Steel plate limiting conveying tool

By setting up ball and sliding components on the tooling platform of the steel plate limit transmission tooling, combined with the design of the limit plate and positioning parts, the problems of large feed offset and friction during the shearing process of the steel plate are solved, and the stable and accurate feeding of the steel plate is achieved.

CN223028590UActive Publication Date: 2025-06-27CNNC HUACHEN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422218158.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-06-27
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

During the steel plate shearing process, the shearing machine has insufficient fixity, which causes the steel plate to swing left and right and right when feeding, resulting in dimensional errors, and the sliding friction during feeding is large, making it difficult to effectively feed into the shearing machine.

Method used

A steel plate limit transmission tool is designed. Several balls are installed on the surface of the tooling platform, and sliding components and limiting plates are arranged on both sides. Through the movement of the sliding components and the fixing of the positioning parts, the steel plate does not deviate during feeding.

Benefits of technology

It effectively reduces the sliding friction during feeding, ensures that the steel plate enters the shearing machine from the fixed direction, avoids dimensional errors and offset problems, and is simple, flexible and fast to operate, saving time and effort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a steel plate limiting transmission tool, which relates to the technical field of steel plate shearing, and comprises a workbench used for cutting a steel plate; the tool platform is arranged on the workbench, and a plurality of holes are formed in the surface of the tool platform; the balls are arranged in the holes; the sliding rails are arranged on the two sides of the tool platform, and a set of sliding rails are arranged on each side of the tool platform; the sliding assembly is arranged on the sliding track and moves along the sliding track; the limiting plate is arranged between the sliding assemblies and used for limiting the steel plate; the positioning piece is used for fixing the sliding assembly; when the steel plate is cut, the steel plate is placed on the tool platform, the position of the sliding assembly is moved, the two sides of the steel plate are attached to the limiting plates, and the sliding assembly is fixed through the positioning piece. The feeding device solves the problems that feeding and conveying of the plate shearing machine are blocked and deviated, and has the advantages of being easy to operate, time-saving and labor-saving.
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Description

Technical Field

[0001] The utility model belongs to the technical field of steel plate shearing, and particularly relates to a steel plate limiting and conveying tooling. Background Art

[0002] In each factory workshop, various steel plates need to be sheared and prefabricated into different specifications and sizes. The feeding port of the shearing machine is often relatively fixed. When feeding materials of different specifications, it is inevitable that the steel plate will swing and shift left and right, resulting in errors in the size of the sheared and formed steel plate. Moreover, the contact area between the feeding port of the shearing machine and the surface of the steel plate is relatively large, so the sliding friction generated during feeding is relatively large, and it is very difficult to feed the material into the shearing machine. Therefore, it is necessary to design a multifunctional tooling that can not only reduce the sliding friction but also ensure that the material enters the shearing machine in a fixed direction. Content of the Utility Model

[0003] Aiming at the problems existing in the prior art, the utility model provides a steel plate limiting and conveying tooling. A plurality of balls are arranged on the surface of the tooling platform, and sliding components are arranged on both sides of the tooling platform, and limiting plates connected to the sliding components are provided, solving the problems of jamming and deviation in the feeding and conveying of the shearing machine.

[0004] To achieve the above object, the technical scheme adopted by the utility model is as follows:

[0005] A steel plate limiting and conveying tooling, including a workbench for cutting steel plates; and

[0006] A tooling platform arranged on the workbench, and a plurality of holes are arranged on the surface of the tooling platform; and

[0007] Balls arranged in the holes; and

[0008] Sliding tracks arranged on both sides of the tooling platform, and a set of sliding tracks are arranged on each side; and

[0009] Sliding components arranged on the sliding tracks and moving along the sliding tracks; and

[0010] Limiting plates arranged between a set of sliding components for limiting the steel plate; and

[0011] Positioning parts for fixing the sliding components;

[0012] Among them, when cutting the steel plate, the steel plate is placed on the tooling platform, the position of the sliding components is moved to make both sides of the steel plate fit with the limiting plates, and the sliding components are fixed through the positioning parts.

[0013] Further, it further includes a first fixing member for installing the ball. The first fixing member is welded to the lower surface of the tooling platform, and the ball is clamped in the first fixing member.

[0014] Further, the first fixing member is cylindrical, and the diameter of the first fixing member is the same as the diameter of the ball.

[0015] Further, it further includes a second fixing member. The second fixing member is annular, and the inner diameter of the second fixing member is the same as the diameter of the hole.

[0016] Further, the sliding assembly includes a first slider and a first pillar. The first slider is arranged on the sliding track, and the width of the first slider is greater than the width of the sliding track. A round hole is provided on the first slider; the first pillar passes through the round hole and extends below the tooling platform. External threads are provided at the lower end of the first pillar, and the first pillar is welded or integrally formed with the first slider.

[0017] Further, the sliding assembly further includes a cushion block. The cushion block is arranged on the outside of the first pillar, and the cushion block is connected to the lower surface of the tooling platform.

[0018] Further, the sliding assembly includes a second slider, a second pillar, and a third pillar. The second slider is arranged on the sliding track, and the width of the second slider is greater than the width of the sliding track; the lower part of the second pillar is connected to the upper surface of the second slider; the third pillar passes through the sliding track and is connected to the lower surface of the second slider.

[0019] Further, the second pillar includes a first head and a first tail. The first head and the first tail are integrally formed, and the lower part of the first head is connected to the upper surface of the second slider.

[0020] Further, the third pillar includes a second head, a second tail, and a third tail. The second tail and the third tail are respectively arranged on both sides of the second head. The upper part of the second tail is connected to the lower surface of the second slider, and external threads are provided on the third tail.

[0021] Further, the positioning member is a nut, and the sliding assembly is fixed by the nut.

[0022] Compared with the prior art, the utility model has the following beneficial effects: The surface of the steel plate limit transmission provided by the utility model is provided with a number of ball bearings, which can reduce the sliding friction during feeding. The sliding components on both sides and the limit plates connected to the sliding components can limit steel plates of different lengths, avoid left and right deviation during feeding, and ensure that the material enters the shearing machine workbench in a fixed direction. The utility model solves the problems of carding and deviation in the feeding transmission of the shearing machine, and has the advantages of simple operation, flexible application, convenience, speed, time saving and labor saving. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 FIG. is a front view of the limit transmission multi-functional tooling for cutting and blanking of a shearing machine in the embodiment provided by the utility model;

[0024] Figure 2 FIG. is a rear view of the limit transmission multi-functional tooling for cutting and blanking of a shearing machine in the embodiment provided by the utility model;

[0025] Figure 3 FIG. is a structural view of the sliding component in an embodiment provided by the utility model;

[0026] Figure 4 FIG. is a structural view of the second support column in the embodiment provided by the utility model;

[0027] Figure 5 FIG. is a structural view of the third support column in the embodiment provided by the utility model.

[0028] In the figure, 1, workbench; 2, tooling platform; 3, holes; 4, ball bearings; 5, sliding track; 6, limit plate; 7, positioning member; 8, first fixing member; 9, second fixing member; 10, first slider; 11, first support column; 12, cushion block; 13, second slider; 14, second support column; 15, first head; 16, first tail; 17, third support column; 18, second head; 19, second tail; 20, third tail. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] As Figures 1-5 shown, the utility model provides a steel plate limit transmission tooling, including a workbench 1 for cutting steel plates, and a tooling platform 2, which can be welded to the workbench 1 or connected to the workbench 1 by threads; the tooling platform 2 can be bent from a stainless steel plate with t = 3mm and a material of 022Cr19Ni10, and the specific dimensions are set according to the length and width of the workbench 1 (not greater than the length and width of the workbench).

[0030] For the convenience of feeding, a number of holes 3 are provided on the surface of the tooling platform 2. The holes can be drilled on the surface of the tooling platform 2 by a laser cutting machine, and balls 4 are arranged in the holes 3. For the convenience of installing the balls 4, the tooling includes a first fixing member 8. The first fixing member 8 can be cylindrical, and the diameter of the first fixing member 8 is the same as the diameter of the balls 4. The balls 4 are clamped in the first fixing member 8 and 1 / 3 - 1 / 4 of the balls are exposed. The upper end of the first fixing member 8 can be connected to the lower surface of the workbench 1 by welding.

[0031] For the beauty of the surface of the tooling platform 2, a second fixing member 9 is further included. The second fixing member 9 is annular, and the inner diameter thereof is the same as the diameter of the holes 3. The second fixing member 9 can be welded to the upper surface of the tooling platform 2. The balls 4 are clamped in the first fixing member 8 and partially pass through the holes 3 and the second fixing member 9 and are exposed. When placing the steel plate, the exposed balls 4 contact the steel plate, which can greatly reduce the sliding friction during feeding.

[0032] To limit steel plates of different sizes, the steel plate limiting and conveying tooling further includes sliding tracks 5. The sliding tracks 5 are provided on both sides of the tooling platform 2, and a set of the sliding tracks 5 is respectively arranged on each side; and sliding components which are arranged on the sliding tracks 5 and move along the sliding tracks 5; and limiting plates 6 which are arranged between a set of the sliding components and used for limiting the steel plates; and positioning members 7 which are used for fixing the sliding components.

[0033] Among them, when cutting the steel plate, the steel plate is placed on the tooling platform 2, the position of the sliding components is moved to make both sides of the steel plate fit with the limiting plates 6, and the sliding components are fixed by the positioning members 7. Then the steel plate can be fed into the shearing machine, which can ensure that the steel plate does not shift during the feeding process.

[0034] In a specific embodiment, such as Figure 3As shown, the sliding assembly includes a first slider 10 and a first support pillar 11. The first slider 10 is arranged on the sliding track 5, and the width of the first slider 10 is greater than the width of the sliding track 5. A round hole is provided on the first slider 10. The first support pillar 11 passes through the round hole and extends below the tooling platform 2. An external thread is provided at the lower end of the first support pillar 11. The first support pillar 11 can be welded or integrally formed with the first slider 10. A limiting plate 6 is arranged between a group of the first support pillars 11, and the limiting plate 6 can be welded to the first support pillar 11. The positioning member 7 can be a nut, and the nut is screwed onto the external thread of the first support pillar 11 to fix the sliding assembly. If the diameter of the first support pillar 11 is slightly smaller than the width of the sliding track 5, the first support pillar 11 can be directly tightened with a nut. If the diameter of the first support pillar 11 is much smaller than the width of the sliding track 5, the sliding assembly further includes a cushion block 12. The cushion block 12 is arranged outside the first support pillar 11 and connected to the lower surface of the tooling platform 2. The cushion block 12 can be welded to the lower surface of the tooling platform 2. By providing the cushion block 12, it is convenient for the nut to be connected to the first support pillar 11, and thus the sliding assembly can be fixed.

[0035] In another embodiment, the sliding assembly includes a second slider 13, a second support pillar 14, and a third support pillar 17. The second slider 13 is arranged on the sliding track 5, and the width of the second slider 13 is greater than the width of the sliding track 5. The lower part of the second support pillar 14 is connected to the upper surface of the second slider 13. The third support pillar 17 passes through the sliding track 5 and is connected to the lower surface of the second slider 13. As Figure 4 shown, the second support pillar 14 includes a first head 15 and a first tail 16. The first head 15 and the first tail 16 are integrally formed. The lower part of the first head 15 is connected to the upper surface of the second slider 13. The limiting plate 6 is arranged between a group of the first tails 16 and can be welded to the first tail 16. And the third support pillar 17, as Figure 5 shown, includes a second head 18, a second tail 19, and a third tail 20. The second tail 19 and the third tail 20 are respectively arranged on both sides of the second head 18. The upper part of the second tail 19 is connected to the lower surface of the second slider 13. An external thread is provided on the third tail 20.

[0036] In a specific embodiment, the selected material and dimensions of the steel plate limiting transmission tooling are as follows: The tooling platform 2 is bent from a stainless steel plate with a thickness t = 3 mm and a material of 022Cr19Ni10. The specific dimensions are set according to the length and width of the workbench 1 (not greater than the length and width of the workbench). The limiting plate 6 is also a stainless steel plate with a thickness t = 3 mm and a material of 022Cr19Ni10, with dimensions of 100*50 mm; the second support pillar 14 is an M10 bolt, which is welded to the limiting plate 6. The second slider 13 is made of a carbon steel plate with a thickness t = 4 and a material of Q235B and dimensions of 20*20 mm. The third support pillar 17 is an M8 bolt. One side of the second tail 19 of the M8 bolt passes through the sliding track 5 and is welded to the back of the carbon steel plate. The lower part of the second support pillar 14 is also connected to the front of the carbon steel plate of the second slider 13 by welding; both the sliding track 5 and the hole 3 are opened by a laser cutting machine. The sliding track 5 has dimensions of 9*50 mm, the hole 3 has a diameter of 5 mm, the ball 4 has a diameter of 8 mm. The first fixing member 8 is rolled from a stainless steel plate with a thickness t = 1.5 mm and a material of 022Cr19Ni10. The rolling diameter is the same as the diameter of the ball 4. The upper end is welded to the workbench 1, and the lower end is machined into a circular stainless steel plate with a diameter equal to 8 mm using a stainless steel plate with a thickness t = 1.5 mm and a material of 022Cr19Ni10, and the circular stainless steel plate is welded to the first fixing member 8 to seal the first fixing member 8; the second fixing member 9 is processed from a stainless steel plate with a thickness t = 1.5 mm and a material of 022Cr19Ni10, with an inner circle diameter of 5 mm and an outer circle diameter of 20 mm.

[0037] During use, place the steel plate on the tooling platform 2. A number of balls 4 on the surface of the tooling platform 2 can greatly reduce the sliding friction during feeding. Move the sliding components on both sides. When ensuring that the limiting plates 6 at both ends are closely attached to both sides of the steel plate, thread the nuts onto the first support pillar 11 or the third support pillar 17 to fix the sliding components. Then, the steel plate can be sent into the shearing machine. According to steel plates of different specifications, the position of the sliding components can be adjusted to ensure that the material enters the shearing machine in a fixed direction. Repeat the above operation process to complete the limiting transmission of steel plates of different specifications. The utility model solves the problems of jamming and offset during the feeding transmission of the shearing machine, and has the advantages of simple operation, flexible application, convenience, speed, time saving and labor saving.

[0038] Finally, it should be noted that the above content is only used to illustrate the technical solution of the utility model, rather than a limitation on the protection scope of the utility model. Simple modifications or equivalent replacements made by those of ordinary skill in the art to the technical solution of the utility model do not depart from the essence and scope of the technical solution of the utility model.

Claims

1. A steel plate limiting and transmission tool, comprising a workbench, the workbench is used for cutting steel plates, characterized in that: include, A tooling platform, which is disposed on the workbench and has a plurality of holes on its surface; and A ball, the ball being disposed in the hole; and Sliding rails, the sliding rails are arranged on both sides of the tooling platform, and a group of the sliding rails are arranged on each side; and a sliding assembly, the sliding assembly being disposed on the sliding track and moving along the sliding track; and A limiting plate, which is disposed between a group of the sliding components and is used to limit the position of the steel plate; and A positioning member, the positioning member is used to fix the sliding assembly; When cutting the steel plate, the steel plate is placed on the tooling platform, the position of the sliding assembly is moved so that both sides of the steel plate fit the limiting plate, and the sliding assembly is fixed by the positioning piece.

2. The steel plate position limiting and transmission tooling according to claim 1 is characterized in that: It also includes a first fixing member, which is welded to the lower surface of the tooling platform, and the ball bearing is clamped in the first fixing member.

3. The steel plate position limiting and transmission tooling according to claim 2 is characterized in that: The first fixing member is cylindrical, and the diameter of the first fixing member is the same as the diameter of the ball.

4. The steel plate position limiting and transmission tooling according to claim 2 is characterized in that: It also includes a second fixing member, which is in the shape of a ring, and the inner diameter of the second fixing member is the same as the diameter of the hole.

5. The steel plate position limiting and transmission tooling according to claim 1 is characterized in that: The sliding assembly includes a first slider and a first pillar. The first slider is arranged on the sliding track, and the width of the first slider is greater than the width of the sliding track. A round hole is arranged on the first slider. The first pillar passes through the round hole and extends to the bottom of the tooling platform. The lower end of the first pillar is provided with an external thread. The first pillar and the first slider are welded or integrally formed.

6. The steel plate position limiting and transmission tooling according to claim 5 is characterized in that: The sliding assembly further includes a cushion block, which is arranged on the outer side of the first pillar and connected to the lower surface of the tooling platform.

7. The steel plate position limiting and transmission tooling according to claim 1 is characterized in that: The sliding assembly includes a second slider, a second pillar, and a third pillar. The second slider is arranged on the sliding track, and the width of the second slider is greater than the width of the sliding track. The lower part of the second pillar is connected to the upper surface of the second slider. The third pillar passes through the sliding track and is connected to the lower surface of the second slider.

8. The steel plate position limiting and transmission tooling according to claim 7 is characterized in that: The second pillar includes a first head portion and a first tail portion, the first head portion and the first tail portion are integrally formed, and the lower portion of the first head portion is connected to the upper surface of the second sliding block.

9. The steel plate position limiting and transmission tooling according to claim 7 is characterized in that: The third pillar includes a second head, a second tail and a third tail. The second tail and the third tail are respectively arranged on both sides of the second head. The upper part of the second tail is connected to the lower surface of the second slider. The third tail is provided with an external thread.

10. The steel plate position limiting and transmission tooling according to any one of claims 5 to 9, characterized in that: The positioning member is a nut, and the sliding assembly is fixed by the nut.