A brush roll structure for a glass cleaning machine

The brush roller structure, which uses a gear ring and a fixed gear, allows the brush to rotate in the opposite direction and adapt to the glass surface. This solves the problem of insufficient cleaning when the traditional brush roller structure is used on uneven surfaces, and achieves efficient and uniform glass cleaning and brush roller durability.

CN224525556UActive Publication Date: 2026-07-21WUXI FUYI GLASS PRODUCTS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUXI FUYI GLASS PRODUCTS CO LTD
Filing Date
2025-06-16
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing brush roller structure of glass washing machines is not effective in adapting to uneven glass surfaces, and its corrosion resistance and cleaning ability are insufficient, affecting the cleaning effect and service life.

Method used

A brush roller structure with a gear ring and a fixed gear was designed to make the brush rotate in the opposite direction. The structure of the sliding sleeve and spring achieves self-adaptation to the glass surface. Combined with the water-filled cavity and the sealed waterproof design, it ensures that the brush fits tightly to the glass and cleans evenly.

Benefits of technology

It significantly improves the cleaning ability and uniformity of glass cleaning, extends the service life of the brush roller, and ensures the stability and efficiency of the cleaning effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224525556U_ABST
    Figure CN224525556U_ABST
Patent Text Reader

Abstract

The utility model relates to glass cleaning technical field, concretely relates to a kind of brush roller structure of glass cleaning machine, the structure includes support, its outer wall is equipped with motor, output end is connected main shaft, another end is fixed outer roller, outer roller outer surface is opened and has through-hole, inside is equipped with sliding sleeve, sliding sleeve is rotatably connected gear shaft in, outer end is equipped with brush, sliding sleeve and outer roller inner wall have spring, support is close to motor side wall and is equipped with fixed rod, it is distributed in outer roller in circumferential array, linear array several gear rings on rod, both sides are equipped with fixed gear and gear shaft meshing, outer roller uses corrosion-resistant high-strength engineering plastics, with through-hole does sealing waterproof treatment, spring makes brush self-adapting glass surface uneven;Gear ring and fixed gear let both sides brush reverse rotation, enhance cleaning effect;Outer roller material and processing anticorrosion, prolong service life;Limiting block and hole guarantee sliding sleeve sliding stability, each component cooperates and promotes cleaning effect and brush roller durability, satisfy glass cleaning machine high-efficiency stable work demand.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of glass cleaning technology, and in particular to a brush roller structure for a glass cleaning machine. Background Technology

[0002] Glass cleaning is crucial in many fields, including glass manufacturing, processing, and applications. The quality of glass cleaning directly affects the processing precision, performance, and appearance of subsequent products. With the booming development of the glass industry, the market has placed higher demands on the efficiency and cleanliness of glass cleaning.

[0003] Currently, glass washing machines are widely used in various glass manufacturing and processing enterprises. The brush roller structures commonly found in glass washing machines on the market are mostly traditional fixed brush types or simple rotating types. Traditional fixed brush rollers have a relatively simple design, with the brush bristles in a fixed position. While simple rotating brush rollers can rotate, they have significant functional limitations.

[0004] Traditional fixed-brush rollers, due to their non-adjustable bristle position, struggle to adapt to uneven glass surfaces. Simple rotating rollers, relying solely on unidirectional rotation, lack effective cleaning methods for stubborn stains. Furthermore, some rollers are made of materials with poor corrosion resistance and inadequate waterproofing, making them susceptible to corrosion during prolonged contact with cleaning solutions. This shortens the roller's lifespan and negatively impacts cleaning performance. (Utility Model Content)

[0005] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a brush roller structure for a glass washing machine, which can effectively solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] This utility model provides a brush roller structure for a glass washing machine, including a bracket. A motor is installed on the outer wall of the bracket. The output end of the motor passes through the side wall of the bracket and extends into the interior of the bracket. A main shaft is installed at the output end of the motor. An outer roller is fixedly installed at the end of the main shaft away from the motor. An inner roller is installed on the inner side of the outer roller. The inner roller and the outer roller are connected at the end away from the motor. The space enclosed between the outer roller and the inner roller is a water filling cavity. Several through holes are opened on the outer roller and the inner roller. Each through hole is provided with a sliding sleeve. A gear shaft is rotatably connected inside the sliding sleeve. A water pump is installed on the outer wall of the bracket on the side away from the motor. The outlet of the water pump passes through the side wall of the bracket and is connected to the water filling cavity.

[0008] Furthermore, a brush is provided at the outer end of the gear shaft, and a spring is provided between one end of the sliding sleeve and the inner wall of the inner roller.

[0009] Furthermore, a fixing rod is provided on the side wall of the bracket near the motor. The fixing rods are arranged in a circumferential array and are all located inside the outer roller. Several gear rings are arranged in a linear array on the fixing rods.

[0010] Furthermore, fixed gears are provided on both sides of the gear ring, and the fixed gears mesh with the gear shafts on both sides respectively.

[0011] Furthermore, a limit block is provided on the outer side of the sliding sleeve, and a limit hole is provided in the through hole, so that the sliding sleeve and the through hole are slidably connected.

[0012] Furthermore, the outer roller has a water outlet on one side of the through hole, and the outer roller and the through hole are sealed and waterproofed.

[0013] The beneficial effects of this utility model are:

[0014] 1. This utility model has a structure in which a gear ring and a fixed gear cooperate, so that the brushes on both sides of the gear ring can rotate in opposite directions. This reverse rotation greatly enhances the cleaning ability of the glass surface, can remove stubborn stains on the glass more efficiently, and significantly improves the cleaning effect of the glass cleaning machine.

[0015] 2. This utility model is equipped with a gear shaft structure with a sliding sleeve and a spring. During the cleaning process, when the brush comes into contact with an uneven area on the glass surface, the sliding sleeve can slide in the through hole, and the spring provides a restoring force, so that the brush can adapt to the glass surface, ensuring that the brush and the glass are always in close contact, effectively improving the uniformity and cleanliness of glass cleaning, avoiding cleaning dead corners, and filling the water cavity between the outer roller and the inner roller. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Among them:

[0017] Figure 1 This is a front structural diagram of the present utility model.

[0018] Figure 2 This is a cross-sectional structural diagram of the present invention.

[0019] Figure 3 This utility model Figure 2 Schematic diagram of the structure at point A in the middle.

[0020] Figure 4 This utility model Figure 2 Schematic diagram of the structure at point B.

[0021] Figure 5 This is a schematic diagram of the fixing rod and gear ring structure of this utility model.

[0022] Explanation of reference numerals in the attached figures:

[0023] 1. Support; 2. Outer roller; 20. Through hole; 21. Gear shaft; 22. Brush; 23. Sliding sleeve; 24. Spring; 25. Gear ring; 251. Fixed gear; 26. Fixed rod; 3. Motor; 31. Main shaft; 4. Water pump; 41. Inner roller; 42. Water filling chamber; 43. Water outlet. Detailed Implementation

[0024] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Example 1

[0025] Reference Figure 1-3 This is the first embodiment of the present invention, which provides a brush roller structure for a glass washing machine, including a bracket 1. A motor 3 is provided on the outer wall of the bracket 1. The output end of the motor 3 passes through the side wall of the bracket 1 and extends into the interior of the bracket 1. The motor 3 provides power to the entire brush roller structure and drives the main shaft 31 to rotate through the output end. The output end of the motor 3 is provided with the main shaft 31. An outer roller 2 is fixedly installed at the end of the main shaft 31 away from the motor 3. The main shaft 31 transmits the power of the motor 3 to the outer roller 2, driving the outer roller 2 to rotate.

[0026] An inner roller 41 is provided on the inner side of the outer roller 2. The inner roller 41 and the outer roller 2 are connected at the end away from the motor 3. The space enclosed between the outer roller 2 and the inner roller 41 is a water filling cavity 42. The water filling cavity 42 is used to store cleaning water and provide water source for the cleaning process and cleaning brush 22. The outer roller 2 and the inner roller 41 are provided with several through holes 20. Each through hole 20 is provided with a sliding sleeve 23. The through holes 20 provide a sliding track for the sliding sleeve 23, so that the sliding sleeve 23 can move in it. A gear shaft 21 is rotatably connected inside the sliding sleeve 23. A water pump 4 is provided on the outer side wall of the bracket 1 on the side away from the motor 3. The outlet 43 of the water pump 4 passes through the side wall of the bracket 1 and is connected to the water filling cavity 42. The water pump 4 injects water into the water filling cavity 42 to ensure that there is enough cleaning water in the water filling cavity 42.

[0027] A brush 22 is provided at the outer end of the gear shaft 21. The brush 22 directly contacts the glass surface to clean the glass. A spring 24 is provided between one end of the sliding sleeve 23 and the inner wall of the inner roller 41. The spring 24 can make the brush 22 adapt to the unevenness of the glass surface and ensure that the brush 22 is in close contact with the glass surface.

[0028] A fixing rod 26 is provided on the side wall of the bracket 1 near the motor 3. The fixing rod 26 is arranged in a circumferential array and is located inside the outer roller 2. The fixing rod 26 serves to support and fix the gear 251, ensuring the stability of the gear ring 25. Several gear rings 25 are arranged in a linear array on the fixing rod 26. Example 2

[0029] Reference Figure 1-5 This is the second embodiment of the present invention, which differs from the first embodiment in that:

[0030] Fixed gears 251 are provided on both sides of the gear ring 25. The fixed gears 251 are firmly installed in specific positions. Their teeth are precision polished and precisely matched with the teeth of the gear shafts 21 on both sides. When the brush roller structure is running, the fixed gears 251 mesh with the gear shafts 21 on both sides respectively. The two mesh tightly, and the power transmission is efficient and stable. Based on this meshing transmission mechanism, the gear shafts 21 on both sides of the gear ring 25 are driven to rotate at high speed in opposite directions, which in turn causes the brushes 22 connected to the gear shafts 21 to rotate in the opposite direction, washing the glass surface from different directions and greatly enhancing the cleaning effect on the glass surface.

[0031] A limiting block is provided on the outside of the sliding sleeve 23, and a limiting hole is provided in the through hole 20. The sliding sleeve 23 is slidably connected to the through hole 20. The limiting block and the limiting hole cooperate with each other to prevent the sliding sleeve 23 from rotating out of the through hole 20. The gear shaft 21 is connected to the sliding sleeve 23, so that the gear shaft 21 can only rotate inside the sliding sleeve 23, ensuring the stability of the sliding of the sliding sleeve 23.

[0032] The outer roller 2 has a water outlet 43 for drainage on the side of the through hole 20. The outer roller 2 and the through hole 20 are sealed and waterproofed. The water in the water filling chamber 42 is pumped in by the water pump 4 during operation and flows out from the water outlet 43. Under the action of gravity, each time the water outlet 43 rotates to the downward side, water will flow out from the corresponding water outlet 43 to provide water for cleaning the glass and flow down from the top of the brush 22 to clean the brush. This prevents the brush 22 from being affected by the accumulation of dirt and ensures that the brush roller always maintains a good working condition.

[0033] The remaining structure is the same as that in Example 1.

[0034] The specific operating principle of this utility model is as follows:

[0035] First, before the glass washing machine brush roller structure starts working, all components have been installed. The bracket 1 serves as the supporting foundation of the entire structure, and the motor 3 is fixed on its outer wall. The output end of the motor 3 penetrates through the side wall of the bracket 1 and extends into the interior, and is connected to the main shaft 31. The outer roller 2 is firmly installed on the end of the main shaft 31 away from the motor 3. The inner roller 41 is set on the inner side of the outer roller 2. The two are connected at the end away from the motor 3 to form a water filling chamber 42. A water pump 4 is installed on the outer wall of the bracket 1 on the side away from the motor 3. Its outlet 43 penetrates through the side wall of the bracket 1 and communicates with the water filling chamber 42.

[0036] Several through holes 20 are evenly distributed on the outer roller 2 and the inner roller 41. A sliding sleeve 23 is installed in each through hole 20. A gear shaft 21 is rotatably connected inside the sliding sleeve 23. A brush 22 is installed on the outer end of the gear shaft 21. Fixed rods 26 are arranged in a circular array on the side wall of the bracket 1 near the motor 3. The fixed rods 26 are located inside the outer roller 2 and several gear rings 25 are arranged in a linear array. The fixed gears 251 on both sides of the gear rings 25 mesh with the gear shafts 21 on both sides respectively. The limiting block on the outer side of the sliding sleeve 23 is slidably connected to the limiting hole on the through hole 20. The outer roller 2 has a water outlet 43 on one side of the through hole 20 and is sealed and waterproofed with the through hole 20.

[0037] Secondly, after the equipment is started, the motor 3 starts to run, and its output end drives the main shaft 31 to rotate. The main shaft 31 transmits power to the outer roller 2, and the outer roller 2 rotates around its own axis. At this time, the water pump 4 starts to work, injecting water into the water filling chamber 42 through the water outlet 43. When the outer roller 2 rotates, it drives the brush 22 to rotate and contact the glass surface for cleaning. If the glass surface is not smooth, the sliding sleeve 23 will slide in the through hole 20. The spring 24 between the sliding sleeve 23 and the inner wall of the inner roller 41 plays a role in providing buffering force, so that the brush 22 adapts to the glass surface and always fits tightly with the glass to ensure the cleaning effect. At the same time, the fixed gears 251 on both sides of the gear ring 25 on the fixed rod 26 mesh with the gear shaft 21, so that the gear shaft 21 drives the brush 22 to rotate in the opposite direction, washing the glass from different directions, enhancing the cleaning ability of the glass surface stains and improving the cleaning efficiency.

[0038] Finally, during the continuous operation of the brush roller, the sealing and waterproofing treatment between the outer roller 2 and the through hole 20 plays a role in preventing the cleaning fluid from corroding the internal structure and extending the service life of the brush roller. Under the action of gravity, the water in the water filling chamber 42 flows out as the brush roller rotates. When the water outlet 43 on the outer roller 2 turns to the downward position, the water flows out to rinse the glass and assist the brush 22 in cleaning the glass surface better. On the other hand, the water flows down the brush 22 to clean the brush 22 and prevent dirt from accumulating on the brush 22 and affecting the cleaning effect. This ensures that the brush roller always maintains a good working condition and can continuously and stably complete the glass cleaning task.

[0039] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A brush roller structure for a glass washing machine, characterized in that: The system includes a support (1), on the outer wall of which a motor (3) is mounted. The output end of the motor (3) passes through the side wall of the support (1) and extends into the interior of the support (1). The output end of the motor (3) is provided with a main shaft (31). An outer roller (2) is fixedly mounted on the end of the main shaft (31) away from the motor (3). An inner roller (41) is provided on the inner side of the outer roller (2). The inner roller (41) and the outer roller (2) are connected at the end away from the motor (3). The space enclosed between the outer roller (2) and the inner roller (41) is a water filling cavity (42). The outer roller (2) and the inner roller (41) are provided with several through holes (20). Each through hole (20) is provided with a sliding sleeve (23). A gear shaft (21) is rotatably connected inside the sliding sleeve (23). A water pump (4) is provided on the outer side wall of the bracket (1) away from the motor (3). The outlet of the water pump (4) passes through the side wall of the bracket (1) and is connected to the water filling cavity (42).

2. The brush roller structure of a glass washing machine according to claim 1, characterized in that, A brush (22) is provided at the outer end of the gear shaft (21), and a spring (24) is provided between one end of the sliding sleeve (23) and the inner wall of the inner roller (41).

3. The brush roller structure of a glass washing machine according to claim 1, characterized in that, The bracket (1) has a fixing rod (26) on the side wall near the motor (3). The fixing rod (26) is arranged in a circumferential array and is located inside the outer roller (2). The fixing rod (26) is arranged in a linear array with several gear rings (25).

4. The brush roller structure of a glass washing machine according to claim 3, characterized in that, Fixed gears (251) are provided on both sides of the gear ring (25), and the fixed gears (251) mesh with the gear shafts (21) on both sides respectively.

5. The brush roller structure of a glass washing machine according to claim 1, characterized in that, The sliding sleeve (23) is provided with a limiting block on the outside, and the through hole (20) is provided with a limiting hole. The sliding sleeve (23) and the through hole (20) are slidably connected.

6. The brush roller structure of a glass washing machine according to claim 1, characterized in that, The outer roller (2) has a water outlet (43) on one side of the through hole (20), and the outer roller (2) and the through hole (20) are sealed and waterproofed.