Tinplate conveying mechanism
By designing the tinplate conveying mechanism, the automatic transportation of tinplate is achieved using adjusting parts, positioning parts and driving parts, the problem of low manpower conveying efficiency in the prior art is solved and the production efficiency is improved.
Patent Information
- Application Number
- CN202421888036.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-08-06
AI Technical Summary
In the production process of tinplate, a large amount of manpower is required in the prior art to move and transport tinplate, resulting in heavy workload and low efficiency for workers.
A tinplate conveying mechanism is designed, including a frame, a conveyor, a drive, a adjusting and a positioning member. The position of the conveyor is adjusted by adjusting the position of the conveyor, the positioning member is locked, and the drive member drives the movement of the conveyor to realize the automatic conveying of tinplate.
This technology can replace workers with tinplate manually, reduce workers' work burden and improve work efficiency.
Smart Images

Figure CN222845869U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to a conveying device, and in particular to a tinplate conveying mechanism. Background Art
[0002] Tinplate, also known as tin-plated iron, is the common name for electroplated tin steel sheets. Its English abbreviation is SPTE, which refers to cold-rolled low-carbon steel sheets or strips plated with commercial pure tin on both sides. Tin mainly prevents corrosion and rust. It combines the strength and formability of steel with the corrosion resistance, solderability and beautiful appearance of tin in one material, and has the characteristics of corrosion resistance, non-toxicity, high strength and good ductility. In the prior art, when tinplate is used to make cans, paint cans and other cans, the purchased tinplate coils must first be sliced, and then the sliced tinplate patches must be printed, and then rolled and welded, and finally the curling and capping processes are completed to make the finished product, that is, the tinplate can.
[0003] In the prior art, after the tinplate coils are sliced, they are stacked in a storage basket, which is moved to the vicinity of a winding device, and then taken out one by one for winding. After winding, they are put back into the storage basket, and workers move the storage basket to the vicinity of a welding device for welding. This requires a lot of manpower to move, which is time-consuming and labor-intensive. Summary of the invention
[0004] In order to improve the problem that a large amount of manpower is required to transport tinplate during the tinplate production process, the present application provides a method.
[0005] The tinplate conveying mechanism provided in this application adopts the following technical solution:
[0006] A tinplate conveying mechanism comprises a frame, a conveying member for conveying tinplate is arranged on the frame, a driving member for driving the conveying member to convey the tinplate is arranged on the frame, an adjusting member for adjusting the position of the conveying member is arranged on the frame, and a positioning member for locking the conveying member is arranged on the adjusting member.
[0007] Optionally, the conveying member includes a conveying frame, on which a plurality of driving rollers are rotatably provided, and the plurality of driving rollers are connected by a conveyor belt;
[0008] The driving member comprises a driving motor arranged on a frame, and a motor shaft of the driving motor is coaxially connected to one of the driving rollers.
[0009] Optionally, the rack includes at least two stands;
[0010] The adjusting member includes at least two movable frames, and the movable frames correspond to the vertical frames one by one. The movable frames include at least two sliding sleeves, and the sliding sleeves are slidably arranged on the vertical frames. At least two of the sliding sleeves are connected by a movable plate. A movable rod is provided on a side of the movable plate away from the sliding sleeve, and an end of the movable rod away from the movable plate is connected to the conveying frame.
[0011] Optionally, each of the moving rods is provided with a limit block, the limit block is provided with a through hole, the axis of the through hole is perpendicular to the axis of the moving rod, a clearance space is provided on the hole wall of the through hole, at least two of the limit blocks are connected by a limit rod, the limit rod passes through the through hole, the limit block is provided with a locking bolt, the locking bolt passes through the clearance space and is threadedly connected to the limit block.
[0012] Optionally, both ends of the conveying frame are provided with vertical frames, the two vertical frames are arranged opposite to each other, the vertical frames include vertical rods arranged on the conveying frame, the two vertical rods are arranged opposite to each other, the vertical rods extend to one side of the moving rod, the two vertical rods are connected by a cross rod, and the axis of the cross rod is perpendicular to the axis of the vertical rod;
[0013] The cross bar is provided with a cross block, the cross block is provided with a moving hole for the moving rod to pass through, the axis of the moving hole is perpendicular to the axis of the moving rod, a moving space is provided on the hole wall of the moving hole, the cross block is provided with a locking bolt passing through the cross block and the moving space, and one end of the locking bolt passes through the moving space and is threadedly connected to the cross block.
[0014] Optionally, a sliding groove is provided on the inner side wall of the sliding sleeve, and the sliding groove is arranged along the central axis of the sliding sleeve;
[0015] The positioning member comprises a positioning block inserted into the sliding through groove, the positioning block abuts against the moving frame, and the sliding sleeve is provided with an abutting bolt passing through the sliding sleeve and abutting against the positioning block.
[0016] In summary, the present application includes at least one of the following beneficial technical effects: before production, first use the adjusting member to adjust the position of the conveying member. After the adjustment is completed, use the positioning member to lock the conveying member. During production, use the driving member to drive the conveying member to move, and the conveying member can drive the tinplate to move. This can replace manual conveying by workers, reduce the workload of workers, and improve work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of a tinplate conveying mechanism according to an embodiment of the present application.
[0018] Figure 2 It is a schematic diagram of the structure of the stand, conveyor frame, mobile frame and driving member in this embodiment.
[0019] Figure 3 yes Figure 2 Enlarged view of point A in the middle.
[0020] Figure 4 yes Figure 2 Enlarged view of point B in the middle.
[0021] Explanation of the reference numerals in the accompanying drawings: 1. frame; 10. vertical frame; 11. vertical pole; 12. cross beam; 2. conveying member; 20. conveying frame; 21. vertical frame; 22. vertical pole; 23. cross pole; 24. cross block; 25. moving hole; 26. moving space; 27. locking bolt; 29. driving roller; 200. conveyor belt; 3. adjusting member; 30. moving frame; 31. sliding sleeve; 32. moving plate; 33. moving pole; 34. sliding groove; 35. limiting block; 36. making way space; 37. limiting pole; 38. locking bolt; 39. through hole; 4. positioning member; 40. positioning block; 41. interference bolt; 5. driving member; 50. driving motor. DETAILED DESCRIPTION
[0022] The following is combined with Figure 1-4 This application is described in further detail.
[0023] The embodiment of the present application discloses a tinplate conveying mechanism.
[0024] Reference Figure 1 A tinplate conveying mechanism comprises a frame 1, a conveying member 2 for transmitting tinplate is provided on the frame 1, a driving member 5 for driving the conveying member 2 to convey the tinplate is provided on the frame 1, an adjusting member 3 for adjusting the position of the conveying member 2 is provided on the frame 1, and a positioning member 4 for locking the conveying member 2 is provided on the adjusting member 3; before processing, the position of the conveying member 2 is adjusted by the adjusting member 3 according to the height of the tinplate processing equipment, so that the processed tinplate can be conveniently conveyed to the conveying member 2, and then the adjusting member 3 is locked by the positioning member 4. During processing, the processed tinplate is placed on the conveying member 2, and the driving member 5 is used to drive the conveying member 2 to rotate, so that the conveying member 2 can drive the driving member 5 to convey, thereby replacing the method of workers manually collecting tinplate and then carrying it, which is beneficial to reduce the workload of workers and improve work efficiency.
[0025] Reference Figure 2 The frame 1 includes at least two vertical frames 10. In the present embodiment, there are two vertical frames 10, which are arranged opposite to each other. Each vertical frame 10 includes two vertical poles 11 which are arranged opposite to each other. The vertical poles 11 are arranged on the ground. A crossbeam 12 is arranged between the two vertical poles 11, and the crossbeam 12 is located above the conveying member 2.
[0026] The adjusting member 3 includes at least two moving frames 30. In the present embodiment, there are three moving frames 30. The moving frames 30 correspond one to one with the vertical frames 10. The moving frames 30 include at least two sliding sleeves 31. There are two sliding sleeves 31. Both sliding sleeves 31 are slidably arranged on the crossbeam 12. Both sliding sleeves 31 are located between the two vertical poles 11. The two sliding sleeves 31 are connected by a moving plate 32. A moving rod 33 is provided on the side of the moving plate 32 away from the sliding sleeve 31. The axis of the moving rod 33 is parallel to the axis of the vertical pole 11. In the present embodiment, there are two moving rods 33. One end of the moving rod 33 away from the moving plate 32 is connected to the conveying frame 20.
[0027] Reference Figure 3 A sliding groove 34 is provided on the inner side wall of the sliding sleeve 31, and the sliding groove 34 is arranged along the central axis of the sliding sleeve 31;
[0028] The positioning member 4 includes a positioning block 40 inserted into the sliding groove 34, the positioning block 40 abuts against the outer wall of the beam 12, and the sliding sleeve 31 is provided with an abutting bolt 41 passing through the sliding sleeve 31 and abutting against the positioning block 40, and the axis of the abutting bolt 41 is parallel to the axis of the vertical pole 11.
[0029] Before processing, it is necessary to adjust the position of the conveying member 2 first, so move the sliding sleeve 31, and the moving rod 33 drives the conveying member 2 to move to the appropriate position. After the adjustment is completed, insert the positioning block 40 into the sliding groove 34, and rotate the abutment bolt 41. The abutment bolt 41 abuts against the positioning block 40, and the positioning block 40 can be fixed, and the sliding sleeve 31 can also be fixed, so that the position of the adjusting member 3 can be adjusted conveniently and quickly.
[0030] Reference Figure 4 A stop block 35 is provided on the side of each moving rod 33 away from the moving plate 32. A through hole 39 is provided on the stop block 35. The axis of the through hole 39 is perpendicular to the axis of the moving rod 33. A clearance space 36 is provided on the hole wall of the through hole 39. The clearance space 36 extends to the side away from the moving rod 33 and passes through the outer wall of the stop block 35. The two stop blocks 35 are connected by a stop rod 37. The stop rod 37 passes through the through hole 39. The axis of the stop rod 37 is perpendicular to the axis of the crossbeam 12. A locking bolt 38 is provided on the stop block 35. The axis of the locking bolt 38 is parallel to the axis of the moving rod 33. The locking bolt 38 passes through one end of the clearance space 36 and is threadedly connected to the stop block 35. By using the stop rod 37 to pass through multiple stop blocks 35, and using the locking bolt 38 to pass through the clearance space 36 and be threadedly connected to the stop block 35, the position of the moving rod 33 can be fixed, thereby improving the overall stability of the conveying mechanism.
[0031] Reference Figure 2The conveying member 2 includes a conveying frame 20, and both ends of the conveying frame 20 are provided with vertical frames 21, the two vertical frames 21 are arranged opposite to each other, and the vertical frames 21 include vertical rods 22 arranged on the conveying frame 20, the two vertical rods 22 are arranged opposite to each other, the vertical rods 22 extend to one side of the moving rod 33, and the two vertical rods 22 are connected by a cross bar 23, the axis of the cross bar 23 is parallel to the axis of the cross beam 12, and the cross bar 23 is located below the cross beam 12;
[0032] A cross block 24 is provided on the moving rod 33 near the vertical rod 22, and a moving hole 25 is provided on the cross block 24 for the cross bar 23 to pass through. The axis of the moving hole 25 is perpendicular to the axis of the moving rod 33, and a moving space 26 is provided on the hole wall of the moving hole 25. A locking bolt 27 passing through the cross block 24 and the moving space 26 is provided on the cross block 24, and the axis of the locking bolt 27 is parallel to the axis of the cross bar 23. One end of the locking bolt 27 passes through the moving space 26 and is threadedly connected to the cross block 24.
[0033] Before production, the height of the conveyor frame 20 can be adjusted by inserting the moving rod 33 into the moving hole 25, so as to adapt to production lines of different heights.
[0034] A plurality of driving rollers 29 are rotatably provided on the conveying frame 20, and the plurality of driving rollers 29 are connected by a conveying belt 200;
[0035] The driving member 5 includes a driving motor 50 arranged on the frame 1, and the motor shaft of the driving motor 50 is coaxially connected to one of the driving rollers 29; during production, the driving motor 50 drives one of the driving rollers 29 to rotate, thereby driving the conveyor belt 200 to rotate, thereby driving the tinplate parts to move, thereby replacing the method of workers manually collecting tinplate and then transporting it, which is beneficial to reduce the workload of workers and improve work efficiency.
[0036] The implementation principle of a tinplate conveying mechanism in an embodiment of the present application is as follows: before production, the position of the conveying member 2 is first adjusted by using the adjusting member 3, and then fixed by using the positioning member 4, and the conveying member 2 is driven to rotate by the driving member 5. The conveying member 2 conveys the tinplate, which can replace the manual conveying of workers, reduce the workload of workers, and improve work efficiency.
[0037] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A tinplate conveying mechanism, characterized in that: The invention comprises a frame (1), wherein a conveying member (2) for conveying tinplate is provided on the frame (1), a driving member (5) for driving the conveying member (2) to convey the tinplate is provided on the frame (1), an adjusting member (3) for adjusting the position of the conveying member (2) is provided on the frame (1), and a positioning member (4) for locking the conveying member (2) is provided on the adjusting member (3).
2. The tinplate conveying mechanism according to claim 1, characterized in that: The conveying member (2) comprises a conveying frame (20), on which a plurality of driving rollers (29) are rotatably provided, and the plurality of driving rollers (29) are connected via a conveying belt (200); The driving member (5) comprises a driving motor (50) arranged on the frame (1), and a motor shaft of the driving motor (50) is coaxially connected to one of the driving rollers (29).
3. The tinplate conveying mechanism according to claim 2, characterized in that: The frame (1) comprises at least two stands (10); The adjusting member (3) comprises at least two movable frames (30), the movable frames (30) corresponding to the vertical frames (10) one by one, the movable frames (30) comprising at least two sliding sleeves (31), the sliding sleeves (31) being slidably arranged on the vertical frames (10), at least two of the sliding sleeves (31) being connected via a movable plate (32), a movable rod (33) being arranged on a side of the movable plate (32) away from the sliding sleeves (31), and an end of the movable rod (33) away from the movable plate (32) being connected to the conveying frame (20).
4. The tinplate conveying mechanism according to claim 3, characterized in that: Each of the moving rods (33) is provided with a limit block (35), and a through hole (39) is provided on the limit block (35). The axis of the through hole (39) is perpendicular to the axis of the moving rod (33). A clearance space (36) is provided on the hole wall of the through hole (39). At least two of the limit blocks (35) are connected by a limit rod (37), and the limit rod (37) passes through the through hole (39). A locking bolt (38) is provided on the limit block (35), and the locking bolt (38) passes through one end of the clearance space (36) and is threadedly connected to the limit block (35).
5. The tinplate conveying mechanism according to claim 3, characterized in that: Both ends of the conveying frame (20) are provided with vertical frames (21), the two vertical frames (21) are arranged opposite to each other, the vertical frames (21) include vertical rods (22) arranged on the conveying frame (20), the two vertical rods (22) are arranged opposite to each other, the vertical rods (22) extend toward one side of the moving rod (33), the two vertical rods (22) are connected by a cross rod (23), and the axis of the cross rod (23) is perpendicular to the axis of the vertical rod (22); A transverse block (24) is provided on the moving rod (33) near the vertical rod (22); a moving hole (25) is provided on the transverse block (24) for the transverse rod (23) to pass through; the axis of the moving hole (25) is perpendicular to the axis of the moving rod (33); a moving space (26) is provided on the hole wall of the moving hole (25); a locking bolt (27) is provided on the transverse block (24) and passes through the transverse block (24) and the moving space (26); the locking bolt (27) passes through one end of the moving space (26) and is threadedly connected to the transverse block (24).
6. The tinplate conveying mechanism according to claim 3, characterized in that: A sliding groove (34) is provided on the inner side wall of the sliding sleeve (31), and the sliding groove (34) is arranged along the central axis of the sliding sleeve (31); The positioning member (4) comprises a positioning block (40) inserted into the sliding groove (34), the positioning block (40) abuts against the moving frame (30), and the sliding sleeve (31) is provided with an abutting bolt (41) passing through the sliding sleeve (31) and abutting against the positioning block (40).