Toughened glass production transfer device

By designing the cushioning lining and auxiliary positioning components in the transfer cabin, the damping rod and cushioning spring reduce the bump impact, the crushing problem caused by collision and bumps during the handling process is solved, and safer transportation is achieved.

CN223059034UActive Publication Date: 2025-07-04JINGMEN XINANTAI TEMPERED GLASS CO LTD
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Patent Information

Application Number
CN202421834333.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-04
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

Tempered glass is prone to breaking due to collision and bumps during handling, and the existing devices lack effective buffering and separation measures.

Method used

Using a design including a transfer cabin, a cushioning lining, an auxiliary positioning assembly and an auxiliary lift assembly, the damping rod, a cushioning spring and a self-locking universal wheel reduces bump impact, separates the glass through an auxiliary positioning assembly, avoids collisions, and shock absorbs through the cushioning lining and a damping rod.

Benefits of technology

It effectively avoids the damage caused by collision and bumps during transportation, improves transportation safety and stability, and reduces the risk of glass breakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tempered glass production transfer device, and relates to the technical field of tempered glass production transfer. The damping device comprises a transfer carriage, a top frame, a buffer lining, an auxiliary positioning assembly and an auxiliary lifting assembly, cavities for installing damping rods are formed in the four corners of the bottom of the transfer carriage, and the damping rods are fixedly installed in the cavities; a plurality of pieces of tempered glass placed in the transfer carriage can be separated through the auxiliary positioning assemblies, so that the situation of mutual collision is avoided, and the situation that the tempered glass collides with the inner wall of the transfer carriage due to bumping in the transportation process can be avoided through the buffering linings. And in order to reduce the bumping condition, the bumping impact of the self-locking universal wheel in the moving process is reduced through mutual cooperation of a damping rod, a buffer spring and a buffer block, that is, the buffer spring absorbs the bumping impact force, and then the damping rod is used for restraining elastic potential energy released by the buffer spring for shock absorption.
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Description

Technical Field

[0001] The utility model belongs to the field of production and transportation of tempered glass, and more specifically, relates to a production and transportation device for tempered glass. Background Art

[0002] Tempered glass belongs to safety glass and is a kind of prestressed glass. To improve the strength of the glass, chemical or physical methods are usually used to form compressive stress on the glass surface. When the glass bears external force, the surface stress is offset first, thus improving the bearing capacity. Tempered glass has the advantages of high mechanical strength, good elasticity, good thermal stability, and not easy to hurt people after breaking, so it is widely used. After the production of tempered glass is completed, it often needs to be transported and packed in boxes. However, during the transportation process, the tempered glass is prone to problems such as breaking. In view of this, the present utility model is specifically proposed. Content of the Utility Model

[0003] The technical problem to be solved by the present utility model is to overcome the deficiencies of the prior art and provide a production and transportation device for tempered glass.

[0004] To solve the above technical problems, the basic concept of the technical solution adopted by the present utility model is as follows:

[0005] A production and transportation device for tempered glass includes a transportation carriage, a top frame, a buffer lining, an auxiliary positioning component, and an auxiliary lifting component. Cavities for installing damping rods are provided at the four corners of the bottom of the transportation carriage. The damping rods are fixedly installed inside the cavities. The telescopic ends of the damping rods penetrate through the bottom of the transportation carriage and are fixed to buffer blocks. A buffer spring is sleeved outside the telescopic ends of the damping rods. The upper and lower ends of the buffer spring are in contact with the buffer block and the transportation carriage respectively. A self-locking universal wheel is installed at the bottom of the buffer block;

[0006] The buffer lining is fixed inside the transportation carriage, and a plurality of auxiliary positioning components for preventing the tempered glass from colliding with each other during transportation are arranged at equal intervals inside the buffer lining;

[0007] Socket rods are fixed at the four corners of the upper end of the transportation carriage. Installation cavities for installing electric lifting columns are provided inside the socket rods and at the upper end of the transportation carriage. The telescopic end of each electric lifting column penetrates through the top of the socket rod and is fixed to the bottom of the same top frame. A slide rail for installing the auxiliary lifting component is fixed in the middle of the top frame.

[0008] Optionally, multiple auxiliary positioning components include a box body, a telescopic side panel, a folding airbag and an air guide tube. The box body is fixed to the inner wall of the transfer compartment by screws penetrating the buffer lining. Grooves for the telescopic side panels to move are provided on both sides of the interior of the box body, and the upper and lower ends of each telescopic side panel are respectively slidably connected to the guide rails at the upper and lower ends of the box body. A folding airbag is installed between the two telescopic side panels, and the folding airbag is located inside the box body. The front end air nozzle of the folding airbag penetrates the transfer compartment and the drive box on one side of the transfer compartment through a conduit and is fixed to the multi-way tube. A polyurethane pad is bonded to the outer surface of the telescopic side panel, and a plurality of protective protrusions are provided on the contact surface between the polyurethane pad and the tempered glass.

[0009] Optionally, a partition is provided inside the drive box, a controller is provided above the partition, and a dual-purpose pump is provided below the partition, the gas injection end of the dual-purpose pump is connected to the multi-way pipe, and the dual-purpose pump is connected to the controller circuit through a wire, and an air hole is opened at the front end of the drive box, and a dustproof net is provided inside the air hole.

[0010] Optionally, a dustproof accordion sleeve is sleeved on the outside of the telescopic end of each damping rod, and the upper and lower ends of the dustproof accordion sleeve are respectively fixed to the buffer block and the bottom of the transfer compartment.

[0011] Optionally, the auxiliary lifting assembly includes an electric hoist, a buckle, a connecting seat, a movable rail, a movable block, a connecting block, a connecting rope and a glass suction cup, the electric hoist is slidably connected to the lower end of the slide rail, a buckle is installed at the lifting end of the electric hoist, and the lifting end of the electric hoist is installed with the connecting seat through the buckle, a makeshift groove for the movement of two connecting blocks is opened at the lower end of the connecting seat, movable blocks are fixed at the upper ends of the two connecting blocks, and the movable blocks are slidably connected to the lower end of the movable rail at the top end of the connecting seat, connecting ropes are installed at the lower ends of the two movable blocks, and glass suction cups are fixed at both end ends of the two connecting ropes, a telescopic rod is provided between the two movable blocks, and a resistance spring that resists the opposite surfaces of the two movable blocks is sleeved on the outside of the telescopic rod.

[0012] Optionally, lifting ears are fixed on both sides of the connecting seat, and pulling ropes are fixed to the outsides of the two lifting ears.

[0013] After adopting the above technical solution, the utility model has the following beneficial effects compared with the prior art. Of course, any product implementing the utility model does not necessarily need to achieve all the advantages described below at the same time:

[0014] After investigation, we found that the reasons for breakage occurred in two aspects. One was that the tempered glass stacked during transportation collided with each other during the transfer process, resulting in breakage. The other was that the transfer device did not have a buffer when passing through bumpy roads, causing too large a bump amplitude and the tempered glass collided with the inner wall of the transfer device, resulting in damage. For problem one, the utility model uses an auxiliary positioning component to separate multiple pieces of tempered glass placed inside the transfer carriage, so that they will not collide with each other. For problem two, the utility model uses a buffer lining to prevent the tempered glass from colliding with the inner wall of the transfer carriage due to bumps during transportation. And in order to reduce the bump situation, the damping rod, buffer spring and buffer block are used in cooperation to reduce the bump impact of the self-locking universal wheel during movement, that is, the buffer spring absorbs the impact force of the bump, and then the damping rod is used to suppress the elastic potential energy released by the buffer spring for shock absorption.

[0015] The following further describes in detail the specific implementation manners of the utility model with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The following drawings in the description are only some embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. In the drawings:

[0017] Figure 1 is the front view sectional structure schematic diagram of the utility model;

[0018] Figure 2 is the combined part structure diagram of the auxiliary positioning component in the utility model;

[0019] Figure 3 is the combined part structure diagram of the connecting seat, pulling rope, moving block and glass suction cup in the utility model;

[0020] Figure 4 is the combined part structure diagram of the polyurethane pad and anti-slip bumps in the utility model;

[0021] Figure 5 is Figure 1 the enlarged schematic diagram of the part structure of part A in

[0022] Figure 6 is Figure 2 the enlarged schematic diagram of the part structure of part B in

[0023] Figure 7 is Figure 3 the enlarged schematic diagram of the part structure of part C in

[0024] In the drawings, the list of components represented by each reference numeral is as follows:

[0025] 1. Transfer carriage; 2. Damping rod; 3. Buffer block; 4. Buffer spring; 5. Self-locking universal wheel; 6. Buffer lining; 7. Tempered glass; 8. Sleeve rod; 9. Electric lift column; 10. Lifting lug; 11. Top frame; 12. Slide rail; 13. Box body; 14. Pulling rope; 15. Telescopic side plate; 16. Guide rail; 17. Folding airbag; 18. Duct; 19. Drive box; 20. Multi-way pipe; 21. Polyurethane pad; 22. Protective bump; 23. Controller; 24. Dual-purpose pump; 25. Dust filter; 26. Dust-proof bellows; 27. Electric hoist; 28. Ring buckle; 29. Lifting end; 30. Connecting seat; 31. Connecting block; 32. Moving block; 33. Connecting rope; 34. Glass suction cup; 35. Telescopic rod; 36. Resisting spring.

[0026] It should be noted that these drawings and text descriptions are not intended to limit the scope of the concept of the present utility model in any way, but to illustrate the concept of the present utility model to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0027] Now, the present utility model will be further described in detail with reference to the drawings.

[0028] Please refer to Figures 1 to 7 , the present utility model provides a technical solution: a tempered glass production transfer device, including a transfer carriage 1, a top frame 11, a buffer lining 6, an auxiliary positioning component and an auxiliary lifting component. Cavities for installing damping rods 2 are opened at the four corners of the bottom of the transfer carriage 1. The damping rods 2 are fixedly installed inside the cavities. The telescopic ends of the damping rods 2 penetrate through the bottom of the transfer carriage 1 and are fixed to the buffer blocks 3. A buffer spring 4 is sleeved outside the telescopic ends of the damping rods 2. The upper and lower ends of the buffer spring 4 are respectively in contact with the buffer block 3 and the transfer carriage 1. Self-locking universal wheels 5 are installed at the bottom of the buffer block 3;

[0029] A buffer lining 6 is fixed inside the transfer carriage 1, and a plurality of auxiliary positioning components for preventing the tempered glass 7 from colliding with each other during transportation are arranged at equal intervals inside the buffer lining 6;

[0030] At the four corners of the upper end of the transfer carriage 1, sleeve rods 8 are fixedly installed. Inside the sleeve rods 8 and at the upper end of the transfer carriage 1, there is an installation cavity for installing the electric lifting columns 9. The telescopic end of each electric lifting column 9 penetrates through the top of the sleeve rod 8 and is fixedly connected to the bottom of the same top frame 11. In the middle of the top frame 11, a slide rail 12 for installing the auxiliary lifting assembly is fixedly installed. Considering that after the toughened glass 7 is completed, it often needs to be transported and packed. However, during the transportation process, the toughened glass 7 is prone to problems such as breakage. After investigation, we found that the breakage reasons are in two aspects. One is that the stacked toughened glass 7 collides with each other during the transfer process during transportation, resulting in damage. The other is that when the transfer device passes through bumpy roads, there is no buffer, causing too large a bump amplitude, and the toughened glass 7 collides with the inner wall of the transfer device, resulting in damage. For the first problem, the utility model uses the auxiliary positioning assembly to separate multiple pieces of toughened glass 7 placed inside the transfer carriage 1, so that they will not collide with each other. For the second problem, the utility model uses the buffer lining 6 to prevent the toughened glass 7 from colliding with the inner wall of the transfer carriage 1 during transportation due to bumps. And in order to reduce the bump situation, the damping rod 2, the buffer spring 4 and the buffer block 3 are used in cooperation to reduce the bump impact of the self-locking universal wheel 5 during the moving process, that is, the buffer spring 4 absorbs the impact force of the bump, and then the damping rod 2 is used to suppress the elastic potential energy released by the buffer spring 4 for shock absorption.

[0031] Among them, multiple auxiliary positioning assemblies each include a box body 13, a telescopic side plate 15, a folding airbag 17 and an air guide pipe. The box body 13 is fixed to the inner wall of the transfer carriage 1 by screws passing through the buffer lining 6. On both sides inside the box body 13, slots for the telescopic side plate 15 to move are opened. And the upper and lower ends of each telescopic side plate 15 are respectively slidably connected to the guide rails 16 at the upper and lower ends inside the box body 13. A folding airbag 17 is installed between the two telescopic side plates 15. The folding airbag 17 is located inside the box body 13. The front air nozzle of the folding airbag 17 passes through the transfer carriage 1 and the drive box 19 on one side of the transfer carriage 1 through a conduit 18 and is fixed to a multi-way pipe 20. A polyurethane pad 21 is adhesively bonded to the outer surface of the telescopic side plate 15. On the contact surface between the polyurethane pad and the toughened glass 7, there are multiple protective bumps 22. By setting the auxiliary positioning assembly, it plays a role of separating and storing multiple pieces of glass placed in the transfer carriage 1, preventing them from colliding with each other, and it is convenient to take and use. Just use the dual-purpose pump 24 to inject air into and extract air from the inside of the folding airbag 17.

[0032] Among them, inside the drive box 19, there is a partition board. Above the partition board, there is a controller 23, and below the partition board, there is a dual-purpose pump 24. The air injection end of the dual-purpose pump 24 is communicated with the multi-way pipe 20, and the dual-purpose pump 24 is electrically connected to the controller 23 through a wire. At the front end of the drive box 19, there are ventilation holes, and inside the ventilation holes, there is a dust-proof net 25. By setting the controller 23, it is convenient for the user to control the dual-purpose pump 24 and the electric hoist 27.

[0033] Among them, the telescopic end of each damping rod 2 is covered with a dustproof accordion cover 26, and the upper and lower ends of the dustproof accordion cover 26 are respectively fixed to the buffer block 3 and the bottom of the transfer carriage 1. The dustproof accordion cover 26 prevents dust from entering and adhering to the telescopic end surface of the damping rod 2.

[0034] The auxiliary lifting assembly includes an electric hoist 27, a buckle 28, a connecting seat 30, a moving rail, a moving block 32, a connecting block 31, a connecting rope 33 and a glass suction cup 34. The electric hoist 27 is slidably connected to the lower end of the slide rail 12. The buckle 28 is installed at the lifting end 29 of the electric hoist 27, and the lifting end 29 of the electric hoist 27 is installed with the connecting seat 30 through the buckle 28. The lower end of the connecting seat 30 is provided with a make way groove for the movement of two connecting blocks 31. The upper ends of the two connecting blocks 31 are fixed with moving blocks 32, and the moving blocks 32 are slidably connected to the lower end of the moving rail at the top of the inner side of the connecting seat 30. The lower ends of the two moving blocks 32 are installed with connecting ropes 33, and the two ends of the two connecting ropes 33 are connected. A glass suction cup 34 is fixed on the head, a telescopic rod 35 is provided between the two moving blocks 32, and a resistance spring 36 is sleeved on the outside of the telescopic rod 35 to resist the opposite surfaces of the two moving blocks 32. By setting an auxiliary lifting component, it is convenient for workers to carry glass, that is, the auxiliary lifting component can be used to complete the lifting of the glass, so that it is beneficial for workers to carry the tempered glass 7 at a comfortable carrying angle. That is, when in use, the glass suction cup 34 and the surface of the tempered glass 7 are used, and then the electric hoist 27 is started to make the lifting end 29 of the electric hoist 27 contract, so that the tempered glass 7 is lifted out, and in order to facilitate workers to take it, the two pulling ropes 14 fixed on the outside of the lifting ear 10 can be used to adjust the tilt direction of the tempered glass 7.

[0035] Among them, the two sides of the connecting seat 30 are fixed with lifting ears 10, and the outsides of the two lifting ears 10 are fixed with pulling ropes 14. The lifting ears 10 are provided to facilitate the user to install the pulling rope 14 for adjusting the orientation of the tempered glass 7.

[0036] The present invention is not limited to the above-mentioned implementation modes. Anyone should be aware of the structural changes made under the inspiration of the present invention. Any technical solution that is the same or similar to the present invention falls within the protection scope of the present invention. The technology, shape, and structure that are not described in detail in the present invention are all known technologies.

Claims

1. A production transfer device for tempered glass (7), comprising a transfer carriage (1), a top frame (11), a buffer lining (6), an auxiliary positioning assembly and an auxiliary lifting assembly, characterized in that, The four corners of the bottom of the transfer carriage (1) are each provided with a cavity for installing the damping rod (2). The damping rod (2) is fixedly installed inside the cavity. The telescopic end of the damping rod (2) penetrates through the bottom of the transfer carriage (1) and is fixed to the buffer block (3). A buffer spring (4) is sleeved outside the telescopic end of the damping rod (2). The upper and lower ends of the buffer spring (4) are respectively in contact with the buffer block (3) and the transfer carriage (1). A self-locking universal wheel (5) is installed at the bottom of the buffer block (3). A buffer lining (6) is fixed inside the transfer carriage (1). A plurality of auxiliary positioning components for preventing the tempered glass (7) from colliding with each other during transportation are arranged at equal intervals inside the buffer lining (6). The four corners of the upper end of the transfer carriage (1) are each fixed with a sleeve rod (8). An installation cavity for installing the electric lifting column (9) is provided inside the sleeve rod (8) and at the upper end of the transfer carriage (1). The telescopic end of each electric lifting column (9) penetrates through the top of the sleeve rod (8) and is fixed to the bottom of the same top frame (11). A slide rail (12) for installing the auxiliary lifting component is fixed in the middle of the top frame (11).

2. The production transfer device for a tempered glass (7) according to claim 1, characterized in that, A plurality of the auxiliary positioning components each include a box body (13), a telescopic side plate (15), a folding airbag (17) and an air duct. The box body (13) is fixed to the inner wall of the transfer carriage (1) by screws passing through the buffer lining (6). Slots for the telescopic side plates (15) to move are provided on both sides inside the box body (13). The upper and lower ends of each telescopic side plate (15) are respectively slidably connected to the guide rails (16) at the upper and lower ends inside the box body (13). A folding airbag (17) is installed between the two telescopic side plates (15). The folding airbag (17) is located inside the box body (13). The front air nozzle of the folding airbag (17) is fixed to a multi-way pipe (20) through a conduit (18) passing through the transfer carriage (1) and the drive box (19) on one side of the transfer carriage (1). A polyurethane pad (21) is bonded to the outer surface of the telescopic side plate (15). A plurality of protective bumps (22) are provided on the contact surface between the polyurethane pad and the tempered glass (7).

3. A production transfer device for tempered glass (7) according to claim 2, characterized in that, A partition is provided inside the drive box (19). A controller (23) is provided above the partition, and a dual-purpose pump (24) is provided below the partition. The air injection end of the dual-purpose pump (24) is communicated with the multi-way pipe (20), and the dual-purpose pump (24) is electrically connected to the controller (23) through a wire. A ventilation hole is provided at the front end of the drive box (19), and a dust-proof net (25) is provided inside the ventilation hole.

4. A production transfer device for tempered glass (7) according to claim 1, characterized in that, A dust-proof bellows (26) is sleeved outside the telescopic end of each damping rod (2), and the upper and lower ends of the dust-proof bellows (26) are respectively fixed to the buffer block (3) and the bottom of the transfer carriage (1).

5. A production transfer device for tempered glass (7) according to claim 1, characterized in that, The auxiliary lifting assembly includes an electric hoist (27), a ring buckle (28), a connecting seat (30), a moving rail, a moving block (32), a connecting block (31), a connecting rope (33) and a glass suction cup (34). The electric hoist (27) is slidably connected to the lower end of the slide rail (12). A ring buckle (28) is installed at the lifting end (29) of the electric hoist (27), and the lifting end (29) of the electric hoist (27) is installed with the connecting seat (30) through the ring buckle (28). A relief groove for the movement of two connecting blocks (31) is formed at the lower end of the connecting seat (30). The upper ends of the two connecting blocks (31) are both fixed with moving blocks (32), and the moving blocks (32) are slidably connected to the lower end of the moving rail at the inner top of the connecting seat (30). Connecting ropes (33) are installed at the lower ends of the two moving blocks (32), and glass suction cups (34) are fixed at both ends of the two connecting ropes (33). An expansion rod (35) is arranged between the two moving blocks (32), and a resisting spring (36) that resists the opposite surfaces of the two moving blocks (32) is sleeved outside the expansion rod (35).

6. A production and transfer device for tempered glass (7) according to claim 5, characterized in that, Lifting lugs (10) are fixed on both sides of the connecting seat (30), and pulling ropes (14) are fixed outside the two lifting lugs (10).