Waste glass crushing and recycling device

By designing a motor-driven rotating roller and a crushing head, the problem of glass blocks occupying space is solved, achieving efficient glass crushing and material conveying, and reducing the burden on the main crusher.

CN224194900UActive Publication Date: 2026-05-05GUANGDONG GUANGHUA YONGSHENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG GUANGHUA YONGSHENG TECH CO LTD
Filing Date
2025-01-21
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In common waste glass crushing and recycling equipment, larger glass blocks tend to occupy a lot of space after entering the crushing device, leading to the risk of material accumulation and affecting crushing efficiency.

Method used

Design a waste glass crushing and recycling device. The device uses a motor to drive the rotating roller and the crushing head on the rotating disk to crush larger glass products into smaller fragments, thus avoiding taking up too much space and reducing the volume and pressure entering the main crusher.

Benefits of technology

It effectively reduces the space occupied by glass, prevents material accumulation, reduces the workload of the main crusher, and improves crushing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass recovery devices, in particular to a waste glass crushing and recovering device which comprises an upper shell, the device comprises an upper shell, mounting plates, motors I, rotating rollers, rotating discs and crushing heads, the surfaces of the left side and the right side of the upper shell are fixedly connected with the two mounting plates correspondingly, the motors I are mounted on the surfaces of the two mounting plates on the front side, the output ends of the motors I are fixedly connected with the rotating rollers, and the surfaces of the rotating rollers are fixedly connected with the three rotating discs; a plurality of crushing heads are fixedly connected to the outer side surface of the rotating disc; the motor I is started to drive the rotating roller to rotate, so that the rotating disc and the crushing head on the rotating disc rotate, and along with the rotation of the rotating disc, the crushing head can impact a larger glass product and crush the larger glass product into smaller fragments, so that the volume and the pressure when the glass product enters a main crusher are reduced, larger glass is prevented from occupying more space, and the crushing efficiency of the glass product is improved. And the risk of material accumulation is avoided.
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Description

Technical Field

[0001] This utility model relates to the technical field of glass recycling devices, and in particular to a waste glass crushing and recycling device. Background Technology

[0002] Glass is widely used in daily life. Because of its extensive use, glass needs to be recycled after it is used up. Usually, crushing equipment is used to crush the waste glass.

[0003] In common waste glass crushing and recycling equipment, larger glass blocks tend to occupy a lot of space in the crushing chamber due to their large size, reducing the effective crushing area. This not only reduces the amount of material processed each time, but may also hinder the smooth entry of subsequent materials.

[0004] Therefore, regarding the aforementioned waste glass crushing and recycling device, larger glass blocks tend to occupy a large amount of space within the crushing chamber after entering the crushing device, easily leading to the risk of material accumulation. A waste glass crushing and recycling device can be designed where, once the motor starts, it drives the rotating roller to rotate, thereby causing the rotating disc and its crushing heads to operate. As the rotating disc rotates, the crushing heads impact larger glass products, breaking them into smaller fragments. This not only reduces the volume and pressure entering the main crusher but also prevents larger glass blocks from occupying too much space, avoiding the risk of material accumulation, thus solving the aforementioned problem. Utility Model Content

[0005] To overcome the common problem in waste glass crushing and recycling devices where large glass blocks tend to occupy a large amount of space in the crushing chamber, leading to the risk of material accumulation.

[0006] The technical solution of this utility model is as follows: a waste glass crushing and recycling device, including an upper shell; it also includes a mounting plate, a motor, a rotating roller, a rotating disk and a crushing head. Two mounting plates are fixedly connected to the left and right sides of the upper shell respectively. A motor is mounted on the surface of the two front mounting plates. A rotating roller is fixedly connected to the output end of the motor. Three rotating disks are fixedly connected to the surface of the rotating roller. Multiple crushing heads are fixedly connected to the outer surface of the rotating disk.

[0007] Preferably, waste glass enters the upper housing. Once the motor starts, it drives the rotating roller to rotate, which in turn causes the rotating disc and its crushing heads to operate. As the rotating disc rotates, the crushing heads will impact larger glass products, breaking them into smaller fragments. This not only reduces the volume and pressure when entering the main crusher, but also prevents larger glass products from occupying too much space, avoiding the risk of material accumulation. The broken glass fragments fall into the lower part and enter the main crushing area, where smaller glass products are broken into blocks, thereby reducing the workload of the main crusher.

[0008] Preferably, the lower end surface of the upper shell is fixedly connected to the middle shell, and the lower end surface of the middle shell is fixedly connected to the lower shell.

[0009] Preferably, an L-shaped plate is fixedly connected to the right side surface of the middle housing, a second motor is fixedly connected to the surface of the L-shaped plate, a drive gear is fixedly connected to the output end of the second motor, and a fixing rod is fixedly connected to the side surface of the drive gear away from the second motor.

[0010] Preferably, a fixed rod two is rotatably connected inside the middle housing, and a driven gear is fixedly connected to the right end of the fixed rod two. The driven gear and the driving gear are meshed together.

[0011] Preferably, multiple fragments 1 are fixedly connected to the outer surface of the fixing rod 1, and multiple fragments 2 are fixedly connected to the outer surface of the fixing rod 2, with the fragments 1 and fragments 2 being staggered.

[0012] Preferably, the upper surface of the upper shell is provided with a feed inlet, and the lower surface of the lower shell is fixedly connected with a discharge pipe.

[0013] Preferably, four support legs are fixedly connected to the surface of the upper shell, and rubber pads are fitted at the lower ends of the support legs.

[0014] The beneficial effects of this utility model are:

[0015] 1. Waste glass enters the upper housing. Once the motor starts, it drives the rotating roller to rotate, which in turn causes the rotating disc and its crushing heads to operate. As the rotating disc rotates, the crushing heads will impact larger glass products, breaking them into smaller fragments. This not only reduces the volume and pressure entering the main crusher, but also prevents larger glass products from occupying too much space, avoiding the risk of material accumulation. The broken glass fragments fall into the lower part and enter the main crushing area, where smaller glass products are broken into blocks, thereby reducing the workload of the main crusher. Attached Figure Description

[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the waste glass crushing and recycling device of this utility model.

[0017] Figure 2 The diagram shown is a three-dimensional structural diagram of the upper shell of the waste glass crushing and recycling device of this utility model.

[0018] Figure 3 The diagram shown is a three-dimensional structural diagram of the central shell of the waste glass crushing and recycling device of this utility model.

[0019] Figure 4The diagram shown is a three-dimensional structural schematic of the location of the fixing rod of the waste glass crushing and recycling device of this utility model.

[0020] Explanation of reference numerals in the attached drawings: 1. Upper shell; 2. Middle shell; 3. Lower shell; 4. Mounting plate; 5. Motor 1; 6. Rotating roller; 7. Drive gear; 8. Rotating disc; 9. Crushing head; 10. Feed inlet; 11. L-shaped plate; 12. Motor 2; 13. Fixing rod 1; 14. Crushing disc 1; 15. Driven gear; 16. Fixing rod 2; 17. Crushing disc 2; 18. Discharge pipe; 19. Support leg; 20. Rubber pad. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Please see Figures 1-4 This utility model provides an embodiment of a waste glass crushing and recycling device, including an upper shell 1; it also includes mounting plates 4, a motor 5, a rotating roller 6, a rotating disk 8, and crushing heads 9. Two mounting plates 4 are fixedly connected to the left and right sides of the upper shell 1, respectively. The motor 5 is mounted on the surface of the two front mounting plates 4. The output end of the motor 5 is fixedly connected to the rotating roller 6. Three rotating disks 8 are fixedly connected to the surface of the rotating roller 6. Multiple crushing heads 9 are fixedly connected to the outer surface of the rotating disk 8. When waste glass enters the upper shell 1, the motor 5 starts and drives the rotating roller 6 to rotate, which in turn causes the rotating disk 8 and the crushing heads 9 on it to operate. As the rotating disk 8 rotates, the crushing heads 9 will impact larger glass products and break them into smaller fragments. This not only reduces the volume and pressure when entering the main crusher, but also prevents larger glass products from occupying too much space and avoids the risk of material accumulation. The broken glass fragments fall into the lower part and enter the main crushing area, where smaller glass products are broken into blocks, thereby reducing the workload of the main crusher.

[0023] Please see Figures 1-4In this embodiment, a middle shell 2 is fixedly connected to the lower surface of the upper shell 1, and a lower shell 3 is fixedly connected to the lower surface of the middle shell 2. The upper shell 1 is responsible for receiving and initially processing larger glass products, and its lower end is fixedly connected to the middle shell 2. The middle shell 2 serves as an intermediate transition area for collecting glass fragments after further crushing. The lower shell 3 is used to discharge the further crushed glass fragments. An L-shaped plate 11 is fixedly connected to the right surface of the middle shell 2, and a second motor 12 is fixedly connected to the surface of the L-shaped plate 11. The output of the second motor 12... A drive gear 7 is fixedly connected to the output end. A fixed rod 13 is fixedly connected to the surface of the drive gear 7 away from the motor 12. Starting the motor 12 can drive the drive gear 7 to rotate, thereby driving the fixed rod 13 to rotate. A fixed rod 16 is rotatably connected inside the middle housing 2. A driven gear 15 is fixedly connected to the right end of the fixed rod 16. The driven gear 15 is meshed with the drive gear 7. The rotation of the drive gear 7 can drive the driven gear 15 to rotate, and the mechanism connected to the drive gear 7 and the driven gear 15 will also rotate.

[0024] Please see Figures 1-4 In this embodiment, multiple crushing discs 14 are fixedly connected to the outer surface of the fixing rod 13, and multiple crushing discs 17 are fixedly connected to the outer surface of the fixing rod 16. The crushing discs 14 and 17 are staggered. The fixing rod 13 and 16 can be rotated by the driving gear 7 and the driven gear 15, thereby driving the crushing discs 14 and 17 to perform crushing work. The upper surface of the upper housing 1 is provided with a feed inlet 10, and the lower surface of the lower housing 3 is fixedly connected with a discharge pipe. 18. The upper surface of the upper housing 1 is provided with a feed port 10 to facilitate the input of waste glass products. The lower surface of the lower housing 3 is fixedly connected with a discharge pipe 18 to discharge the processed glass fragments. Four support legs 19 are fixedly connected to the surface of the upper housing 1. Rubber pads 20 are fitted on the lower end of the support legs 19. The setting of support legs 19 and rubber pads 20 not only provides stable support, but also reduces vibration and noise during equipment operation through rubber pads 20, protects the ground and improves operational safety.

[0025] During operation, waste glass enters the upper housing 1. Motor 5 starts, driving the rotating roller 6 to rotate, which in turn causes the rotating disc 8 and its crushing heads 9 to operate. As the disc 8 rotates, the crushing heads 9 impact larger glass items, breaking them into smaller fragments. This not only reduces the volume and pressure entering the main crusher but also prevents larger glass items from occupying too much space, avoiding the risk of material accumulation. The broken glass fragments fall into the lower housing and enter the main crushing area, where smaller glass items are broken into blocks, thus reducing the workload of the main crusher. The upper housing 1 is responsible for receiving and initially processing larger glass items. Its lower end is fixedly connected to the middle housing 2, which serves as an intermediate transition area for collecting glass fragments after further crushing. The lower housing 3 is used to discharge the further crushed glass fragments. The starting motor 12 drives the drive gear 7 to rotate, which in turn drives the fixed rod 13 to rotate. The rotation of the drive gear 7 drives the driven gear 15 to rotate, and the mechanism connected to the drive gear 7 and the driven gear 15 also rotates. Through the drive gear 7 and the driven gear 15, the fixed rod 13 and the fixed rod 16 can be rotated, thereby driving the crushing discs 14 and 17 to perform crushing work. The upper surface of the upper housing 1 is provided with a feed port 10 to facilitate the input of waste glass products. The lower surface of the lower housing 3 is fixedly connected with a discharge pipe 18 to discharge the processed glass fragments. The setting of the support legs 19 and the rubber pads 20 not only provides stable support, but also reduces the vibration and noise of the equipment during operation through the rubber pads 20, protecting the ground and improving operational safety.

[0026] Through the above steps, waste glass enters the upper housing 1. After the motor 5 starts, it drives the rotating roller 6 to rotate, which in turn causes the rotating disk 8 and its crushing head 9 to operate. As the rotating disk 8 rotates, the crushing head 9 will impact larger glass products and break them into smaller fragments. This not only reduces the volume and pressure when entering the main crusher, but also prevents larger glass from occupying too much space and avoids the risk of material accumulation. The broken glass fragments fall to the lower part and enter the main crushing area to break smaller glass products into blocks, thereby reducing the workload of the main crusher. This solves the common problem in waste glass crushing and recycling devices where larger glass blocks easily occupy a large amount of space in the crushing chamber, easily leading to the risk of material accumulation.

Claims

1. A waste glass crushing and recycling device, comprising an upper shell (1); characterized in that: It also includes mounting plates (4), motor one (5), rotating roller (6), rotating disk (8) and crushing head (9). Two mounting plates (4) are fixedly connected to the left and right sides of the upper housing (1). Motor one (5) is installed on the surface of the two front mounting plates (4). The output end of motor one (5) is fixedly connected to the rotating roller (6). Three rotating disks (8) are fixedly connected to the surface of the rotating roller (6). Multiple crushing heads (9) are fixedly connected to the outer surface of the rotating disk (8). The lower end surface of the upper shell (1) is fixedly connected to the middle shell (2), and the lower end surface of the middle shell (2) is fixedly connected to the lower shell (3).

2. The waste glass crushing and recycling device according to claim 1, characterized in that: An L-shaped plate (11) is fixedly connected to the right side surface of the middle shell (2). A second motor (12) is fixedly connected to the surface of the L-shaped plate (11). An active gear (7) is fixedly connected to the output end of the second motor (12). A fixing rod (13) is fixedly connected to the side surface of the active gear (7) away from the second motor (12).

3. The waste glass crushing and recycling device according to claim 2, characterized in that: The middle shell (2) is rotatably connected to a fixed rod (16), and the right end of the fixed rod (16) is fixedly connected to a driven gear (15), which is meshed with the driving gear (7).

4. The waste glass crushing and recycling device according to claim 2, characterized in that: Multiple fragments 1 (14) are fixedly connected to the outer surface of the fixing rod 1 (13), and multiple fragments 2 (17) are fixedly connected to the outer surface of the fixing rod 2 (16). The fragments 1 (14) and fragments 2 (17) are staggered.

5. The waste glass crushing and recycling device according to claim 1, characterized in that: The upper surface of the upper shell (1) is provided with a feed inlet (10), and the lower surface of the lower shell (3) is fixedly connected with a discharge pipe (18).

6. The waste glass crushing and recycling device according to claim 5, characterized in that: Four support legs (19) are fixedly connected to the surface of the upper shell (1), and rubber pads (20) are fitted on the lower end of the support legs (19).