Clamping device for processing boundary beam of battery box body

By designing a multi-functional clamping device, stable clamping and rotation processing of edge beams of different shapes were achieved, solving the problem of limited applicability of existing devices and improving processing efficiency and edge beam quality.

CN223981722UActive Publication Date: 2026-03-10YIBIN LIDING NEW ENERGY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Most existing clamping devices are only compatible with side beams of specific shapes, which limits their applicability and affects machining accuracy and overall vehicle performance.

Method used

A clamping device was designed, comprising an installation platform, a rotating mechanism, a pressing mechanism, and an auxiliary pressing mechanism. It securely clamps edge beams of different shapes using positioning blocks and pressing blocks of different heights, and achieves multi-angle processing by combining rotational motion.

Benefits of technology

This broadens the application range of the clamping device, reduces the workload of workers, and improves processing efficiency and the quality inspection pass rate of the edge beams.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a clamping device for processing an edge beam of a battery box body, and belongs to the technical field of automobile part processing. The clamping device for edge beam machining mainly comprises a mounting platform, a rotating mechanism, a pressing mechanism and an auxiliary pressing mechanism. Wherein a plurality of positioning blocks are arranged at the top end of the mounting platform, and a rotating mechanism is arranged at the end part of the mounting platform; a hold-down mechanism is arranged on one side of the top end of the mounting platform in the width direction, and a first hold-down block is arranged in the hold-down mechanism; an auxiliary pressing and holding mechanism is arranged on the other side of the top end of the mounting platform in the width direction, a second pressing and holding block is arranged in the auxiliary pressing and holding mechanism, and the height of the auxiliary pressing and holding mechanism is different from that of the pressing and holding mechanism; the first pressing block and the second pressing block are both located above the positioning block. Compared with the prior art, the application range is widened, the working intensity of workers is reduced to a certain extent, and the working efficiency is improved, so that the device has higher practicability.
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Description

Technical Field

[0001] This utility model relates to the field of automotive parts processing technology, and in particular to a clamping device for processing the side beam of a battery box. Background Technology

[0002] With the rapid development of the new energy vehicle industry, the battery box has become a crucial supporting component in the power battery system. The box is mainly composed of precision-assembled side beams and a base plate. The processing accuracy of these two parts generally directly affects the safety of the power battery pack and the overall performance of the vehicle.

[0003] However, most of the clamping devices currently used in the processing of edge beams are only compatible with edge beams of specific shapes, which limits their applicability to some extent. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a clamping device for processing the side beams of a battery box, which mainly includes an installation platform, a rotating mechanism, a pressing mechanism, and an auxiliary pressing mechanism. During use, due to the different heights of the pressing mechanism and the auxiliary pressing mechanism, and with the assistance of the positioning block, side beams of different shapes can be securely clamped, facilitating processing of these beams by workers. Compared to existing technologies, this utility model broadens its applicability, reduces the workload of workers to a certain extent, and improves work efficiency; therefore, it has high practicality.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A clamping device for machining the side beams of the battery box includes:

[0007] The installation platform has several positioning blocks at its top and a rotating mechanism at its end, which is used to drive the installation platform to rotate.

[0008] The pressing mechanism is provided in several ways. The pressing mechanism is located on one side of the top of the installation platform. The pressing mechanism is provided with a first pressing block.

[0009] A number of auxiliary holding mechanisms are provided. The auxiliary holding mechanisms are located on the other side of the top of the installation platform. The auxiliary holding mechanisms are provided with a second holding block. The height of the auxiliary holding mechanisms is different from the height of the holding mechanisms.

[0010] in,

[0011] Both the first pressing block and the second pressing block are located above the positioning block. The first pressing block, the second pressing block, and the positioning block are used together to securely clamp the side beam.

[0012] Furthermore,

[0013] The first holding block is located directly above the positioning block; and / or

[0014] The second holding block is located directly above the positioning block; and / or

[0015] The first pressure block is a polyurethane cushioning block; and / or

[0016] The second pressure block is a polyurethane cushioning block; and / or

[0017] A pressure sensor is installed in the urethane buffer block.

[0018] Furthermore, the rotating mechanism includes:

[0019] An active rotation drive component is disposed at one end of the length direction of the mounting platform;

[0020] A driven rotational component is disposed at the other end of the length direction of the mounting platform;

[0021] There are two connecting components, one of which is located between the active rotary drive component and the mounting platform, and the other is located between the driven rotary drive component and the mounting platform.

[0022] Furthermore, the pressing mechanism includes:

[0023] Pressing drive components;

[0024] The pressing and driving component is disposed on the side of the installation platform in the width direction, and the driving end of the pressing and driving component is provided with the first pressing block.

[0025] Furthermore, the auxiliary pressing mechanism includes:

[0026] Auxiliary pressure-holding drive component;

[0027] The auxiliary pressing and driving component is disposed on the side of the installation platform in the width direction, and the driving end of the auxiliary pressing and driving component is provided with the second pressing block.

[0028] Furthermore, the clamping device for machining the edge beam also includes:

[0029] A longitudinal abutment mechanism is located at the top of the mounting platform, and is symmetrically arranged at both ends of the mounting platform along its length. The longitudinal abutment mechanism is used to abut the two ends of the side beam along its length; and / or

[0030] A lateral abutment mechanism is located at the top of the installation platform and is disposed on the side of the installation platform in the width direction. The lateral abutment mechanism is used to abut the side of the side beam in the width direction.

[0031] Furthermore, the longitudinal abutment mechanism includes:

[0032] A longitudinal drive component is disposed at the top of the mounting platform, and the longitudinal drive component is located between the holding mechanism and the rotating mechanism;

[0033] A longitudinal abutment block is disposed at the driving end of the longitudinal driving member.

[0034] Furthermore, the lateral abutment mechanism includes:

[0035] A lateral driving member is disposed on the side of the auxiliary pressing mechanism, and the lateral driving member is disposed opposite to the pressing mechanism;

[0036] A lateral abutment block is disposed at the driving end of the lateral driving member.

[0037] Furthermore, the clamping device for machining the edge beam also includes:

[0038] Auxiliary positioning blocks, in several quantities, are disposed on the side of the pressing mechanism, and are arranged opposite to the auxiliary pressing mechanism; and / or

[0039] A protrusion is disposed on one side of the auxiliary pressing mechanism, and the protrusion is disposed opposite to the pressing mechanism.

[0040] Furthermore,

[0041] The rotating mechanism, the pressing mechanism, the auxiliary pressing mechanism, the longitudinal supporting mechanism, and the lateral supporting mechanism are pneumatically driven or hydraulically driven; and / or

[0042] The installation platform has several recesses.

[0043] The beneficial effects of this utility model are:

[0044] 1. The clamping device for processing the side beam of the battery box provided by this utility model is equipped with a rotating mechanism, which can rotate the mounting platform, the pressing mechanism set on the mounting platform, the auxiliary pressing mechanism set on the mounting platform, and the side beam placed on the mounting platform. This design facilitates the processing of the side beam at multiple angles, reduces the workload of workers to a certain extent, and improves work efficiency.

[0045] 2. The clamping device for processing edge beams is equipped with a pressing mechanism, an auxiliary pressing mechanism and a positioning block. Since the pressing mechanism and the auxiliary pressing mechanism have different heights, they can stably clamp edge beams of different shapes. This design broadens the scope of application of this utility model. Attached Figure Description

[0046] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0047] Figure 2 This utility model Figure 1 Another perspective;

[0048] Figure 3 This is a schematic diagram of the assembly structure of the present invention and the side beam.

[0049] Figure label:

[0050] 1. Installation platform; 11. Positioning block; 12. Auxiliary positioning block; 13. Protrusion; 14. Recess;

[0051] 2. Rotating mechanism; 21. Active rotation drive component; 22. Driven rotation drive component; 23. Connecting component;

[0052] 3. Holding mechanism; 31. Holding drive component; 32. First holding block;

[0053] 4. Auxiliary pressing mechanism; 41. Auxiliary pressing drive component; 42. Second pressing block;

[0054] 5. Longitudinal abutment mechanism; 51. Longitudinal drive component; 52. Longitudinal abutment block;

[0055] 6. Lateral abutment mechanism; 61. Lateral drive component; 62. Lateral abutment block;

[0056] 7. Edge beams. Detailed Implementation

[0057] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0058] Example 1

[0059] As attached Figures 1-3As shown, this embodiment discloses a clamping device for processing the side beam of a battery box, which is used to broaden the application scope of existing clamping devices. It mainly includes a mounting platform 1, a rotating mechanism 2, a pressing mechanism 3, and an auxiliary pressing mechanism 4. In use, this embodiment is first fixedly installed on a workbench (not shown in the figure), that is, the bottom end of the rotating mechanism 2 is fixedly connected to the top end of the workbench; above the workbench is a cutting device (not shown in the figure), which is used to process the side beam 7; below the workbench is a waste collection device (not shown in the figure), which is used to collect waste generated during the processing of the side beam 7; then, the side beam 7 to be processed is correctly placed on the top of the positioning block 11; next, the corresponding button in the control system (not shown in the figure) is pressed; then, the first pressing block 32 in the pressing mechanism 3 and the second pressing block 42 in the auxiliary pressing mechanism 4 both rotate and descend; after a period of time, the side beam 7 is firmly clamped by this embodiment, as shown in the attached figure. Figure 3 As shown; and, attached Figure 3 The edge beam 7 in the process is irregularly shaped. If the thickness of the edge beam 7 to be processed is higher than that of the auxiliary holding mechanism 4, the operator can operate the control system to ensure that only the first holding block 32 in the holding mechanism 3 contacts the edge beam 7, thus achieving a stable clamping of the edge beam 7. Furthermore, the operator can adjust the descent height of the first holding block 32 and the second holding block 42 in real time according to the thickness of the edge beam 7 to be processed through the control system. If the first holding block 32 and the second holding block 42 descend to a preset height, the control system sends a signal to the holding mechanism 3 and the auxiliary holding mechanism 4 to maintain the current working state, i.e., the first holding block 32 and the second holding block 42 remain at their current positions.

[0060] The specific structure of the clamping device for processing the side beam of the battery box is as follows: It includes a mounting platform 1, with several positioning blocks 11 at the top and a rotating mechanism 2 at the end; a number of pressing mechanisms 3 are provided on one side of the top width direction of the mounting platform 1, and the pressing mechanism includes a first pressing block 32; a number of auxiliary pressing mechanisms 4 are provided on the other side of the top width direction of the mounting platform 1, and the auxiliary pressing mechanism 4 includes a second pressing block 42, and the height of the auxiliary pressing mechanism 4 is different from that of the pressing mechanism 3; both the first pressing block 32 and the second pressing block 42 are located above the positioning blocks 11, and the positioning blocks 11 are located between the pressing mechanism 3 and the auxiliary pressing mechanism 4. Compared with the prior art, this utility model broadens the scope of application, reduces the workload of workers to a certain extent, and improves work efficiency, thus having high practicality.

[0061] Furthermore, the first pressing block 32 is located directly above the positioning block 11. This design can enhance the pressing effect of the pressing mechanism 3 on the side beam 7, and improve the clamping effect of the side beam 7 in this embodiment to a certain extent.

[0062] Furthermore, the second holding blocks 42 are all located directly above the positioning blocks 11. This design enhances the holding effect of the auxiliary holding mechanism 4 on the side beam 7.

[0063] In a specific application scenario, the first pressing block 32 can be a urethane buffer block. This design can reduce the indentation phenomenon caused by the pressing mechanism 3 on the side beam 7. Typically, a pressure sensor (not shown in the figure) is installed in the urethane buffer block. This pressure sensor is electrically connected to the aforementioned control system. The pressure sensor can transmit the current pressing force of the pressing mechanism 3 on the side beam 7 to the control system in real time. This design reduces the damage to the side beam 7 in this embodiment and improves the quality inspection pass rate of the processed side beam 7. (Appendix) Figure 3 In the process, part of the structure of the first pressing block 32 comes into contact with the side beam 7, causing the first pressing block 32 to deform; during this process, the pressure sensor can transmit the extrusion force that causes the deformation to the control system in real time.

[0064] In a specific application scenario, the second pressing block 42 can be a urethane buffer block. This design can reduce the phenomenon of indentation on the side beam 7 by the auxiliary pressing mechanism 4. Typically, a pressure sensor is installed in the urethane buffer block. The pressure sensor is electrically connected to the aforementioned control system. The pressure sensor can transmit the current squeezing force of the auxiliary pressing mechanism 4 on the side beam 7 to the control system in real time. This design further reduces the degree of damage to the side beam 7 in this embodiment, and also further improves the quality inspection pass rate of the processed side beam 7.

[0065] In a specific application scenario, as shown in the appendix Figure 2As shown, the rotating mechanism 2 includes an active rotating drive component 21, a driven rotating drive component 22, and a connecting component 23. The active rotating drive component 21 is located at the right end of the mounting platform 1 and is electrically connected to the control system. The driven rotating drive component 22 is located at the left end of the mounting platform 1 and is generally symmetrically arranged with the active rotating drive component 21 at the left and right ends of the mounting platform 1. A connecting component 23 is provided between the active rotating drive component 21 and the right end of the mounting platform 1, and between the driven rotating drive component 22 and the left end of the mounting platform 1. The connecting component 23 mainly includes a disc-shaped object (not marked in the figure) and a platform-shaped object (not marked in the figure). Specifically, one side of the disc-shaped object is rotatably connected to the drive end of the active rotating drive component 21 and the drive end of the driven rotating drive component 22, respectively. The other side of the disc-shaped object is fixedly connected to the side of the platform-shaped object away from the pressing mechanism 3. The top end of the platform-shaped object is fixedly connected to the bottom end of the mounting platform 1. In use, first, the edge beam 7 to be processed is correctly placed on top of the positioning block 11; then, the control system is operated to allow the pressing mechanism 3, the auxiliary pressing mechanism 4, and the positioning block 11 to work together to securely clamp the edge beam 7; next, the cutting device is started to process the edge beam 7; after a period of time, the current angle of the edge beam 7 has been processed; then, the corresponding button in the control system is pressed, and the control system sends a start command to the rotating mechanism 2, and the rotating mechanism 2 starts working; then, the active rotation drive component 21 drives the disc to rotate, and the disc, along with the platform, the mounting platform 1, and the edge beam 7, rotate synchronously; then, the mounting platform 1... The mounting platform 1, carrying the disc-shaped object and the platform-shaped object connected to the driven rotary drive component 22, rotates synchronously. During this process, the active rotary drive component 21 can transmit the current rotation angle to the control system in real time. When the mounting platform 1 is adjusted to a suitable angle, the control system sends a stop command to the active rotary drive component 21, and the active rotary drive component 21 stops working. This achieves the purpose of adjusting the angle to be processed of the side beam 7, and to a certain extent reduces the workload of the workers and improves work efficiency. In addition, if all angles of the current side beam 7 have been processed, the rotation mechanism 2 will adjust the mounting platform 1 to the initial angle, as shown in the attached diagram. Figure 3 As shown.

[0066] In a specific application scenario, as shown in the appendix Figure 2As shown, the pressing mechanism 3 is provided with a pressing drive member 31; wherein, the pressing drive member 31 is located on the front side of the top width direction of the mounting platform 1, and the driving end of the pressing drive member 31 is provided with a first pressing block 32; normally, a protrusion (not marked in the figure) is provided between the bottom end of the pressing drive member 31 and the top end of the mounting platform 1 to increase the overall height of the pressing mechanism 3. This design can further broaden the applicability of this embodiment to a certain extent. In use, firstly, the side beam 7 to be processed is placed on the positioning block 11; then, the corresponding button in the control system is pressed, and the control system sends a start command to the pressing mechanism 3; then, the pressing drive member 31 drives the first pressing block 32 to rotate; after a period of time, the first pressing block 32 is located directly above the positioning block 11; then, the pressing drive member 31 drives the first pressing block 32 to gradually move downward; when the first pressing block 32 descends to a suitable position, the pressing mechanism 3 maintains the current state until all angles of the current side beam 7 are processed.

[0067] Normally, the driving end of the pressing drive member 31 is a long strip-shaped connector (not marked in the figure). One side of the bottom end of the connector is connected to the power end of the pressing drive member 31, and the other side of the bottom end of the connector is fixedly provided with a first pressing block 32. That is, the power end of the pressing drive member 31 drives the connector to rotate, descend or ascend, and the connector will also move synchronously with the first pressing block 32.

[0068] In a specific application scenario, as shown in the appendix Figure 2 As shown, the top of the mounting platform 1 has several grooves (not marked in the figure), which are adapted to the lower part of the structure of the auxiliary pressing mechanism 4. The auxiliary pressing mechanism 4 is provided with an auxiliary pressing drive component 41. The lower part of the structure of the auxiliary pressing drive component 41 is located in the groove of the mounting platform 1. The auxiliary pressing drive component 41 is located on the rear side in the width direction of the mounting platform 1. The driving end of the auxiliary pressing drive component 41 is provided with a second pressing block 42. In use, through the operation control system, the control system sends a start command to the pressing mechanism 3 and the auxiliary pressing mechanism 4. The pressing mechanism 3, the auxiliary pressing mechanism 4 and the positioning block 11 can stably clamp some irregular side beams 7, further expanding the applicability of this embodiment. In addition, the operation process and corresponding content of the auxiliary pressing mechanism 4 can be referred to the corresponding description of the pressing mechanism 3 in this embodiment, and will not be repeated here.

[0069] In a specific application scenario, the mounting platform 1 has several recesses 14. This design reduces the weight of the mounting platform 1, thereby reducing the workload of the rotating mechanism 2 and extending the service life of this embodiment to a certain extent. In addition, the mounting platform 1 is generally made of cold-drawn steel, which improves the overall structural stability of this embodiment.

[0070] Example 2

[0071] As attached Figures 1-3 As shown, this embodiment discloses a clamping device for processing the side beam of a battery box, used to enhance the effect of firmly clamping the side beam 7 in the aforementioned embodiment 1. In addition to the components in the aforementioned embodiment 1, it also includes a longitudinal abutment mechanism 5; specifically, as shown in the attached... Figure 2 As shown, the longitudinal abutment mechanism 5 is generally symmetrically arranged at both ends of the top length direction of the mounting platform 1. The longitudinal abutment mechanism 5 is located on the side of the rotating mechanism 2 and is electrically connected to the control system. In use, first press the corresponding button in the control system, and the control system sends a start command to the longitudinal abutment mechanism 5; then, the longitudinal abutment end of the longitudinal abutment mechanism 5 gradually approaches the end of the side beam 7 in the length direction; after a period of time, the longitudinal abutment end of the longitudinal abutment mechanism 5 moves to a suitable position, and the longitudinal abutment mechanism 5 maintains its current state until all angles of the current side beam 7 are processed.

[0072] Furthermore, as shown in the appendix Figure 2 As shown, the longitudinal abutment mechanism 5 mainly includes a longitudinal driving member 51 and a longitudinal abutment block 52. Specifically, the longitudinal driving member 51 is disposed at the top of the mounting platform 1 and is located between the pressing mechanism 3 and the rotating mechanism 2. The driving end of the longitudinal driving member 51 is provided with the longitudinal abutment block 52. Under normal circumstances, the longitudinal driving member 51 is electrically connected to the control system, and the real-time distance at which the longitudinal driving member 51 drives the longitudinal abutment block 52 to move toward the side beam 7 can be sent to the control system. In addition, the longitudinal abutment block 52 can be a urethane buffer block, and a pressure sensor is disposed in the urethane buffer block. The pressure sensor is electrically connected to the control system.

[0073] Example 3

[0074] As attached Figures 1-3 As shown, this embodiment discloses a clamping device for processing the side beam of a battery box, which is used to further enhance the effect of firmly clamping the side beam 7 in the aforementioned embodiment 2. In addition to the components in the aforementioned embodiment 2, it also includes a lateral abutment mechanism 6; specifically, as shown in the attached... Figure 2As shown, the lateral abutment mechanism 6 is located at the top of the mounting platform 1 and at the rear of the mounting platform 1 in the width direction. The abutment end of the lateral abutment mechanism 6 is generally opposite to the main structure under the pressing mechanism 3. In use, first, the side beam 7 to be processed is placed on the positioning block 11, so that one side of the side beam 7 contacts the main structure under the pressing drive member 31. At this time, the side beam 7 is correctly positioned. Then, the corresponding button in the control system is pressed, and the control system sends a start command to the lateral abutment mechanism 6. Then, the lateral abutment end of the lateral abutment mechanism 6 gradually approaches the other side of the side beam 7. After a period of time, the lateral abutment end of the lateral abutment mechanism 6 moves to a suitable position, and the lateral abutment mechanism 6 maintains its current state, as shown in the attached diagram. Figure 3 As shown, this process continues until all angles of the current side beam 7 are machined.

[0075] Furthermore, as shown in the appendix Figure 2 As shown, the lateral abutment mechanism 6 mainly includes a lateral drive member 61 and a lateral abutment block 62. Specifically, the lateral drive member 61 is disposed on the side of the auxiliary pressing mechanism 4, and the drive end of the lateral drive member 61 is opposite to the pressing mechanism 3. The lateral abutment block 62 is disposed on the drive end of the lateral drive member 61. Normally, the lateral drive member 61 is electrically connected to the control system, and the real-time distance at which the lateral drive member 61 drives the lateral abutment block 62 to move toward the side beam 7 can be sent to the control system. In addition, the lateral abutment block 62 can be a urethane rubber buffer block, and a pressure sensor is disposed in the urethane rubber buffer block. The pressure sensor is electrically connected to the control system.

[0076] This embodiment also considers other situations, and the specific solution is as follows: (see attached) Figure 2 As shown, several auxiliary positioning blocks 12 are set at the top of the installation platform 1. The auxiliary positioning blocks 12 are set on one side of the pressing mechanism 3 and are opposite to the auxiliary pressing mechanism 4. The auxiliary positioning blocks 12 can replace the pressing mechanism 3 in contacting the side of the side beam 7. This design can avoid the side beam 7 from squeezing the main structure under the pressing drive component 31, and extend the service life of the pressing mechanism 3 to a certain extent. A protrusion 13 is set on the side of the auxiliary pressing mechanism 4 and is opposite to the pressing mechanism 3. This design can further enhance the clamping effect of embodiment 2 on the side beam 7.

[0077] Furthermore, the rotating mechanism 2, the pressing mechanism 3, the auxiliary pressing mechanism 4, the longitudinal supporting mechanism 5, and the lateral supporting mechanism 6 can be pneumatically driven or hydraulically driven. Pneumatic drives offer advantages such as rapid response and lower cost, making them suitable for light-load, high-speed applications. Hydraulic drives, on the other hand, possess powerful output and load capacity, making them suitable for heavy-load applications requiring high stability and precise control. Of course, operators can choose different solutions based on their needs, as long as their objectives are achieved; the relevant details will not be elaborated upon here.

[0078] Those skilled in the art will understand that, unless specifically stated otherwise, the singular forms “a,” “an,” and “the” used in this invention may also include the plural forms. It should be further understood that the term “comprising” as used in this invention means the presence of the stated features, integers, steps, operations, elements, and / or components, but does not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. It should be understood that when we say an element is “connected” or “coupled” to another element, it can be directly connected or coupled to the other element, or there may be intermediate elements. Furthermore, “connected” or “coupled” as used herein can include wireless connections or wireless coupling. The term “and / or” as used herein includes all or any units and all combinations of one or more associated listed items.

Claims

1. A clamping device for machining a side beam of a battery case, characterized by The utility model relates to a kind of installation platform and its auxiliary pressing mechanism, including: Mounting platform (1), the top end of which is provided with several positioning blocks (11), and the end of the mounting platform (1) is provided with a rotating mechanism (2), which is used to drive the mounting platform (1) to rotate; The number of the pressing mechanism (3) is several, and the pressing mechanism (3) is arranged on one side of the top end of the mounting platform (1), and the first pressing block (32) is arranged in the pressing mechanism (3); The number of the auxiliary pressing mechanism (4) is several, and the auxiliary pressing mechanism (4) is arranged on the other side of the top end of the mounting platform (1), and the second pressing block (42) is arranged in the auxiliary pressing mechanism (4), and the height of the auxiliary pressing mechanism (4) is different from the height of the pressing mechanism (3); Wherein, the first pressing block (32) and the second pressing block (42) are located above the positioning block (11), and the first pressing block (32), the second pressing block (42) and the positioning block (11) are used to firmly hold the edge beam (7).

2. The edge beam machining clamp apparatus according to claim 1, characterized by: The first pressing block (32) is located directly above the positioning block (11); And / or the second pressing block (42) is located directly above the positioning block (11); And / or the first pressing block (32) is an optim glue buffer block; And / or the second pressing block (42) is an optim glue buffer block; And / or the optim glue buffer block is provided with a pressure sensor.

3. The edge beam machining clamp apparatus according to claim 1, wherein The rotating mechanism (2) comprises: a driving rotation member (21) arranged at one end of the length direction of the mounting platform (1); A driven rotation driving member (22) is arranged at the other end of the length direction of the mounting platform (1); The number of the connecting member (23) is two, one is arranged between the driving rotation member (21) and the mounting platform (1), and the other is arranged between the driven rotation driving member (22) and the mounting platform (1).

4. The edge beam machining clamp apparatus according to any one of claims 1 to 3, characterized by The pressing mechanism (3) comprises: a pressing driving member (31); The pressing driving member (31) is arranged on the side of the width direction of the mounting platform (1), and the driving end of the pressing driving member (31) is provided with the first pressing block (32).

5. The edge beam machining clamp apparatus according to any one of claims 1 to 3, characterized by The auxiliary pressing mechanism (4) comprises: an auxiliary pressing driving member (41); The auxiliary pressing driving member (41) is arranged on the side of the width direction of the mounting platform (1), and the driving end of the auxiliary pressing driving member (41) is provided with the second pressing block (42).

6. The edge beam machining clamp apparatus according to claim 1, wherein Further comprising: Longitudinal abutting mechanism (5) is located at the top end of the mounting platform (1), and the longitudinal abutting mechanism (5) is symmetrically arranged at both ends of the length direction of the mounting platform (1), and the longitudinal abutting mechanism (5) is used for abutting both ends of the length direction of the edge beam (7); And / or transverse abutting mechanism (6) is located at the top end of the mounting platform (1), and the transverse abutting mechanism (6) is arranged on the side of the width direction of the mounting platform (1), and the transverse abutting mechanism (6) is used for abutting the side of the width direction of the edge beam (7).

7. The edge beam machining clamp apparatus according to claim 6, wherein The longitudinal resisting mechanism (5) comprises a longitudinal driving member (51) arranged at the top end of the mounting platform (1), the longitudinal driving member (51) being located between the pressing mechanism (3) and the rotating mechanism (2); and a longitudinal resisting block (52) arranged at the driving end of the longitudinal driving member (51).

8. The edge beam machining clamp apparatus according to claim 6 or claim 7, characterized by The transverse resisting mechanism (6) comprises a transverse driving member (61) arranged at the side of the auxiliary pressing mechanism (4), the transverse driving member (61) being arranged opposite to the pressing mechanism (3); and a transverse resisting block (62) arranged at the driving end of the transverse driving member (61).

9. The edge beam machining clamp apparatus according to any one of claims 1 to 3 or claim 6, claim 7, characterized by, Further comprising: a plurality of auxiliary positioning blocks (12) arranged at the side of the pressing mechanism (3), the auxiliary positioning blocks (12) being arranged opposite to the auxiliary pressing mechanism (4); and / or a protruding block (13) arranged at one side of the auxiliary pressing mechanism (4), the protruding block (13) being arranged opposite to the pressing mechanism (3).

10. The edge beam machining clamp apparatus according to claim 6 or claim 7, characterized by: The rotating mechanism (2), the pressing mechanism (3), the auxiliary pressing mechanism (4), the longitudinal resisting mechanism (5) and the transverse resisting mechanism (6) are driven by air pressure or hydraulic pressure; and / or a plurality of recesses (14) are formed on the mounting platform (1).