A glass roller conveyor for glass production

By improving the structural design of the glass roller conveyor and combining the transmission, positioning, and cleaning components, the problems of inaccurate positioning and structural instability during the transmission process of the glass roller conveyor were solved, thus achieving stable glass transmission and efficient processing.

CN224312757UActive Publication Date: 2026-06-02TAIWAN GLASS WUHAN ENG GLASS

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TAIWAN GLASS WUHAN ENG GLASS
Filing Date
2025-06-11
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing glass roller conveyors have poor positioning accuracy during transport, making the glass prone to shifting. They also lack structural stability and cannot withstand the transport of large glass pieces, resulting in a decline in glass processing quality and production efficiency.

Method used

A glass roller conveyor was designed, comprising a support frame, U-shaped side plates, a conveying assembly, a positioning assembly, and a cleaning assembly. Through the combination of components such as a rotating shaft, pulleys, belts, a drive motor, and cleaning brushes, stable glass conveying and precise positioning are achieved, and impurities are removed in a timely manner, enhancing the wear resistance and stability of the roller conveyor.

Benefits of technology

This achieves smooth glass transport, improves positioning accuracy, reduces glass offset and vibration, enhances processing quality and production efficiency, and extends the service life of the roller conveyor.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the technical field of glass production equipment and discloses a glass roller conveyor for glass production, including a support frame. The support frame is provided with four sets of U-shaped side plates, and two sets of symmetrically arranged U-shaped side plates are fixedly installed on the top of the support frame. A transmission component, a positioning component, and a cleaning component are provided between the two sets of U-shaped side plates. The transmission component includes multiple sets of rotating shafts rotatably connected between the two sets of U-shaped side plates and distributed at equal intervals. The four sets of support frames stably support the glass roller conveyor, and the multiple sets of rotating shafts are rotatably connected between the U-shaped side plates. The conveyor rollers on the support frame smoothly transport glass. The pulleys and belt drives ensure that the multiple sets of conveyor rollers operate synchronously. The wear-resistant sleeve enhances its wear resistance. The drive motor is mounted inside the support frame via a motor mount. Its drive gear meshes with the driven gear at the front end of the rotating shaft to supply power for the rotation of the conveyor rollers and ensure stable power. The mounting block cooperates with the positioning shaft. The rotating threaded rod is driven by the connecting plate thread, which can accurately adjust the spacing of the positioning plates to adapt to glass of different widths.
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Description

Technical Field

[0001] This utility model relates to the field of glass production equipment technology, and in particular to a glass roller conveyor for glass production. Background Technology

[0002] Glass production is a complex process. In the glass production process, glass roller conveyors are key equipment used to transport glass. Their performance directly affects production efficiency and product quality. With the increasing demand for glass products from industries such as construction, automobiles, and electronics, the requirements for dimensional accuracy and surface quality of glass are becoming more and more stringent. As an important piece of equipment for carrying and transporting glass in the glass production process, glass roller conveyors need to ensure that the glass runs smoothly during the transport process and avoid problems such as scratches and deformation in order to meet the needs of high-quality glass production.

[0003] Existing glass roller conveyors have some shortcomings. For example, the positioning accuracy of glass during transport is not good, and the glass is prone to deviation during transport, affecting the accuracy of subsequent processing steps. In addition, some roller conveyors have limited structural stability and cannot withstand the transport of large glass pieces. After long-term operation, the roller conveyor is prone to unstable rotation, causing the glass to deviate and shake during transport, affecting the processing quality and production efficiency. To address these issues, we propose a new type of glass roller conveyor for glass production. Utility Model Content

[0004] The purpose of this invention is to provide a glass roller conveyor for glass production, which solves the problems of poor positioning accuracy of glass during the conveying process, easy displacement of glass during the conveying process, affecting the accuracy of subsequent processing steps, limited structural stability of some roller conveyors, difficulty in bearing the conveying of large glass, and easy instability of roller conveyor rotation after long-term operation, resulting in displacement and shaking of glass during the conveying process, affecting the processing quality and production efficiency of glass.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a glass roller conveyor for glass production, comprising a support frame, wherein the support frame is provided with four sets of symmetrically arranged U-shaped side plates, and two sets of U-shaped side plates are fixedly installed on the top of the support frame. A transmission component, a positioning component, and a cleaning component are provided between the two sets of U-shaped side plates. The transmission component includes multiple sets of equally spaced rotating shafts rotatably connected between the two sets of U-shaped side plates. Conveying roller conveyors are fixedly installed on the circumferential surfaces of the multiple sets of rotating shafts. The positioning component includes mounting blocks fixedly installed at both ends of the surfaces of the two sets of U-shaped side plates. A connecting plate is fixedly installed in the middle section of the surfaces of the two sets of U-shaped side plates. A positioning shaft is slidably connected inside the mounting block. A positioning plate is fixedly installed at one end of the positioning shaft and is located above the conveying roller conveyor.

[0006] As a preferred embodiment, two sets of driven gears are fixedly installed on the front circumferential surfaces of the left and right sets of rotating shafts, and drive motors are fixedly connected to the inner surfaces of the two sets of front support frames through motor mounts. Two sets of driving gears are fixedly installed on the output ends of the two sets of drive motors through output shafts, and the four sets of driving gears are respectively meshed with the four sets of driven gears.

[0007] As a preferred embodiment, pulleys are fixedly installed on the front circumferential surface of the multiple sets of rotating shafts and inside the front U-shaped side plate, and belts are used to drive the multiple sets of pulleys. Wear-resistant sleeves are fixedly installed on the circumferential surface of the multiple sets of conveying rollers.

[0008] As a preferred embodiment, threaded rods are rotatably connected to the surfaces of the two sets of positioning plates that are far apart from each other. The threaded rods are threaded into the interior of the connecting plate, and a rotating block is fixedly installed on the side of the threaded rods that is far away from the positioning plate.

[0009] As a preferred embodiment, the cleaning assembly includes two sets of mounting plates fixedly installed at the bottom of two sets of U-shaped side plates, and multiple sets of fixing rods evenly distributed between the two sets of mounting plates. The fixing rods are connected to cleaning brushes through the cleaning plates.

[0010] As a preferred embodiment, the cleaning plates are provided in multiple sets and are respectively fixedly installed on the circumferential surface of multiple sets of fixing rods. The multiple sets of cleaning plates are respectively set in the gaps between pairs of multiple sets of conveyor rollers. The cleaning brushes are provided in multiple sets and are respectively fixedly installed on the top of the multiple sets of cleaning plates, and the top of the cleaning brushes is on the same horizontal plane as the conveyor rollers.

[0011] The technical effects and advantages of this utility model are as follows:

[0012] 1. By setting up transmission and positioning components, four sets of support frames firmly support the glass roller conveyor. The symmetrical U-shaped side plates at the top lay the installation foundation for the transmission, positioning, and cleaning components. Multiple sets of rotating shafts are rotatably connected between the U-shaped side plates, and the conveyor roller conveyor smoothly transports the glass. The pulley and belt drive ensure that the multiple sets of conveyor roller conveyors operate synchronously. The wear-resistant sleeve enhances its wear resistance. The drive motor is mounted inside the support frame via a motor mount. Its drive gear meshes with the driven gear at the front end of the rotating shaft to supply power for the rotation of the conveyor roller conveyor and ensure stable power. The mounting block cooperates with the positioning shaft. By rotating the threaded rod, the threaded transmission through the connecting plate can accurately adjust the spacing of the positioning plates to adapt to glass of different widths. The rotating block is easy to operate manually.

[0013] 2. By setting up cleaning components, the mounting plate is fixed to the bottom of the U-shaped side plate, providing a stable installation support for the cleaning components. The fixing rod is set between the mounting plates to support the cleaning plates. Multiple sets of cleaning plates are located in the gaps of the conveyor rollers. The top of the cleaning brush on them is flush with the conveyor rollers. During glass transmission, it can promptly remove debris, dust and other impurities from the surface and gaps of the conveyor rollers, ensuring smooth transmission and glass quality, reducing wear on the conveyor rollers, and extending their service life. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0015] Figure 2 This is one of the schematic diagrams of the transmission component structure of this utility model;

[0016] Figure 3 This is the second schematic diagram of the transmission component structure of this utility model;

[0017] Figure 4 This is a schematic diagram of the positioning component structure of this utility model;

[0018] Figure 5 This is a schematic diagram of the cleaning component structure of this utility model.

[0019] In the diagram: 1. Support frame; 2. U-shaped side plate; 3. Transmission assembly; 4. Positioning assembly; 5. Cleaning assembly; 301. Conveyor roller; 302. Pulley; 303. Belt; 304. Motor base; 305. Drive motor; 306. Rotating shaft; 307. Drive gear; 308. Driven gear; 401. Mounting block; 402. Connecting plate; 403. Positioning shaft; 404. Positioning plate; 405. Threaded rod; 406. Rotating block; 501. Mounting plate; 502. Fixing rod; 503. Cleaning plate; 504. Cleaning brush. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see the appendix Figure 1 - Appendix Figure 4A glass roller conveyor for glass production includes a support frame 1. The support frame 1 is provided with four sets of U-shaped side plates 2, and two sets of symmetrically arranged U-shaped side plates 2 are fixedly installed on its top. A transmission component 3, a positioning component 4, and a cleaning component 5 are provided between the two sets of U-shaped side plates 2. The transmission component 3 includes multiple sets of rotating shafts 306 that are rotatably connected between the two sets of U-shaped side plates 2 and are distributed at equal intervals. Conveying roller conveyors 301 are fixedly installed on the circumferential surfaces of the multiple sets of rotating shafts 306. The positioning component 4 includes mounting blocks 401 that are fixedly installed at both ends of the surfaces of the two sets of U-shaped side plates 2. Connecting plates 402 are fixedly installed in the middle sections of the surfaces of the two sets of U-shaped side plates 2. A positioning shaft 403 is slidably connected inside the mounting block 401. A positioning plate 404 is fixedly installed at one end of the positioning shaft 403 and is located above the conveying roller conveyor 301.

[0022] Two sets of driven gears 308 are fixedly installed on the front circumferential surfaces of the left and right sets of rotating shafts 306. The inner surfaces of the two sets of front support frames 1 are fixedly connected to drive motors 305 via motor mounts 304. The output ends of the two sets of drive motors 305 are fixedly installed with two sets of driving gears 307 via output shafts. The four sets of driving gears 307 are respectively meshed with the four sets of driven gears 308. The driven gears 308 installed on the front circumferential surfaces of the left and right sets of rotating shafts 306 mesh with the driving gears 307 installed on the inner side of the support frame 1 via motor mounts 304 at the output ends of the drive motors 305. Through gear transmission, the power of the drive motors 305 is stably transmitted to the rotating shafts 306, providing a reliable power source for the rotation of the conveyor roller 301. The two sets of drive motors 305 can rotate synchronously at the same speed.

[0023] Each of the multiple sets of rotating shafts 306 has a pulley 302 fixedly installed on its front circumferential surface and inside the front U-shaped side plate 2. The multiple sets of pulleys 302 are connected by a belt 303. Each of the multiple sets of conveyor rollers 301 has a wear-resistant sleeve fixedly installed on its circumferential surface. The pulleys 302 on the front circumferential surface of the multiple sets of rotating shafts 306 inside the front U-shaped side plate 2 are driven by the belt 303, which can ensure that the multiple sets of conveyor rollers 301 rotate synchronously and stably, and avoid the glass from jamming or deviating during the transmission process. The wear-resistant sleeve on the circumferential surface of the conveyor rollers 301 can effectively reduce frictional wear with the glass and other impurities.

[0024] Two sets of positioning plates 404 are rotatably connected to threaded rods 405 on the surfaces of their opposite sides. The threaded rods 405 are threaded into the interior of the connecting plate 402. A rotating block 406 is fixedly installed on the side of the threaded rods 405 away from the positioning plates 404. The threaded rods 405 rotatably connected to the side of the positioning plates 404 are threadedly engaged with the connecting plate 402. When the operator rotates the rotating block 406, the threaded rods 405 rotate and drive the positioning plates 404 to slide along the positioning shaft 403, thereby achieving precise adjustment of the spacing between the positioning plates 404 to meet the positioning requirements of glass of different widths.

[0025] Specifically, the support frame 1 consists of four sets, providing stable support for the entire glass roller conveyor. The symmetrically arranged U-shaped side plates 2 at the top provide the mounting base for the transmission assembly 3, positioning assembly 4, and cleaning assembly 5. Multiple sets of rotating shafts 306 are rotatably connected between the U-shaped side plates 2, and the conveyor rollers 301 fixed on them enable smooth glass transport. The drive design of the pulleys 302 and belts 303 allows the multiple sets of conveyor rollers 301 to rotate synchronously, ensuring the stability of glass transport. Wear-resistant sleeves are fixed to the circumferential surface of the conveyor rollers 301 to enhance wear resistance. The drive motor 305... The motor base 304 is installed inside the support frame 1. The drive gear 307 at its output end meshes with the driven gear 308 at the front end of the rotating shaft 306, providing power for the rotation of the conveyor roller 301 and ensuring stable power during the transmission process. The mounting block 401 and the positioning shaft 403 cooperate to allow the positioning plate 404 to be flexibly adjusted in position. By rotating the threaded rod 405, the spacing of the positioning plate 404 can be precisely adjusted through the threaded transmission of the connecting plate 402, which can be used to position glass of different widths, improving applicability. The rotating block 406 allows the operator to manually adjust the threaded rod 405.

[0026] Please see the appendix Figure 1 and attached Figure 5 The cleaning component 5 includes two sets of mounting plates 501 fixedly installed at the bottom of two sets of U-shaped side plates 2. Multiple sets of fixing rods 502 with equal spacing are fixedly installed between the two sets of mounting plates 501. The fixing rods 502 are connected to cleaning brushes 504 through cleaning plates 503. The mounting plates 501 are fixed to the bottom of the U-shaped side plates 2 to provide a stable mounting base for the fixing rods 502. The fixing rods 502 are installed at equal intervals between the mounting plates 501 to support the cleaning plates 503, so that the cleaning plates 503 can be placed in the gaps between the two pairs of conveyor rollers 301.

[0027] Multiple sets of cleaning plates 503 are provided and fixedly installed on the circumferential surfaces of multiple sets of fixing rods 502. The multiple sets of cleaning plates 503 are respectively set in the gaps between pairs of multiple sets of conveyor rollers 301. Multiple sets of cleaning brushes 504 are provided and fixedly installed on the top of the multiple sets of cleaning plates 503. The top of the cleaning brushes 504 is on the same horizontal plane as the conveyor rollers 301. The cleaning plates 503 are fixed on the circumferential surfaces of the fixing rods 502 and located in the gaps of the conveyor rollers 301. The top of the cleaning brushes 504 installed on them is flush with the conveyor rollers 301. During the glass conveying process, it can clean the glass surface and the surface of the conveyor rollers 301 in real time, removing debris, dust and other impurities, and maintaining the cleanliness of the glass conveying environment.

[0028] Specifically, the mounting plate 501 is fixed to the bottom of the U-shaped side plate 2, providing a stable mounting base for the cleaning assembly 5. The fixing rod 502 is installed between the mounting plates 501, supporting the cleaning plate 503. Multiple sets of cleaning plates 503 are set in the gaps between pairs of conveyor rollers 301. The cleaning brushes 504 fixed on them are at the same level as the conveyor rollers 301. During the glass conveying process, they can promptly clean the debris, dust and other impurities remaining on the surface and in the gaps of the conveyor rollers 301, avoiding impurities from affecting the stability and surface quality of glass conveying, ensuring the continuity of glass production and product quality, and reducing the wear of impurities on the conveyor rollers 301, thus extending their service life.

[0029] Working principle of this utility model: This utility model is a glass roller conveyor for glass production. When the glass roller conveyor is working, four sets of support frames 1 support the entire device. The symmetrical U-shaped side plates 2 at the top provide installation positions for each component. In the transmission component 3, the drive motor 305 is installed inside the support frame 1 through the motor base 304. Its output end drive gear 307 meshes with the driven gear 308 at the front end of the rotating shaft 306, driving the rotating shaft 306 to rotate. The pulley 302 on the rotating shaft 306 is driven by the belt 303, causing multiple sets of conveyor rollers 301 to rotate synchronously. The wear-resistant sleeve ensures stable glass transmission. In the positioning component 4, the operator rotates the rotating block 406, which drives the threaded rod 405 to rotate threadedly in the connecting plate 402, so that the positioning plate 404 slides in the mounting block 401 through the positioning shaft 403. The spacing is adjusted to position glass of different widths. During the glass transmission process, the cleaning brush 504 of the cleaning component 5, with the help of the fixed rod 502 and the cleaning plate 503, cleans the surface and gaps of the conveyor roller 301 to ensure stable glass transmission and surface quality, and reduces wear on the conveyor roller 301. At this point, the entire process is completed.

[0030] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A glass roller conveyor for glass production, comprising a support frame (1), wherein the support frame (1) is provided with four sets of U-shaped side plates (2) arranged symmetrically and fixedly installed on its top, characterized in that: A transmission assembly (3), a positioning assembly (4), and a cleaning assembly (5) are provided between the two sets of U-shaped side plates (2). The transmission assembly (3) includes multiple sets of rotating shafts (306) rotatably connected between the two sets of U-shaped side plates (2) and distributed at equal intervals. Conveying rollers (301) are fixedly installed on the circumferential surfaces of the multiple sets of rotating shafts (306). The positioning assembly (4) includes mounting blocks (401) fixedly installed at both ends of the surfaces of the two sets of U-shaped side plates (2). Connecting plates (402) are fixedly installed in the middle sections of the surfaces of the two sets of U-shaped side plates (2). A positioning shaft (403) is slidably connected inside the mounting block (401). A positioning plate (404) is fixedly installed at one end of the positioning shaft (403) and is located above the conveying rollers (301).

2. The glass roller conveyor for glass production according to claim 1, characterized in that: Two sets of driven gears (308) are fixedly installed on the front circumferential surface of the left and right sets of rotating shafts (306). The inner surfaces of the two sets of support frames (1) on the front side are fixedly connected to drive motors (305) through motor seats (304). The output ends of the two sets of drive motors (305) are fixedly installed with two sets of driving gears (307) through output shafts. The four sets of driving gears (307) are respectively meshed with the four sets of driven gears (308).

3. The glass roller conveyor for glass production according to claim 1, characterized in that: Each of the multiple sets of rotating shafts (306) has a pulley (302) fixedly installed on its front circumferential surface and inside the front U-shaped side plate (2). The multiple sets of pulleys (302) are connected by a belt (303) for transmission. Each of the multiple sets of conveying rollers (301) has a wear-resistant sleeve fixedly installed on its circumferential surface.

4. The glass roller conveyor for glass production according to claim 1, characterized in that: Both sets of positioning plates (404) have threaded rods (405) rotatably connected to the surfaces of their opposite sides. The threaded rods (405) are threaded into the interior of the connecting plate (402), and a rotating block (406) is fixedly installed on the side of the threaded rods (405) away from the positioning plates (404).

5. A glass roller conveyor for glass production according to claim 1, characterized in that: The cleaning component (5) includes two sets of mounting plates (501) fixedly installed at the bottom of two sets of U-shaped side plates (2). Multiple sets of fixing rods (502) are fixedly installed between the two sets of mounting plates (501) and are distributed at equal intervals. The fixing rods (502) are connected to cleaning brushes (504) through cleaning plates (503).

6. A glass roller conveyor for glass production according to claim 5, characterized in that: The cleaning plates (503) are provided in multiple sets and are respectively fixedly installed on the circumferential surface of multiple sets of fixing rods (502). The multiple sets of cleaning plates (503) are respectively set in the gaps between pairs of multiple sets of conveying rollers (301). The cleaning brushes (504) are provided in multiple sets and are respectively fixedly installed on the top of multiple sets of cleaning plates (503), and the top of the cleaning brushes (504) is on the same horizontal plane as the conveying rollers (301).