Composite board clamping device for multi-row production

By designing a composite plate clamping device using electric telescopic rod to drive transverse columns and rotating blocks, the problem of low clamping efficiency of traditional clamping devices in large batches and multiple rows of production is solved, and a higher clamping rate and working efficiency is achieved, and the service life of the device is extended.

CN222920416UActive Publication Date: 2025-05-30DONGTAI HAOWEI ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202422359583.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-05-30
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

When traditional composite panel clamping devices face large-scale and multi-row production needs, they have low clamping efficiency and are not highly adaptable, making them difficult to meet the efficient, accurate and automated requirements of modern industrial production.

Method used

A multi-row composite plate clamping device is designed, using an electric telescopic rod to drive the transverse column and the rotating block. The tilted resistance groove makes the moving plate move quickly to complete the clamping, increasing the clamping rate. Meanwhile, by setting the slide groove and ball between the mounting frame and the moving plate, the sliding friction force is converted into the rolling friction force, the movement of the moving plate is simplified and wear is reduced.

Benefits of technology

It improves the clamping rate and working efficiency of composite boards, enhances the adaptability and service life of the device, and can better meet the needs of large-scale and multi-row production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-row production composite board clamping device, which relates to the technical field of composite board production and processing, and comprises a bottom plate, an electric telescopic rod is mounted in the middle of the top surface of the bottom plate, two mounting frames are mounted on the top surface of the bottom plate, a movable plate is mounted at the top of each mounting frame, and the movable plate is mounted on the top of the bottom plate. The outer wall of the moving plate is provided with an abutting groove inclining from the high position of the center point of the bottom plate to the low positions of the two sides in the initial state, a transverse column is fixedly installed on the top face of the electric telescopic rod, and a rotatable rotating block is installed at the edge position of the transverse column. According to the plate clamping device, the movable plate and the electric telescopic rod are arranged, the transverse column and the rotating block are arranged above the electric telescopic rod, and the inclined abutting groove is formed in the side wall of the movable plate, so that the transverse column and the rotating block can clamp a plate only through a small section of displacement, and the overall clamping speed is increased; and the overall working efficiency is also improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of composite board production and processing, and specifically relates to a clamping device for composite boards produced in multiple rows. Background Technique

[0002] With the rapid development of modern industrial production, composite boards, as an important building material and packaging material, have been widely used in various fields.

[0003] However, when facing the requirements of large - batch and multi - row production, traditional composite board clamping devices often have problems such as low clamping efficiency and poor adaptability, and it is difficult to meet the requirements of high - efficiency, precision, and automation in modern industrial production.

[0004] Especially when it is necessary to position and clamp the board, existing composite board clamping devices mostly use special threads or the cooperation between gear racks to drive the clamping components to clamp the board. Although this method can provide stable clamping with a positioning effect, the clamping speed is relatively slow. In the case of large - batch and multi - row production, the production rate is significantly insufficient, which is likely to delay the overall work efficiency.

[0005] In view of this, a clamping device for composite boards produced in multiple rows is provided to overcome the above - mentioned defects. Content of the Utility Model

[0006] The purpose of the utility model is to provide a clamping device for composite boards produced in multiple rows to solve the problems raised in the above - mentioned background technique.

[0007] To solve the above - mentioned technical problems, a clamping device for composite boards produced in multiple rows provided by the utility model includes a bottom plate. An electric telescopic rod is installed at the middle position of the top surface of the bottom plate. Two mounting frames are installed on the top surface of the bottom plate. A movable moving plate is installed at the top of the mounting frame. A resisting groove that slopes from the high point at the center of the bottom plate to the low points on both sides is formed on the outer wall of the moving plate in the initial state. A cross - column is fixedly installed on the top surface of the electric telescopic rod. A rotatable rotating block is installed at the edge position of the cross - column. The rotating block is at the highest point in the resisting groove in the initial state. A clamping plate is fixedly installed at the top of the moving plate.

[0008] Furthermore, two placing plates are installed on the top of the bottom plate, and the moving plate is located between the two placing plates.

[0009] Furthermore, a clamping pad is fixedly installed on one side of the clamping plate, and the specific material of the clamping pad is rubber.

[0010] Furthermore, a reinforcing block is arranged on one side of the moving plate, and the reinforcing block is fixedly connected to both the clamping plate and the moving plate.

[0011] Furthermore, a limiting plate is integrally formed at the top of the outer wall of the mounting bracket. Two limiting plates are installed on the outer wall of one mounting bracket, and the two limiting plates are symmetrically arranged. The moving plate is located between the two limiting plates.

[0012] Furthermore, two sliding grooves are formed at the top of the mounting bracket, and a plurality of movable balls are placed inside the sliding grooves.

[0013] Furthermore, sliding grooves are also formed on the bottom surface of the moving plate. The balls are located not only in the sliding grooves formed at the top of the mounting bracket but also in the sliding grooves formed at the bottom of the moving plate.

[0014] Furthermore, the bottom of the moving plate is in direct contact with the balls.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0016] By providing a moving plate and an electric telescopic rod, and arranging a cross column and a rotating block above the electric telescopic rod, and forming inclined abutting grooves on the side wall of the moving plate, the cross column and the rotating block can complete the clamping of the plate with only a small displacement, increasing the overall clamping speed and thus improving the overall working efficiency.

[0017] By forming sliding grooves on the top surface of the mounting bracket and the bottom surface of the moving plate, and placing a plurality of balls between the two, the sliding friction between the mounting bracket and the moving plate is converted into rolling friction, making the movement of the moving plate simpler and smoother. At the same time, the wear between the two is reduced, the driving difficulty is reduced, and the overall service life of the device is increased. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic structural diagram of the whole of the present utility model;

[0019] Figure 2 is a three-dimensional structural diagram of the side of the present utility model;

[0020] Figure 3 is a structural diagram of the moving plate in the present utility model;

[0021] Figure 4 is a schematic diagram of the internal structure of the moving plate in the present utility model.

[0022] In the figure: 1, bottom plate; 2, placing plate; 3, clamping plate; 4, clamping pad; 5, electric telescopic rod; 6, strengthening block; 7, mounting bracket; 8, moving plate; 9, abutting groove; 10, cross column; 11, limiting plate; 12, sliding groove; 13, ball; 14, rotating block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0024] Embodiment 1

[0025] Referring to Figures 1-4 , a composite board clamping device for multi-row production, including a bottom plate 1. An electric telescopic rod 5 is installed at the middle position of the top surface of the bottom plate 1. Two mounting frames 7 are installed on the top surface of the bottom plate 1. A movable moving plate 8 is installed at the top of the mounting frame 7. A resisting groove 9 that slopes from the high point of the center point of the bottom plate 1 to the low points on both sides is formed on the outer wall of the moving plate 8 in the initial state. A cross column 10 is fixedly installed on the top surface of the electric telescopic rod 5. A rotatable rotating block 14 is installed at the edge position of the cross column 10. The rotating block 14 is at the highest point in the resisting groove 9 in the initial state. A clamping plate 3 is fixedly installed at the top of the moving plate 8.

[0026] By setting that a rotatable rotating block 14 is installed at the edge position of the cross column 10 and the rotating block 14 is located in the resisting groove 9, the rotating block 14 can drive the moving plate 8 to move through the resisting groove 9 during the moving process, and the sliding friction is converted into rolling friction, so that the movement of the rotating block 14 will not cause excessive wear to the inner wall of the resisting groove 9 and the outer wall of the rotating block 14, increasing the service life of the device.

[0027] Furthermore, a reinforcing block 6 is arranged on one side of the moving plate 8. The reinforcing block 6 is fixedly connected to both the clamping plate 3 and the moving plate 8 at the same time. A limiting plate 11 is integrally formed on the top of the outer wall of the mounting frame 7. Two limiting plates 11 are installed on the outer wall of one mounting frame 7. The two limiting plates 11 are symmetrically arranged, and the moving plate 8 is located between the two limiting plates 11.

[0028] By setting that the reinforcing block 6 is fixedly connected to both the clamping plate 3 and the moving plate 8 at the same time, the connection strength between the clamping plate 3 and the moving plate 8 is increased, so that the clamping plate 3 will not be easily damaged during the process of clamping the board.

[0029] By setting that two limiting plates 11 are installed on the outer wall of one mounting frame 7, the two limiting plates 11 are symmetrically arranged, and the moving plate 8 is located between the two limiting plates 11, the moving plate 8 is limited by the two limiting plates 11 during the moving process and will not easily deviate from the established direction, increasing the stability of the device operation.

[0030] Furthermore, a clamping pad 4 is fixedly installed on one side of the clamping plate 3, and the specific material of the clamping pad 4 is rubber.

[0031] By providing the clamping pad 4 and arranging it on the side where the clamping plate 3 directly contacts the plate, when the device clamps the plate, the clamping pad 4 will contact the plate instead of the clamping plate 3, making the clamping of the plate firmer.

[0032] In addition, two placing plates 2 are installed on the top of the bottom plate 1, and the moving plate 8 is located between the two placing plates 2.

[0033] In specific implementation, when a user needs to process a large number of multi-row composites, it is often necessary to quickly clamp and fix the plates so that the overall efficiency will not be affected.

[0034] In this utility model, when clamping the plate, the user can directly place one or more plates between the two clamping pads 4, and then start the electric telescopic rod 5 to make the cross column 10 start to descend. The rotatable rotating blocks 14 installed on both sides of the cross column 10 are respectively located in the abutment grooves 9 opened on the outer walls of the two moving plates 8. Therefore, after the cross column 10 is driven by the electric telescopic rod 5 to descend, the rotating blocks 14 will also descend and drive the moving plates 8 to move towards the middle through the abutment grooves 9. During the process, the cross column 10 only needs to displace a small distance to drive the moving plates 8 and the clamping plates 3 to complete the clamping of the plate, improving the overall clamping speed.

[0035] By providing the moving plates 8 and the electric telescopic rods 5, and arranging the cross column 10 and the rotating blocks 14 above the electric telescopic rods 5, and opening inclined abutment grooves 9 on the side walls of the moving plates 8, the cross column 10 and the rotating blocks 14 only need a small displacement to complete the clamping of the plate, increasing the overall clamping speed, and thus improving the overall working efficiency.

[0036] Embodiment 2

[0037] On the basis of Embodiment 1, please refer to Figures 1-4 , for a composite plate clamping device for multi-row production, two sliding grooves 12 are opened on the top of the mounting frame 7, and a plurality of movable balls 13 are placed inside the sliding grooves 12. The same sliding grooves 12 are also opened on the bottom surface of the moving plate 8. The balls 13 are located inside the sliding grooves 12 opened on the top of the mounting frame 7 and are also located inside the sliding grooves 12 opened on the bottom of the moving plate 8.

[0038] In addition, it should be noted that the bottom of the moving plate 8 directly contacts the balls 13 and does not directly contact the top surface of the mounting frame 7.

[0039] In specific implementation, during the movement of the moving plate 8, if it directly contacts the mounting frame 7, it will increase the difficulty of moving the moving plate 8 and the energy required to drive the moving plate 8.

[0040] In this utility model, by providing sliding grooves 12 on the top surface of the mounting frame 7 and the bottom surface of the moving plate 8, and placing a plurality of balls 13 therebetween, the sliding friction between the mounting frame 7 and the moving plate 8 is converted into rolling friction, making the movement of the moving plate 8 simpler and smoother. At the same time, the wear between the two is reduced, the driving difficulty is decreased, and the overall service life of the device is increased.

[0041] Working principle: When a user needs to process a large number of multi-row composites, it is often necessary to quickly clamp and fix the plate so that the overall efficiency will not be affected.

[0042] In this utility model, when the plate needs to be clamped, the user can directly place one or more plates between the two clamping pads 4, and then start the electric telescopic rod 5 to make the cross column 10 start to descend. The rotatable rotating blocks 14 installed on both sides of the cross column 10 are respectively located in the abutment grooves 9 provided on the outer walls of the two moving plates 8. Therefore, after the cross column 10 is driven by the electric telescopic rod 5 to descend, the rotating blocks 14 will also descend and drive the moving plates 8 to move towards the middle through the abutment grooves 9. During this process, the cross column 10 only needs to displace a small distance to drive the moving plates 8 and the clamping plate 3 to complete the clamping of the plate, improving the overall clamping speed.

[0043] During the movement of the moving plate 8, if it directly contacts the mounting frame 7, it will increase the difficulty of moving the moving plate 8 and the energy required to drive the moving plate 8.

[0044] In this utility model, by providing sliding grooves 12 on the top surface of the mounting frame 7 and the bottom surface of the moving plate 8, and placing a plurality of balls 13 therebetween, the sliding friction between the mounting frame 7 and the moving plate 8 is converted into rolling friction, making the movement of the moving plate 8 simpler and smoother. At the same time, the wear between the two is reduced, the driving difficulty is decreased, and the overall service life of the device is increased.

[0045] By providing the moving plate 8 and the electric telescopic rod 5, and providing a cross column 10 and rotating blocks 14 above the electric telescopic rod 5, and providing inclined abutment grooves 9 on the side walls of the moving plate 8, the cross column 10 and the rotating blocks 14 only need a small displacement to complete the clamping of the plate, increasing the overall clamping speed, and thus improving the overall working efficiency.

Claims

1. A composite plate clamping device for multi-row production, comprising a base plate (1), characterized in that: An electric telescopic rod (5) is installed at the middle position of the top surface of the base plate (1), two mounting frames (7) are installed on the top surface of the base plate (1), a movable moving plate (8) is installed on the top of the mounting frame (7), and a contact groove (9) is provided on the outer wall of the moving plate (8) which is inclined from the high position of the center point of the base plate (1) to the low positions on both sides in an initial state, a cross column (10) is fixedly installed on the top surface of the electric telescopic rod (5), and a rotatable rotating block (14) is installed at the edge position of the cross column (10), and the rotating block (14) is located at the highest position in the contact groove (9) in an initial state, and a clamping plate (3) is fixedly installed on the top of the moving plate (8).

2. A multi-row composite panel clamping device as claimed in claim 1, characterized in that: Two placement plates (2) are installed on the top of the bottom plate (1), and the movable plate (8) is located between the two placement plates (2).

3. A multi-row composite panel clamping device as claimed in claim 2, characterized in that: A clamping pad (4) is fixedly mounted on one side of the clamping plate (3), and the specific material of the clamping pad (4) is rubber.

4. A composite plate clamping device for multi-row production as claimed in claim 3, characterized in that: A reinforcing block (6) is provided on one side of the movable plate (8), and the reinforcing block (6) simultaneously fixes and connects the clamping plate (3) and the movable plate (8).

5. A composite plate clamping device for multi-row production as claimed in claim 1, characterized in that: A limiting plate (11) is integrally formed on the top of the outer wall of the mounting frame (7), two limiting plates (11) are mounted on the outer wall of one mounting frame (7), the two limiting plates (11) are symmetrically arranged, and the movable plate (8) is located between the two limiting plates (11).

6. A composite plate clamping device for multi-row production as claimed in claim 5, characterized in that: Two slide grooves (12) are provided on the top of the mounting frame (7), and a plurality of movable balls (13) are placed inside the slide grooves (12).

7. A composite panel clamping device for multi-row production as claimed in claim 6, characterized in that: A slide groove (12) is also provided on the bottom surface of the movable plate (8), and the ball (13) is located in the slide groove (12) provided at the top of the mounting frame (7) and also in the slide groove (12) provided at the bottom of the movable plate (8).

8. A composite panel clamping device for multi-row production as claimed in claim 7, characterized in that: The bottom of the moving plate (8) directly contacts the ball bearings (13).