Transmission structure for glass longitudinal separation device

By designing a transmission structure with a transmission shaft, a toothed pulley group and a rotating shaft in the glass longitudinal division device, the problem of inconsistent rotation speed of the entire rubber roller in the traditional transmission structure is solved, and the consistency of glass transmission speed and the improvement of longitudinal division accuracy is achieved.

CN222877816UActive Publication Date: 2025-05-16QINHUANGDAO HUAKAN GLASS MACHINERY
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Patent Information

Application Number
CN202421846347.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-05-16
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The traditional transmission structure uses multiple drivers in the glass longitudinal division device, resulting in inconsistent rotation speed of the entire rubber roller, affecting the glass transmission speed and longitudinal division accuracy.

Method used

A transmission structure including a transmission shaft, a toothed pulley set and a rotating shaft is designed, and these components drive multiple full rubber rollers to rotate simultaneously to ensure the consistency of glass transmission speed.

Benefits of technology

It realizes the uniformity of glass transmission speed, improves the vertical segment accuracy and work efficiency, and is convenient for staff to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a transmission structure for a glass longitudinal separation device, which is applied to the field of glass production and comprises three supporting legs, the upper ends of the three supporting legs are jointly and fixedly connected with a rectangular tubular beam, the left end and the right end of the rectangular tubular beam are respectively and fixedly connected with a motor and a protective shell, and the upper end of the rectangular tubular beam is rotatably connected with a transmission shaft. The left end of the transmission shaft is fixedly connected with the output end of the motor, the right end of the transmission shaft penetrates into the protective shell, the lower end of the rectangular tubular beam is fixedly connected with a plurality of fixing plates, a rotating shaft movably penetrates through the surfaces of the fixing plates and the two supporting legs on the right side, and the right end of the rotating shaft penetrates into the protective shell. By adopting the structures such as the transmission shaft and the like, when in use, a plurality of splayed rollers can be driven to rotate at the same time by using the transmission shaft, the tooth-shaped belt wheel group and the rotating shaft, so that the glass conveying speed is consistent, the working efficiency is improved, and the use of a worker is facilitated.
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Description

Technical Field

[0001] The utility model relates to a transmission structure, in particular to a transmission structure for a glass longitudinal dividing device applied in the field of glass production. Background Art

[0002] The longitudinal splitting device is one of the cold end equipment of the float glass production line. While conveying the glass sheets transferred from the edge breaking roller, the device drives the longitudinal breaking wheel to lift up through the cylinder, breaks the glass plate along the longitudinal cut in the middle, and then separates the two glass sheets longitudinally through the full rubber roller driven by the cylinder and conveys them to the inspection area.

[0003] When using the longitudinal splitting device, it is necessary to break multiple glasses at the same time through multiple full rubber rollers when conveying the glass. The traditional transmission structure will use multiple drivers, which may cause the rotation speed of the eight-shaped stick to be different, and then cause inconsistent transmission speed of the glass, which also leads to inconsistent longitudinal splitting accuracy of the glass, and is inconvenient for staff to use. Utility Model Content

[0004] In view of the above-mentioned prior art, the technical problem to be solved by the utility model is that the traditional transmission structure needs to use multiple drivers, which may cause the rotation speed of all rubber rollers to be inconsistent, thereby affecting the transmission speed and longitudinal division accuracy of the glass.

[0005] To solve the above problems, the utility model provides a transmission structure for a glass longitudinal dividing device, including three supporting legs, the upper ends of the three supporting legs are commonly fixedly connected with a rectangular tube beam, the left and right ends of the rectangular tube beam are respectively fixedly connected with a motor and a protective shell, the upper end of the rectangular tube beam is rotatably connected with a transmission shaft, the left end of the transmission shaft is fixedly connected to the output end of the motor, the right end of the transmission shaft passes through the protective shell, the lower end of the rectangular tube beam is fixedly connected with a plurality of fixed plates, the plurality of fixed plates and the surfaces of the two supporting legs on the right side are movably penetrated by a rotating shaft, the right end of the rotating shaft passes through the protective shell, the outer ends of the rotating shaft and the transmission shaft are commonly fixedly sleeved with a toothed belt pulley group, the outer ring fixed sleeve of the rotating shaft is provided with a plurality of disks, the outer surface of the disk is sleeved with a circular belt, the upper end of the rectangular tube beam is fixedly connected with a plurality of longitudinal dividing beams, the upper end of the longitudinal dividing beam is fixedly connected with two electric telescopic rods, and the lower end of the longitudinal dividing beam is fixedly connected with a rotating component.

[0006] In the transmission structure for the glass longitudinal dividing device, by using a transmission shaft, a toothed belt pulley set and a rotating shaft, multiple full rubber rollers can be driven to rotate simultaneously, so that the glass transmission speed is consistent, the work efficiency is improved, and it is convenient for the staff to use.

[0007] As a further improvement of the present application, a plurality of guide sleeves are fixedly passed through the upper end of the rectangular tube beam, the guide sleeves are located directly below the longitudinal beams, and copper sleeves are fixedly connected to the upper and lower ends of the inner cavity of the guide sleeves.

[0008] As a further improvement and supplement to the present application, the rotating assembly includes a mounting seat, which is fixedly mounted on the lower end of the rectangular tube beam, one end of the mounting seat is rotatably connected to a cylinder, and the end of the cylinder away from the mounting seat is rotatably connected to a crank, the lower end of the crank is fixedly penetrated by a vertical shaft, and the upper end of the vertical shaft is sequentially penetrated by a guide sleeve, two copper sleeves and fixedly connected to the lower end of the longitudinal beam.

[0009] As a further improvement of the present application, the diameter of the disc is greater than the width of the rectangular tube beam, and the rectangular tube beam is located inside the circular belt and does not contact the circular belt.

[0010] As another improvement of the present application, the transmission shaft is located at the rear side of the longitudinal beam, and the transmission shaft does not contact the longitudinal beam. The upper end of the protective shell is inclined toward the upper rear, and a cross beam is fixedly connected between two adjacent support legs.

[0011] As another improvement of the present application, the outer ring of the circular belt is provided with two limit blocks, and the corresponding ends of the two limit blocks are respectively fixedly connected to the front and rear ends of the rectangular tube beam. The limit blocks include a circular ring and a long plate, and the inner diameter of the circular ring is larger than the diameter of the circular belt.

[0012] To sum up, in actual application, a full rubber roller is installed between two electric telescopic rods, and the other end of the circular belt is placed on the full rubber roller. Starting the motor can drive the transmission shaft to rotate, thereby causing the toothed belt pulley group to rotate, and the rotating shaft also rotates accordingly. The multiple discs on the rotating shaft also rotate at the same time, so that the circular belts on the surface of the disc drive the multiple full rubber rollers to rotate at the same time, and the multiple full rubber rollers drive the glass to move forward, which effectively avoids the deviation of the glass caused by the different rotation speeds of the full rubber rollers, improves the longitudinal division accuracy, and is convenient for the staff to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the structure of the first implementation method of this application;

[0014] Figure 2 This is a rear view of the rectangular tube beam structure of the first embodiment of the present application;

[0015] Figure 3 This is a cross-sectional view of the protective shell structure of the first embodiment of the present application;

[0016] Figure 4 This is a schematic diagram of the full rubber roller structure of the first embodiment of the present application;

[0017] Figure 5 This is a cross-sectional view of a rectangular beam structure according to a first embodiment of the present application;

[0018] Figure 6 This is a schematic diagram of the crank structure of the first embodiment of the present application;

[0019] Figure 7 This is a schematic diagram of a rectangular beam structure according to a second embodiment of the present application;

[0020] Figure 8 This is a schematic diagram of the limit block structure of the second embodiment of the present application.

[0021] Description of the numbers in the figure:

[0022] 1 supporting leg, 2 rectangular tube beam, 3 longitudinal beam, 4 electric telescopic rod, 5 cross beam, 6 motor, 7 protective shell, 8 transmission shaft, 9 fixing plate, 10 rotating shaft, 11 toothed pulley set, 12 disc, 13 round belt, 14 guide sleeve, 15 copper sleeve, 16 mounting seat, 17 crank, 18 vertical shaft, 19 limit block, 20 cylinder. DETAILED DESCRIPTION

[0023] Two implementation modes of the present application are described in detail below with reference to the accompanying drawings.

[0024] The first implementation method:

[0025] Figure 1 It shows: a transmission structure for a glass longitudinal dividing device, including three supporting legs 1, characterized in that: the upper ends of the three supporting legs are commonly fixedly connected to a rectangular tube beam 2, the left and right ends of the rectangular tube beam 2 are respectively fixedly connected to a motor 6 and a protective shell 7, the upper end of the rectangular tube beam 2 is fixedly connected to a plurality of longitudinal dividing beams 3, the upper end of the longitudinal dividing beam 3 is fixedly connected to two electric telescopic rods 4, the electric telescopic rods 4 can lift the full rubber roller, the lower end of the longitudinal dividing beam 3 is fixedly connected to a rotating assembly, the transmission shaft 8 is located at the rear side of the longitudinal dividing beam 3, and the transmission shaft 8 does not contact the longitudinal dividing beam 3, the upper end of the protective shell 7 is inclined toward the rear and upper, and a cross beam 5 is fixedly connected between two adjacent supporting legs 1.

[0026] Figure 2 , Figure 3 and Figure 4 It is shown that: the upper end of the rectangular tube beam 2 is rotatably connected with a transmission shaft 8, the left end of the transmission shaft 8 is fixedly connected to the output end of the motor 6, the right end of the transmission shaft 8 passes through the protective shell 7, and the lower end of the rectangular tube beam 2 is fixedly connected with multiple fixed plates 9. The multiple fixed plates 9 and the surfaces of the two supporting legs 1 on the right side are jointly movable and penetrated by a rotating shaft 10, and the right end of the rotating shaft 10 passes through the protective shell 7. The rotating shaft 10 and the outer end of the transmission shaft 8 are jointly fixedly sleeved with a toothed belt pulley group 11. Starting the motor 6 can drive the transmission shaft 8 to rotate, thereby rotating the toothed belt pulley group 11, and then driving the rotating shaft 10 to rotate, thereby improving the working efficiency. The outer ring of the rotating shaft 10 is fixedly sleeved with multiple disks 12, and the outer surface of the disk 12 is sleeved with a circular belt 13. The diameter of the disk 12 is larger than the width of the rectangular tube beam 2, and the rectangular tube beam 2 is located inside the circular belt 13 and does not contact the circular belt 13.

[0027] Figure 5 and Figure 6 It is shown that: a plurality of guide sleeves 14 are fixedly passed through the upper end of the rectangular tube beam 2, and the guide sleeve 14 is located directly below the longitudinal beam 3. The upper and lower ends of the inner cavity of the guide sleeve 14 are fixedly connected with copper sleeves 15. The guide sleeve 14 and the copper sleeve 15 can limit the vertical axis 18. The rotating assembly includes a mounting seat 16, which is fixedly mounted on the lower end of the rectangular tube beam 2. One end of the mounting seat 16 is rotatably connected to a cylinder 20, and the end of the cylinder 20 away from the mounting seat 16 is rotatably connected to a crank 17. The lower end of 17 is fixedly penetrated by a vertical shaft 18, the upper end of the vertical shaft 18 successively penetrates the guide sleeve 14 and two copper sleeves 15 and is fixedly connected to the lower end of the longitudinal beam 3. The piston rod of the starter cylinder 20 is extended to drive the crank 17 to rotate the vertical shaft 18, and then the full rubber roller rotates with the vertical shaft 18 as the center, forming an angle of five to eight degrees with the original state, so as to achieve the glass plate moved here in the vertical direction of the main movement direction The direction is translated by about 80 mm, which is convenient for the longitudinal division of the glass plate.

[0028] When in use, a full rubber roller is installed between the two electric telescopic rods 4. By starting the electric telescopic rod 4 to extend, the full rubber roller is driven to move upward, and the other end of the circular belt 13 is sleeved on the full rubber roller. Starting the motor 6 can drive the transmission shaft 8 to rotate, thereby causing the toothed belt wheel set 11 to rotate, and the rotating shaft 10 also rotates accordingly. The multiple disks 12 on the rotating shaft 10 also rotate at the same time, so that the circular belts 13 on the surfaces of the disks 12 drive multiple full rubber rollers to rotate at the same time, and the multiple full rubber rollers drive the glass to move forward, effectively avoiding the deviation of the glass caused by the different rotation speeds of the full rubber rollers, improving the longitudinal division accuracy, and facilitating the use of the staff. When the full rubber roller needs to be rotated, the cylinder 20 can be started to extend to drive the crank 17 to rotate, thereby causing the vertical shaft 18 to rotate, thereby driving the longitudinal division beam 3 to rotate, and causing the full rubber roller to rotate.

[0029] The second implementation method:

[0030] Based on the first embodiment, this embodiment adds a limit block 19, and the rest of the parts are consistent with the first embodiment.

[0031] Figure 7 and Figure 8 It is shown that the outer ring of the circular belt 13 is provided with two limit blocks 19 , and the corresponding ends of the two limit blocks 19 are fixedly connected to the front and rear ends of the rectangular tube beam 2 respectively. The limit blocks 19 include a circular ring and a long plate, and the inner diameter of the circular ring is larger than the diameter of the circular belt 13 .

[0032] When in use, the circular belt 13 is limited by the limiting block 19, which effectively avoids the circular belt 13 from deviating when the full rubber roller 4 rotates, making it easier for the staff to use it.

[0033] In view of current practical needs, the protection scope of the above-mentioned implementation mode adopted in this application is not limited to this. Various changes made within the knowledge scope of technical personnel in this field without departing from the concept of this application still fall within the protection scope of this utility model.

Claims

1. A transmission structure for a glass longitudinal splitting device, comprising three supporting legs (1), characterized in that: The upper ends of the three support legs are commonly fixedly connected to a rectangular tube beam (2), the left and right ends of the rectangular tube beam (2) are respectively fixedly connected to a motor (6) and a protective shell (7), the upper end of the rectangular tube beam (2) is rotatably connected to a transmission shaft (8), the left end of the transmission shaft (8) is fixedly connected to the output end of the motor (6), the right end of the transmission shaft (8) passes through the protective shell (7), the lower end of the rectangular tube beam (2) is fixedly connected to a plurality of fixing plates (9), the plurality of fixing plates (9) and the surfaces of the two right support legs (1) are movably connected to a rotating shaft (10), the right end of the rotating shaft (10) passes through the protective shell (7), the rotating shaft (10) and the outer ends of the transmission shaft (8) are commonly fixedly sleeved with a toothed pulley group (11), the outer ring of the rotating shaft (10) is fixedly sleeved with a plurality of disks (12), and the outer surface of the disk (12) is sleeved with a circular belt (13); The upper end of the rectangular tube beam (2) is fixedly connected to a plurality of longitudinal beams (3), the upper end of the longitudinal beam (3) is fixedly connected to two electric telescopic rods (4), and the lower end of the longitudinal beam (3) is fixedly connected to a rotating assembly.

2. A transmission structure for a glass longitudinal splitting device according to claim 1, characterized in that: A plurality of guide sleeves (14) are fixedly passed through the upper end of the rectangular tube beam (2); the guide sleeves (14) are located directly below the longitudinal branch beam (3); and copper sleeves (15) are fixedly connected to the upper and lower ends of the inner cavity of the guide sleeves (14).

3. A transmission structure for a glass longitudinal splitting device according to claim 2, characterized in that: The rotating assembly comprises a mounting seat (16), wherein the mounting seat (16) is fixedly mounted on the lower end of the rectangular tube beam (2), one end of the mounting seat (16) is rotatably connected to a cylinder (20), and one end of the cylinder (20) away from the mounting seat (16) is rotatably connected to a crank (17), a vertical shaft (18) is fixedly passed through the lower end of the crank (17), and the upper end of the vertical shaft (18) passes through the guide sleeve (14) and two copper sleeves (15) in sequence and is fixedly connected to the lower end of the longitudinal beam (3).

4. The transmission structure for a glass longitudinal splitting device according to claim 1, characterized in that: The diameter of the circular disk (12) is greater than the width of the rectangular tube beam (2); the rectangular tube beam (2) is located inside the circular belt (13) and does not contact the circular belt (13).

5. The transmission structure for a glass longitudinal splitting device according to claim 1, characterized in that: The transmission shaft (8) is located at the rear side of the longitudinal beam (3), and the transmission shaft (8) does not contact the longitudinal beam (3); the upper end of the protective shell (7) is inclined toward the rear and upward; and a cross beam (5) is fixedly connected between two adjacent support legs (1).

6. The transmission structure for a glass longitudinal splitting device according to claim 1, characterized in that: The outer ring of the circular belt (13) is provided with two limit blocks (19), and corresponding ends of the two limit blocks (19) are respectively fixedly connected to the front and rear ends of the rectangular tube beam (2), and the limit blocks (19) include a circular ring and a long plate, and the inner diameter of the circular ring is larger than the diameter of the circular belt (13).