Shoe washing machine capable of achieving shoe autorotation and opposite rotation scrubbing
By introducing a rotating main brush and a self-rotating shoe-wearing shaft into the shoe washing machine, combined with a spray device, the problem of insufficient cleaning power in traditional shoe washing machines is solved, and automated all-round cleaning of shoes is achieved.
Patent Information
- Application Number
- CN202423291285.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-07-05
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing shoe washing machines lack sufficient cleaning power, especially for cleaning the inside of shoes, and traditional water flow and brush methods are difficult to achieve fully automatic shoe washing.
Design a shoe washing machine with a self-rotating counter-rotating brush, which uses a rotating main brush in the inner cylinder and a self-rotating shoe-wearing shaft, combined with a spray device, to achieve comprehensive cleaning of the inside and outside of the shoes.
It provides stronger scrubbing power to ensure that the shoe upper and sole are cleaned evenly and thoroughly, solving the problem of insufficient cleaning power of traditional shoe washing machines and achieving an automated all-round cleaning effect.
Smart Images

Figure CN223845625U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shoe washing machine technical field especially relates to a shoe self-rotation opposite rotation brush washing shoe washing machine. BACKGROUND
[0002] Current shoe washing machine, most still adopt washing machine structure, install the brush of surrounding brush shoe, drive shoe and bristle to rub with water flow, brush shoe, this mode has multiple unreasonable technical problems: the dirt attached to shoe is more stubborn and washing frequency is lower, adopts traditional water flow and the mode of brush to brush wash cleaning power is insufficient, and the cleaning effect is poor, shoe is usually in the floating state in water flow, and the brush washing strength between shoe and brush is small, even there is the situation that shoe surface cannot be touched by brush, shoe inside is relatively closed space, and water flow is difficult to flow in shoe, and traditional shoe washing machine cannot reach full-automatic shoe washing, and still need to still need to take shoe brush to clean shoe inside manually.
[0003] Washing shoe belongs to dirty and tiring housework, for saving housework labor, pursuing high-quality life, an automatic and effective shoe washing machine is urgently needed. UTILITY MODEL CONTENT
[0004] In view of this, the utility model aims at providing a shoe self-rotation opposite rotation brush washing shoe washing machine, which has the characteristics of automatically completing shoe brushing and good cleaning effect.
[0005] The utility model adopts the technical scheme that:
[0006] A shoe self-rotation opposite rotation brush washing shoe washing machine, which comprises an inner cylinder, a driving shaft arranged in the inner cylinder, a rotating main brush arranged outside the driving shaft, an inner wall fixed brush fixedly arranged on the inner wall of the inner cylinder, a shoe-through shaft parallel to the driving shaft and capable of self-rotation arranged in the inner cylinder, a shoe inner brush fixed on the shoe-through shaft, a shoe arranged outside the shoe inner brush, a transmission disc arranged at the bottom of the inner cylinder, and the driving shaft and the shoe-through shaft connected to the transmission disc; a jet flow device capable of jet washing or blowing inside and outside the shoe is further arranged in the inner cylinder.
[0007] The driving shaft is arranged at the center of the transmission disc, the driving shaft is provided with a driving gear at the bottom end, four bridge gears are uniformly meshed around the driving gear, each bridge gear is respectively meshed with a driven gear, and an output shaft is vertically arranged on each driven gear.
[0008] The driving shaft is a hollow shaft, the jet flow device comprises a liquid delivery rod arranged in the driving shaft and capable of delivering fluid from bottom to top, and the driving shaft is provided with a jet flow cover capable of spraying fluid around at the top end.
[0009] The liquid delivery rod comprises helical blades arranged around the outer wall of the rod body, and helical channels are formed between the helical blades for water flow to pass through.
[0010] The spray cover is communicated with the helical channels, and the spray cover comprises nozzles arranged uniformly around the spray cover and a plurality of shunt pieces.
[0011] The shunt pieces divide the spray cover into a plurality of areas with different areas, and a plurality of nozzles are arranged on each area.
[0012] The shoe-in brush comprises a shoe-in device in the shape of a foot arranged on the shoe-in shaft, and the spray device comprises spray pipes arranged uniformly on the shoe-in device, and the shoe-in shaft is a hollow shaft.
[0013] The shoe-in shaft is an arc-shaped shaft, and the shoe-in shaft is arranged on the output shaft.
[0014] The transmission disc comprises a disc base and a disc cover arranged on the disc base, the driving gear, the bridge gear and the driven gear are arranged between the disc base and the disc cover, and a sealing device is arranged between the disc base and the disc cover.
[0015] The sealing device comprises a first sealing ring and a second sealing ring arranged between the edges of the disc base and the disc cover.
[0016] The utility model discloses the beneficial effect is:
[0017] 1. Improve the cleaning efficiency: the rotating main brush in the inner cylinder and the inner wall fixed brush fixed on the inner wall, and cooperate with the shoe-in shaft and the shoe-in brush thereon which can rotate, can provide stronger brushing force than the traditional shoe washing machine, the rotating main brush directly contacts the vamp, and the shoes can rotate on the shoe-in shaft, ensuring that the vamp and the sole can be uniformly and completely cleaned; the shoe-in brush on the shoe-in shaft can extend into the shoe, solving the limitation of the traditional shoe washing machine for cleaning the inside of the shoe, and the utility model solves the problem of insufficient cleaning force of the traditional shoe washing machine.
[0018] 2. The outer edge of the helical blade is attached to the inner wall of the driving shaft, forming an Archimedes screw pump, when the driving shaft rotates, the liquid delivery rod pushes the helical channel to rise spirally, and finally sprays out at the nozzle of the spray cover, the shunt pieces can divide the spray cover into a plurality of areas with different areas, the pressure generated by the same pressure and different areas is different, so that the nozzles in different areas spray liquid with different intensities, so that the sprayed liquid covers the surface of the shoes at different positions, and the nozzles can uniformly spray the outer surface of the shoes, improving the cleaning effect of the shoes.
[0019] 3. The first sealing ring and the second sealing ring are arranged in the transmission disc, the sealing property of the system is enhanced, water is prevented from entering the inside of the transmission assembly to cause damage, the service life of the machine is prolonged, and the use safety is also ensured. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 is a cross-sectional view of the shoe washing machine;
[0021] Figure 2 is a schematic view of the structure inside the inner cylinder;
[0022] Figure 3 is a schematic view of the structure inside the transmission disc;
[0023] Figure 4 is a schematic view of the structure of the sealing device;
[0024] Figure 5 is a schematic view of the structure of the liquid feeding rod;
[0025] Figure 6 is a schematic view of the structure of the jet cover. DETAILED DESCRIPTION
[0026] To make the technical problems solved by the utility model, the technical scheme adopted and the technical effects reached more clear, the technical scheme of the utility model will be further explained below in combination with the drawings and through specific embodiments. It can be understood that the specific embodiments described here are only used to explain the utility model and not limit the utility model. In addition, it should be noted that only the parts related to the utility model are shown in the drawings for the convenience of description.
[0027] With reference to Figure 1 , Figure 2 The utility model provides a shoe self-rotation opposite rotation brush washing shoe washing machine, including inner cylinder 1, setting up in the inner cylinder 1 driven shaft 4, driven shaft 4 outside is provided with rotation main brush 7, fixedly set up on the inner wall fixed brush 6 of inner cylinder 1 inner wall, inner cylinder 1 still is provided with and can self-rotate shoe wearing shaft 8 with driven shaft 4 parallel, and shoe wearing shaft 8 is fixed with shoe inner brush, and shoe inner brush is equipped with shoes, and inner cylinder 1 bottom is provided with transmission disc 2, and driven shaft 4, shoe wearing shaft 8 are connected on transmission disc 2, and inner cylinder 1 still is provided with the jet device that can give the inside and outside of shoes and spray or blow.
[0028] With reference to Figure 3 , transmission disc 2 center is provided with driven shaft 4, and the bottom end of driven shaft 4 is provided with driving gear 15, and four bridge gears 14 are evenly engaged around driving gear 15, and each bridge gear 14 is engaged with a driven gear 13 respectively, and each driven gear 13 is vertically provided with output shaft 5 on it, and shoe wearing shaft 8 is arranged on output shaft 5.
[0029] With reference to Figures 5-6The main shaft 4 is a hollow shaft, the jetting device comprises a liquid delivery rod 40 arranged in the main shaft 4 and capable of delivering fluid from bottom to top, and the top end of the main shaft 4 is provided with a jetting cover 41 capable of spraying fluid in all directions. The liquid delivery rod 40 comprises helical blades 400 arranged on the outer wall of the rod body, and the helical blades 400 form helical channels 401 for water flow between them. The jetting cover 41 is communicated with the helical channels 401, and the jetting cover 41 comprises nozzles 411 arranged uniformly around the jetting cover 41 and a plurality of shunt plates 410 formed.
[0030] The shunt plates 410 divide the jetting cover 41 into a plurality of areas with different areas, and a plurality of nozzles 411 are arranged on each area.
[0031] Specifically, the outer edges of the helical blades 400 are attached to the inner wall of the main shaft 4 to form an Archimedes screw pump. When the main shaft 4 rotates, the liquid delivery rod 40 pushes the liquid in the helical channels 401 to rise spirally, and finally the liquid is sprayed at the nozzles 411 of the jetting cover 41. The shunt plates 410 can divide the jetting cover 41 into a plurality of areas with different areas. Due to the different pressures at the same pressure, the nozzles 411 in different areas spray liquid with different intensities, so that the sprayed liquid covers the surface of the shoes at different positions. The nozzles 411 can uniformly spray the outer surface of the shoes, improving the cleaning effect of the shoes.
[0032] Further, the rotating main brush 7 in the inner cylinder 1 and the inner wall fixed brush 6 fixed on the inner wall, in cooperation with the self-rotating shoe shaft 8 and the shoe inner brush thereon, can provide stronger brushing force than the traditional shoe washing machine. The rotating main brush 7 directly contacts the vamp, and the shoes can rotate on the shoe shaft 8, ensuring that the vamp and the sole can be uniformly and thoroughly cleaned. The shoe inner brush on the shoe shaft 8 can extend into the shoe, solving the limitation of the traditional shoe washing machine on the cleaning of the shoe inner, and also providing support to the shoes, ensuring that the surface of the shoes will not be concave, such as some relatively soft canvas shoes, further increasing the brushing effect on the surface of the shoes. The present shoe washing machine solves the problem of insufficient cleaning force of the traditional shoe washing machine.
[0033] Further, the transmission disc 2 is used to drive the main shaft 4 and the shoe shaft 8. The main shaft 4 is driven by the motor and the belt device below the transmission disc 2, and then the driving gear 15, the bridge gear 14 and the driven gear 13 are engaged to form a transmission system. Specifically, the main shaft 4 drives the shoe shaft 8 to rotate through the bridge gear 14, and the rotation directions of the two are ultimately consistent, i.e. when the main shaft 4 rotates clockwise, the transmission disc 2 also rotates clockwise, ensuring that the rotating main brush 7 rubs and brushes the surface of the shoes with appropriate force. If there is no bridge gear 14, and only the driving gear 15 drives the driven gear 13, the rotating main brush 7 and the shoe shaft 8 rotate in opposite directions, which may damage the shoes due to excessive friction and brushing force on the surface of the shoes.
[0034] The design of using one driving shaft 4 to drive four shoe penetrating shafts 8 saves the number of motors and use cost to some extent, the transmission torque is relatively average and stable, ensures the effective and stable transmission of power, improves the stability and reliability of machine operation, the driving shaft 4 and the shoe penetrating shaft 8 form multi-shaft multi-directional rotation which can offset the body shaking caused by the rotating force, and reduce the working noise.
[0035] With reference to Figure 3 , the shoe-in brush includes a shoe penetrating device 17 in the shape of a foot arranged on the shoe penetrating shaft 8, the shoe-in brush includes a shoe penetrating device 17 in the shape of a foot arranged on the shoe penetrating shaft 8, and the jet device includes jet pipes 170 uniformly arranged on the shoe penetrating device 17, and the shoe penetrating shaft 8 is a hollow shaft.
[0036] Preferably, the output shaft 5 is also a hollow structure, and a spiral blade 400 is arranged inside, when the output shaft 5 rotates, the fluid is transported from the inside of the output shaft 5 to the shoe penetrating shaft 8, and finally sprayed out from the jet pipe 170, realizing the cleaning work in the shoe.
[0037] With reference to Figure 3 , the shoe penetrating shaft 8 is an arc shaft, and the shoe penetrating shaft 8 is arranged on the output shaft 5. The surface of the shoe penetrating device 17 is uniformly covered with three-dimensional brush hairs. Further, the shoe penetrating device 17 is arranged on the arc-shaped shoe penetrating shaft 8, which can more conveniently put the shoes on the shoe penetrating device 17, and when the shoe penetrating shaft 8 rotates, the swing amplitude of the rotation is increased, the contact brushing effect of the shoes with the rotating main brush 7 and the inner wall fixed brush 6 is increased, and the cleaning strength is further improved.
[0038] Specifically, the driving shaft 4 and the output shaft 5 are provided with a communication pipeline which is communicated with a wind liquid generating device, and the wind liquid generating device can be arranged outside the inner cylinder and can generate clean water, washing liquid or gas to provide different fluids at different cleaning stages of the shoe cleaning machine.
[0039] With reference to Figure 4 , the transmission disc 2 includes a disc base 12 and a disc cover 9 arranged on the disc base 12, the driving gear 15, the bridge gear 14 and the driven gear 13 are arranged between the disc base 12 and the disc cover 9, and a sealing device is arranged between the disc base 12 and the disc cover 9.
[0040] The sealing device includes a first sealing ring 10 and a second sealing ring 11 arranged between the edges of the disc base 12 and the disc cover 9. The sealing property of the system is enhanced, water is prevented from entering the inside of the transmission assembly to cause damage, the service life of the machine is prolonged, and the use safety is also ensured.
[0041] In summary, the shoe washing machine design overcomes many problems existing in the prior art, providing an efficient, stable and easy-to-use full-automatic shoe washing solution. Aims to reduce the burden of housework, provides a user with a high-quality life to pursue an automatic shoe washing device, greatly saves time and effort, while ensuring the cleaning quality of the shoes.
Claims
1. A shoe self-rotation counter-rotation brush washing shoe washing machine, characterized in that, The utility model provides a shoe cleaning device, which comprises an inner cylinder (1), a driving shaft (4) arranged in the inner cylinder (1), a rotating main brush (7) arranged outside the driving shaft (4), an inner wall fixed brush (6) fixedly arranged on the inner wall of the inner cylinder (1), a shoe-through shaft (8) parallel to the driving shaft (4) arranged in the inner cylinder (1), a shoe inner brush fixed on the shoe-through shaft (8), and a shoe arranged on the shoe inner brush; and a jetting device for jetting or blowing in and out of the shoe is further arranged in the inner cylinder (1).
2. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 1, characterized in that, The driving shaft (4) is a hollow shaft, and the jetting device comprises a liquid conveying rod (40) arranged in the driving shaft (4) and capable of conveying fluid from bottom to top; and a jetting cover (41) capable of spraying fluid around is arranged at the top end of the driving shaft (4).
3. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 2, characterized in that, The liquid conveying rod (40) comprises spiral blades (400) arranged around the outer wall of the rod body, and spiral channels (401) for water flow are formed between the spiral blades (400).
4. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 3, characterized in that, The jetting cover (41) is communicated with the spiral channels (401), and the jetting cover (41) comprises nozzles (411) uniformly arranged around and a plurality of shunt plates (410).
5. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 4, characterized in that, The shunt plates (410) divide the jetting cover (41) into a plurality of areas with different areas, and a plurality of nozzles (411) are arranged in each area.
6. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 1, characterized in that, The shoe inner brush comprises a shoe-through device (17) in the shape of a foot arranged on the shoe-through shaft (8), the jetting device comprises jetting pipes (170) uniformly arranged on the shoe-through device (17), and the shoe-through shaft (8) is a hollow shaft.
7. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 1, characterized in that, A transmission disc (2) is arranged at the bottom of the inner cylinder (1), the driving shaft (4) and the shoe-through shaft (8) are rotatably connected to the transmission disc (2), the driving shaft (4) is arranged at the center of the transmission disc (2), a driving gear (15) is arranged at the bottom end of the driving shaft (4), four bridge gears (14) are uniformly meshed around the driving gear (15), each bridge gear (14) is meshed with a driven gear (13), an output shaft (5) is vertically arranged on each driven gear (13), and the shoe-through shaft (8) is arranged on the output shaft (5).
8. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 1, characterized in that, The shoe-through shaft (8) is an arc-shaped shaft.
9. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 7, characterized in that, The transmission disc (2) comprises a disc base (12) and a disc cover (9) arranged on the disc base (12), the driving gear (15), the bridge gears (14) and the driven gears (13) are arranged between the disc base (12) and the disc cover (9), and a sealing device is arranged between the disc base (12) and the disc cover (9).
10. A shoe self-rotation counter-rotation brush shoe washing machine according to claim 9, characterized in that, The sealing device comprises a first sealing ring (10) and a second sealing ring (11) arranged between the edges of the disc base (12) and the disc cover (9).