Stainless steel cold coil discharging structure

By setting up a fixed ring position adjustment mechanism and a stainless steel cold roll fixing mechanism, the motor drives the gear and toothed plate to slide the T-shaped plate, changing the width of the roll. The pressure plate and screw structure enable rapid adjustment and fixing of the stainless steel cold roll, solving the problems of insufficient convenience and stability in adjustment and fixing in the existing technology, and improving the versatility of the equipment and product quality.

CN223996930UActive Publication Date: 2026-03-17FOSHAN XINJIANHUI METAL MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In the existing technology, the discharge structure of stainless steel cold coils has poor adjustment and fixing effect during processing, and is not suitable for stainless steel cold coils of different widths. When in use, the discharge structure of stainless steel coils in the existing technology lacks convenience and stability in adjustment and fixing.

Method used

By setting up a fixed ring position adjustment mechanism and a stainless steel cold roll fixing mechanism, the motor drives the gear and toothed plate to slide the T-shaped plate, changing the width of the roll. Combined with the pressure plate, slider and screw structure, the stainless steel cold roll can be quickly adjusted and fixed.

Benefits of technology

It enables rapid adaptation and stable fixing of stainless steel cold-rolled coils of different widths, improves the versatility and working efficiency of the equipment, reduces replacement and adjustment costs, and ensures the quality of cold-rolled coils and product qualification rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stainless steel cold roll discharging structure, which belongs to the technical field of discharging equipment and comprises a bottom plate, supporting legs are arranged at corners of the lower end of the bottom plate, a mounting plate is arranged on one side of the upper end of the bottom plate, a mounting frame is arranged at the upper end of the mounting plate, and an L-shaped fixing plate is arranged on the side edge of the mounting frame. A first motor is arranged at the upper end of the L-shaped fixing plate, a first rotating shaft is arranged at the output end of the first motor, and a hexagonal inserting block is arranged at the other end of the first rotating shaft. According to the fixing ring position adjusting mechanism, a second motor drives a gear to rotate and drives a toothed plate to move, so that a T-shaped plate slides in a sliding groove, and then the position of a fixing ring is adjusted; the width of the winding roller is changed to adapt to stainless steel cold coils with different widths. The adjusting mode is easy and convenient to operate, high in precision and capable of rapidly adapting to cold coils of different specifications, the universality and the working efficiency of equipment are improved, and cost and time consumption caused by replacing the winding roller or adjusting the equipment are reduced.
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Description

Technical Field

[0001] This utility model belongs to the technical field of discharge equipment, specifically relating to a discharge structure for stainless steel cold coils. Background Technology

[0002] Stainless steel cold rolling is the process of rolling hot-rolled stainless steel billets at room temperature to obtain thinner, flatter stainless steel strips. During cold rolling, the stainless steel billet undergoes multiple rolling passes to achieve the desired thickness and surface quality. The cold-rolled stainless steel strip is typically coiled into stainless steel cold coils for subsequent processing and transportation.

[0003] Chinese patent application number 202321179513.4 discloses a discharge structure for stainless steel cold coils, including a base with two supports fixedly connected to the top of the base, and a discharge mechanism. The discharge mechanism includes a discharge roller, which is rotatably connected between the outer surfaces of one side of the two supports. Two limiting plates are movably embedded on the outer surface of the discharge roller, and each limiting plate has a fixing groove on its outer surface. The discharge roller is used for winding and discharging the stainless steel cold coil. The limiting plates can limit the stainless steel cold coil on the discharge roller to prevent displacement during winding. The locking rod on the limiting plate cooperates with the locking groove on the discharge roller to adjust the position of the limiting plate, thereby adjusting the distance between the two limiting plates according to the width of the stainless steel cold coil, and further improving the correction effect of the discharge mechanism. The clamping plate on the positioning mechanism can conveniently clamp one end of the stainless steel cold coil, thus facilitating the winding of the stainless steel cold coil.

[0004] Although the aforementioned patent enables the unloading of stainless steel cold coils, its unloading structure, while capable of winding stainless steel cold coils of different widths, is relatively inconvenient to adjust; and although the stainless steel cold coils can be fixed, the fixing effect is relatively poor. Utility Model Content

[0005] To address the problems mentioned in the background section, this invention provides a discharge structure for stainless steel cold-rolled coils, which features the ability to wind up stainless steel cold-rolled coils of different widths and facilitates the fixing of stainless steel cold-rolled coils.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a discharge structure for stainless steel cold coils, including a base plate, a support leg provided at the lower corner of the base plate, a mounting plate provided on one side of the upper end of the base plate, a mounting frame provided at the upper end of the mounting plate, an L-shaped fixing plate provided on the side of the mounting frame, a motor provided at the upper end of the L-shaped fixing plate, a rotating shaft provided at the output end of the motor, a hexagonal insert provided at the other end of the rotating shaft, a winding roller provided on the surface of the hexagonal insert, a stainless steel cold coil fixing mechanism provided inside the winding roller, and a fixing ring position adjustment mechanism provided on the other side of the interior of the base plate.

[0007] Preferably, the fixed ring position adjustment mechanism includes a transmission component, a T-shaped plate, a sliding groove, a support frame, and a fixed ring. A T-shaped plate is provided on the other side of the interior of the base plate. A sliding groove corresponding to the T-shaped plate is opened at the upper end of the base plate. A transmission component is provided at the lower end of the T-shaped plate. A support frame is provided at the upper end of the T-shaped plate. A fixed ring is provided at the upper end of the support frame.

[0008] Preferably, the fixed ring position adjustment mechanism further includes a slide rail and a pulley, with a pulley provided on the lower side of the T-shaped plate and a slide rail corresponding to the pulley provided on the upper end of the base plate.

[0009] Preferably, the transmission assembly includes a second rotating shaft, a gear, a connecting plate, a toothed plate, and a second motor. The lower end of the T-shaped plate is provided with a toothed plate, one side of the lower end of the base plate is provided with the second motor, and the other side of the lower end of the base plate is provided with a connecting plate. The output end of the second motor is provided with the second rotating shaft, and the other end of the second rotating shaft is rotatably connected to the connecting plate through a bearing. The surface of the second rotating shaft is provided with a gear that meshes with the toothed plate.

[0010] Preferably, the stainless steel cold roll fixing mechanism includes a pressure plate, a slider, a groove, a knob, a clearance groove, and a screw. The pressure plate is slidably connected inside the roll, and a slider is provided on the side of the pressure plate. A groove corresponding to the slider is opened inside the roll. A screw is rotatably connected to one side of the pressure plate through a bearing. A clearance groove corresponding to the screw is opened on the side of the roll. A knob is provided at the other end of the screw.

[0011] Preferably, the stainless steel cold roll fixing mechanism further includes a relief groove II, a limiting plate and a guide rod. A guide rod that is slidably connected to the roll is provided on the other side of the pressure plate, and a limiting plate is provided at the other end of the guide rod. A relief groove II corresponding to the limiting plate is opened on the side of the roll.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. This utility model incorporates a fixed ring position adjustment mechanism. A motor drives a gear to rotate, which in turn moves a toothed plate, causing the T-shaped plate to slide within a sliding groove. This adjusts the position of the fixed ring, changing the width of the roll to accommodate stainless steel cold-rolled coils of varying widths. This adjustment method is simple to operate, highly precise, and can quickly adapt to different specifications of cold-rolled coils, improving equipment versatility and work efficiency, and reducing the cost and time associated with replacing rolls or adjusting equipment.

[0014] 2. This utility model features a stainless steel cold-rolled coil fixing mechanism, employing a structure including a pressure plate, slider, and screw. Rotating a knob drives the screw to rotate, pushing the pressure plate to slide and thus clamping and fixing the stainless steel cold-rolled coil. The design of the slider, guide rod, and limiting plate enhances the stability of the pressure plate's sliding, preventing the coil from jamming and ensuring a uniform and reliable fixing effect. This mechanism is simple in structure and easy to operate, effectively preventing the cold-rolled coil from loosening or shifting during winding, ensuring the quality of the cold-rolled coil, improving the product qualification rate, and creating higher efficiency for enterprises. Attached Figure Description

[0015] Figure 1 This is a perspective view of the present utility model;

[0016] Figure 2 This is a perspective view of the fixed ring position adjustment mechanism of this utility model;

[0017] Figure 3 This is a perspective view of the transmission component of this utility model;

[0018] Figure 4 This is a perspective view of the stainless steel cold-rolled coil fixing mechanism of this utility model;

[0019] Figure 5 This is a three-dimensional sectional view of the stainless steel cold-rolled coil fixing mechanism of this utility model;

[0020] Figure 6 This utility model Figure 5 Enlarged view of point A in the middle;

[0021] Figure 7 This utility model Figure 5 Enlarged view of point B in the middle;

[0022] In the diagram: 1. Base plate; 2. Fixed ring position adjustment mechanism; 21. Slide rail; 22. Pulley; 23. Transmission assembly; 231. Rotating shaft II; 232. Gear; 233. Connecting plate; 234. Tooth plate; 235. Motor II; 24. T-shaped plate; 25. Sliding groove; 26. Support frame; 27. Fixed ring; 3. Support leg; 4. Roller; 5. Stainless steel cold rolling fixing mechanism; 51. Pressure plate; 52. Slider; 53. Slide groove; 54. Knob; 55. Clearance groove I; 56. Screw; 57. Clearance groove II; 58. Limiting plate; 59. Guide rod; 6. Rotating shaft I; 7. Motor I; 8. L-shaped fixing plate; 9. Mounting plate; 10. Mounting bracket; 11. Hexagonal insert. Detailed Implementation

[0023] 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.

[0024] Example 1

[0025] Please see Figure 1-7 The present invention provides the following technical solution: a discharge structure for stainless steel cold coils, including a base plate 1, a support leg 3 at the lower corner of the base plate 1, a mounting plate 9 on one side of the upper end of the base plate 1, a mounting frame 10 at the upper end of the mounting plate 9, an L-shaped fixing plate 8 on the side of the mounting frame 10, a motor 7 at the upper end of the L-shaped fixing plate 8, a rotating shaft 6 at the output end of the motor 7, a hexagonal insert 11 at the other end of the rotating shaft 6, a winding roller 4 on the surface of the hexagonal insert 11, a stainless steel cold coil fixing mechanism 5 inside the winding roller 4, and a fixing ring position adjustment mechanism 2 on the other side of the interior of the base plate 1.

[0026] Specifically, the fixed ring position adjustment mechanism 2 includes a transmission assembly 23, a T-shaped plate 24, a sliding groove 25, a support frame 26, and a fixed ring 27. A T-shaped plate 24 is provided on the other side of the interior of the base plate 1. A sliding groove 25 corresponding to the T-shaped plate 24 is provided at the upper end of the base plate 1. The transmission assembly 23 is provided at the lower end of the T-shaped plate 24, and a support frame 26 is provided at the upper end of the T-shaped plate 24. A fixed ring 27 is provided at the upper end of the support frame 26.

[0027] By adopting the above technical solution, the transmission component 23 drives the T-shaped plate 24 to slide inside the sliding groove 25. The sliding of the T-shaped plate 24 can drive the support frame 26 and the fixing ring 27 to slide, thereby enabling the roll 4 to slide inside the fixing ring 27 and change the width of the roll 4, thus adapting to the winding of stainless steel cold rolls of different widths.

[0028] Specifically, the fixed ring position adjustment mechanism 2 also includes a slide rail 21 and a pulley 22. The lower side of the T-shaped plate 24 is provided with a pulley 22, and the upper end of the base plate 1 is provided with a slide rail 21 corresponding to the pulley 22.

[0029] By adopting the above technical solution, when the T-shaped plate 24 slides, it will drive the pulley 22 to slide inside the slide rail 21, thereby improving the stability of the T-shaped plate 24 during the sliding process.

[0030] Specifically, the transmission assembly 23 includes a second rotating shaft 231, a gear 232, a connecting plate 233, a toothed plate 234, and a second motor 235. The toothed plate 234 is located at the lower end of the T-shaped plate 24, the second motor 235 is located on one side of the lower end of the base plate 1, and the connecting plate 233 is located on the other side of the lower end of the base plate 1. The output end of the second motor 235 is connected to the second rotating shaft 231, and the other end of the second rotating shaft 231 is rotatably connected to the connecting plate 233 via a bearing. The surface of the second rotating shaft 231 is provided with a gear 232 that meshes with the toothed plate 234.

[0031] By adopting the above technical solution, when motor 235 is turned on, motor 235 drives rotating shaft 231 to rotate through the output end. The rotation of rotating shaft 231 drives gear 232 to rotate. The rotation of gear 232 drives toothed plate 234 to slide. The sliding of toothed plate 234 can drive T-shaped plate 24 to slide.

[0032] In this embodiment, when the motor 235 is turned on, the motor 235 drives the rotating shaft 231 to rotate through the output end. The rotation of the rotating shaft 231 drives the gear 232 to rotate. The rotation of the gear 232 drives the toothed plate 234 to slide. The sliding of the toothed plate 234 drives the T-shaped plate 24 to slide. The sliding of the T-shaped plate 24 drives the support frame 26 and the fixing ring 27 to slide, thereby enabling the roller 4 to slide inside the fixing ring 27 and changing the width of the roller 4 to adapt to the winding of stainless steel cold coils of different widths. When the T-shaped plate 24 slides, it drives the pulley 22 to slide inside the slide rail 21, thereby improving the stability of the sliding process of the T-shaped plate 24.

[0033] Example 2

[0034] The difference between this embodiment and Embodiment 1 is that the stainless steel cold-rolled coil fixing mechanism 5 includes a pressure plate 51, a slider 52, a groove 53, a knob 54, a clearance groove 55, and a screw 56. The pressure plate 51 is slidably connected inside the roller 4, and the slider 52 is provided on the side of the pressure plate 51. The groove 53 corresponding to the slider 52 is opened inside the roller 4. The screw 56 is rotatably connected to one side of the pressure plate 51 through a bearing. The clearance groove 55 corresponding to the screw 56 is opened on the side of the roller 4. The knob 54 is provided at the other end of the screw 56.

[0035] By adopting the above technical solution, when winding stainless steel cold coil, one end of the stainless steel cold coil is placed inside the winding roller 4, and the knob 54 is turned. The rotation of the knob 54 drives the screw 56 to rotate. The rotation of the screw 56 drives the pressure plate 51 to slide and fix the stainless steel cold coil. When the pressure plate 51 slides, it will drive the slider 52 to slide inside the slide groove 53, thereby improving the stability of the sliding process of the pressure plate 51.

[0036] Specifically, the stainless steel cold-rolled coil fixing mechanism 5 also includes a second relief groove 57, a limiting plate 58, and a guide rod 59. The other side of the pressure plate 51 is provided with a guide rod 59 that is slidably connected to the coiling roller 4. The other end of the guide rod 59 is provided with a limiting plate 58. The side of the coiling roller 4 is provided with a second relief groove 57 corresponding to the limiting plate 58.

[0037] By adopting the above technical solution, when the pressure plate 51 slides, it will drive the guide rod 59 to slide with the roller 4, thereby improving the stability of the sliding process of the pressure plate 51. By setting the limiting plate 58 and the relief groove 57, the roller 4 can be prevented from being unable to pass through the inside of the fixing ring 27.

[0038] In this embodiment, when winding the stainless steel cold coil, one end of the stainless steel cold coil is placed inside the winding roller 4. The knob 54 is rotated, which drives the screw 56 to rotate. The screw 56 rotates, which drives the pressure plate 51 to slide and fix the stainless steel cold coil. When the pressure plate 51 slides, it will drive the slider 52 to slide inside the slide groove 53, thereby improving the stability of the sliding process of the pressure plate 51. When the pressure plate 51 slides, it will drive the guide rod 59 to slide with the winding roller 4, thereby improving the stability of the sliding process of the pressure plate 51. By setting the limiting plate 58 and the relief groove 57, the winding roller 4 can be prevented from being unable to pass through the inside of the fixing ring 27.

[0039] The working principle and usage process of this utility model are as follows: When using this utility model, motor 235 is turned on. Motor 235 drives rotating shaft 231 to rotate through its output end. The rotation of rotating shaft 231 drives gear 232 to rotate. The rotation of gear 232 drives toothed plate 234 to slide. The sliding of toothed plate 234 drives T-shaped plate 24 to slide. The sliding of T-shaped plate 24 drives support frame 26 and fixing ring 27 to slide, thereby allowing the winding roller 4 to slide inside the fixing ring 27 and change the width of the winding roller 4 to adapt to the winding of stainless steel cold coils of different widths. When T-shaped plate 24 slides, it drives pulley 22 to slide inside slide rail 21, thereby... To improve the stability of the T-plate 24 during the sliding process; when winding the stainless steel cold coil, one end of the stainless steel cold coil is placed inside the winding roller 4, and the knob 54 is turned. The rotation of the knob 54 drives the screw 56 to rotate, and the rotation of the screw 56 drives the pressure plate 51 to slide and fix the stainless steel cold coil. When the pressure plate 51 slides, it will drive the slider 52 to slide inside the slide groove 53, thereby improving the stability of the pressure plate 51 during the sliding process. When the pressure plate 51 slides, it will drive the guide rod 59 to slide with the winding roller 4, thereby improving the stability of the pressure plate 51 during the sliding process. By setting the limiting plate 58 and the relief groove 2 57, the winding roller 4 can be prevented from being unable to pass through the inside of the fixing ring 27.

[0040] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A discharge structure for stainless steel cold-rolled coils, comprising a base plate (1), wherein a support leg (3) is provided at the lower corner of the base plate (1), a mounting plate (9) is provided on one side of the upper end of the base plate (1), a mounting frame (10) is provided at the upper end of the mounting plate (9), an L-shaped fixing plate (8) is provided on the side of the mounting frame (10), a motor (7) is provided at the upper end of the L-shaped fixing plate (8), a rotating shaft (6) is provided at the output end of the motor (7), a hexagonal insert (11) is provided at the other end of the rotating shaft (6), and a rolling roller (4) is provided on the surface of the hexagonal insert (11), characterized in that: The inside of the roll (4) is provided with a stainless steel cold roll fixing mechanism (5), and the other side of the inside of the bottom plate (1) is provided with a fixed ring position adjusting mechanism (2).

2. A discharge structure for a stainless steel cold coil as claimed in claim 1, wherein: The fixed ring position adjusting mechanism (2) comprises a transmission assembly (23), a T-shaped plate (24), a sliding groove (25), a support frame (26) and a fixed ring (27), the other side of the inside of the bottom plate (1) is provided with the T-shaped plate (24), the upper end of the bottom plate (1) is provided with the sliding groove (25) corresponding to the T-shaped plate (24), the lower end of the T-shaped plate (24) is provided with the transmission assembly (23), the upper end of the T-shaped plate (24) is provided with the support frame (26), and the upper end of the support frame (26) is provided with the fixed ring (27).

3. A discharge structure for a stainless steel cold coil as claimed in claim 2, wherein: The fixed ring position adjusting mechanism (2) further comprises a sliding rail (21) and a pulley (22), and the lower end side of the T-shaped plate (24) is provided with the pulley (22), and the upper end of the bottom plate (1) is provided with the sliding rail (21) corresponding to the pulley (22).

4. The discharge structure of a cold coil of stainless steel according to claim 2, characterized in that: The transmission assembly (23) comprises a rotating shaft two (231), a gear (232), a connecting plate (233), a toothed plate (234) and a motor two (235), the lower end of the T-shaped plate (24) is provided with the toothed plate (234), one side of the lower end of the bottom plate (1) is provided with the motor two (235), the other side of the lower end of the bottom plate (1) is provided with the connecting plate (233), the output end of the motor two (235) is provided with the rotating shaft two (231), the other end of the rotating shaft two (231) is rotatably connected with the connecting plate (233) through a bearing, and the surface of the rotating shaft two (231) is provided with the gear (232) engaged with the toothed plate (234).

5. The discharge structure of a cold coil of stainless steel according to claim 1, characterized in that: The stainless steel cold roll fixing mechanism (5) comprises a pressing plate (51), a sliding block (52), a sliding groove (53), a knob (54), a clearance groove one (55) and a screw rod (56), the inside of the roll (4) is slidably connected with the pressing plate (51), the side of the pressing plate (51) is provided with the sliding block (52), the inside of the roll (4) is provided with the sliding groove (53) corresponding to the sliding block (52), one side of the pressing plate (51) is rotatably connected with the screw rod (56) through a bearing, the side of the roll (4) is provided with the clearance groove one (55) corresponding to the screw rod (56), and the other end of the screw rod (56) is provided with the knob (54).

6. A discharge structure for a stainless steel cold coil as claimed in claim 5, wherein: The stainless steel cold roll fixing mechanism (5) further comprises a clearance groove two (57), a limiting plate (58) and a guide rod (59), the other side of the pressing plate (51) is provided with the guide rod (59) in sliding connection with the roll (4), the other end of the guide rod (59) is provided with the limiting plate (58), and the side of the roll (4) is provided with the clearance groove two (57) corresponding to the limiting plate (58).

Citation Information

Patent Citations

  • Stainless steel cold coil discharging structure

    CN219791888U