constructed in the interior of the machine body 10. The washing cavity 13 can accommodate shoes, washing medium, etc. The washing medium can be water or a mixture containing washing agent. One side of the machine body 10 is provided with an opening 115, which is in communication with the washing cavity 13. Through the opening 115, shoes can be put into the washing cavity 13 or taken out from the interior of the washing cavity 13.
[0063] The machine body 10 is a box-shaped structure with one face being open and the other five faces being closed. After the five faces are closed, a cavity, i.e. the washing cavity 13, is formed. The machine body 10 can also have other structures, such as a rhombic shape or a cylindrical shape. The structure and shape of the machine body 10 can be adaptively adjusted according to user's preference.
[0064] As shown in the drawings, Figure 2 The door assembly 20 is movably arranged at the opening 115 of the machine body 10 and can be switched between a first position in which the opening 115 is opened and a second position in which the opening 115 is closed. When the door assembly 20 is in the first position, shoes can be put into the washing cavity 13 or taken out from the washing cavity 13 through the opening 115. When the door assembly 20 is in the second position, the door assembly 20 is used to block the opening 115, so that the washing cavity 13 is in a closed state and the shoe washing device is in a working state.
[0065] Referring to Figure 4 It can be understood that in some embodiments of the present application, the door assembly 20 can be rotatably connected with the machine body 10 through a connecting part, which can be a hinge or a hinge pin, etc.
[0066] When the connecting part is a hinge, it comprises a connecting support 14 arranged on the machine body 10, a connecting support piece 24 arranged on the door assembly 20, and a rotating part 15 rotatably connecting the connecting support 14 and the connecting support piece 24. The rotating part 15 can be a rotating shaft or a pin shaft. The connecting support 14 can be fixedly welded on the machine body 10 or detachably connected on the machine body 10 through a bolt or other fastener. The connecting support piece 24 can also be fixedly welded on the door assembly 20 or detachably connected on the door assembly 20 through a bolt or other fastener. When the door assembly 20 is flipped to open or close the opening 115 of the machine body 10, the connecting support piece 24 drives the door assembly 20 to rotate around the rotating shaft or the pin shaft.
[0067] The connecting support 14 can be arranged on the machine body 10 or on the door assembly 20. When the connecting support 14 is arranged on the door assembly 20, the connecting support 24 is correspondingly arranged on the machine body 10. As long as the rotation connection between the door assembly 20 and the machine body 10 can be ensured, any connecting member that can move the door assembly 20 to open or close the opening 115 is acceptable, such as the sliding connection between the door assembly 20 and the machine body 10 through a slide rail, and the pushing of the door assembly 20 to open or close the opening 115.
[0068] Referring to Figure 2 and Figure 7 It can be understood that the liquid inlet 111 and the liquid outlet 112 are arranged on the machine body 10, that is, the liquid inlet 111 and the liquid outlet 112 are arranged on the cavity wall of the washing cavity 13. The liquid inlet 111 can be connected to the water inlet pipe 200 to supply water to the washing cavity 13 of the washing device, that is, one end of the water inlet pipe 200 is connected to an external water source, which can be tap water, well water, etc., and the other end of the water inlet pipe 200 is connected to the liquid inlet 111. The liquid outlet 112 can be connected to the drain pipe 300 to discharge the sewage after washing the shoes in the washing device.
[0069] Specifically, referring to the orientation layout in Figure 10 It can be understood that the liquid inlet 111 is arranged on the top wall of the washing cavity 13, which facilitates the flow of the washing medium into the washing cavity 13 under the action of gravity. The liquid outlet 112 is arranged on the bottom wall of the washing cavity 13 to facilitate the discharge of the washing medium from the liquid outlet 112. The liquid inlet 111 and the liquid outlet 112 can be arranged in a staggered manner or in an aligned manner, and the specific arrangement can be selected according to the use condition.
[0070] Referring to Figures 2 to 8 and Figure 15 It can be understood that the shoe washing device is also provided with a spraying mechanism 40, and at least part of the spraying mechanism 40 is arranged on the cavity wall of the washing cavity 13, that is, part of the spraying mechanism 40 is arranged on at least one side wall of the machine body 10. Referring to the orientation layout in Figure 10 , such as arranging the spraying mechanism 40 on at least one of the top wall, the bottom wall, the left side wall, the right side wall, and the rear side wall of the machine body 10. The washing medium is sprayed by the spraying mechanism 40 to form a high-speed jet flow to continuously impact and spray the shoes, thereby achieving the cleaning of the stains on the shoes and achieving the effect of washing the shoes.
[0071] At least part of the spraying mechanism 40 is arranged on the door assembly 20, that is, another part of the spraying mechanism 40 is arranged on the door assembly 20. The spraying mechanism 40 on the door assembly 20 sprays a high-speed jet flow into the interior of the washing cavity 13 to continuously impact and spray the shoes, thereby achieving the cleaning of the stains on the shoes and achieving the effect of washing the shoes.
[0072] As Figure 8 and Figure 15 shown, the spraying mechanism 40 includes a first spraying assembly 41 and a second spraying assembly 42, the first spraying assembly 41 is detachably connected to the body 10 by a screw or the like fastener, the jet sprayed by the first spraying assembly 41 can wash the side of the shoe, and the side of the shoe can be understood as the surface of the upper adjacent to the sole; the second spraying assembly 42 is detachably connected to the door assembly 20 by a screw or the like fastener, and the jet sprayed by the second spraying assembly 42 can wash the front of the shoe, and the front of the shoe can be understood as the surface of the upper opposite to the sole.
[0073] Specifically, as Figure 15 shown, the first spraying assembly 41 includes a first spraying body 411, the first spraying body 411 is a shell-shaped structure, and a liquid storage space is constructed inside to form a first spraying cavity 412, and a plurality of first spraying openings 113 are provided on the cavity wall of the washing cavity 13, that is, the side wall of the body 10, as Figure 8 and Figure 10 shown. The first spraying openings 113 are distributed in a planar array on the side wall of the body 10 and are located on the surface of the cavity wall of the washing cavity 13, avoiding occupying the internal space of the washing cavity 13. The first spraying openings 113 can also be arranged along the circumference of the shoe on the side wall of the body 10, so that the spraying area of the first spraying openings 113 can cover the surface of the shoe and the sole part, ensuring that every part of the shoe can be sprayed by the jet.
[0074] As Figures 6 to 8 , and Figure 15 shown, the first spraying body 411 is detachably connected to the outside of the cavity wall of the washing cavity 13 corresponding to the distribution area of the plurality of first spraying openings 113, and the first spraying body 411 can be sealingly connected with the outside surface of the cavity wall of the washing cavity 13, so that the first spraying cavity 412 forms a closed liquid storage space. The connection of the water inlet pipe 200 and the first spraying body 411 as a liquid supply mode in the liquid storage space can include any one of the following:
[0075] The first liquid supply mode, the water inlet pipe 200 can communicate with the liquid supply assembly 80, the liquid supply assembly 80 communicates with the first spraying body 411 to supply liquid to the liquid storage space, and the washing medium in the liquid supply assembly 80 from the water inlet pipe 200 enters the liquid storage space formed by the first spraying body 411 and the outside of the cavity wall of the washing cavity 13 after being pressurized, and the washing medium is continuously sprayed out of the first spraying opening 113 to effectively wash the shoe.
[0076] The second liquid supply mode is that the water inlet pipe 200 is communicated with the liquid inlet 111 to supply washing liquid directly to the inside of the washing cavity 13, the first end of the liquid supply assembly 80 is communicated with the liquid outlet 112, and the second end of the liquid supply assembly 80 is communicated with a spray body 411 to supply liquid to a liquid storage space, and the washing medium in the water inlet pipe 200 enters the washing cavity 13 from the liquid inlet 111 to preliminarily flush the shoes, and the washing medium after flushing enters the liquid supply assembly 80, is filtered and pressurized, and then enters the liquid storage space formed by the spray body 411 and the outside of the cavity wall of the washing cavity 13, and the washing medium is continuously sprayed out of the first spray port 113 to effectively flush the shoes.
[0077] The third liquid supply mode is that the water inlet pipe 200 can be directly communicated with the first spray body 411 to continuously supply water to the liquid storage space, so that the first spray port 113 has enough washing medium to spray out, and the shoe washing equipment has a continuous jet flow to flush the shoes.
[0078] The first spray cavity 412 can be directly communicated with the water inlet pipe 200 to supply water to the first spray cavity 412 through the water inlet pipe 200, so that the water stored in the first spray cavity 412 is sprayed out of the first spray port 113 after the amount of water is increased, to flush the shoes.
[0079] The first spray body 411 completely covers the layout area of the first spray port 113, which can be understood as that the projection of the first spray body 411 on the side wall of the machine body 10 covers all the first spray ports 113, so that all the first spray ports 113 share one spray cavity, the structure is integrated, the size of the shoe washing equipment is reduced, the shoe washing equipment is convenient to move and store, the design concept of light and thin is met, and the maintenance and replacement of the spray assembly are facilitated.
[0080] The first spray cavity 412 as the liquid storage space can make the washing medium that first enters the first spray cavity 412 first spray out, and as the amount of washing medium stored in the first spray cavity 412 increases, it can ensure that each first spray port 113 communicated with the first spray cavity 412 has enough washing medium to spray out, and the shoe washing equipment has a continuous jet flow to flush the shoes.
[0081] In addition, after the shoes are placed in the washing cavity 13, the positions of at least some of the first spray openings 113 in the first spray assembly 41 arranged on the left and right side walls of the washing cavity 13 can be higher than the height of the shoes, so that the first spray assembly 41 can flush the sides and uppers of the shoes at the same time. At least some of the first spray openings 113 in the first spray assembly 41 arranged on the front wall of the washing cavity 13 can also be higher than the height of the shoes, so that the first spray assembly 41 can flush the front of the shoes. At least some of the first spray openings 113 in the first spray assembly 41 arranged on the rear wall of the washing cavity 13 can also be higher than the height of the shoes, so that the first spray assembly 41 can flush the soles of the shoes. The spray area of the first spray assembly 41 can completely cover the soles and uppers of the shoes, so that the shoes can be cleaned in all directions.
[0082] As shown in Figures 6 to 8 , and Figure 15 It can be understood that the first spray openings 113 are arranged on at least two side walls of the machine body 10, that is, the first spray assembly 41 is arranged on at least two side walls of the machine body 10, and the first spray assembly 41 is arranged on two oppositely arranged side walls of the machine body 10. After the shoes are placed in the washing cavity 13, the first spray assembly 41 sprays in two directions to effectively flush the shoes.
[0083] As shown in Figure 15 , on the side of the first spray body 411 facing the machine body 10, a sealing groove 413 is arranged around the first spray body 411. A sealing ring or a sealing strip or other components capable of sealing can be embedded in the sealing groove 413, or a sealing protrusion (not shown in the figure) can be arranged on the machine body 10 corresponding to the position of the sealing groove 413. After the first spray body 411 is connected to the side wall of the machine body 10, the sealing protrusion is embedded in the sealing groove 413, so that the first spray body 411 and the machine body 10 can be connected in a sealed manner.
[0084] It should be noted that the shape of the first spray opening 113 is not limited, and the shape of the first spray opening 113 can be circular, strip-shaped, block-shaped structure, etc. The arrangement of the first spray opening 113 on the side wall of the machine body 10 is also not limited, for example, the first spray opening 113 can be arranged in an array on the side wall of the machine body 10, and the shape of the arrangement area can include a rectangle, a circle, a triangle, a diamond, etc.
[0085] As shown in Figure 2 , Figure 4 , and Figure 15As shown, it can be understood that the second spraying assembly 42 comprises a second spraying body, and the structural shape of the second spraying body 421 can be the same as that of the first spraying body 411 described above, both being a shell structure. The second spraying assembly 20 is provided with a plurality of second spraying openings 217 arranged in a planar array, so as to avoid the second spraying openings 217 protruding from the cavity wall surface of the washing cavity 13 and occupying the internal space of the washing cavity 13.
[0086] As shown in Figure 4 and Figure 15 The second spraying body 421 is detachably connected to the door assembly 20 corresponding to the distribution area of the plurality of second spraying openings 217, and can form a sealed liquid storage space with the outer surface of the door assembly 20. The connection mode of the water inlet pipe 200 and the second spraying body 421 for supplying liquid into the liquid storage space can include any one of the following modes:
[0087] In a first mode, the water inlet pipe 200 can be in communication with the liquid supply assembly 80, and the liquid supply assembly 80 is in communication with the second spraying body 421 to supply liquid to the liquid storage space. The washing medium in the water inlet pipe 200 enters the liquid supply assembly 80 after being pressurized, and then enters the liquid storage space formed by the second spraying body 421 and the door assembly 20. The washing medium is continuously sprayed out of the second spraying openings 217 to effectively wash the shoes.
[0088] In a second mode, the water inlet pipe 200 is in communication with the liquid inlet 111 to supply washing medium to the inside of the washing cavity 13. The first end of the liquid supply assembly 80 is in communication with the liquid outlet 112, and the second end of the liquid supply assembly 80 is in communication with the second spraying body 421 to supply liquid to the liquid storage space. The washing medium in the water inlet pipe 200 first enters the washing cavity 13 through the liquid inlet 111 to preliminarily wash the shoes. The washing medium after washing enters the liquid supply assembly 80, and then enters the liquid storage space formed by the second spraying body 421 and the door assembly 20 after being filtered and pressurized. The washing medium is continuously sprayed out of the second spraying openings 217 to effectively wash the shoes.
[0089] In a third mode, the water inlet pipe 200 can be directly in communication with the second spraying body 421 to continuously supply water to the liquid storage space, so that the second spraying openings 217 have enough washing medium to spray out, thereby ensuring that the shoe washing device has a continuous jet flow to wash the shoes.
[0090] The distribution area of the second spraying body 421 corresponding to the plurality of second spraying openings 217 can be understood as the second spraying body 421 completely covering the arrangement area of the second spraying openings 217, that is, the projection of the second spraying body 421 on the door assembly 20 covers all the second spraying openings 217, so that all the second spraying openings 217 share one spraying cavity. In this way, the structure is integrated to reduce the size in the thickness direction of the door assembly, so that the door body conforms to the design concept of being light and thin.
[0091] In addition, the sealing connection between the second spray body 421 and the door assembly 20 is the same as the sealing connection between the first spray body 411 and the side wall of the body 10, so it will not be described again.
[0092] It should be noted that the opening 115 can be set on the top wall or any side wall of the body 10. When the opening 115 is set on the top wall of the body 10, it is equivalent to the door assembly 20 being set on the top wall of the body 10 corresponding to the position of the opening 115. In this way, the second spray assembly 42 can be adapted to be set on the door assembly 20 or any side wall of the body 10 according to the setting position of the shoe support assembly 60 and the hanging position of the shoes. Any side wall of the body 10 is also any cavity wall of the washing chamber 13.
[0093] It is understandable that by opening the second spray nozzle 217 on the door assembly 20, the front of the shoe can be effectively washed. In conjunction with the first spray nozzle 113, the shoe surface is washed at multiple angles such as front and side sprays, ensuring the cleaning effect of the shoe and avoiding spray dead corners in the shoe washing equipment.
[0094] Additionally, other spray nozzles (not shown in the figure) can be opened on the bottom wall of the body 10 or on the rear wall of the body 10 opposite the sole. These other spray nozzles are equipped with other spray components to rinse the shoes. When a spray nozzle is opened on the rear wall of the body 10 opposite the sole, the spray range of the nozzle can cover at least a portion of the sole of the shoe, specifically spraying and rinsing the sole area, thereby enhancing the cleaning efficiency of the sole and improving the cleaning effect of the shoe washing equipment.
[0095] like Figure 4 As shown, a reserved port 422 is provided on the second spray body 421. The reserved port 422 can be directly connected to an external water source, such as a faucet, so that the second spray assembly 42 is suitable for use in a variety of situations. For example, when the various pipes of the liquid supply pipe assembly 84 cannot be used due to maintenance or replacement, the external water source can be connected to the reserved port 422 to achieve the purpose of washing shoes.
[0096] It should be noted that the first spray assembly 41 and each of the second spray assemblies 42 can be connected to independent water inlet pipes 200 to supply water, or a single main water inlet pipe 200 can be used, with a multi-way valve installed on the water inlet pipe 200 to supply water to each spray assembly.
[0097] The shoe washing equipment provided in this application embodiment effectively cleans the upper and sole of shoes by setting multiple sets of spray components, ensuring the cleaning effect while further ensuring the integrity of the shoes, so as to adapt to shoes made of leather and plastic materials that are easy to clean with water spray washing media.
[0098] SeeFigure 2 、 Figure 8 、 Figure 9 、 Figure 10 and Figure 12 It can be understood that the washing device further comprises a brushing mechanism 50, the brushing mechanism 50 comprising a brush assembly 51, a driven assembly 52 and a driving assembly 53, the brush assembly 51 being arranged inside the washing cavity 13, the driven assembly 52 being arranged between two ends of the brush assembly 51, and the driving assembly 53 being in transmission connection with the driven assembly 52 to drive the driven assembly 52 to move, thereby driving the brush assembly 51 to move to brush the shoes.
[0099] As shown in Figure 9 and Figure 10 , the brush assembly 51 comprises a plurality of brushes 511, the driven assembly 52 comprises a plurality of driven members, any two adjacent brushes 511 being in transmission connection through the driven members, and the driving assembly 53 being in transmission connection with any one of the plurality of driven members.
[0100] As shown in Figure 10 and Figure 12 , the plurality of driven members comprises a plurality of driven gears arranged in a line, any two adjacent driven gears being arranged in meshing, and the driving assembly 53 being in transmission connection with any one of the plurality of driven gears. The driven assembly can also be a combination of a belt and a belt wheel, a combination of a chain and a sprocket, a plurality of gear combinations, etc. In order to make the structure of the driven assembly simple, the transmission stable, the manufacturing cost low, effectively prevent slipping, and realize a larger range of transmission ratio, the driven assembly is selected in the form of a plurality of gear combinations.
[0101] As shown in Figure 7 and Figure 12 , the driving assembly 53 comprises a motor 531, the motor 531 being arranged outside the cavity of the washing cavity 13 to prevent the washing medium from entering the motor 531 and damaging it. The output shaft of the motor 531 penetrates the machine body 10 and is in transmission connection with any one of the plurality of driven gears arranged inside the washing cavity 13.
[0102] As shown in Figure 9 and Figure 10 , the brush assembly 51 further comprises brush shafts 512, the brushes 511 being detachably connected to the brush shafts 512, the number of driven gears corresponding to the number of brush shafts 512, and the driven gears being capable of being arranged one-to-one with the brush shafts 512, and the driving gear 532 being connected with any one of the plurality of driven gears. For example, the brush shafts 512 can be five groups, and the number of driven gears is correspondingly set to five, and each group of brush shafts 512 is connected with a corresponding driven gear.
[0103] As shown in Figure 9 , Figure 10 and Figure 12As shown, five groups of brush assemblies 51 are arranged in the interior of the washing cavity 13. Each brush assembly 51 is connected with a corresponding driven gear. The driven gear can be connected with the outer surface of the brush shaft 512 in interference fit or connected with the brush shaft 512 through a key, and other connection modes that can make the driven gear rotate synchronously to drive the brush shaft 512 to rotate are also possible.
[0104] As shown, Figure 12 The plurality of driven gears corresponding to the number of brush shafts 512 can be respectively denoted as a first driven gear 521, a second driven gear 522, a third driven gear 523, a fourth driven gear 524, and a fifth driven gear 525. The first driven gear 521, the second driven gear 522, the third driven gear 523, the fourth driven gear 524, and the fifth driven gear 525 are arranged in meshing with each other and in a linear arrangement, that is, the first driven gear 521, the second driven gear 522, the third driven gear 523, the fourth driven gear 524, and the fifth driven gear 525 are arranged in series, and all the driven gears are arranged in the interior of the washing cavity 13.
[0105] The motor 531 can directly drive any one of the first driven gear 521, the second driven gear 522, the third driven gear 523, the fourth driven gear 524, and the fifth driven gear 525. The motor 531 can also be connected with a driving gear 532 through a key connection, interference fit, or one-piece design at the output end of the motor 531, and the driving gear 532 is arranged in the machine body 10 and arranged in meshing with any one of the plurality of driven gears.
[0106] The motor 531 and the driving gear 532 are arranged on the outside of the machine body 10. By arranging the driven assembly 52 in the interior of the machine body 10, the structure size of the shoe washing device can be effectively reduced, the occupied area of the shoe washing device is reduced, the shoe washing device is easy to move and store, and the design concept of light and thin is realized. Moreover, the distance between the inner wall of the cavity and the shoe is reduced, so that the washing medium sprayed outside the driven assembly 52 can be reflected to the shoe, so as to repeatedly clean the shoe, thereby achieving good washing effect.
[0107] In addition, by directly driving the plurality of driven gears arranged in series with one motor 531, the setting cost of the driving assembly 53 is reduced, and the volume of the shoe washing device is also reduced.
[0108] As shown, Figure 9As shown, the brush 511 extends along the axis of the brush shaft 512 to form a spiral structure, when the brush shaft 512 rotates with the brush 511, the spiral brush 511 can change the friction position, that is, the brushing position, with the sole of the shoe, so that the brushing effect of the sole of the shoe is better, and the brushing range of the brush 511 completely covers the entire sole area of the shoe, so as to improve the cleaning effect of the shoe cleaning device, and prevent the brush 511 from brushing the same part of the shoe to avoid wearing the sole of the shoe and shorten the service life of the shoe.
[0109] The brush 511 is detachably connected to the brush shaft 512, that is, the brush 511 can form a cluster structure, and each cluster can be arranged on the brush shaft 512 by insertion. The brush 511 can also be arranged as a whole, and the whole brush 511 is connected to the brush shaft 512 by screws or other fasteners. When the brush 511 is worn or damaged after a period of use and cannot continue to work normally, the user can replace the brush 511 by himself.
[0110] The brush 511 can be selected according to the material of the sole of the shoe. Generally, a brush 511 made of hair or a brush 511 made of silica gel is selected. The brush 511 made of silica gel is softer and easier to deform, and has large friction resistance. It can not only increase the friction between the sole of the shoe and the brush 511, thereby improving the cleaning effect of the brush 511, but also adaptively deform when the brush 511 is in close contact with the sole of the shoe, so as to prevent the brush 511 from being too hard to damage the shoe.
[0111] As shown in the figure, Figure 9 The driven assembly 52 is located at the middle position of the brush shaft 512, and the two ends of the brush shaft 512 can be suspended, so only the connection between the brush shaft 512 and the driven assembly 52 needs to be ensured. In order to improve the stability of the brush shaft 512, at least one end of the brush shaft 512 can be rotatably connected to the cavity wall of the washing cavity 13. A fixed seat can be arranged on the cavity wall of the washing cavity 13, a bearing is assembled in the fixed seat, and a shaft sleeve is arranged at the corresponding end of the brush shaft 512. The brush shaft 512 is matched with the bearing through the shaft sleeve. When the brush shaft 512 rotates with the driven assembly 52, the brush shaft 512 can drive the bearing to rotate, which is equivalent to that the brush shaft 512 has at least two fixed points, so as to improve the motion stability of the brush shaft 512.
[0112] In addition to being installed at the middle position of the brush shaft 512, the driven assembly 52 can also be installed on the side wall of the machine body 10, so that the first end of the brush shaft 512 is connected to the side wall of the machine body 10 through the driven assembly 52, and the second end of the brush shaft 512 is connected to the other side wall of the machine body 10 relative to the driven assembly 52 through a bearing or other transmission component.
[0113] As Figure 9 shown, the brush 511 can include a first brush part 5111 and a second brush part 5112, which can be formed by the installation position of the driven assembly 52 on the brush shaft 512, so that the first brush part 5111 and the second brush part 5112 can be symmetrically arranged with the bisector of the length direction of the brush shaft 512 as the axis of symmetry, which is also the square of the brush shaft 512 in the axial direction of the brush shaft 512.
[0114] When the brush shaft 512 rotates synchronously with the brush 511, the first brush part 5111 and the second brush part 5112 located on both sides of the driven assembly 52 can rotate simultaneously, and the brushed stains can be collected to the position where the driven assembly 52 is located, that is, the middle part of the brush 511, that is, the middle region of the first brush part 5111 and the second brush part 5112, so that the sprayed water line can take the brushed stains away from the washing cavity 13, thereby improving the washing effect of the shoe washing device.
[0115] As Figure 9 and Figure 10 shown, in order to thoroughly clean the heel part and the toe part, the length of the bristles of the first brush part 5111 and the second brush part 5112 close to one end of the inner wall of the cavity of the washing cavity 13 is greater than the length of the bristles of the first brush part 5111 and the second brush part 5112 close to one end of the driven assembly 52, that is, the brush 511 on the brush shaft 512 is short in the middle region and long at both ends. The length direction of the shoe is consistent with the axial direction of the brush shaft 512, so that the heel part and the toe part touch the region with long bristles, which facilitates cleaning the heel part and the toe part.
[0116] As Figure 9 shown, in order to prevent the washing medium from entering the inside of the driven assembly 52 and affecting the service life of the driven assembly 52, a cover 513 is arranged outside the driven assembly 52, which is detachably connected to the inner wall of the cavity of the washing cavity 13 for protecting the driven assembly 52.
[0117] When the cover 513 is installed on the inner wall of the cavity of the washing cavity 13, it is equivalent to protruding a part of the inner wall of the cavity, which shortens the distance between the inner wall of the cavity and the shoe, so that when the water line sprayed by the spraying assembly impacts on the cover 513, it can quickly return to the shoe, so that the shoe is repeatedly washed, thereby improving the cleaning effect of the shoe and preventing the sprayed water line from flowing along the inner wall of the cavity after impacting on the inner wall of the cavity.
[0118] When the shoes are placed in the washing cavity 13, the soles of the shoes face the brush assembly 51, the brushes 511 abut the sole parts of the shoes, the extension direction of the brush shaft 512 is perpendicular to the length direction of the shoes, or there is a certain angle between the extension direction of the brush shaft 512 and the length direction of the shoes, so that the plurality of brushes 511 can simultaneously brush the soles of the shoes, and the cleaning effect of the shoes is better.
[0119] In the washing process of the shoe washing device provided in the embodiment, the motor 531 drives the driving gear 532 to move, the driving gear 532 drives the driven gears meshing therewith to move, so that the plurality of driven gears meshing with each other move synchronously, each driven gear drives the brush shaft 512 connected therewith to move, so that the brushes 511 connected to the brush shaft 512 move synchronously to frictionally clean the soles of the shoes and part of the uppers of the shoes.
[0120] The shoe washing device provided in the embodiment can simplify the structure of the brushing mechanism 50 and reduce the production cost of the brushing mechanism 50, because the plurality of driven gears are arranged side by side and the plurality of brush assemblies 51 are driven to move synchronously by the motor 531, the gear transmission can ensure reliable transmission and stable operation of the brush assembly 51 to rotate and wash the soles and the uppers of the shoes.
[0121] The shoe washing device provided in the embodiment can effectively clean the sole area with high dirt degree and difficult to clean by the plurality of brush assemblies 51, and the brushing range of the brush assembly 51 is controlled only in the sole area, without involving other areas of the shoes, so that the brush assembly 51 does not cause abrasion to other areas of the shoes, and the integrity of the shoes is ensured.
[0122] The shoe washing device provided in the embodiment can cooperate with the brushing mechanism 50 and the plurality of spraying assemblies to clean the upper area with poor resistance and easy to be abraded by the plurality of spraying assemblies, so that the shoes are ensured to have good washing effect and good integrity.
[0123] Referring to Figure 2 , Figure 11 and Figure 12 It can be understood that the shoe stretching assembly 60 is further arranged in the washing cavity 13 of the shoe washing device, and the shoe stretching assembly 60 is used to support the shoes. The shoe stretching assembly 60 can be arranged on any inner wall of the machine body 10, that is, any cavity wall of the washing cavity 13, or can be arranged on the door assembly 20.
[0124] Referring to Figure 2 , Figure 10 and Figure 11As shown, the shoe washing apparatus further comprises a shoe support assembly 60, which is arranged in the washing cavity 13 and used for supporting shoes. The shoe support assembly 60 can be arranged on any side wall of the machine body 10 or on the door assembly 20.
[0125] As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends. Figure 10 Figure 11 As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends.
[0126] The number of the shoe support members 61 can be determined according to the number of shoes. For example, when the shoe washing apparatus can wash one pair of shoes at a time, two groups of shoe support members 61 are arranged side by side on the door assembly 20. When the door assembly 20 is in the first position of closing the opening 115, the two groups of shoe support members 61 are located in the washing cavity 13, and the shoes are hung on the two groups of shoe support members 61, respectively. When the door assembly 20 is in the second position of opening the opening 115, the two groups of shoe support members 61 rotate with the door assembly 20 so as to be exposed. At this time, the shoes can be hung on the two groups of shoe support members 61, respectively, or taken off the two groups of shoe support members 61, respectively.
[0127] As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends. Figure 10 Figure 11 As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends.
[0128] As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends. Figure 10 Figure 11 As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends.
[0129] As shown in Figs. 1 and 2, the shoe support assembly 60 comprises at least two shoe support members 61, the first ends of which are connected to the door assembly 20, and the second ends of which are free ends. Figure 11 As shown, a plurality of spray holes (not numbered in the figure) are arranged on the side wall of the second shoe support part 612, the plurality of spray holes are in communication with the shoe support channel 62, and the plurality of spray holes can be arranged along the extension direction of the shoe support channel 62. When the shoes are hung on the shoe support part, the water lines sprayed by the spray holes can flush the inside of the shoes.
[0130] Among them, the plurality of spray holes can be arranged in an array along the extension direction of the shoe support channel 62, or the plurality of spray holes are arranged in a staggered manner on the side wall of the second shoe support part 612. For areas with a higher degree of stains, the density of the spray holes can be arranged to be larger, that is, the spacing between adjacent two spray holes is smaller. For areas with a lower degree of stains, the density of the spray holes can be arranged to be smaller, that is, the spray holes are arranged sparsely, and the gap between adjacent two spray holes is larger. No matter which arrangement form, as long as the water lines sprayed from the spray holes can completely cover the inside of the shoes.
[0131] In addition, a plurality of spray holes can also be arranged on the first shoe support part 611 and the second shoe support part 612 respectively, so as to completely correspond the inside area of the shoes to the spray holes, thereby ensuring that the inside area of the shoes can be fully cleaned.
[0132] As Figure 11 shown, in order to make the pressure of the washing medium sprayed by the shoe support channel 62 larger and the impact force stronger, a drainage part 615 is arranged at the second end of the second shoe support part 612. The drainage part 615 can provide a guiding effect for the washing medium, so as to make the washing medium concentrate and spray to the farthest place inside the shoes.
[0133] The drainage area of the drainage part 615 gradually decreases in the direction away from the second shoe support part 612. That is, the flow area of the washing medium is reduced, so that when the washing medium in the shoe support channel 62 flows through the drainage part 615 and sprays outward, the flow rate of the sprayed washing medium is larger, which can achieve better cleaning effect, and at the same time, the water stains cleaned inside the shoes can be flushed to the washing cavity, so that the inside of the shoes is cleaned more thoroughly.
[0134] As Figure 11 shown, in order to facilitate processing, the first shoe support part 611 and the second shoe support part 612 can be integrally formed, that is, the first shoe support part 611 and the second shoe support part 612 can be arranged in an overall structure of "L" type, and the shoe support channel 62 is arranged through the overall structure.
[0135] The first shoe support part 611 and the second shoe support part 612 can also be set as two independent parts, fixed by welding or detachable connection. A connecting part 616 is provided between the first shoe support part 611 and the second shoe support part 612. The connecting part 616 is inclined relative to the first shoe support part 611 or the second shoe support part 612, that is, there is a certain angle between the connecting part 616 and the first shoe support part 611 or the second shoe support part 612. The connecting part 616 provides a transition between the first shoe support part 611 and the second shoe support part 612, which not only improves the structural strength of the shoe support part, but also makes it convenient for shoes to be hung on or removed from the shoe support part 61.
[0136] It is understandable that the first shoe support part 611 is set in a roughly perpendicular state to the door assembly 20. "Roughly perpendicular state" can be understood as being set in a near-vertical state, but does not include the case of being set in a vertical state. The purpose is to ensure that when the shoes are hung on the shoe support part 61, the washing medium inside the shoes can be completely drained, so as to avoid the wastewater after washing remaining inside the shoes and affecting the washing effect.
[0137] The second shoe support 612 is arranged approximately parallel to the door assembly 20. When the door assembly 20 closes the washing chamber 13, the second shoe support 612 is vertically arranged inside the washing chamber 13, and the shoes hanging on the second shoe support 612 are also vertically arranged inside the washing chamber 13, with the heels approximately parallel. This allows the wastewater inside the shoes to flow from the toe down the sole to the heel when the high-speed water flow passes through the shoe support channel 62 to rinse the inside of the shoes, ensuring that the wastewater can be completely drained from the shoes. This improves the cleaning effect and washing time, and prevents wastewater from accumulating inside the shoes and requiring multiple rinses, thus extending the washing time.
[0138] like Figure 11 As shown, to make the installation of the first shoe support 611 on the door assembly 20 more stable, a mounting flange 613 is provided extending outward from the end face of the first shoe support 611. The cross-sectional area of the mounting flange 613 is larger than the cross-sectional area of the first shoe support 611. Figure 15 As shown, a mounting groove 214 is provided on the door assembly 20, and the mounting flange 613 can be embedded in the mounting groove 214 and the shoe support assembly 60 is fixedly installed on the door assembly 20 by fasteners such as screws.
[0139] The first shoe support 611 is connected to the door assembly 20 through the mounting flange 613 and the mounting groove 214. This not only increases the stability of the first shoe support 611, but also increases the sealing effect between the first shoe support 611 and the door assembly 20, preventing leakage between the first shoe support 611 and the door assembly 20. At the same time, it allows the washing medium sprayed by the spray assembly to flow down from the surface of the mounting flange 613.
[0140] As shown in Figure 11 order to further improve the sealing effect between the first shoe stretcher 611 and the door assembly 20, an insertion flange 614 is arranged on the mounting flange 613 and extends outward, and the cross-sectional area of the insertion flange 614 is smaller than that of the mounting flange 613. As shown in Figure 15 the bottom of the mounting groove 214 is provided with an insertion groove 215, and the insertion flange 614 can be inserted into the insertion groove 215 in an interference fit, so as to prolong the length of the first shoe stretcher 611 extending into the door assembly 20 and achieve a good sealing effect.
[0141] In order to adapt the shoe stretcher assembly 60 to different sizes of shoes, the first shoe stretcher 611 or the second shoe stretcher 612 can be arranged in a telescopic structure, or both the first shoe stretcher 611 and the second shoe stretcher 612 can be arranged in a telescopic structure. That is, the shoe stretcher assembly 60 is provided with an adjusting member (not shown in the figure), which can be adjusted along the shoe length direction of the shoe so that the shoe stretcher assembly 60 can adapt to the shoe length of the shoe, so that the shoe stretcher assembly 60 can be adapted to shoes of various sizes while ensuring the stability of the shoe, and the user can conveniently hang and remove the shoe from the shoe stretcher assembly 60.
[0142] For example, the second shoe stretcher 612 includes a body and an extension along the shoe length direction, and an elastic member or a telescopic rod is arranged between the body and the extension to realize the adjustment of the length of the second shoe stretcher 612.
[0143] When the telescopic rod is arranged between the body and the extension, the telescopic rod includes two rod bodies arranged in a buckling manner, a plurality of limiting holes are formed on one of the rod bodies, and a spring limiting pin is arranged on the other rod body in a corresponding manner. The spring limiting pin is clamped in the limiting hole, so that after one rod body extends relative to the other rod body, the length of the second shoe stretcher 612 can be adjusted, so that the shoe stretcher can be adapted to shoes of various sizes. The shoe stretcher can also be adjusted along the shoe width direction of the shoe so that the shoe stretcher can adapt to the shoe width of the shoe.
[0144] It should be noted that the positions of the brush assembly 51 and each spraying assembly need to be adjusted accordingly according to the position of the shoe stretcher assembly 60, so that the brush assembly 51 and each spraying assembly can effectively clean the soles and uppers of the shoes.
[0145] Referring to Figure 15It can be understood that the protruding portion 216 is arranged on the side of the door assembly 20 facing the machine body 10, and the protruding portion 216 is located between two adjacent shoe support parts 61. The protruding portion 216 shortens the distance between the door assembly 20 and the shoes, so that the water flow sprayed on the protruding portion 216 by the spraying assembly can be reflected to the shoes for secondary washing of the shoes, thereby effectively improving the washing efficiency.
[0146] The protruding portion 216 forms a recess on the side facing away from the machine body 10. The recess can accommodate components such as pipelines arranged on the door assembly 20, thereby effectively saving the space of the door assembly 20, reducing the size of the door assembly 20 in the thickness direction, and achieving an ultra-thin design effect of the shoe washing device, so as to reduce the volume and floor space of the shoe washing device.
[0147] The protruding portion 216 can divide the second spraying port 217 opened on the door assembly 20 into left and right spraying areas, so that the washing medium sprayed by the second spraying port 217 can be sprayed more on the front of the shoes, thereby effectively cleaning the front of the shoes. In this way, the part of the washing medium is prevented from being obliquely sprayed to the side of the washing cavity 13 and the side wall of the washing cavity 13, thereby affecting the washing efficiency of the second spraying port 217.
[0148] As shown in Figure 15 , a plurality of third spraying ports 218 are arranged on both sides of the protruding portion 216. The third spraying ports 218 and the second spraying port 217 can share a spraying cavity. The washing medium sprayed by the third spraying ports 218 can be directly aimed at the inner side surface of the shoes, so that the cleaning effect of the inner side surface of the shoes is better. In this way, the areas that cannot be sprayed by the first spraying port 113 and the second spraying port 217 are supplemented, and the shoes are sprayed and cleaned in all directions.
[0149] Referring to Figure 2 and Figure 3 , it can be understood that the flow guide portion 30 is arranged between the machine body 10 and the door assembly 20. The first end of the flow guide portion 30 is connected to any one of the machine body 10 and the door assembly 20. When the door assembly 20 is in the second position, the second end of the flow guide portion 30 is in fluid communication with the other one of the machine body 10 and the door assembly 20. The fluid communication can be understood as that the flow guide portion 30 is abutted or sealingly connected to the other one of the machine body 10 and the door assembly 20, so that the washing medium can flow along the flow guide portion 30 to the other one of the machine body 10 and the door assembly 20.
[0150] When the flow guide portion 30 is arranged on the door assembly 20 and faces the machine body 10, the first end of the flow guide portion 30 is fixed on the door assembly 20. When the door assembly 20 is in the first position, the second end of the flow guide portion 30 is a free end. When the door assembly 20 is in the second position, the second end of the flow guide portion 30 is abutted to the bottom wall of the machine body 10, which is conducive to guiding the washing medium to the bottom wall of the machine body 10.
[0151] As shown in Figure 3 , the flow guide part 30 and the door assembly 20 form an included angle, such as the included angle between the flow guide part 30 and the door assembly 20 can be between 30° to 60°, generally set the included angle between the flow guide part 30 and the door assembly 20 is 45°, so that the flow guide part better play the effect of flow guide.
[0152] As shown in Figure 3 , the flow guide part 30 can include a flow guide plate 31 and a sealing element 32, the end of the flow guide plate 31 away from the door assembly 20, that is, the free end of the flow guide part 30 is provided with a receiving groove 311 in the open state of the door assembly 20, the sealing element 32 is embedded in the receiving groove 311, so that the flow guide plate 31 and the inner side wall of the machine body 10 form a sealing surface, preventing the washing medium from overflowing from the gap between the flow guide plate 31 and the door assembly 20, so as to improve the sealing effect between the door assembly 20 and the machine body 10.
[0153] As shown in Figure 3 , in order to make the sealing element 32 more firmly installed, a limiting tooth 312 is arranged on the inner side wall of the receiving groove 311, and the outer side wall of the sealing element 32 is provided with a limiting groove matched with the limiting tooth 312, which is equivalent to the sealing element 32 being clamped in the receiving groove 311, therefore, the sealing element 32 can be firmly matched in the receiving groove 311 by repeated impact.
[0154] As shown in Figure 3 , it can be understood that the flow guide plate 31 and the door assembly 20 can be integrally formed, the flow guide plate 31 extends from the door assembly 20 to the direction of the machine body 10, that is, it is equivalent to being divided into two layers from one end of the door assembly 20, one layer is the door body, and the other layer forms a raised part, which plays the effect of flow guide.
[0155] In addition, the flow guide plate 31 can also be detachably connected to the first door body 21 by screws or other fasteners. Specifically, a groove for embedding the flow guide plate 31 can be provided on the first door body 21, so that after the flow guide plate 31 is embedded in the groove, it is fixed by the fastener, ensuring the surface of the door assembly 20 to be flat, facilitating the washing medium to flow obliquely from the door assembly 20 to be away from the sealing surface between the door assembly 20 and the machine body 10, and ensuring good sealing effect between the door assembly 20 and the machine body 10.
[0156] As shown in Figure 2 , it can be understood that the flow guide part 30 and the shoe stretcher assembly 60 are located on the same side, and the flow guide plate 31 is arranged between the shoe stretcher assembly 60 and the connecting part, therefore, the washing medium flowing out of the shoe stretcher assembly 60 can also be guided to the bottom wall of the machine body 10 to the drain port 112 through the flow guide plate 31, preventing the washing medium from flowing along the inner side wall of the door assembly 20 and leaking from the connection between the door assembly 20 and the machine body 10.
[0157] As shown in Figure 2 and Figure 3 , the flow guide plate 31 can be a plane or a curved surface. In order to make the flow guide effect of the flow guide plate 31 better, the surface of the side of the flow guide plate 31 opposite to the door assembly 20 is an arc surface, which protrudes towards the direction of the machine body 10, which is equivalent to increasing the inclination of the flow guide plate 31, so that when the washing medium is sprayed to the flow guide plate 31, it can quickly flow down, avoiding the washing medium from staying on the flow guide plate 31.
[0158] Referring to Figure 15 , it can be understood that the bottom of the machine body 10 is provided with a liquid supply assembly 80, which is communicated with at least one spraying mechanism 40 and is suitable for conveying the washing medium entering the washing cavity 13 to the spraying mechanism 40 to clean the surface of the shoes. The liquid supply assembly 80 is communicated with the shoe support channel 62 and is suitable for conveying the washing medium entering the washing cavity 13 to the shoe support channel 62 for cleaning the inside of the shoes.
[0159] It can be understood that by arranging the liquid supply assembly 80, the liquid supply assembly 80 is communicated with the liquid outlet 112 and the spraying mechanism 40, and the washing medium entering the washing cavity 13 from the liquid inlet 111 is conveyed to the spraying mechanism 40 to repeatedly wash the shoes, which facilitates the cleaning of the shoes. At the same time, the liquid supply assembly 80 can collect part of the washing medium, so that the washing medium is deposited and then circulated to the spraying mechanism 40 to clean the shoes, which not only saves water resources, but also improves the washing effect.
[0160] As shown in Figures 4 to 8 , Figures 12 to 15 , the liquid supply assembly 80 comprises a liquid collecting body 81 and a first water pump 82. The liquid collecting body 81 is a shell-shaped structure, and a liquid storage space is formed in the inside of the liquid collecting body 81. The liquid collecting body 81 is arranged at the bottom of the machine body 10 and is communicated with the liquid outlet 112 arranged at the bottom of the machine body 10, and is used for collecting the washing medium discharged from the liquid outlet 112. The first end of the first water pump 82 is connected with the liquid collecting body 81 through a connecting pipe 83, and the second end of the first water pump 82 is communicated with at least one of the spraying mechanism 40 and the shoe support channel 62 through a liquid supply pipe assembly 84, so as to selectively distribute the washing medium in the washing cavity 13 to at least one of the spraying mechanism 40 and the shoe support channel 62.
[0161] The liquid supply pipe assembly 84 can connect the first water pump 82 to the spray mechanism 40, supplying the washing medium in the washing chamber 13 to the spray mechanism 40 to spray and wash the front and sides of the shoe; the liquid supply pipe assembly 84 can also connect the first water pump 82 to the shoe support channel 62, supplying the washing medium in the washing chamber 13 to the shoe support channel 62 to wash the inside of the shoe. Simultaneously, the liquid supply pipe assembly 84 can connect the first water pump 82 to both the spray mechanism 40 and the shoe support channel 62, cleaning both the surface and the inside of the shoe at the same time, achieving bidirectional washing of the shoe's interior and exterior, and improving the washing effect.
[0162] The positions of the liquid inlet 111 and the liquid outlet 112 on the body 10 can be aligned so that the washing medium entering the washing chamber 13 from the liquid inlet 111 is first concentrated and flows out from the liquid outlet 112 into the liquid collection body 81, and then is pumped to each spray assembly and shoe support channel 62 after being pressurized by the first water pump 82.
[0163] like Figure 4 and Figure 15 As shown, it can be understood that the liquid supply pipe assembly 84 includes a main liquid supply pipe 841 and multiple branch liquid supply pipes 842. The first end of the main liquid supply pipe 841 is connected to the outlet of the first water pump 82, and the second end of the main liquid supply pipe 841 is simultaneously connected to multiple branch liquid supply pipes 842 that are connected to the spray mechanism 40 or the shoe support channel 62 through a multi-way valve or manifold or other distribution component.
[0164] The multiple branch liquid supply pipes 842 include a first branch liquid supply pipe 8421 and a second branch liquid supply pipe 8422. The first branch liquid supply pipe 8421 is connected to the first spray assembly 41, and the second branch liquid supply pipe 8422 is connected to the second spray assembly 42 located on the door assembly 20 and the shoe support channel 62. Specifically, a multi-way valve is connected to the second branch liquid supply pipe 8422 to split the second branch liquid supply pipe 8422 into two paths, one path to supply washing medium to the second spray assembly 42 and the other path to supply washing medium to the shoe support channel 62.
[0165] The number of the first branch liquid supply pipes 8421 and the number of the first spray assembly 41 are set in a one-to-one correspondence, such as... Figure 15 As shown, for example, two sets of first spray components 41 are arranged opposite each other, and each set of first spray components 41 is connected to each first branch liquid supply pipe 8421. It is equivalent to the water outlet of the main liquid supply pipe 841 being divided into three paths through the four-way valve 843. The first path is connected to a first spray component 41 through a first branch liquid supply pipe 8421, the second path is connected to another first spray component 41 through another first branch liquid supply pipe 8421, and the third path is connected to the water supply pipe on the door component 20 through a second branch liquid supply pipe 8422.
[0166] likeFigure 4 As shown, the water supply pipeline on the door assembly 20 includes a first branch liquid supply pipe 8422-1 and a second branch liquid supply pipe 8422-2, and a three-way valve 844 is arranged at the water outlet end of the second branch liquid supply pipe 8422 to divide the washing medium in the second branch liquid supply pipe 8422 into two paths, one of which communicates with the second spray assembly 42 through the first branch liquid supply pipe 8422-1, and the other of which communicates with the shoe stretcher channel 62 through the second branch liquid supply pipe 8422-2.
[0167] As shown in Figure 14 and Figure 15 It can be understood that the liquid supply assembly 80 further includes a filter component 85, which can be arranged on any one of the liquid collecting body 81 and the first water pump 82, for filtering and collecting the particulate dirt falling from the shoes, preventing the particulate dirt from blocking the drain pipe or the liquid supply assembly 80 of the shoe washing device during the washing process, thereby ensuring the normal operation of the shoe washing device and reducing the maintenance cost of the shoe washing device.
[0168] As shown in Figure 14 When the filter component 85 is arranged inside the liquid collecting body 81, the filter component 85 includes a filter cartridge 851 which is detachably connected to the drain port 112. At least one of the bottom wall and the side wall of the filter cartridge 851 is provided with a water passing hole 852. The filter cartridge 851 is used to filter the particulate dirt in the washing medium, preventing the particulate dirt from entering the liquid supply assembly 80 or the drain pipe 300 of the shoe washing device under the action of the washing medium, thereby ensuring the normal operation of the shoe washing device.
[0169] A clamping groove and a clamping edge in a matching clamping manner can be arranged between the filter cartridge 851 and the drain port 112, and the detachable connection between the filter cartridge 851 and the drain port 112 is realized by using the clamping groove and the clamping edge. Further, a sealing member can be arranged inside the clamping edge or the clamping groove, so that the filter cartridge 851 is sealingly connected to the drain port 112, and it is ensured that the washing medium discharged from the drain port 112 is filtered.
[0170] In this embodiment, the filter cartridge 851 is detachably connected inside the liquid collecting body 81, which can simplify the installation process of the filter cartridge 851, facilitate the user to regularly clean the filter component 85 according to the use time of the shoe washing device, ensure the internal hygiene of the shoe washing device, and improve the washing effect.
[0171] As shown in Figure 14As shown, part of the filter cartridge 851 extends out of the liquid outlet 112 and extends into the inside of the washing cavity 13, facilitating the removal of the filter cartridge 851 for cleaning the inside of the filter cartridge 851. A flow guide groove 853 is formed around the part of the filter cartridge 851 extending into the inside of the washing cavity 13, so that the washing medium flows into the filter cartridge 851 through the flow guide groove 853 for filtration. The flow of the washing medium into the inside of the filter cartridge 851 at the same time can be alleviated, so that the larger particles of dirt can enter the filter cartridge 851 after multiple flushing, avoiding the clogging of the filter cartridge 851, and effectively improving the filtering efficiency.
[0172] As shown in Figure 15 , it can be understood that the liquid supply assembly 80 further comprises a heating component 86 arranged in the inside of the liquid collecting body 81 for heating the washing medium in the liquid collecting body 81, so that the shoe washing device uses warm water for washing, and the washing agent can be dissolved faster, the dirt can be dissolved in water faster, the decontamination effect can be effectively improved, and a better cleaning effect can be achieved.
[0173] The heating component 86 can be an electric heating pipe arranged in the inside of the liquid collecting body 81. When the shoe washing device is working, the electric heating pipe is powered on to heat the washing medium entering the liquid collecting body 81, so that the washing medium in the liquid collecting body 81 is heated and then enters the shoe support channel 62 or the spraying assembly through the liquid supply pipe assembly 84 to clean the shoes.
[0174] The heating component 86 can be an electric heating pipe arranged in the inside of the liquid collecting body 81. When the shoe washing device is working, the electric heating pipe is powered on to heat the washing medium entering the liquid collecting body 81, so that the washing medium in the liquid collecting body 81 is heated and then enters the shoe support channel 62 or the spraying assembly through the liquid supply pipe assembly 84 to clean the shoes.
[0175] Referring to Figure 2 , Figure 4 and Figure 5 , it can be understood that when the shoe support assembly 60 comprises at least two shoe support components 61, the second branch liquid supply pipe 8422-2 can be connected to the shoe support channel 62 in each shoe support component 61 through the adjusting assembly 100, so as to evenly distribute the washing medium to each shoe support channel 62.
[0176] As shown in Figure 5 , the adjusting assembly 100 comprises an adjusting cabin 101 and a flow guide 102. The adjusting cabin 101 is arranged on one of the machine body 10 and the door assembly 20 corresponding to the position of the shoe support channel 62. The flow guide 102 is arranged in the inside of the adjusting cabin 101 and is adapted to distribute the washing medium to each shoe support channel 62.
[0177] As shown in Figure 4 , it can be understood that the second water pump 301 is arranged on the drain pipe 300, the first end of the drain pipe 300 is connected to the second water pump 301, and the second end of the drain pipe 300 is connected to the liquid outlet 112, which is equivalent to that the washing medium discharged from the liquid outlet 112 directly enters the drain pipe 300.
[0178] Alternatively, the second end of the drain pipe 300 is connected to the liquid collecting body 81, which is equivalent to that the washing medium discharged from the liquid outlet 112 is first collected by the liquid collecting body 81 and then enters the drain pipe 300 from the liquid collecting body 81. Since the filter part 85 is arranged in the liquid collecting body 81, the washing dirt can be prevented from blocking the drain pipe 300.
[0179] It should be noted that when the liquid supply assembly 80 is in a working state, the second water pump 301 is in a non-working state, which is equivalent to that the shoe washing device is in a circulating state to wash the shoes. When the liquid supply assembly 80 is in a non-working state, the second water pump 301 is in a working state to discharge the washing medium in the washing cavity 13.
[0180] Referring to Figure 4 , Figure 6 and Figure 10 , it can be understood that the shoe washing device further comprises a drying assembly 90, the drying assembly 90 comprises an air inlet pipeline 91 and a drying part 92, the drying part 92 is arranged on the air inlet pipeline 91, and the air inlet pipeline 91 is in communication with the shoe support channel 62. The drying part 92 heats the air, and the heated air flows into the shoe support channel 62 through the air inlet pipeline 91, enters the inside of the shoes from the shoe support channel 62, and blows from the inside of the shoes to the outside of the shoes, so that the drying effect of the shoes is better.
[0181] As shown in Figure 10 , it can be understood that the air inlet pipeline 91 is arranged along at least two adjacent surfaces of the machine body 10, and the air inlet pipeline 91 is attached to the surfaces of the machine body 10 to improve the internal temperature of the machine body 10, i.e., the internal temperature of the washing cavity 13. That is, the heat lost by the air inlet pipeline 91 is used to improve the internal temperature of the washing cavity 13. Therefore, arranging the air inlet pipeline 91 along at least two surfaces of the machine body 10 can increase heat transfer and prevent heat loss.
[0182] As shown in Figure 4 and Figure 10 , it can be understood that the air inlet area of the air inlet pipeline 91 is greater than the air outlet area of the air inlet pipeline 91, which is equivalent to reducing the flow area of the drying air flow and increasing the flow rate of the drying air flow, so that the drying air flow flows quickly from the inside to the outside to impact the shoes, thereby improving the drying efficiency of the shoes.
[0183] As shown in Figure 4 ,Figure 6 and Figure 10 As shown in Figs. 49 and 50, it can be understood that the air inlet pipeline 91 comprises a first air inlet pipeline 911, a second air inlet pipeline 912 and a third air inlet pipeline 913 which are sequentially communicated. The third air inlet pipeline 913 is distributed in a "U" shape on the door assembly 20, which can prevent the condensed gas from entering the air inlet pipeline 91. The first air inlet pipeline 911, the second air inlet pipeline 912 and the third air inlet pipeline 913 are also distributed in a "U" shape on the three surfaces adjacent to the body 10, which can prolong the flow path of the air inlet pipeline 91 and further prevent the condensed gas from entering the air inlet pipeline 91.
[0184] Specifically, the first air inlet pipeline 911 is arranged in an "L" shape on the rear wall and the bottom wall adjacent to the rear wall of the body 10, and the third air inlet pipeline 913 is arranged on the door assembly 20 opposite to the rear wall of the body 10. The second air inlet pipeline 912 is connected between the first air inlet pipeline 911 and the third air inlet pipeline 913. The second air inlet pipeline 912 can be a corrugated pipe made of high-temperature-resistant material, so that the second air inlet pipeline 912 can stretch and contract in length with the rotation of the door assembly 20 to adapt to the opening or closing of the door assembly 20.
[0185] As shown in Figs. 49 and 50, Figure 6 and Figure 10 The drying component 92 can be arranged on the rear wall of the body 10 at the air inlet side of the first air inlet pipeline 911, for heating the air entering the first air inlet pipeline 911.
[0186] As shown in Figs. 49 and 50, Figure 6 and Figure 10 The drying component 92 comprises a fan 921 and a heating chamber 922. The air inlet side of the heating chamber 922 is communicated with the fan 921, and the air outlet side of the heating chamber 922 is communicated with the air inlet pipeline 91. The fan 921 inhales the air into the heating chamber 922, which is heated and then enters the shoe support channel 62 along the air inlet pipeline 91.
[0187] The air outlet area of the air outlet side of the heating chamber 922 is smaller than the air inlet area of the air inlet side of the heating chamber 922, that is, the flow area of the heating chamber 922 gradually decreases from the air inlet side to the air outlet side, so as to increase the flow rate of the drying airflow. On the basis of the speed-up of the air inlet pipeline 91, the two-stage speed-up is realized, and the drying efficiency is further improved.
[0188] The heating chamber 922 can comprise a mounting seat arranged on the inner side wall of the first air inlet pipeline 911 and an electric heater arranged on the mounting seat for heating the gas passing through the heating chamber 922. The electric heater can be a metal heating element or a non-metal heating element.
[0189] When the electric heater uses a metal heating element to heat, the metal heating element can be an electric heating tube, an electric heating wire, an electric heating plate, an electric heating cable, an electric heating disc, an electric heating rod made of nichrome wire, iron-chromium-aluminum wire, nickel-iron wire, nickel-copper wire, etc. By connecting the power supply to the metal heating element, high temperature is generated to achieve the purpose of heating.
[0190] The electric heater can be a PTC heater, which uses a PTC ceramic heating element and an aluminum pipe.
[0191] When the electric heater uses a non-metallic heating element to heat, the non-metallic heating element can be a mica heating sheet, a ceramic heating sheet, a tungsten-molybdenum rod, a silicon-carbon rod, a molybdenum powder rod, etc. The non-metallic heating element is easy to install.
[0192] The installation seat is arranged in a form determined according to the structure of the selected electric heater. When the selected electric heater is an electric heating tube, the installation seat can be arranged in a frame structure, and the electric heating tube can be wrapped around the installation seat. When the selected electric heater is a mica heating sheet, the installation seat can be arranged in a grid structure, and the mica heating sheets are arranged on the installation seat at intervals, and there is a flow channel for gas flow between adjacent two mica heating sheets.
[0193] The fan 921 can be a turbine fan, which can send hot air heated by the heating chamber 922 into the shoe drying device to dry the shoes. The gas flow direction of the turbine fan is perpendicular to the shaft, which can output more air volume in a smaller space, improve the air intake effect, and save the drying time.
[0194] As shown in Figure 2 and Figure 6 When the shoe support assembly 60 includes at least two shoe support parts 61, the air inlet pipeline 91 can be connected to each shoe support channel 62 in each shoe support part 61 through the adjusting assembly 100 to evenly distribute the heated drying air to each shoe support channel 62.
[0195] The adjusting assembly 100 includes an adjusting cabin 101 and a flow guide 102. The adjusting cabin 101 is arranged on the machine body 10 corresponding to the position of the shoe support channel 62. The flow guide 102 is arranged inside the adjusting cabin 101 and is adapted to distribute the drying air in the drying assembly 90 to each shoe support channel 62.
[0196] An air outlet (not shown in the figure) can also be arranged on the top of the machine body 10, i.e. an air outlet is arranged on the top wall of the washing cavity 13 and communicates with the air outlet, which is used to exhaust the hot and humid air in the washing cavity 13. When the shoes are hung on the shoe support assembly 60 for drying, the drying air flows from the shoe support channel 62 into the inside of the shoes, and the shoes are dried from the inside to the outside. The hot and humid air generated by drying overflows into the washing cavity 13 and is exhausted from the air outlet, so that the shoes can be dried faster.
[0197] The air exhaust fan can be installed at the air exhaust opening to quickly exhaust the hot and humid air in the washing cavity 13 to the outside of the washing cavity 13. The air exhaust fan continuously exhausts the hot and humid air in the washing cavity 13 while the air fan 921 continuously sucks fresh air, so that the air in the washing cavity 13 and the air outside are in convection, thereby improving the drying efficiency.
[0198] The first air humidity detection element for detecting the air humidity in the air inlet pipeline 91 can be arranged inside the air inlet pipeline 91. The second air humidity detection element for detecting the air humidity in the washing cavity 13 is arranged inside the washing cavity 13. The drying effect of the shoes can be determined by detecting the air humidity in the washing cavity 13.
[0199] The shoe washing device provided by the embodiment has the functions of shoe washing and drying, that is, the shoe washing and drying integrated shoe washing device is provided, so that the shoes after washing can be quickly dried.
[0200] The shoe washing device can be used for some shoes that cannot be washed with water to effectively remove the odor and dust on the shoes, and achieve the purpose of air washing.
[0201] The degerming assembly can be any one of a plasma generator, an ultraviolet sterilizer, an infrared sterilization lamp, an ozone generator, etc.
[0202] When the degerming assembly is the plasma generator, the plasma generator is installed on the first air inlet pipeline 911 and located at a downstream position of the drying component 92 in the air inlet direction, so that the plasma generated by the plasma generator can be blown into the inside of the shoes through the drying airflow to sterilize, remove dust, and eliminate odor from the inside to the outside of the shoes.
[0203] The plasma generator and the drying component 92 can work cooperatively or independently. For example, only the plasma generator is powered on to sterilize, remove dust, and eliminate odor in the shoe washing device, or only the drying component 92 is used for drying operation.
[0204] When only the plasma generator is selected to work, the air with sterilization and odor removal ions enters the shoe support channel 62 and the washing cavity 13 along the air inlet pipeline 91 to perform air washing and protection on the shoes to be washed.
[0205] The air pump can be arranged between the plasma generator and the shoe stretcher passage 62. The air with sterilization and odor removal ions has a certain pressure and enters the shoe stretcher passage 62 and the washing cavity 13 along the air inlet pipeline 91 through the air pump, so that the inside and outside of the shoes are subjected to all-round air washing and protection, water is prevented from entering the shoes, and the service life of the shoes is prolonged, for example, for leather shoes.
[0206] Referring to Figure 4 and Figure 5 It can be understood that the drying airflow and the washing medium in the shoe washing equipment provided by the embodiments of the present application can share the shoe stretcher passage 62, that is, the liquid supply assembly 80 and the drying assembly 90 are connected with the shoe stretcher passage 62 through the adjusting assembly 100.
[0207] The adjusting assembly 100 includes an adjusting cabin 101, a first check valve 103 and a second check valve 104. The adjusting cabin 101 is provided with a first input port 1011, a second input port and an output port (not shown in the figure). The first input port 1011 is connected with the drying assembly 90, the second input port is connected with the liquid supply assembly 80, and the output port is connected with the shoe stretcher passage 62. The first check valve 103 is arranged on any one of the adjusting cabin 101 and the drying assembly 90. The second check valve 104 is arranged on any one of the adjusting cabin 101 and the liquid supply assembly 80.
[0208] It can be understood that the shoe stretcher passage 62 is connected with the drying assembly 90 and the liquid supply assembly 80 through the adjusting assembly 100. Therefore, the washing medium flowing in the liquid supply assembly 80 and the drying airflow flowing in the drying assembly 90 share the shoe stretcher passage 62, so as to simplify the system setting and reduce the maintenance cost.
[0209] When the shoe stretcher passage 62 is connected with the liquid supply pipe assembly 84, the shoe stretcher passage 62 is used as a washing passage. When the shoe stretcher passage 62 is connected with the drying assembly 90, the shoe stretcher passage 62 is used as a drying passage.
[0210] As shown in Figure 4 and Figure 5 The adjusting cabin 101 is arranged on the door assembly 20 corresponding to the mounting position of the shoe stretcher passage 62. The first check valve 103 is arranged on the air inlet pipeline 91 close to the adjusting cabin 101. The second check valve 104 is arranged on the second branch liquid supply pipe 8422-2 close to the adjusting cabin 101. The first check valve 103 and the second check valve 104 can be electromagnetic check valves or pressure mechanical check valves.
[0211] When the liquid supply assembly 80 is communicated with the shoe last channel 62 through the adjusting assembly 100, at this time, the drying assembly 90 is in a non-working state, i.e. no medium flows in the air inlet pipeline 91, the first check valve 103 is controlled to be closed, so that the flow direction of the washing medium in the second branch liquid supply pipe 8422-2 connected with the shoe last channel 62 can only flow from the first water pump 82 to the shoe last channel 62, and the washing medium in the second branch liquid supply pipe 8422-2 cannot flow back.
[0212] When the drying assembly 90 is communicated with the shoe last channel 62 through the adjusting assembly 100, the liquid supply assembly 80 is in a non-working state, i.e. no medium flows in the second branch liquid supply pipe 8422-2, the second check valve 104 is controlled to be closed, the passage of the drying gas flow in the third air inlet pipeline 913 from the shoe last channel 62 to the drying assembly 92 is blocked, and the flow direction of the drying gas flow in the third air inlet pipeline 913 can only flow from the fan 921 to the shoe last channel 62, and the gas medium in the third air inlet pipeline 913 cannot flow back, so as to prevent the hot steam from flowing back into the drying assembly 92.
[0213] As shown in Figure 5 It can be understood that the first input port 1011 and the second input port are oppositely arranged, and the setting height of the first input port 1011 is higher than that of the second input port, so as to prevent the washing medium from entering the drying assembly 90 from the first input port 1011 to damage the internal components.
[0214] As shown in Figure 4 and Figure 5 It can be understood that the adjusting assembly 100 further comprises a flow guide 102, which is arranged in the interior of the adjusting cabin 101 and located between the first input port 1011 and the second input port, and is used for evenly distributing the medium in the second branch liquid supply pipe 8422-2 or the third air inlet pipeline 913 into at least two shoe last channels 62.
[0215] When the liquid supply assembly 80 is in a working state, the flow guide 102 is adapted to distribute the washing medium in the second branch liquid supply pipe 8422-2 to each group of shoe last channels 62; when the drying assembly 90 is in a working state, the flow guide 102 is adapted to distribute the gas medium in the air inlet pipeline 91 to each group of shoe last channels 62.
[0216] As shown in Figure 5As shown, it can be understood that the cross-sectional shape of the flow guide 102 can be rhombic, which has four edges arranged symmetrically, and one set of oppositely arranged edges is used for splitting the medium, which can be recorded as a first splitting part 1021 and a second splitting part 1022. The first splitting part 1021 is adapted to split the first input port 1011, so that the medium entering the adjustment cabin 101 through the first input port 1011 is evenly distributed to both sides of the first splitting part 1021. The second splitting part 1022 is adapted to split the second input port, so that the medium entering the adjustment cabin 101 through the second input port is evenly distributed to both sides of the second input port.
[0217] Another set of oppositely arranged edges is used for flow guide, which can be recorded as a first flow guide part 1023 and a second flow guide part 1024. The connecting line between the first flow guide part 1023 and the second flow guide part 1024 is perpendicular to the connecting line between the first splitting part 1021 and the second splitting part 1022. The length of the connecting line between the first flow guide part 1023 and the second flow guide part 1024 is greater than the diameter of the first input port 1011 and the second input port respectively, so that the medium split from the first input port 1011 or the second input port can be guided to the position close to the shoe support channel 62, facilitating the medium in the adjustment cabin 101 to enter the shoe support channel 62.
[0218] As shown, Figure 5 it can be understood that the transition surface between the two adjacent edges of the flow guide 102 is an arc surface, which is concave towards the center of the flow guide 102. The arc surface can increase the flow area of the flow guide 102, so that the medium in the second branch liquid supply pipe 8422-2 or the air inlet pipe 91 can more smoothly enter the shoe support channel 62.
[0219] The shoe washing equipment provided by the embodiment of the present application can reduce the structural volume of the shoe washing equipment by simplifying the connecting pipeline of the liquid supply assembly 80 and the drying assembly 90, and facilitates the later maintenance and replacement of the liquid supply assembly 80 or the drying assembly 90.
[0220] Referring to Figure 1 , Figure 2 , Figure 7 , Figure 8 , Figure 11 , Figure 12 , Figure 15 and Figure 16 It can be understood that the shoe washing equipment provided by the embodiment of the present application further comprises a dispensing assembly 70, which is arranged on the water inlet path of the water inlet pipe 200 and is adapted to dispense detergent into the washing cavity 13 under the action of water flow.
[0221] As shown, Figure 7 and Figure 13As shown, the dropping assembly 70 comprises a dropping body 71 and a flow guide 72, the dropping body 71 is internally configured with a dropping cavity 711, the dropping body 71 is provided with a dropping opening 712 and a water inlet 713 which are in communication with the dropping cavity 711. The flow guide 72 is arranged in the dropping cavity 711 and located between the dropping opening 712 and the water inlet 713, at least part of the flow guide 72 is located in the water flow path of the water inlet 713.
[0222] It can be understood that the flow guide 72 can change the flow state of the water flow entering the dropping cavity 711 from a tubular structure to a sheet structure, which is equivalent to increasing the flow area of the water flow, so that the water flow can completely cover the cavity wall of the dropping cavity 711, so that the detergent and care agent put into the dropping cavity can be completely dissolved and then washed into the washing cavity 13 to wash the shoes, so as to achieve good washing effect.
[0223] As shown in Figure 13 , the flow guide 72 and the cavity wall of the dropping cavity 711 form a flow guide channel, which can be linear or strip-shaped, which increases the flow area of the washing medium, so that the detergent and care agent put into the dropping cavity can be completely washed into the washing cavity 13.
[0224] As shown in Figure 13 and Figure 16 , the flow guide 72 can be a plate structure, the flow guide 72 has oppositely arranged first and second end portions 721 and 722, the first end portion 721 is arranged close to the water inlet 713, and the second end portion 722 extends obliquely away from the water inlet 713 in the water inlet direction, and the second end portion 722 is a free end.
[0225] That is, the flow guide 72 is obliquely arranged between the water inlet 713 and the dropping opening 712, and after the water flow enters the dropping cavity 711 from the water inlet 713, it is blocked by the flow guide 72 and can only pass through the narrow gap between the flow guide 72 and the cavity wall of the dropping cavity 711. By arranging the flow guide 72, not only the flow area of the water flow can be increased to wash the detergent put into the dropping cavity 711 from the dropping opening 712, but also the flow rate of the water flow can be increased, so that the impact force of the water flow is stronger, and the detergent is completely brought into the washing cavity to wash the shoes, so as to improve the washing effect.
[0226] In addition, the flow guide 72 can be a plate structure, a water passing groove (not shown in the figure) is formed in the middle part of the flow guide 72, and when the flow guide 72 is arranged in the dropping cavity 711, a flow guide channel can be formed between the flow guide 72 and the cavity wall of the dropping cavity 711. Specifically, the flow guide 72 has oppositely arranged first and second end portions 721 and 722, the first end portion 721 is arranged close to the water inlet 713, and the second end portion 722 extends obliquely away from the water inlet 713 in the water inlet direction
[0227] An extension 723 is configured at the second end 722 of the flow guide 72, one end of the extension 723 is connected with the second end 722, and the other end of the extension 723 extends away from the flow guide channel and is connected with the inner wall of the dispensing cavity 711.
[0228] As shown in Figure 16 , in order to improve the support strength of the flow guide 72, at least one first reinforcing rib 724 is configured on the side of the flow guide 72 away from the water inlet 713, the thickness of the first reinforcing rib 724 gradually increases from the first end 721 to the second end 722 of the flow guide 72, so that the support strength of the first reinforcing rib 724 is higher, and the uniformity of the product appearance is ensured.
[0229] As shown in Figure 1 , Figure 2 , Figure 7 , Figure 8 , Figure 11 , Figure 12 , Figure 15 and Figure 16 , the dispensing assembly 70 further comprises a dispensing cover 73, the dispensing cover 73 is arranged at the dispensing opening 712 through an elastic sealing piece 74, and the dispensing cover 73 is adapted to open or close the dispensing opening 712.
[0230] Among them, the dispensing cover 73 can be rotatably connected to the surface of the dispensing body 71 through a rotating shaft or a hinge, and after each dispensing of the detergent is completed, the dispensing cover 73 is rotated to close the dispensing opening 712.
[0231] The elastic sealing piece 74 has a first contact surface 741 and a second contact surface 742; the dispensing cover 73 is provided with a receiving groove corresponding in structure to the first contact surface 741, the elastic sealing piece 74 is embedded in the receiving groove, and the dispensing opening 712 is provided with an abutting edge corresponding in structure to the second contact surface 742, and the second contact surface 742 is adapted to abut against the abutting edge. The sealing property between the dispensing cover 73 and the dispensing opening 712 can be improved by the elastic sealing piece 74, so as to prevent the washing medium in the dispensing cavity 711 from overflowing.
[0232] As shown in Figure 13 , a deformation groove 743 is configured between the first contact surface 741 and the second contact surface 742, when the second contact surface 742 abuts against the abutting edge, the groove width of the deformation groove 743 can be contracted, so that the sealing property between the elastic sealing piece 74 and the dispensing opening 712 is better, and at the same time, the deformation of the elastic sealing piece 74 can be effectively buffered, so as to prevent the elastic sealing piece 74 from being prematurely damaged.
[0233] As shown in Figure 7 , when the dispensing cover 73 is in a first state of opening the dispensing opening 712, the dispensing opening 712 is exposed. Figure 1 and Figure 2As shown, when the dispensing cover 73 is in the second state of closing the dispensing opening 712, the top surface of the dispensing cover 73 is flush with the top surface of the machine body 10, that is, both are located in the same plane, and the dispensing cover 73 and the machine body 10 form a height-consistent plane or curved surface. The dispensing assembly 70 is arranged in this way to not only realize the dispensing function, but also ensure that the overall structure of the shoe washing device is more beautiful and gives the user a better visual effect.
[0234] In order to control the dosage of the detergent, a scale line can also be arranged on the cavity inner wall of the dispensing cavity 711 to accurately control the dosage of the detergent dispensed into the dispensing cavity.
[0235] As shown in Figure 16 In order to facilitate opening of the dispensing cover 73, a cover handle 731 is arranged on the dispensing cover 73.
[0236] As shown in Figure 13 The dispensing body 71 includes a top wall 714 and a plurality of side walls 715, the plurality of side walls 715 are sequentially connected in a head-to-tail manner, and the top wall 714 is connected with at least one side wall 715; the dispensing opening 712 is arranged on the top wall 714, and the water inlet 713 is arranged on any one of the side walls 715.
[0237] It can be understood that the dispensing body 71 is not provided with a bottom wall, and when the dispensing body 71 is arranged on the top wall of the machine body 10, the top wall of the machine body 10 is used as the bottom wall of the dispensing body 71, which can reduce the installation height of the dispensing body 71, thereby reducing the structural volume.
[0238] As shown in Figures 1 to 12 It can be understood that the dispensing body 71 is arranged on the top wall of the machine body 10, and one side wall 715 of the dispensing body 71 opposite to the water inlet 713 is arranged at the liquid inlet 111. The water inlet 713 is connected with the water inlet pipe 200, and when the water inlet pipe 200 supplies water to the washing cavity 13, the detergent is also brought into the washing cavity 13, and it is not necessary to separately dispense the detergent into the washing cavity 13, which is more convenient to use.
[0239] As shown in Figure 13 and Figure 16 It can be understood that one side wall 715 opposite to the water inlet 713 has an extension portion arranged at the liquid inlet 111, and in order to alleviate the impact of the washing medium, the side wall 715 opposite to the water inlet 713 of the dispensing body 71 is arranged in an arc-shaped structure, and at least one side of the side wall 715 facing or facing away from the water inlet 713 is provided with a second reinforcing rib 717 to enhance the supporting strength and avoid damage of the side wall 715 caused by the impact of the washing medium.
[0240] It can be understood that the shoe washing device can not be provided with the dispensing assembly 70, and the water inlet pipe 200 can be directly connected to the liquid inlet 111 to manually dispense the detergent into the washing cavity 13. In order to improve the convenience of the shoe washing device, when the dispensing assembly 70 is provided on the water inlet path of the water inlet pipe 200, the water inlet pipe 200 communicates with the liquid inlet 111 through the dispensing assembly 70, and the detergent in the dispensing assembly 70 is flushed into the washing cavity 13 by the washing medium, so that the dispensing assembly 70 automatically dispenses the detergent into the washing cavity 13, and the detergent can be repeatedly added after being used up.
[0241] The detergent is poured into the dispensing assembly 70, and under the scouring action of the water flow, the detergent is flushed into the inside of the washing cavity 13, and the water flow containing the detergent is delivered to the spraying mechanism 40 and the shoe support channel 62 through the first water pump 82 provided at the bottom of the shoe washing device. The jet sprayed by the spraying mechanism 40 washes the surface of the shoes, and the jet sprayed by the shoe support channel 62 washes the inside of the shoes, so that effective cleaning of the inside and outside of the shoes is realized, and the washing effect is better.
[0242] As shown in Figure 15 and Figure 16 It can be understood that the water inlet valve 201 is further provided on the water inlet pipe 200, and the water inlet valve 201 is used to control the water inlet of the water inlet pipe 200. The water inlet valve 201 has a valve port, a filter screen is arranged in the valve port of the water inlet valve 201, and a screw thread is arranged outside the valve port of the water inlet valve 201. The screw thread is used for threaded connection with the water supply pipe of the external water source.
[0243] Referring to Figures 1 to 14 It can be understood that the machine body 10 includes an inner container 11 and an outer shell 12, and the outer shell 12 is detachably connected to the outside of the inner container 11. The inner container 11 and the outer shell 12 can be detachably connected through clamping, insertion, or fasteners such as screws.
[0244] For example, a clamping groove (not shown in the figure) is arranged on the inner container 11, and a clamping block (not shown in the figure) that cooperates with the clamping groove is arranged on the side of the outer shell 12 facing the inner container 11. When the outer shell 12 is sleeved on the outside of the inner container 11, the outer shell 12 and the inner container 11 can be detachably connected through the cooperation of the clamping block and the clamping groove, so as to facilitate the maintenance and replacement of the components between the outer shell 12 and the inner container 11. The clamping groove can also be arranged on the outer shell 12, and the clamping block can also be arranged on the inner container 11.
[0245] The first accommodating space is formed between the inner container 11 and the outer shell 12, and the at least partial spraying mechanism 40, the driving assembly 53, the throwing assembly 70, the liquid supply assembly 80 for supplying the washing medium to the at least partial spraying mechanism 40, the at least partial drying assembly 90, the adjusting assembly 100, the water inlet pipe 200 and the water inlet valve 201, the water outlet pipe 300 and the second water pump 301 are arranged in the first accommodating space. The outer shell 12 serves as an appearance surface to hide the components in the first accommodating space, so that the appearance of the shoe washing device is more neat and beautiful. After the outer shell 12 is detached from the inner container 11, the components can be maintained and replaced, the space is reasonably utilized, and the shoe washing device is convenient to maintain and replace.
[0246] As shown in Figure 6 and Figure 7 , the avoiding groove 122 is arranged on the outer shell 12, which is equivalent to that the outer surface of the outer shell 12 is inwardly recessed. The avoiding groove 122 is located corresponding to the position of the water inlet valve 201, and a through hole is arranged on the groove bottom of the avoiding groove 122, and the valve port of the water inlet valve 201 is arranged in the through hole and extends into the avoiding groove 122. The connecting pipe of the water source can be detachably connected with the water inlet valve 201 in the avoiding groove 122.
[0247] By arranging the avoiding groove 122 on the outer shell 12, the water inlet valve 201 is located in the avoiding groove 122 and does not extend out of the shell surface of the outer shell 12. After the water inlet valve 201 is connected with the external water source through the avoiding groove 122, the gap between the machine body 10 and the wall forming the installation space can be reduced, so that the accommodating space of the shoe washing device is effectively saved, and the user experience is improved.
[0248] As shown in Figure 2 , the liquid outlet 112 is arranged at the bottom of the inner container 11, and the waste water after the shoe washing device is washed is discharged from the liquid outlet 112. Therefore, the liquid outlet 112 is arranged at a position conducive to drainage. The liquid outlet 112 can be located at the central position of the bottom of the inner container 11, or can be arranged at the position close to the edge of the bottom of the inner container 11. The position of the liquid outlet 112 should be lower than other positions of the bottom of the inner container 11.
[0249] As shown in Figures 6 to 8 , the handle grooves 123 are inwardly recessed on both sides of the outer shell 12, which facilitates the carrying of the shoe washing device and enables the shoe washing device to be moved to any position through the handle grooves 123.
[0250] As shown in Figure 7 , the opening groove 121 is arranged on the outer shell 12 corresponding to the position of the liquid inlet 111. After the throwing assembly 70 is installed on the outer shell of the inner container 11, the throwing cover 73 of the throwing assembly 70 can be exposed from the opening groove 121, so that the user can open the throwing cover 73 to throw and repeatedly add the detergent.
[0251] As Figures 6 to 8 shown, a supporting leg 114 is arranged at the bottom of the inner container 11 for supporting the shoe washing device, a first end of the supporting leg 114 is fixedly connected with the inner container 11, and a second end of the supporting leg 114 is adapted to contact a placing platform (such as the ground, etc.), and after the shoe washing device is placed at a designated position through the supporting leg 114, there is a certain gap between the supporting leg 114 and the placing platform, which is convenient for drainage.
[0252] Referring to Figures 1 to 14 It can be understood that the door assembly 20 comprises a first door body 21 and a second door body 22, the second door body 22 is detachably connected to the outer side of the first door body 21, and the first door body 21 and the second door body 22 can be detachably connected through clamping, inserting, or fasteners such as screws.
[0253] A second accommodating space is constructed between the first door body 21 and the second door body 22, and the above-mentioned at least another part of the spraying mechanism 40, the liquid supply assembly 80 for conveying the washing medium for the at least another part of the spraying mechanism 40, the at least another part of the drying assembly 90, and the adjusting assembly 100 are all arranged in the second accommodating space, and the second door body 22 serves as an appearance surface to hide the components in the second accommodating space, so that the appearance of the shoe washing device is more neat and beautiful. After the second door body 22 is detached from the first door body 21, the above-mentioned components can be maintained and replaced, the space is reasonably utilized, and the maintenance and replacement of the shoe washing device are facilitated.
[0254] As Figure 4 shown, a clamping groove 211 is arranged on one side of the first door body 21, and a clamping block 221 matched with the clamping groove 211 is arranged on the side of the second door body 22 facing the first door body 21, when the second door body 22 is sleeved on the outside of the first door body 21, the first door body 21 and the second door body 22 can be detachably connected through the cooperation of the clamping block 221 and the clamping groove 211, so as to facilitate the maintenance and replacement of the components in the second accommodating space. The clamping groove 211 can also be arranged on the second door body 22, and the clamping block 221 can also be arranged on the first door body 21.
[0255] As Figure 4 shown, a positioning member is further arranged between the first door body 21 and the second door body 22, the positioning member comprises a positioning protrusion 222 arranged on the first door body 21 and a positioning groove 212 arranged on the second door body 22, the positioning protrusion 222 and the positioning groove 212 are matched with each other, when the first door body 21 and the second door body 22 need to be connected, the positioning protrusion 222 is inserted into the positioning groove 212, which can accurately match the first door body 21 and the second door body 22, so as to improve the assembly effect.
[0256] The positions of the positioning protrusions 222 and the positioning grooves 212 can be replaced with each other, for example, the positioning grooves 212 are arranged on the first door body 21, and the positioning protrusions 222 can be arranged on the second door body 22.
[0257] As shown in Figure 4 The first door body 21 is further provided with a plurality of reinforcing portions 223 along the frame of the first door body 21, the reinforcing portions 223 are used to improve the strength of the first door body 21, and the reinforcing portions 223 can be rib plates arranged on two adjacent surfaces of the first door body 21.
[0258] As shown in Figures 4 to 6 The first door body 21 and the second door body 22 are provided with an avoiding portion 23 near the connecting portion, the avoiding portion 23 can prevent interference between the door assembly 20 and the machine body 10 when the door assembly 20 is opened relative to the machine body 10. The avoiding portion 23 can extend to the side of the first door body 21 and the second door body 22 away from the machine body 10 to form a bending structure.
[0259] As shown in Figure 15 The first door body 21 is provided with a communication hole 213, the communication hole 213 penetrates the first door body 21, a first end of the communication hole 213 is connected to the adjusting assembly 100 on one side of the first door body 21, and a second end of the communication hole 213 is connected to the shoe stretcher channel 62 on the other side of the first door body 21.
[0260] As shown in Figure 10 The machine body 10 and the door assembly 20 are provided with an adsorption component, the adsorption component is used to adsorb the door assembly 20 to the machine body 10 to prevent the door assembly 20 from being opened accidentally.
[0261] Specifically, the adsorption component includes a first magnetic member 16 arranged on the inner container 11, and a second magnetic member 25 arranged on the first door body 21, when the door assembly 20 is in the second position of closing the washing cavity 13, the first magnetic member 16 and the second magnetic member 25 are in an adsorbed state.
[0262] In order to make the sealing performance of the washing cavity 13 better after the door assembly 20 is closed, a silica gel sealing strip is arranged at the matching position between the door assembly 20 and the machine body 10, which can improve the drying efficiency of the shoe washing equipment.
[0263] The shoe washing equipment provided by the embodiment of the present application has a compact structure and high space utilization rate, each area of the machine body 10 and the door assembly 20 is provided with a function, and the components are integrated to reduce the structural volume of the shoe washing equipment, which meets the design concept of lightness and thinness.
[0264] The shoe washing equipment provided by the embodiments of the present application opens the door assembly 20 in the working process, the shoe stretcher assembly 60 arranged on the door assembly 20 is exposed, the shoes are hung on the shoe stretcher assembly 60, the door assembly 20 is rotated to be closed, and then the shoes are hung vertically with the door assembly 20. At this time, the soles of the shoes are fully attached to the brush assembly 51, the brush assembly 51 is rotated and rubbed with the soles of the shoes to brush the dirt on the soles of the shoes, the high-speed water flow from the shoe stretcher assembly 60 into the inside of the shoes can smoothly flow out of the inside of the shoes after washing the inside of the shoes, so as to improve the washing effect and save the washing time. The soles of the shoes are generally made of wear-resistant materials, and the soles of the shoes can be appropriately interference-fitted with the brush assembly 51 to improve the washing effect.
[0265] Finally, it should be noted that: the above embodiments are only used to illustrate the present application, but not to limit the present application. Although the present application is described in detail with reference to the embodiments, those skilled in the art should understand that various combinations, modifications or equivalent replacements of the technical solutions of the present application do not deviate from the spirit and scope of the present application, and should be covered in the scope of claims of the present application.
Claims
1. A shoe washing device, characterized in that, include: The machine body has an internal structure with a washing chamber connected to a water inlet pipe; the machine body includes an inner tank and an outer shell that are interlocked, and the top wall of the inner tank is provided with a liquid inlet that communicates with the washing chamber; A dispensing component for a shoe washing device, the dispensing component being disposed on the water inlet path of the water inlet pipe and adapted to dispense detergent into the washing chamber under the action of water flow; the dispensing component includes: The dispensing body has an internal dispensing cavity, and the dispensing body has a dispensing port and a water inlet that are connected to the dispensing cavity; the dispensing body is disposed on the top wall of the inner liner, and the top wall of the inner liner serves as the bottom wall of the dispensing body; one side wall of the dispensing body opposite to the water inlet abuts against the liquid inlet. A flow guide is disposed within the dispensing chamber and located between the dispensing port and the inlet, with at least a portion of the flow guide located in the water flow path of the inlet; a flow guide channel is formed between the flow guide and the chamber wall of the dispensing chamber; the flow guide has a first end and a second end disposed opposite to each other, with the first end disposed close to the inlet; The second end extends at an angle away from the water inlet; or, the second end extends at an angle away from the water inlet, and the second end is a free end.
2. The shoe washing equipment according to claim 1, characterized in that, The second end has an extension, one end of which is connected to the second end, and the other end of which extends away from the flow channel and is connected to the cavity wall of the dispensing cavity.
3. The shoe washing equipment according to claim 1, characterized in that, The guide member has at least one first reinforcing rib on the side facing away from the water inlet.
4. The shoe washing equipment according to any one of claims 1 to 3, characterized in that, It also includes a dispensing cover, which is disposed at the dispensing port by an elastic sealing element, and the dispensing cover is adapted to open or close the dispensing port.
5. The shoe washing equipment according to claim 4, characterized in that, The elastic seal has a first contact surface and a second contact surface; The dispensing cover is provided with a receiving groove corresponding to the structure of the first contact surface, the elastic sealing element is embedded in the receiving groove, and the dispensing port is provided with an abutting edge corresponding to the structure of the second contact surface, the second contact surface being adapted to abut against the abutting edge.
6. The shoe washing equipment according to claim 5, characterized in that, A deformation groove is formed between the first contact surface and the second contact surface.
7. The shoe washing equipment according to any one of claims 1 to 3, characterized in that, The delivery body includes a top wall and multiple side walls, the multiple side walls being connected end to end in sequence, and the top wall being connected to at least one of the side walls; The discharge port is located on the top wall, and the water inlet is located on any one of the side walls.
8. The shoe washing equipment according to claim 1, characterized in that, The end face of the dispensing body that contacts the inner liner is provided with a sealing groove, and the inner liner is provided with a sealing flange that cooperates with the sealing groove.
9. The shoe washing equipment according to claim 8, characterized in that, The sealing groove and / or the sealing flange are provided with a sealing element.
Citation Information
Patent Citations
Shoes washing device
CN106073685A
Washing, sterilization and drying integrated shoe cleaning machine
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