Shoe washing machine with internal and external functions
By designing a shoe washing machine that considers both internal and external aspects, and using components such as planetary gear sets and telescopic motors, the problem of existing shoe washing machines being unable to clean the inside and outside of multiple pairs of shoes at the same time has been solved, achieving a highly efficient and space-saving cleaning effect.
Patent Information
- Application Number
- CN202410509888.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-26
- Publication Date
- 2025-10-28
AI Technical Summary
Existing shoe washing machines cannot efficiently clean the inside and outside of multiple pairs of shoes at the same time, and they take up a large area, making them unsuitable for home use.
A shoe washing machine that combines internal and external cleaning is designed, including a shoe washing machine shell, an inner tank and a main structure. It uses components such as a plastic shell, a plastic top cover and a control panel. The inner tank contains a reducer, a drive belt, a motor, a hanging bucket, and wall brushes. Internal and external cleaning is achieved through a planetary gear set and a telescopic motor, combined with a steel wire suspension and water pipe spraying system.
It enables efficient cleaning of the inside and outside of multiple pairs of shoes, takes up little space, is suitable for home use, and provides excellent cleaning results.
Smart Images

Figure CN120836992A_ABST
Abstract
Description
Technical Field
[0002] This invention relates to the field of shoe washing machines, specifically a shoe washing machine that combines internal and external cleaning functions. Background Technology
[0004] With economic development and the improvement of people's living standards, the pursuit of individuality and fashion has become a lifestyle for contemporary young people, and various styles of shoes have gradually come into view. As an essential item for daily life, shoes inevitably get dusty and dirty no matter how well they are protected. However, hand cleaning requires a lot of time and manpower and the cleaning effect is poor.
[0005] Currently, most shoe washing machines on the market cannot process multiple pairs of shoes at once and cannot clean both the inside and outside of the shoes, resulting in shoes that are shiny on the outside but not clean on the inside. Shoe washing machines that can clean both the inside and outside of the shoes cannot process multiple pairs of shoes at once. Shoe washing machines that can handle large batches and clean both the inside and outside of the shoes require a large area and are not suitable for home use.
[0006] To address the aforementioned issues, there is an urgent need for a shoe washing machine that can handle both internal and external applications, meeting the requirements of high-volume cleaning, high cleaning efficiency, and small footprint. Summary of the Invention
[0008] To solve the above-mentioned technical problems, the present invention provides the following technical solution: a shoe washing machine that combines internal and external features, characterized in that: a shoe washing machine outer shell, a shoe washing machine inner liner, and a shoe washing machine main body structure; the shoe washing machine outer shell includes a plastic outer shell, a plastic top cover, a control panel, a plastic flip-top plate, outer shell supports, an outer shell handle groove, a wire platform, a wire suspension hole, a water pipe connection groove, a flip-top plate handle groove, and a drainage observation hole; the bottom of the plastic outer shell has a drainage observation hole; the bottom of the plastic outer shell is designed with four rotationally symmetrical outer shell supports; the outer shell handle grooves are formed on two mutually distant outer surfaces of the plastic outer shell; the inside of the plastic outer shell is designed with four rotationally symmetrical wire platforms; each wire platform has a wire suspension hole; the inner surface of the plastic top cover has a water pipe connection groove; the plastic outer shell and the plastic top cover are connected by screws after insertion; the plastic top cover is fixedly connected to the control panel; the plastic flip-top plate has a flip-top plate handle groove; the plastic top cover and the plastic flip-top plate are rotatably connected.
[0009] Furthermore, the inner tank of the shoe washing machine includes a reducer, a transmission belt, a motor, a hanging bucket, a water pipe ring, a wall brush housing, a wall brush, a stainless steel bucket, a balance ring, a steel wire, a reducer spline, a drain outlet, a motor connecting platform, a reducer connecting platform, a steel wire hanging platform, a water pipe clamp, a water pipe inlet, a water pipe clamping platform, a water pipe spray nozzle, a wall brush housing drain outlet, a wall brush housing connecting platform, an inner shell slot, a wall brush slot hole, a wall brush groove, a stainless steel bucket slot, a balance ring insert plate, a wall brush insertion ear, and a balance ring insertion groove; the reducer and the motor are connected by a transmission belt; the reducer... The bucket is designed with a speed reducer spline; the bottom of the bucket is designed with a drain outlet, a motor connection platform, and a speed reducer connection platform, wherein the speed reducer connection platform is located at the center of the bucket, and the drain outlet and the motor connection platform are distributed on both sides of the speed reducer connection platform, away from each other; the speed reducer spline passes through the center hole of the speed reducer connection platform and is screwed to the speed reducer connection platform; the motor is screwed to the motor connection platform at the bottom of the bucket; four rotationally symmetrical steel wire suspension platforms are designed on the outer surface of the bucket near the bottom; each steel wire suspension platform is secured with one steel wire; the outer surface of the bucket away from the bottom... A section has three rotationally symmetrical water pipe clamps; the outer surface of the water pipe ring is designed with rotationally symmetrical water pipe inlets and two water pipe clamping platforms; the water pipe inlets and clamping platforms on the outer surface of the water pipe ring are clamped to the water pipe clamps of the bucket; a water pipe spray nozzle is provided on the inner surface of the water pipe ring; two rotationally symmetrical wall brush housing drain outlets are designed at the bottom of the wall brush housing; a wall brush housing connecting platform is provided at the center of the bottom of the wall brush housing; the wall brush housing is placed inside the bucket; an inner shell slot is provided on the section of the wall brush housing away from the bottom; the wall brush housing... The design features two rotationally symmetrical brush slots; each brush slot has a brush slot hole near its bottom; a stainless steel bucket slot is provided on the side surface of each brush slot; a balance ring insert plate is provided on the brush slot a short distance from the brush slot hole; a brush insertion ear is provided at the bottom of each brush; the brush insertion ear of each brush is inserted into the brush slot hole at the bottom of the brush slot; the stainless steel bucket is inserted into the stainless steel bucket slot of the brush housing; a balance ring insertion groove is provided on the balance ring, and the balance ring insertion groove on the balance ring is inserted into the balance ring insert plate on the brush housing.
[0010] Furthermore, the main body of the shoe washing machine includes a central column, gear 1, gear 2, gear 3, gear 4, brush shaft, brush, brush groove, locking block 1, locking block 2, inner shell, brush, telescopic motor, component column, square buckle, buckle connection, inner shell cover, brush pre-drilled hole, buckle platform, central column hole, brush groove connecting platform, telescopic motor protection platform, connecting rod, wire hole, inner shell buckle hole, component column limiting platform, buckle platform connecting hole, and connecting rod. The components include a connecting hole, a gear post, an inner shell cover insertion slot, an inner shell cover retaining block hole, a brush groove gear post, a brush shaft hole, a No. 2 retaining block retaining hole, a No. 1 retaining block buckle, a part post wheel hole, a part post wheel, a part post limiter, a part post wire hole, a center gear, and a brush shaft rotation hole. Symmetrical brush shaft rotation holes are provided at both ends of the brush groove. A brush groove gear post is designed on the brush groove. The brush groove gear post is rotatably connected to gear No. 3 and gear No. 2 successively, and connected via screws. The female connection is positioned; the brush has a brush shaft hole; after the brush is placed inside the brush groove, the brush shaft connects the brush to the brush groove through the brush shaft rotation hole and the brush reserved hole, wherein the brush shaft is rotatably connected to the brush shaft rotation hole and the brush shaft is fixedly installed; the end of the brush shaft near the gear column of the brush groove is rotatably connected to gear No. 4 and fixedly installed by a nut; gear No. 4 meshes with gear No. 2; the No. 1 locking block is designed with a No. 1 locking block buckle; the No. 2 locking block has a No. 2 locking block engagement hole; the top of the part column has a part column wire hole; the side of the part column is designed with part column wheels and has 6 rotationally symmetrical part column wheel holes; the bottom of the part column is designed with a part column limiter; the bottom of the inner shell cover has an inner shell cover insertion groove; the inner wall of the inner shell cover has rotationally symmetrical inner shell cover locking block holes; the inner wall of the inner shell cover is connected to the buckle connecting screw; the buckle connection is inserted with a square buckle.
[0011] Furthermore, the bottom of the inner shell is designed with a pre-drilled hole for the brush bundle, a central post hole, and a gear post; the gear post is rotatably installed with gear No. 1 and is positioned by a nut connection; gear No. 1 meshes with gear No. 3; a snap-fit platform is designed near the bottom of the inner shell, and a snap-fit platform connection hole is provided on the snap-fit platform; six rotationally symmetrical brush bundle groove connection platforms are provided on the side of the inner shell; the brush bundle groove connection platforms are fixedly installed with the brush bundle grooves by screws; the top of the inner shell is designed with six rotationally symmetrical telescopic motor protection platforms, connecting rods, wire holes, internal parts post limiting platforms, and three rotationally symmetrical shell snap-fit holes; the connecting rod is provided with a connecting rod connection hole; after the No. 2 snap block is rotatably connected to the snap-fit platform connection hole and the connecting rod connection hole, the No. 1 snap block is connected by a nut. The first and second locking blocks engage with each other via the locking hole designed for the second locking block; the telescopic motor protection platform is connected to the telescopic motor with screws; the telescopic motor is fixedly connected to the brush; the part column is placed on the part column limiting platform, wherein the part column wheel hole is aligned with the wire hole opened in the inner shell; the central column passes through the central column hole opened in the bottom of the inner shell and is fitted with the part column limiting platform of the part column; the bottom of the central column is fixedly installed with the central gear; the central gear meshes with the first gear; the top of the inner shell is inserted into the inner shell cover insertion slot opened in the inner shell cover, wherein the inner shell locking hole is aligned with the inner shell cover locking block hole; the bottom of the central column is inserted into the spline of the reducer and then rotatedly sleeved with the wall brush shell connecting platform of the wall brush shell; the bottom of the inner shell is inserted into the inner shell slot of the wall brush shell. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall assembly structure of a shoe washing machine that combines internal and external design according to the present invention;
[0014] Figure 2 This is a schematic diagram of the outer shell structure of a shoe washing machine according to the present invention, which combines internal and external features.
[0015] Figure 3 This is a schematic diagram of the connection structure between the outer shell and the wire of a shoe washing machine according to the present invention;
[0016] Figure 4 This is a schematic diagram of the inner structure of a shoe washing machine according to the present invention, which combines internal and external features.
[0017] Figure 5 This is a schematic diagram showing the structure and connection of the inner liner of a shoe washing machine according to the present invention.
[0018] Figure 6 This is a schematic diagram of the main structure of the shoe washing machine according to the present invention, which combines internal and external features;
[0019] Figure 7 This is a schematic diagram of the inner shell structure of the main body of the shoe washing machine according to the present invention, which combines internal and external features.
[0020] Figure 8 This is a schematic diagram of the connection structure between the inner shell, central column, and component columns of a shoe washing machine that combines internal and external features according to the present invention.
[0021] Figure 9 This is a schematic diagram of the square buckle, buckle connection, and connection structure between the inner shell cover and the inner shell of a shoe washing machine that combines internal and external features according to the present invention.
[0022] Figure 10 This is a schematic diagram of the connection structure of the brush shaft, brush, brush groove, No. 1 card block, and No. 2 card block of the present invention, which takes into account both internal and external aspects.
[0023] Figure 11 This is a schematic diagram of a component column structure that combines internal and external design according to the present invention.
[0024] In the diagram: 1-Shoe washing machine outer shell, 2-Shoe washing machine inner liner, 3-Shoe washing machine main body, 101-Plastic outer shell, 102-Plastic top cover, 103-Control panel, 104-Plastic flip-top, 105-Outer shell support, 106-Outer shell handle groove, 107-Wire rod platform, 108-Wire rod suspension hole, 109-Water pipe connection groove, 110-Flip-top handle groove, 111-Drainage observation hole, 201-Reducer, 202-Drive belt, 203-Motor, 204-Bug, 205-Water pipe ring, 206-Wall brush housing, 207-Wall brush, 208-No Stainless steel bucket, 209-Balance ring, 210-Steel wire, 211-Reducer spline, 212-Drain outlet, 213-Motor connecting platform, 214-Reducer connecting platform, 215-Steel wire suspension platform, 216-Water pipe clamp, 217-Water pipe inlet, 218-Water pipe clamping platform, 219-Water pipe spray nozzle, 220-Wall brush housing drain outlet, 221-Wall brush housing connecting platform, 222-Inner shell slot, 223-Wall brush slot hole, 224-Wall brush groove, 225-Stainless steel bucket slot, 226-Balance ring insert plate, 227-Wall brush insertion lug, 228-Balance ring... 301-Center Post, 302-Gear No. 1, 303-Gear No. 2, 304-Gear No. 3, 305-Gear No. 4, 306-Brush Shaft, 307-Brush Bundle, 308-Brush Bundle Groove, 309-Card No. 1, 310-Card No. 2, 311-Inner Shell, 312-Brush, 313-Telescopic Motor, 314-Part Post, 315-Square Buckle, 316-Snap-on Connection, 317-Inner Shell Cover, 318-Brush Bundle Reserved Hole, 319-Snap-on Platform, 320-Center Post Hole, 321-Brush Bundle Groove Connecting Platform, 322-Telescopic Motor Protector Protective platform, 323-connecting rod, 324-electrical wire hole, 325-inner shell snap-fit hole, 326-part column limiting platform, 327-snap platform connecting hole, 328-connecting rod connecting hole, 329-gear column, 330-inner shell cover insertion groove, 331-inner shell cover locking block hole, 332-brush groove gear column, 333-brush shaft hole, 334-No. 2 locking block snap-fit hole, 335-No. 1 locking block snap-fit, 336-part column wheel hole, 337-part column wheel, 338-part column limiting, 339-part column electrical wire hole, 340-center gear, 341-brush shaft rotation hole. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0027] This invention provides a technical solution: a shoe washing machine that combines internal and external features, characterized in that it includes a shoe washing machine outer shell 1, a shoe washing machine inner liner 2, and a shoe washing machine main body 3; the shoe washing machine outer shell 1 includes a plastic outer shell 101, a plastic top cover 102, a control panel 103, a plastic flip-top plate 104, an outer shell support 105, an outer shell handle groove 106, a wire platform 107, a wire suspension hole 108, a water pipe connection groove 109, a flip-top plate handle groove 110, and a drainage observation hole 111; the bottom of the plastic outer shell 101 has a drainage observation hole 111; the bottom of the plastic outer shell 101 is designed with four rotationally symmetrical outer shell supports 105. The plastic outer shell 101 has handle grooves 106 on two mutually distant outer surfaces; the plastic outer shell 101 has four rotationally symmetrical wire platforms 107 inside; each wire platform 107 has a wire suspension hole 108, which facilitates installation; the inner surface of the plastic top cover 102 has a water pipe connection groove 109; the plastic outer shell 101 and the plastic top cover 102 are connected by screws after being inserted; the plastic top cover 102 is fixedly connected to the control panel 103; the plastic flip cover 104 has a flip cover handle groove 110; the plastic top cover 102 and the plastic flip cover 104 are rotatably connected.
[0028] The inner tank 2 includes a reducer 201, a transmission belt 202, a motor 203, a bucket 204, a water pipe ring 205, a wall brush housing 206, a wall brush 207, a stainless steel bucket 208, a balance ring 209, a steel wire 210, a reducer spline 211, a drain outlet 212, a motor connecting platform 213, a reducer connecting platform 214, a steel wire hanging platform 215, a water pipe clamp 216, a water pipe inlet 217, a water pipe clamping platform 218, a water pipe spray nozzle 219, a wall brush housing drain outlet 220, a wall brush housing connecting platform 221, an inner shell slot 222, a wall brush slot hole 223, a wall brush groove 224, a stainless steel bucket slot 225, a balance ring insert plate 226, a wall brush insertion ear 227, and a balance ring insertion groove 228; the reducer The reducer 201 and motor 203 are connected by a transmission belt 202; the reducer 201 is designed with a reducer spline 211; the bottom of the bucket 204 is designed with a drain outlet 212, a motor connection platform 213, and a reducer connection platform 214, wherein the reducer connection platform 214 is located at the center of the bucket 204, and the drain outlet 212 and the motor connection platform 213 are distributed on both sides of the reducer connection platform 214, respectively; the reducer spline 211 of the reducer 201 passes through the center hole of the reducer connection platform 214 and is screwed to the reducer connection platform 214; the motor 203 is screwed to the motor connection platform 213 at the bottom of the bucket 204; four rotationally symmetrical steel wire suspensions are designed on the outer surface of the bucket 204 near the bottom. The steel wire suspension platform 215 is equipped with one steel wire 210 for each of its components, facilitating installation. The outer surface of the bucket 204, away from the bottom, has three rotationally symmetrical water pipe clamps 216, facilitating the positioning and installation of the water pipe ring 205. The outer surface of the water pipe ring 205 is designed with rotationally symmetrical water pipe inlets 217 and two water pipe clamping platforms 218, facilitating positioning and installation. The water pipe inlets 217 and clamping platforms 218 on the outer surface of the water pipe ring 205 engage with the water pipe clamps 216 of the bucket 204. The inner surface of the water pipe ring 205 has water pipe spray nozzles 219, ensuring even water spraying during operation. The bottom of the wall brush housing 206 has two... A rotating symmetrical drain outlet 220 is provided on the wall brush housing 206; a wall brush housing connecting platform 221 is provided at the center of the bottom of the wall brush housing 206; the wall brush housing 206 is placed inside the bucket 204; an inner shell slot 222 is provided on the section of the wall brush housing 206 away from the bottom, which facilitates the installation of subsequent parts; the wall brush housing 206 is designed with two rotating symmetrical wall brush grooves 224, which facilitates the installation of subsequent parts; a wall brush slot hole 223 is designed on the wall brush groove 224 near the bottom end; a stainless steel bucket slot 225 is provided on the side surface of the wall brush groove 224; a balance ring insert plate 226 is designed on the section of the wall brush groove 224 away from the wall brush slot hole 223; a wall brush insertion ear 227 is designed on the bottom of the wall brush 207.The wall brush 207 has a wall brush insertion ear 227 that is inserted into the wall brush slot hole 223 designed at the bottom end of the wall brush groove 224; the stainless steel bucket 208 is inserted into the stainless steel bucket slot 225 of the wall brush housing 206; the balance ring 209 has a balance ring insertion groove 228, which is inserted into the balance ring insertion plate 226 designed in the wall brush housing 206.
[0029] Includes a central column 301, gear 1 302, gear 2 303, gear 304, gear 4 305, brush shaft 306, brush bundle 307, brush bundle groove 308, locking block 1 309, locking block 2 310, inner shell 311, brush 312, telescopic motor 313, component column 314, square buckle 315, buckle connection 316, inner shell cover 317, brush bundle reserved hole 318, buckle platform 319, central column hole 320, brush bundle groove connecting platform 321, telescopic motor protection platform 322, connecting rod 323, wire hole 324, inner shell buckle hole 325, component column limiting platform 326, and buckle platform connecting hole 32. 7. Connecting rod connecting hole 328, gear post 329, inner shell cover insertion groove 330, inner shell cover locking block hole 331, brush groove gear post 332, brush shaft hole 333, No. 2 locking block locking hole 334, No. 1 locking block buckle 335, part post wheel hole 336, part post wheel 337, part post limit 338, part post wire hole 339, center gear 340, brush shaft rotation hole 341; both ends of the brush groove 308 are provided with left and right symmetrical brush shaft rotation holes 341; the brush groove 308 is designed with a brush groove gear post 332; the brush groove gear post 332 rotates successively with No. 3 gear 304 and No. 2 gear 303. The brush 307 is connected and positioned by a nut; the brush 307 has a brush shaft hole 333; after the brush 307 is placed inside the brush groove 308, the brush shaft 306 connects the brush 307 to the brush groove 308 through the brush shaft rotation hole 341 and the brush reserved hole 318, wherein the brush shaft 306 is rotatably connected to the brush shaft rotation hole 341, and the brush shaft 306 is fixedly installed to the brush shaft hole 333; the end of the brush shaft 306 near the gear post 332 of the brush groove is rotatably connected to the No. 4 gear 305, and is fixedly installed by a nut; the No. 4 gear 305 meshes with the No. 2 gear 303; the No. 1 locking block 309 is designed with a No. 1... The component includes a locking block 335; a locking block 310 with a locking hole 334; a component post 314 with an electrical wire hole 339 at its top; a component post wheel 337 with six rotationally symmetrical component post wheel holes 336 on its side; a component post limiter 338 at its bottom; an inner cover 317 with an inner cover insertion groove 330 at its bottom; a rotationally symmetrical inner cover locking block hole 331 on its inner wall; a screw connection 316 between the inner wall and the locking block 317; and a square locking block 315 inserted into the locking block 316.
[0030] The bottom of the inner shell 311 is designed with a brush pre-drilled hole 318, a central post hole 320, and a gear post 329; the gear post 329 is rotatably mounted to gear 1 302 and positioned by a nut; gear 1 302 meshes with gear 304; a snap-fit platform 319 is designed near the bottom of the inner shell 311, and a snap-fit platform connecting hole 327 is provided on the snap-fit platform 319; six rotationally symmetrical brush groove connecting platforms 321 are provided on the side of the inner shell 311; the brush groove connecting platforms 321... 21 is fixedly installed with the brush slot 308 by screws; the top of the inner shell 311 is designed with 6 rotationally symmetrical telescopic motor protection platforms 322, connecting rods 323, wire holes 324, inner part column limiting platforms 326 and 3 rotationally symmetrical shell buckle holes 325; the connecting rod 323 has a connecting rod connecting hole 328; after the second locking block 310 is rotatably connected with the buckle platform connecting hole 327 and the connecting rod connecting hole 328, the first locking block 309 is connected to the second locking block 309 through the first locking block buckle 335. The locking block 310 is designed with locking hole 334 for locking; the telescopic motor protection platform 322 is screwed to the telescopic motor 313; the telescopic motor 313 is fixedly connected to the brush 312; the part column 314 is placed on the part column limiting platform 326, wherein the part column wheel hole 336 is aligned with the wire hole 324 opened in the inner shell 311; the center column 301 passes through the center column hole 320 opened at the bottom of the inner shell 311 and is sleeved on the part column limiting 338 of the part column 314; the center The bottom of column 301 is fixedly installed with the central gear 340; the central gear 340 meshes with gear 1 302; the top of the inner shell 311 is inserted into the inner shell cover insertion slot 330 of the inner shell cover 317, wherein the inner shell snap hole 325 and the inner shell cover snap block hole 331 are connected; the bottom of the central column 301 is inserted into the reducer spline 211 and then rotatedly sleeved with the wall brush housing connecting platform 221 of the wall brush housing 206; the bottom of the inner shell 311 is inserted into the inner shell slot 222 of the wall brush housing 206.
[0031] During installation, proceed from the inside out. First, install the main body mechanism 3 of the shoe washing machine, then install the inner drum 2. After the main body mechanism 3 and the inner drum 2 are installed, finally install the inner drum 2 and the outer shell 1. The installation sequence of the main body mechanism 3 is as follows: the brush groove 308 is installed on the inner shell 311; then, the brush 307, brush shaft 306, and locking blocks 1 and 2 are installed in sequence; then, the center column 301 and component column 314 are installed and fitted inside the inner shell 311; then, the bottom center gear 340, gear 1 302, gear 2 303, gear 304, and gear 4 305 are installed; finally, the telescopic motor 313 is installed. Brush 312; further, install inner shell cover 317, snap-fit connection 316, square snap-fit 315; further, connect inner shell cover 317 to inner shell 311; further, install shoe washing machine inner tank 2; wherein, first install wall brush housing 206 and wall brush 207; further, stainless steel bucket 208 and balance ring 209 are sequentially inserted into wall brush housing 206; further, wall brush housing 206 is sleeved with hanging bucket 204; further, water pipe ring 205 is snapped into hanging bucket 204; further, inner shell 311 is inserted into wall brush housing 206; further, reducer 201 is inserted into center column 301 through reducer spline 211 and then screwed into hanging bucket 204; further, install transmission belt 202 and motor 203; further, install steel wire 210 and install it to shoe washing machine outer shell 1 through steel wire 210.
[0032] In use, remove the main body 3 of the shoe washing machine, insert the brush 312 into the shoe to be cleaned, and lock the shoe in place using the locking blocks 1 (309) and 2 (310). Then, put the main body 3 back into the inner drum 2 of the shoe washing machine and start the machine. At this time, the telescopic motor 313 drives the brush 312 to perform high-frequency telescopic brushing inside the shoe. The motor 203 drives the reducer 201 via the belt 202, and the reducer 201 drives the central column 301 to rotate via the reducer spline 211. The central column 301 drives the wall brush housing 206 to rotate, achieving the effect of cleaning the outer surface of the shoe. Simultaneously, the central column 301, through the central gear 340, gear 1 (302), gear 2 (303), and gear 3 (304), achieves the same effect. The planetary gear set composed of gear 4 (305) drives the brush 307 to rotate, thus cleaning the sole of the shoe. After one cleaning is completed and the water is drained, the power of the shoe washing machine is turned off. The main body of the shoe washing machine (3) is removed, and the shoes are removed to complete one cleaning. Different cleaning modes can be adjusted through the built-in program of the control panel (103) to achieve different effects.
Claims
1. A shoe washing machine that combines internal and external functions, characterized in that: The shoe washing machine consists of a shell (1), an inner liner (2), and a main body (3). The shell (1) includes a plastic shell (101), a plastic top cover (102), a control panel (103), a plastic flip-top (104), a shell support (105), a handle groove (106), a wire table (107), a wire suspension hole (108), a water pipe connection groove (109), a handle groove (110), and a drainage observation hole (111). The bottom of the plastic shell (101) has a drainage observation hole (111). The bottom of the plastic shell (101) has four rotationally symmetrical shell supports (105). (101) A handle groove (106) is provided on two mutually distant outer surfaces; the plastic shell (101) is designed with four rotationally symmetrical wire platforms (107); each wire platform (107) is provided with a wire suspension hole (108); the inner surface of the plastic top cover (102) is designed with a water pipe connection groove (109); the plastic shell (101) and the plastic top cover (102) are connected by screws after being inserted; the plastic top cover (102) is fixedly connected to the control panel (103); the plastic flip cover (104) is provided with a flip cover handle groove (110); the plastic top cover (102) and the plastic flip cover (104) are rotatably connected.
2. The shoe washing machine that combines internal and external functions according to claim 1, characterized in that: The inner tank (2) of the shoe washing machine includes a reducer (201), a transmission belt (202), a motor (203), a hanging bucket (204), a water pipe ring (205), a wall brush housing (206), a wall brush (207), a stainless steel bucket (208), a balance ring (209), a steel wire (210), a reducer spline (211), a drain outlet (212), a motor connecting platform (213), a reducer connecting platform (214), a steel wire hanging platform (215), a water pipe clamp (216), a water pipe inlet (217), a water pipe clamping platform (218), a water pipe spray nozzle (219), a wall brush housing drain outlet (220), a wall brush housing connecting platform (221), an inner shell slot (222), a wall brush slot hole (223), and a wall brush groove (204). 24) Stainless steel bucket slot (225), balance ring insert plate (226), wall brush insert ear (227), balance ring insert groove (228); The reducer (201) and the motor (203) are connected by a transmission belt (202); The reducer (201) is designed with a reducer spline (211); The bottom of the bucket (204) is designed with a drain outlet (212), a motor connection platform (213), and a reducer connection platform (214), wherein the reducer connection platform (214) is located in the center of the bucket (204), and the drain outlet (212) and the motor connection platform (213) are distributed on both sides of the reducer connection platform (214) away from each other; The reducer spline (211) of the reducer (201) passes through the reducer connection platform. (214) The center hole is screwed to the reducer connecting platform (214); the motor (203) is screwed to the motor connecting platform (213) at the bottom of the bucket (204); the outer surface of the bucket (204) near the bottom is designed with 4 rotationally symmetrical steel wire lifting platforms (215); each steel wire lifting platform (215) is clamped with 1 steel wire (210); the outer surface of the bucket (204) away from the bottom is provided with 3 rotationally symmetrical water pipe clamps (216); the outer surface of the water pipe ring (205) is designed with rotationally symmetrical water pipe inlets (217) and 2 water pipe clamping platforms (218); the water pipe inlets (217) and water pipe clamping platforms (218) on the outer surface of the water pipe ring (205) are connected to the bucket (204) 4) The water pipe clamp (216) is engaged; the inner surface of the water pipe ring (205) is provided with a water pipe spray nozzle (219); the bottom of the wall brush housing (206) is designed with two rotationally symmetrical wall brush housing drain outlets (220); the center of the bottom of the wall brush housing (206) is provided with a wall brush housing connecting platform (221); the wall brush housing (206) is placed inside the hanging bucket (204); the section of the wall brush housing (206) away from the bottom is provided with an inner shell slot (222); the wall brush housing (206) is designed with two rotationally symmetrical wall brush grooves (224); the wall brush groove (224) is designed with a wall brush slot hole (223) near the bottom end; the side surface of the wall brush groove (224) is provided with a stainless steel bucket slot (225);The wall brush groove (224) is provided with a balance ring insert plate (226) at a distance from the wall brush slot hole (223); the bottom of the wall brush (207) is provided with a wall brush insertion ear (227); the wall brush insertion ear (227) of the wall brush (207) is inserted into the wall brush slot hole (223) at the bottom of the wall brush groove (224); the stainless steel bucket (208) is inserted into the stainless steel bucket slot (225) of the wall brush housing (206); the balance ring (209) is provided with a balance ring insertion groove (228), and the balance ring insertion groove (228) on the balance ring (209) is inserted into the balance ring insert plate (226) of the wall brush housing (206).
3. The shoe washing machine that combines internal and external functions according to claim 1, characterized in that: The main body mechanism (3) of the shoe washing machine includes a central column (301), gear 1 (302), gear 2 (303), gear 3 (304), gear 4 (305), brush shaft (306), brush (307), brush groove (308), locking block 1 (309), locking block 2 (310), inner shell (311), brush (312), telescopic motor (313), component column (314), square buckle (315), buckle connection (316), inner shell cover (317), brush pre-drilled hole (318), buckle platform (319), central column hole (320), brush groove connecting platform (321), telescopic motor protection platform (322), connecting rod (323), and wire hole (324). The components include: inner shell snap-fit hole (325), part column limiting platform (326), snap-fit platform connecting hole (327), connecting rod connecting hole (328), gear column (329), inner shell cover insertion groove (330), inner shell cover locking block hole (331), brush groove gear column (332), brush shaft hole (333), No. 2 locking block snap-fit hole (334), No. 1 locking block snap-fit (335), part column wheel hole (336), part column wheel (337), part column limiting (338), part column wire hole (339), center gear (340), and brush shaft rotation hole (341). The brush groove (308) has symmetrical left and right brush shaft rotation holes (341) at both ends. The brush groove (308) is designed with a brush groove gear. The column (332) is rotatably connected to gear 3 (304) and gear 2 (303) in succession, and is positioned by a nut; the brush (307) has a brush shaft hole (333); after the brush (307) is placed inside the brush groove (308), the brush shaft (306) connects the brush (307) to the brush groove (308) through the brush shaft rotation hole (341) and the brush reserved hole (318), wherein the brush shaft (306) is rotatably connected to the brush shaft rotation hole (341), and the brush shaft (306) is fixedly installed to the brush shaft hole (333); the end of the brush shaft (306) near the brush groove gear column (332) is rotatably connected to gear 4 (305), and is positioned by a nut. The parts are fixed in place by nuts; gear 4 (305) meshes with gear 2 (303); a latch 1 (335) is designed on the latch 1 (309); a latch 2 (310) is provided with a latch 2 (334); a part post wire hole (339) is provided on the top of the part post (314); a part post wheel (337) is designed on the side of the part post (314), and six rotationally symmetrical part post wheel holes (336) are provided; a part post limiter (338) is designed at the bottom of the part post (314); an inner shell cover insertion groove (330) is provided at the bottom of the inner shell cover (317); and rotationally symmetrical inner shell cover latch holes (331) are provided on the inner wall of the inner shell cover (317).The inner wall of the inner shell cover (317) is screwed to the snap-fit connection (316); the snap-fit connection (316) is inserted into the square snap-fit (315).
4. A shoe washing machine that combines internal and external cleaning according to claim 1, characterized in that: The bottom of the inner shell (311) is designed with a brush pre-drilled hole (318), a central column hole (320), and a gear column (329); the gear column (329) is rotatably installed with gear 1 (302) and is positioned by a nut; gear 1 (302) meshes with gear 3 (304); a snap-fit platform (319) is designed near the bottom of the inner shell (311), and a snap-fit platform connecting hole (327) is provided on the snap-fit platform (319); six rotationally symmetrical brush groove connecting platforms (321) are provided on the side of the inner shell (311); the brush groove connecting platforms (321) are... 21) The inner shell (311) is fixedly installed with the brush groove (308) by screws; the top of the inner shell (311) is designed with 6 rotationally symmetrical telescopic motor protection platforms (322), connecting rods (323), wire holes (324), inner part column limiting platforms (326) and 3 rotationally symmetrical shell buckle holes (325); the connecting rod (323) is provided with connecting rod connecting holes (328); after the No. 2 buckle block (310) is rotatably connected with the buckle platform connecting hole (327) and the connecting rod connecting hole (328), the No. 1 buckle block (309) is connected to the No. 2 buckle block through the No. 1 buckle (335). (310) The No. 2 card block is snapped into the card hole (334) of the design; the telescopic motor protection platform (322) is screwed to the telescopic motor (313); the telescopic motor (313) is fixedly connected to the brush (312); the part column (314) is placed on the part column limiting platform (326), wherein the part column wheel hole (336) is aligned with the wire hole (324) opened in the inner shell (311); the central column (301) passes through the central column hole (320) opened at the bottom of the inner shell (311) and then fits the part column limiting (338) of the part column (314); the central column (301) The bottom is fixedly installed with the central gear (340); the central gear (340) meshes with the No. 1 gear (302); the top of the inner shell (311) is inserted into the inner shell cover insertion slot (330) opened on the inner shell cover (317), wherein the inner shell buckle hole (325) and the inner shell cover buckle hole (331) are connected; the bottom of the central column (301) is inserted into the reducer spline (211) and then rotatedly sleeved with the wall brush housing connecting platform (221) of the wall brush housing (206); the bottom of the inner shell (311) is inserted into the inner shell slot (222) of the wall brush housing (206).