Improved glass placing rack

The improved automated design of the glass placement rack solves the problems of time-consuming and laborious glass placement and inconvenient angle adjustment, enabling convenient glass placement and efficient angle adjustment, thus improving work efficiency and safety.

CN224198338UActive Publication Date: 2026-05-05滁州市睿发玻璃制品有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
滁州市睿发玻璃制品有限公司
Filing Date
2025-06-19
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing glass storage racks are time-consuming, labor-intensive, inconvenient, and pose safety hazards during handling and angle adjustment. They cannot meet the storage needs of glass of different sizes and are inefficient in high or low temperature environments.

Method used

An improved glass placement rack was designed, which uses a servo motor to drive a screw and gear system to realize the automatic up and down movement and angle adjustment of the glass. Combined with rubber pads and rollers to protect the glass, the operation process is simplified.

Benefits of technology

It enables convenient placement and angle adjustment of glass, reduces manual labor intensity, improves work efficiency, reduces safety risks, and adapts to the storage needs of glass of different sizes.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224198338U_ABST
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Abstract

The utility model relates to the technical field of glass placing racks, in particular to an improved glass placing rack. According to the technical scheme, the device comprises a workbench and a second rotating rod, a barrel is fixed to one side of the upper surface of the workbench, a long plate is fixed to one side of the lower surface of the workbench, a moving block is movably connected to one side of the long plate, a connecting plate is fixed to one side of the moving block, a second support is fixed to the upper surface of the connecting plate, and a batten is rotationally connected into the second support; a rotating plate is fixed to the upper surface of the batten, and a glass body is placed on the upper surface of the rotating plate. The glass body placing device has the advantages that the glass body can be conveniently placed, meanwhile, the glass body can be adjusted to different angles to be placed according to needs, time and labor are saved, and the working efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of glass placement rack technology, specifically an improved glass placement rack. Background Technology

[0002] Glass is an amorphous inorganic non-metallic material, generally made from a variety of inorganic minerals as the main raw materials, with the addition of a small amount of auxiliary raw materials.

[0003] Glass display racks are shelves or supports specifically designed for storing, displaying, or supporting glass sheets, glass products, or glassware.

[0004] Handling glass manually and placing it at an angle presents numerous inconveniences. As a brittle material, glass requires extra care during handling; even slight mishandling can cause edge breakage or surface scratches, affecting product quality.

[0005] Workers need to repeatedly bend over and lift heavy glass panels, which can easily lead to lower back strain and muscle fatigue during long hours. Existing fixed-angle storage racks cannot accommodate the storage needs of glass of different sizes. When the tilt angle needs to be adjusted, the glass often has to be completely removed and rearranged, which not only increases the labor intensity of workers but also prolongs the working time.

[0006] Especially in high- or low-temperature workshop environments, wearing heavy gloves further reduces work efficiency. The reflective properties of glass surfaces also require workers to constantly adjust their line of sight during handling, further increasing the difficulty of operation. These factors collectively lead to low efficiency and certain safety hazards in the entire workflow. Utility Model Content

[0007] The purpose of this utility model is to provide an improved glass placement rack, which facilitates the placement of glass bodies and allows the glass bodies to be adjusted to different angles as needed, saving time and effort and improving work efficiency. It solves the problems of the common practice of placing glass on the rack at an angle, which requires manual handling of the glass and then adjusting the angle, and the inability to adjust the angle as needed, as well as the time-consuming and labor-intensive manual handling of heavy glass, resulting in low work efficiency.

[0008] To achieve the above objectives, this utility model provides the following technical solution: an improved glass placement rack, comprising a worktable and a rotating rod II. A cylindrical barrel is fixed to one side of the upper surface of the worktable, and a long plate is fixed to one side of the lower surface of the worktable. A movable block is movably connected to one side of the long plate, and a connecting plate is fixed to one side of the movable block. A bracket II is fixed to the upper surface of the connecting plate, and a slat is rotatably connected inside the bracket II. A rotating plate is fixed to the upper surface of the slat, and a glass body is placed on the upper surface of the rotating plate.

[0009] Preferably, four pillars arranged in a rectangular array are fixed to the lower surface of the worktable. The four pillars support the worktable, making the entire device stable.

[0010] Preferably, a through groove is formed on one side of the outer wall of the cylindrical barrel, and a circular groove is formed on one side of the inner wall of the through groove. A rubber pad is fixed to the inner wall of the circular groove, and one side of the glass body is inserted into the circular groove. The circular groove facilitates the insertion of one side of the glass body, and the rubber pad prevents damage to the glass body.

[0011] Preferably, the upper surface of the worktable has a through groove, and a long plate is fixed to one side of the lower surface of the worktable. A long groove is also formed on one side of the long plate, into which a connecting block is inserted. A threaded hole is formed on the upper surface of the connecting block, and a circular hole is formed on the lower surface of the long plate. A motor is fixed to the long plate, and the top end of a drive shaft of the motor extends into the circular hole. A screw is fixed to the top end of the drive shaft of the motor, and the top end of the screw passes through the threaded hole and is threadedly connected. A movable block is fixed to one side of the connecting block, and the upper surface of the connecting plate has a through groove. The screw is fixed by the drive shaft of the motor, providing power for its rotation. This allows the connecting block, movable block, and connecting plate to move up and down as needed, facilitating the adjustment of the glass body's placement angle.

[0012] Preferably, the width of the long slot in the long plate matches the width of the connecting block. By matching the width of the long slot to the width of the connecting block, the long slot can limit the connection block, preventing the screw from rotating. The connecting block rotates with the screw, facilitating the up and down movement of the connecting plate.

[0013] Preferably, the second bracket has a groove on one side, and a rotating rod is rotatably connected to the front and rear ends of the inner wall of the groove. The rotating rod is fixed to the plate. The front end of the second bracket has a circular hole, and the rear end of the rotating rod extends into the circular hole and is rotatably connected. A rotating shaft is fixed to the rear end of the rotating rod, and a gear is fixed to the front end of the rotating rod. A bracket is fixed to the front end of the second bracket. The upper surface of the bracket is provided with a groove, and the front end of the bracket has a circular hole. A motor is fixed to the front end of the bracket. The rear end of the drive shaft of the motor extends into the circular hole, and a rotating rod is fixed to the rear end of the drive shaft. A gear is fixed to the rear end of the rotating rod, and the gears mesh with each other. The rotating rod is fixed by the drive shaft of the motor, providing power for the rotation of the rotating rod and gear. At the same time, the gear, rotating rod, and rotating plate can rotate as needed, and the glass body can be rotated to a suitable angle for placement.

[0014] Preferably, the upper surface of the rotating plate is provided with a mounting groove, and the front and rear ends of the inner wall of the mounting groove are respectively rotatably connected to a second rotating shaft. A roller is fixed to the rear end of the second rotating shaft, and a rubber sleeve is fitted onto the outer wall of the roller. The roller facilitates pushing one side of the glass body into the circular groove, making it convenient to adjust the angle of the glass body for placement. The rubber sleeve can prevent damage to the glass body during placement.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0016] This invention features a long plate fixed to one side of the lower surface of a workbench, with a movable block movably connected to one side of the long plate. A connecting plate is fixed to one side of the movable block, and a second bracket is fixed to the upper surface of the connecting plate. A slat is rotatably connected inside the second bracket, and a rotating plate is fixed to the upper surface of the slat. A glass body is placed on the upper surface of the rotating plate. When the glass needs to be placed, the glass body is placed on a roller, and the glass body is pushed to rotate the roller. One side of the glass body enters the circular groove. Motor 1 is started, causing the screw to rotate. The connecting plate and the rotating plate can move up and down as needed. At the same time, Motor 2 is started, causing gear 1 and gear 2 to rotate. The rotating plate and the glass body rotate to a suitable angle, allowing the glass body to be placed at a suitable angle. This design facilitates the placement of the glass body and allows it to be adjusted to different angles as needed, saving time and effort and improving work efficiency. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0018] Figure 2 This is a top view of the workbench structure of this utility model;

[0019] Figure 3 This is a cross-sectional view of the workbench structure of this utility model;

[0020] Figure 4 This is a schematic cross-sectional view of the long plate structure of this utility model;

[0021] Figure 5 This is a schematic diagram of the main structure of the bracket of this utility model;

[0022] Figure 6 This is a schematic diagram of the two-section structure of the bracket of this utility model;

[0023] Figure 7 This is a top view schematic diagram of the rotating plate structure of this utility model;

[0024] Figure 8 For the present utility model Figure 7 A magnified structural diagram at point A.

[0025] In the diagram: 1. Support column; 2. Long plate; 3. Workbench; 4. Connecting plate; 5. Rotating plate; 6. Glass body; 7. Cylindrical barrel; 8. Through slot one; 9. Through slot two; 10. Circular groove; 11. Rubber pad; 12. Motor one; 13. Circular hole one; 14. Screw; 15. Long groove; 16. Connecting block; 17. Moving block; 18. Threaded hole; 19. Gear one; 20. Motor two; 21. Bracket one; 22. Gear two; 23. Bracket two; 24. Groove one; 25. Slat; 26. Rotating rod one; 27. Circular hole two; 28. Groove two; 29. ​​Rotating rod two; 30. Circular hole three; 31. Rotating shaft one; 32. Mounting groove; 33. Rubber sleeve; 34. Roller; 35. Rotating shaft two. Detailed Implementation

[0026] 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.

[0027] Please see Figures 1 to 8 The present invention provides two embodiments:

[0028] Example 1: An improved glass placement rack includes a workbench 3 and a rotating rod 29. A cylindrical barrel 7 is fixed to one side of the upper surface of the workbench 3, and a long plate 2 is fixed to one side of the lower surface of the workbench 3. A movable block 17 is movably connected to one side of the long plate 2, and a connecting plate 4 is fixed to one side of the movable block 17. A bracket 23 is fixed to the upper surface of the connecting plate 4. A slat 25 is rotatably connected inside the bracket 23. A rotating plate 5 is fixed to the upper surface of the slat 25, and a glass body 6 is placed on the upper surface of the rotating plate 5.

[0029] Four pillars 1 arranged in a rectangular array are fixed on the lower surface of the workbench 3;

[0030] A through groove 2 9 is provided on one side of the outer wall of the cylindrical barrel 7, and a circular groove 10 is provided on one side of the inner wall of the through groove 2 9. A rubber pad 11 is fixed on the inner wall of the circular groove 10, and one side of the glass body 6 is inserted into the circular groove 10.

[0031] In this embodiment, when it is necessary to place the glass body 6, the glass body 6 is placed on the roller 34 and pushed so that one side of the glass body 6 extends into the circular groove 10 opened in the cylindrical barrel 7, which facilitates the movement of the glass body 6. This achieves the effect of convenient placement of the glass body 6, saving time and effort, and improving work efficiency.

[0032] Example 2:

[0033] The upper surface of the workbench 3 is provided with a through groove 8. A long plate 2 is fixed to one side of the lower surface of the workbench 3. A long groove 15 is provided on one side of the long plate 2. A connecting block 16 is inserted into the long groove 15. A threaded hole 18 is provided on the upper surface of the connecting block 16. A round hole 13 is provided on the lower surface of the long plate 2. A motor 12 is fixed to the long plate 2. The top end of the drive shaft of the motor 12 extends into the round hole 13. A screw 14 is fixed to the top end of the drive shaft of the motor 12. The top end of the screw 14 passes through the threaded hole 18 and is threaded. A moving block 17 is fixed to one side of the connecting block 16. The upper surface of the connecting plate 4 is provided with a through groove 8.

[0034] The drive shaft fixing screw 14 of the motor 12 provides power for the rotation of the screw 14, so that the connecting plate 4 and the rotating plate 5 can move up and down as needed, making it convenient to place the glass body 6 at different angles.

[0035] The width of the long slot 15 in the long plate 2 matches the width of the connecting block 16;

[0036] A groove 24 is provided on one side of bracket 23. Rotating rod 29 is rotatably connected to the front and rear ends of the inner wall of groove 24. Rotating rod 29 is fixed to plate 25. A circular hole 30 is provided at the front end of bracket 23. The rear end of rotating rod 29 extends into circular hole 30 and is rotatably connected. A rotating shaft 31 is fixed at the rear end of rotating rod 29. A gear 22 is fixed at the front end of rotating rod 29. A bracket 21 is fixed at the front end of bracket 23. A groove 28 is provided on the upper surface of bracket 21. A circular hole 27 is provided at the front end of bracket 21. A motor 20 is fixed at the front end of bracket 21. The rear end of the transmission shaft of motor 20 extends into circular hole 27. A rotating rod 26 is fixed at the rear end of the transmission shaft of motor 20. A gear 19 is fixed at the rear end of rotating rod 26. Gear 19 meshes with gear 22.

[0037] The drive shaft of motor 20 is fixed to the rotating rod 26, which provides power for the rotation of the rotating rod 26 and the gear 19. At the same time, the gear 22, the strip 25 and the rotating plate 5 can be rotated as needed, so that the glass body 6 can be placed at different angles.

[0038] Motor 12 and Motor 20 are servo motors. A servo motor is a precision control motor whose structure and working principle are closely integrated to achieve high-precision motion control. Structurally, a servo motor typically consists of three main parts: the motor body, the encoder, and the controller. The motor body includes a stator and a rotor. When current is applied to the stator windings, a rotating magnetic field is generated. The rotor uses permanent magnets or a winding structure, generating torque under the influence of the magnetic field. The encoder, as a position feedback element, is usually installed at the rear end of the motor shaft, monitoring the rotor position in real time and feeding the signal back to the controller. The controller, acting as the brain, receives external command signals and compares them with the encoder feedback, achieving precise control by adjusting the motor winding current.

[0039] The working principle of a servo motor embodies the essence of closed-loop control. When the controller receives a position or speed command, it drives the motor to rotate, while the encoder continuously detects the actual position and feeds it back to the controller. The controller compares the deviation between the target value and the actual value, and uses control algorithms such as PID to adjust the magnitude and direction of the output current in real time. This closed-loop regulation enables the motor to respond quickly to commands, and even under load changes or external disturbances, it can maintain a precise operating state through continuous error correction.

[0040] Motor 12 and Motor 20 are connected to a conventional power supply, which provides power for the operation of Motor 12 and Motor 20.

[0041] The upper surface of the rotating plate 5 is provided with an installation groove 32. The front and rear ends of the inner wall of the installation groove 32 are respectively rotatably connected to the second rotating shaft 35. The rear end of the second rotating shaft 35 is fixed with a roller 34, and the outer wall of the roller 34 is fitted with a rubber sleeve 33.

[0042] In this embodiment, when the glass body 6 needs to be placed, one side of the glass body 6 is inserted into the circular groove 10. Motor 12 is started, causing the screw 14 to rotate. The connecting block 16, moving block 17, connecting plate 4, and rotating plate 5 can move up and down as needed. Simultaneously, motor 20 is started, causing gear 19, gear 22, plate 25, and rotating plate 5 to rotate as needed. The glass body 6, placed on the rotating plate 5, can be rotated to a suitable angle for placement. This achieves the effect of adjusting the glass body 6 to different angles as needed, saving time and effort, and improving work efficiency.

[0043] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. An improved glass placement rack, comprising a worktable (3) and a rotating rod (29), characterized in that: A cylindrical barrel (7) is fixed on one side of the upper surface of the workbench (3), and a long plate (2) is fixed on one side of the lower surface of the workbench (3). A movable block (17) is movably connected to one side of the long plate (2), and a connecting plate (4) is fixed to one side of the movable block (17). A second bracket (23) is fixed on the upper surface of the connecting plate (4), and a slat (25) is rotatably connected inside the second bracket (23). A rotating plate (5) is fixed on the upper surface of the slat (25), and a glass body (6) is placed on the upper surface of the rotating plate (5).

2. The improved glass storage rack according to claim 1, characterized in that: The workbench (3) has four pillars (1) arranged in a rectangular array fixed on its lower surface.

3. The improved glass storage rack according to claim 1, characterized in that: A through groove 2 (9) is provided on one side of the outer wall of the cylindrical barrel (7), and a circular groove (10) is provided on one side of the inner wall of the through groove 2 (9). A rubber pad (11) is fixed on the inner wall of the circular groove (10), and one side of the glass body (6) is inserted into the circular groove (10).

4. The improved glass shelf according to claim 1, characterized in that: The upper surface of the workbench (3) is provided with a through groove (8), and a long plate (2) is fixed on one side of the lower surface of the workbench (3). A long groove (15) is provided on one side of the long plate (2). A connecting block (16) is inserted into the long groove (15). A threaded hole (18) is provided on the upper surface of the connecting block (16). A round hole (13) is provided on the lower surface of the long plate (2). A motor (12) is fixed on the long plate (2). The top end of the transmission shaft of the motor (12) extends into the round hole (13). A screw (14) is fixed on the top end of the transmission shaft of the motor (12). The top end of the screw (14) passes through the threaded hole (18) and is threaded. A moving block (17) is fixed on one side of the connecting block (16). The upper surface of the connecting plate (4) is provided with a through groove (8).

5. The improved glass shelf according to claim 4, characterized in that: The width of the long slot (15) opened on the long plate (2) matches the width of the connecting block (16).

6. The improved glass shelf according to claim 1, characterized in that: The bracket two (23) has a groove one (24) on one side. The inner walls of the groove one (24) are rotatably connected to the front and rear ends of the rotating rod two (29). The rotating rod two (29) is fixed to the strip (25). The front end of the bracket two (23) has a round hole three (30). The rear end of the rotating rod two (29) extends into the round hole three (30) and is rotatably connected. The rear end of the rotating rod two (29) is fixed with a rotating shaft one (31). The front end of the rotating rod two (29) is fixed with a gear two (22). The front end of the bracket two (23) is fixed with a rotating shaft one (31). A bracket (21) is provided, and a groove (28) is provided on the upper surface of the bracket (21). A round hole (27) is provided at the front end of the bracket (21). A motor (20) is fixed at the front end of the bracket (21). The rear end of the drive shaft of the motor (20) extends into the round hole (27). A rotating rod (26) is fixed at the rear end of the drive shaft of the motor (20). A gear (19) is fixed at the rear end of the rotating rod (26). The gear (19) meshes with the gear (22).

7. The improved glass storage rack according to claim 1, characterized in that: The upper surface of the rotating plate (5) is provided with an installation groove (32). The front and rear ends of the inner wall of the installation groove (32) are respectively rotatably connected to the second rotating shaft (35). The rear end of the second rotating shaft (35) is fixed with a roller (34), and the outer wall of the roller (34) is fitted with a rubber sleeve (33).