Transverse material blocking and distance adjusting device for silicon steel sheet longitudinal shearing material belt conveying
By installing a transverse baffle adjustment device on the silicon steel sheet slitting production line, and using a magnetic column and adjustment drive unit to adjust the material belt spacing, the processing error and unstable conveying caused by improper material belt spacing are solved, achieving high-precision processing and stable conveying.
Patent Information
- Application Number
- CN202520163902.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-24
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-01-24
AI Technical Summary
The existing silicon steel sheet slitting production line does not have precise control over the transverse spacing of the strip after slitting, resulting in high processing errors and high scrap rate. Furthermore, the strip is prone to interference, entanglement, and contact wear during transportation, affecting production stability.
A transverse material blocking and spacing adjustment device was designed. It is connected to the transverse spacing adjustment drive unit through a vertical magnetic column to realize the adjustment of the transverse spacing between adjacent material belts. The magnetic force is used to push and pull the material belt, isolate the material belt, and reduce friction through an elastic wrapping layer, so as to ensure the stability and accuracy of the material belt during the conveying process.
It improves the processing accuracy and yield of silicon steel sheets, reduces processing errors, prevents material strip interference and entanglement, protects the material strip surface, and improves the stability of the production process and the reliability of the equipment.
Smart Images

Figure CN223819736U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to silicon steel sheet production technical field especially relates to the horizontal material blocking distance adjusting device of silicon steel sheet longitudinal shearing material belt conveying. BACKGROUND
[0002] The existing silicon steel sheet longitudinal shearing production line is not accurate enough in controlling the horizontal distance of the material belt after longitudinal shearing and striping, which leads to machining errors and high scrap rate in the subsequent machining process, and the connected material belts are prone to interference, winding and contact wear during the conveying process, affecting the stability of the production process. SUMMARY
[0003] The utility model discloses a horizontal material blocking distance adjusting device of silicon steel sheet longitudinal shearing material belt conveying, which adjusts the distance of the material belt to make the material belt in a suitable machining position, avoids machining errors caused by improper distance of the material belt and improves machining quality.
[0004] Technical scheme: in order to realize the above-mentioned purpose, the horizontal material blocking distance adjusting device of silicon steel sheet longitudinal shearing material belt conveying is arranged on the silicon steel sheet longitudinal shearing production line and located between the adjacent material belts formed after the silicon steel belt material is longitudinally sheared.
[0005] The horizontal material blocking distance adjusting device is composed of a pair of vertical magnetic columns arranged on both sides of the partition plate through the horizontal distance adjusting drive unit; the vertical magnetic column is rotatably connected with the horizontal distance adjusting drive unit through the column shaft and magnetically contacts with the length side of the material belt; the vertical magnetic column is driven by the horizontal distance adjusting drive unit to be horizontally displaced to push or pull the material belt, so as to adjust the horizontal distance between the adjacent material belts.
[0006] Further, the adjacent material belts in the conveying state on the silicon steel sheet longitudinal shearing production line are isolated by the horizontal material blocking distance adjusting device.
[0007] Further, the vertical magnetic column has a locking component for locking relative to the column shaft; the vertical magnetic column is sleeved on the column shaft to adjust the height position along the column shaft and is locked by the locking component.
[0008] Further, the column surface of the vertical magnetic column is wrapped with an elastic wrapping layer, the vertical magnetic column elastically contacts with the length side of the material belt through the elastic wrapping layer, and the vertical magnetic column rotates by being driven by the material belt in the conveying state.
[0009] Further, the horizontal distance adjusting drive unit includes a horizontal driving guide rail and a horizontal guiding guide rail, the sliding blocks of the horizontal driving guide rail and the horizontal guiding guide rail are connected with bearing seats, and the column shaft of the vertical magnetic column is rotatably connected with the bearing seat.
[0010] Furthermore, the partition is erected vertically and has a mounting base at its bottom. The partition is installed on the silicon steel sheet slitting production line or on the floor of the silicon steel sheet production workshop via the mounting base.
[0011] Beneficial effects: This utility model significantly improves processing accuracy and yield by precisely controlling the lateral spacing of silicon steel sheet strips, and reduces processing errors caused by improper spacing; its isolation function ensures the stability of the strip during the conveying process, preventing interference, entanglement and contact wear between them; height adjustment and elastic contact design enhance adaptability and protection of the strip, while stable drive and guidance improve the reliability and durability of the device. Attached Figure Description
[0012] Figure 1 A top view of a silicon steel sheet slitting production line equipped with a transverse baffle adjustment device;
[0013] Figure 2 A schematic diagram of the main structure of a silicon steel sheet slitting production line equipped with a transverse baffle adjustment device;
[0014] Figure 3 This is a schematic diagram of the transverse baffle adjustment device.
[0015] Figure 4 for Figure 3 A magnified schematic diagram of the structure of region A in the middle. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings.
[0017] like Figure 1 , Figure 2 as well as Figure 3 As shown, a transverse spacing adjustment device 1 for conveying silicon steel sheet slitting strips is installed on the silicon steel sheet slitting production line 2, located between adjacent strips 3 formed after the silicon steel strips are slitting. The transverse spacing adjustment device 1 consists of a pair of vertical magnetic columns 6 on each side of a partition 4, which are laterally moved by a transverse spacing adjustment drive unit 5. The vertical magnetic columns 6 are rotatably connected to the transverse spacing adjustment drive unit 5 via a column shaft 7 and are magnetically attracted to the length side of the strip 3. The vertical magnetic columns 6 are driven by the transverse spacing adjustment drive unit 5 to move laterally to push or pull the strip 3, thereby adjusting the transverse spacing between adjacent strips 3. This allows for precise control of the spacing between adjacent strips 3, ensuring that the strips 3 maintain appropriate size and positional relationship when entering subsequent equipment, reducing processing errors caused by improper spacing of the strips 3, and improving processing quality and accuracy.
[0018] It is worth noting that in this utility model, adjacent material strips 3 in the conveying state on the silicon steel sheet slitting production line 2 are isolated by the transverse material blocking and adjusting device 1, thereby preventing the material strips 3 from interfering, colliding or tangling during the conveying process, and ensuring the continuity and stability of the production process.
[0019] Because the height of the material end at different positions is different during the conveying process of material belt 3, therefore, as Figure 2 , Figure 3 as well as Figure 4 As shown, the vertical magnetic column 6 has a locking component 8 that locks relative to the column shaft 7; the vertical magnetic column 6 is sleeved on the column shaft 7, and its height position is adjusted by sliding along the column shaft 7 before being locked by the locking component 8. This allows for flexible adjustment of the height position of the vertical magnetic column 6 according to requirements, adapting to different heights of the material strip 3 in different material sections, ensuring stable contact between the vertical magnetic column 6 and the material strip 3, and improving adaptability and flexibility. Figure 4 As shown, the locking component 8 is a locking screw, and several threaded holes 70 are arranged in a linear array along the axial direction on the column shaft 7. The locking screw and the threaded holes 70 cooperate to lock the vertical magnetic column 6 relative to the column shaft 7.
[0020] like Figure 4 As shown, the vertical magnetic column 6 is wrapped with an elastic wrapping layer 9. The vertical magnetic column 6 makes elastic contact with the length side of the material belt 3 through the elastic wrapping layer 9. This elastic contact between the vertical magnetic column 6 and the length side of the material belt 3 reduces friction and damage to the material belt 3 during the conveying process, protecting the surface quality of the material belt. Furthermore, the vertical magnetic column 6 rotates driven by the material belt 3 in the conveying state, reducing the resistance of the material belt 3 during the conveying process and improving the stability and efficiency of the conveying. The elastic wrapping layer 9 can be made of elastic rubber.
[0021] like Figure 3 As shown, the lateral adjustment drive unit 5 includes a lateral drive rail 51 and a lateral guide rail 52. Bearing seats 53 are connected to the sliders of both the lateral drive rail 51 and the lateral guide rail 52. The column shaft 7 of the vertical magnetic column 6 is rotatably connected to the bearing seat 53. The lateral drive rail 51 is preferably a servo-electric guide rail to ensure the stability and accuracy of the vertical magnetic column 6 during lateral movement.
[0022] like Figure 2 and Figure 3 As shown, the partition 4 is set vertically, and its bottom has a mounting base 40. The partition 4 is installed on the silicon steel sheet slitting production line 2 or on the ground of the silicon steel sheet production workshop through the mounting base 40 to ensure the stability and reliability of the transverse baffle adjustment device 1 and prevent shaking or displacement caused by insecure installation.
[0023] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A transverse baffle adjustment device for conveying silicon steel sheet slitting strips, wherein the transverse baffle adjustment device (1) is installed on the silicon steel sheet slitting production line (2) and located between adjacent strips (3) formed after the silicon steel strip is slitting; Its features are: The transverse material blocking and adjusting device (1) consists of a pair of vertical magnetic columns (6) on each side of the partition (4) which are laterally moved by the transverse adjusting drive unit (5). The vertical magnetic columns (6) are rotatably connected to the transverse adjusting drive unit (5) through the column shaft (7) and magnetically contact the length side of the material strip (3). The vertical magnetic columns (6) are driven by the transverse adjusting drive unit (5) to move laterally to push or pull the material strip (3) and realize the adjustment of the transverse spacing between adjacent material strips (3).
2. The transverse stop adjustment device for conveying silicon steel sheet longitudinal shearing belt according to claim 1, characterized in that: The adjacent material strips (3) in the conveying state on the silicon steel sheet slitting production line (2) are isolated by the transverse material blocking adjustment device (1).
3. The transverse baffle adjustment device for conveying silicon steel sheet longitudinal shearing belt according to claim 1, characterized in that: The vertical magnetic column (6) has a locking component (8) that locks relative to the column shaft (7); the vertical magnetic column (6) is sleeved on the column shaft (7) and is locked by the locking component (8) after sliding along the column shaft (7) to adjust its height position.
4. The transverse stop adjustment device for conveying silicon steel sheet longitudinal shearing belt according to claim 1, characterized in that: The vertical magnetic column (6) is wrapped with an elastic wrapping layer (9). The vertical magnetic column (6) is in elastic contact with the length side of the material belt (3) through the elastic wrapping layer (9), and the vertical magnetic column (6) is driven to rotate by the material belt (3) in the conveying state.
5. The transverse stop adjustment device for conveying silicon steel sheet longitudinal shearing belt according to claim 1, characterized in that: The lateral adjustment drive unit (5) includes a lateral drive rail (51) and a lateral guide rail (52). The sliders of the lateral drive rail (51) and the lateral guide rail (52) are connected to bearing seats (53). The column shaft (7) of the vertical magnetic column (6) is rotatably connected to the bearing seats (53).
6. The transverse baffle adjustment device for conveying silicon steel sheet longitudinal shearing belt according to claim 1, characterized in that: The partition (4) is set vertically and has a mounting base (40) at its bottom. The partition (4) is installed on the silicon steel sheet slitting production line (2) or on the ground of the silicon steel sheet production workshop through the mounting base (40).