Small door plate for energy storage battery box and processing mechanism

By setting a support frame with transverse and longitudinal ribs on the small door panel and setting multiple clamping mechanisms on the processing mechanism, the problems of rapid positioning and low welding efficiency of the small door panel of the energy storage battery box are solved, an efficient and stable welding process is achieved, and the protective performance of the battery box is enhanced.

CN223427666UActive Publication Date: 2025-10-10NINGBO WANJIN MODERN SHEET METAL
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Patent Information

Application Number
CN202422859019.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-10-10
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The small door panels of the energy storage battery box need to be quickly positioned and fixed during production to avoid dimensional deviations during welding, and the existing technology has low working efficiency.

Method used

A stable internal support frame is constructed by arranging transverse ribs and longitudinal ribs on the small door panel, and a plurality of clamping mechanisms are arranged on the processing mechanism, including first to fifth clamping mechanisms, which respectively clamp and fix the transverse ribs, longitudinal ribs and inserts.

Benefits of technology

It improves the deformation resistance of the small door panel, ensures the stability and efficiency of the welding process, reduces the risk of door panel deformation and damage, and ensures the safe operation of the energy storage battery.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223427666U_ABST
Patent Text Reader

Abstract

The small door plate for the energy storage battery box comprises a panel, a transverse rib is placed on one side of the long edge of the panel, the two ends of the transverse rib abut against the two sides of the short edge of the panel, longitudinal ribs are placed on the two sides of the short edge of the panel, one end of each longitudinal rib abuts against the transverse rib, and the other end of each longitudinal rib abuts against the transverse rib. The other end of the longitudinal rib abuts against the long edge of the other side of the panel, and two inserting blocks are placed between the longitudinal ribs. The machining mechanism is used for machining the small door plate for the energy storage battery box, and the multiple clamping mechanisms are arranged on the machining mechanism so that the welding process can be more convenient and efficient. According to the small door plate for the energy storage battery box and the machining mechanism, the small door plate is stable in structure, the machining mechanism can quickly fix welding parts of the small door plate of the energy storage battery box, and the problems that size deviation is generated during welding and the working efficiency is low are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the part assembly processing application technical field especially, a kind of small door plate and processing mechanism for energy storage battery box. BACKGROUND

[0002] Door plate will be set on energy storage battery box, in normal state, when small door plate is in closed state, it can play certain isolation effect, prevent the object of outside accidentally touching battery and electrical element in box, avoid causing short circuit, damage etc. Meanwhile, for some energy storage battery box with protection level requirement, small door plate is also part of guaranteeing overall protection performance, for example, prevent moisture, dust, small animals etc. into box, reduce security risk, protect battery system safe and reliable operation.

[0003] Small door plate needs to be combined by welding when producing, welding needs to compress and fix position to multiple components, so a processing mechanism is needed to quickly position and fix small door plate and multiple components to facilitate welding. SUMMARY

[0004] The utility model solves the problem that: provide a kind of small door plate and processing mechanism for energy storage battery box, small door plate structure is stable, processing mechanism can quickly fix the welding component of small door plate of energy storage battery box, avoid the dimensional deviation when welding, and the problem of low work efficiency.

[0005] The utility model solves the technical scheme in the above-mentioned problem that is used to the small door plate of energy storage battery box, the long side of the panel is placed with transverse rib, and the both ends of transverse rib are in contact with the short side of panel, and the short side of panel is placed with longitudinal rib, and the one end of longitudinal rib is in contact with transverse rib, and the other end is in contact with the long side of panel, and two plug-in blocks are placed between longitudinal rib.

[0006] Compared with prior art, by setting transverse rib and longitudinal rib on panel, stable internal support frame is constructed. Transverse rib is in contact with the short side of panel, and longitudinal rib is in contact with transverse rib at one end and is in contact with the long side of panel at the other end, so that the anti-deformation ability of small door plate is effectively enhanced by the crisscross rib structure. Whether in the pressure, vibration that can be generated inside energy storage battery box, or in the face of possible external impact, extrusion etc. When condition, it can keep its shape stable, reduce the risk of door plate deformation, damage, to provide reliable protective barrier for energy storage battery, guarantee its normal operating environment not be excessively disturbed by external factors.

[0007] A processing mechanism for processing the above-mentioned small door panel for an energy storage battery box, comprising a base plate and a placement plane, wherein the placement plane is fixed on the base plate, and a panel is placed on the placement plane, a first clamping mechanism for clamping the two ends of the transverse rib is provided above the two ends thereof, and a plurality of second clamping mechanisms for clamping the middle thereof are provided above the middle thereof along the long side direction, a third clamping mechanism for clamping the longitudinal rib is provided above the end where the longitudinal rib and the transverse rib abut against each other, a fourth clamping mechanism is provided above the other end, and a fifth clamping mechanism for clamping the longitudinal rib is provided above the insert block.

[0008] By installing multiple clamping mechanisms on the processing mechanism, the welding process can be made more convenient and efficient. The first and second clamping mechanisms respectively clamp the ends and the middle of the transverse rib, the third and fourth clamping mechanisms respectively clamp the ends of the longitudinal rib, and the fifth clamping mechanism clamps the insert. The placement surface provides stable support, allowing welders to complete the door panel welding task more quickly and accurately, thereby improving overall work efficiency. This welding fixture can be used multiple times, saving costs.

[0009] Preferably, the placement plane includes a first support located below the first clamping mechanism, a second support located below the second clamping mechanism, a third support located below the third clamping mechanism, a fourth support located below the fourth clamping mechanism, and a fifth support located below the fifth clamping mechanism. The lower end faces of the first support, the second support, the third support, the fourth support, and the fifth support are all fixed on the base plate, and the upper end faces are all provided with gaskets and placement blocks from bottom to top. The upper end faces of the placement blocks are abutted against the lower end face of the panel, and gaskets are placed on the upper end faces of the first support, the second support, the third support, the fourth support, and the fifth support to adjust the overall flatness of the placement plane.

[0010] Preferably, a positioning pin is provided on the first support, and the positioning pin is inserted into the positioning hole of the panel. The shape of the positioning pin matches the shape of the positioning hole. By inserting the positioning pin into the positioning hole that matches the shape of the positioning pin, it is ensured that the panel will not be displaced during the welding process.

[0011] Preferably, the first clamping mechanism includes a first pressing head and a first cylinder. The first pressing head is located directly above the first support. The first cylinder is located on one side of the first pressing head and has its bottom fixed to the bottom plate. The output end of the first cylinder is connected to one end of the first pressing head. The first cylinder drives the first pressing head to perform a clamping movement toward the first support. The first cylinder drives the first pressing head to perform a clamping movement toward the first support to fix the positions of the two ends of the transverse rib on the panel.

[0012] Preferably, the second clamping mechanism comprises a second pressing head, a second cylinder, the second pressing head is located directly above the second support, the upper part of the second support is provided with a second positioning slot along the short side direction and a second insertion slot along the long side direction, the lower part of the second pressing head is provided with a second positioning protrusion matched with the second positioning slot and a second positioning block matched with the second insertion slot, the second cylinder is located on one side of the second pressing head and is fixed at the bottom on the bottom plate, the output end of the second cylinder is connected with one end of the second pressing head, the second cylinder drives the second pressing head to make clamping movement to the second support, the other end of the second pressing head is provided with a first clamping groove, the shape of the first clamping groove is matched with the transverse rib. The first clamping groove matched with the shape of the transverse rib avoids displacement of the middle part of the transverse rib during welding, and the second cylinder drives the second pressing head to make clamping movement to the second support, so that the position of the middle part of the transverse rib is fixed on the panel.

[0013] Preferably, the third clamping mechanism comprises a third pressing head, a third cylinder, the third pressing head is located directly above the third support, the upper part of the third support is provided with a third positioning slot along the long side direction and a third insertion slot along the short side direction, the lower part of the third pressing head is provided with a third positioning protrusion matched with the third positioning slot and a third positioning block matched with the third insertion slot, the third cylinder is located on one side of the third pressing head and is fixed at the bottom on the bottom plate, the output end of the third cylinder is connected with one end of the third pressing head, the third cylinder drives the third pressing head to make clamping movement to the third support, the other end of the third pressing head is provided with a second clamping groove, the shape of the second clamping groove is matched with the abutting end of the transverse rib on the longitudinal rib. The second clamping groove matched with the shape of the abutting end of the transverse rib on the longitudinal rib avoids displacement of the abutting end of the longitudinal rib and the transverse rib during welding, and the third cylinder drives the third pressing head to make clamping movement to the third support, so that the position of the abutting end of the transverse rib on the longitudinal rib is fixed on the panel.

[0014] Preferably, the fourth clamping mechanism comprises a fourth pressing head, a fourth cylinder, the fourth pressing head is located directly above the fourth support, the upper part of the fourth support is provided with a fourth positioning slot along the short side direction, the lower part of the fourth pressing head is provided with a fourth positioning protrusion matched with the fourth positioning slot, the fourth cylinder is located on one side of the fourth pressing head and is fixed at the bottom on the bottom plate, the output end of the fourth cylinder is connected with one end of the fourth pressing head, the fourth cylinder drives the fourth pressing head to make clamping movement to the fourth support, the other end of the fourth pressing head is provided with a third clamping groove, the shape of the third clamping groove is matched with the abutting end of the long side on the longitudinal rib. The third clamping groove matched with the shape of the abutting end of the long side on the longitudinal rib avoids displacement of the end during welding, and the fourth cylinder drives the fourth pressing head to make clamping movement to the fourth support, so that the position of the end is fixed on the panel.

[0015] Preferably, the fifth clamping mechanism is provided with a fifth ram and a fifth cylinder. The fifth ram is located directly above the fifth support. The upper portion of the fifth support is provided with a fifth positioning groove along the short side direction and a fifth slot along the long side direction. The lower portion of the fifth ram is provided with a fifth positioning protrusion adapted to be inserted into the fifth positioning groove and a fifth positioning block adapted to be inserted into the fifth slot. The fifth cylinder is located on one side of the fifth ram, and its bottom is fixed to the base plate. Its output end is connected to one end of the fifth ram. The fifth cylinder drives the fifth ram to perform a clamping movement toward the fifth support. A positioning groove is provided on the other end of the fifth ram, and the inner wall of the positioning groove matches the outer wall of the insert block. The positioning groove matching the insert block prevents the insert block from being displaced during welding, and the fifth cylinder drives the fifth ram to perform a clamping movement toward the fifth support to fix the position of the insert block on the panel. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a three-dimensional diagram of the utility model;

[0017] Figure 2 This is a three-dimensional diagram of the utility model after removing a small door panel for an energy storage battery box;

[0018] Figure 3 It is a three-dimensional diagram of the first clamping mechanism, the second clamping mechanism, and the third clamping mechanism of the present invention;

[0019] Figure 4 It is a three-dimensional diagram of the fourth clamping mechanism and the fifth clamping mechanism of the present invention;

[0020] Figure 5 A top view of a small door panel for an energy storage battery box;

[0021] Illustration: 1. Base plate; 2. Placement plane; 1.1. First support; 1.1.1. Positioning pin; 1.2. Second support; 1.2.1. Second positioning slot; 1.2.2. Second slot; 1.3. Third support; 1.3.1. Third positioning slot; 1.3.2. Third slot; 1.4. Fourth support; 1.4.1. Fourth positioning slot; 1.5. Fifth support; 1.5.1. Fifth positioning slot; 1.5.2. Fifth slot; 1.6. Gasket; 1.7. Placement block; 3. Panel; 3.1. Positioning hole; 4. Horizontal rib; 5. Longitudinal rib; 6. Insert block; 7. First clamping mechanism; 7.1. First pressure head; 7.2. First cylinder; 8. Second clamping mechanism; 8.1. First Second ram; 8.1.1, second positioning protrusion; 8.1.2, second positioning block; 8.1.3, first slot; 8.2, second cylinder; 9, third clamping mechanism; 9.1, third ram; 9.1.1, third positioning protrusion; 9.1.2, third positioning block; 9.1.3, second slot; 9.2, third cylinder; 10, fourth clamping mechanism; 10.1, fourth ram; 10.1.1, fourth positioning protrusion; 10.1.2, third slot; 10.2, fourth cylinder; 11, fifth clamping mechanism; 11.1, fifth ram; 11.1.1, fifth positioning protrusion; 11.1.2, fifth positioning block; 11.1.3, positioning groove; 11.2, fifth cylinder; DETAILED DESCRIPTION

[0022] Before describing in detail any embodiment of the present invention, it should be understood that the present invention is not limited in its application to the construction and arrangement details of the components set forth in the following description or illustrated in the following figures. The present invention is capable of other embodiments and can be practiced or carried out in various ways. In addition, it should be understood that the words and terms used herein are for descriptive purposes and should not be considered restrictive. The use of "including" or "having" and variations thereof herein is intended to cover the items and their equivalents set forth below, as well as additional items. Unless otherwise specified or limited, the terms "mount", "connect", "support" and "couple" and variations thereof are used broadly and cover direct mounting and indirect mounting, connection, support and coupling. In addition, "connect" and "couple" are not limited to physical or mechanical connections or couplings.

[0023] Furthermore, on the first hand, in the disclosure of the present invention, the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like to indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore the above terms cannot be understood as limitations on the present invention; on the second hand, the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the element may be multiple, and the term "one" cannot be understood as a limitation on the quantity.

[0024] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are provided for illustrative purposes only and are not intended to limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.

[0025] The embodiments of the present invention will be further described below with reference to the accompanying drawings.

[0026] See also Figure 5 A small door panel for an energy storage battery box includes a panel 3, a transverse rib 4 placed on one side of the long side of the panel 3, and the ends of the transverse rib 4 abutting against the two short sides of the panel 3. Longitudinal ribs 5 are placed on both sides of the short side of the panel 3, with one end of the longitudinal rib 5 abutting against the transverse rib 4 and the other end abutting against the other long side of the panel 3. Two inserts 6 are placed between the longitudinal ribs 5.

[0027] See also Figure 1 , a processing mechanism includes a base plate 1 and a placement plane 2. The placement plane 2 is fixed on the base plate 1, and a panel 3 is placed thereon. A first clamping mechanism 7 is provided above both ends of the above-mentioned transverse rib 4, for clamping the two ends of the transverse rib 4. A plurality of second clamping mechanisms 8 for clamping the middle part of the transverse rib 4 are provided along the long side direction. A third clamping mechanism 9 is provided above the end of the longitudinal rib 5 that abuts against the transverse rib 4, for clamping the longitudinal rib 5. A fourth clamping mechanism 10 is provided above the other end of the longitudinal rib 5, for clamping it. A fifth clamping mechanism 11 is provided above the plug block 6, for clamping the plug block 6.

[0028] Please refer to Figure 2The specific placement panel 3 includes a first support 1.1, a second support 1.2, a third support 1.3, a fourth support 1.4, and a fifth support 1.5. The first support 1.1 is located below the first clamping mechanism 7, the second support 1.2 is located below the second clamping mechanism 8, the third support 1.3 is located below the third clamping mechanism 9, the fourth support 1.4 is located below the fourth clamping mechanism 10, and the fifth support 1.5 is located below the fifth clamping mechanism 11. Each support is provided with a gasket 1.6 and a pad from bottom to top, and the height of the pad is changed to adjust the flatness of the placement plane 2.

[0029] A positioning pin 1.1.1 is provided on each of the two first supports 1.1. The positioning pin 1.1.1 is inserted into a positioning hole 3.1 on the panel 3.

[0030] Please refer to Figure 3 , the specific first clamping mechanism 7 is composed of a first pressure head 7.1 and a first cylinder 7.2. The first pressure head 7.1 is located directly above the first support 1.1 and is connected to the first cylinder 7.2. The first cylinder 7.2 is fixed on the base plate 1, and its output end is connected to one end of the first pressure head 7.1. Driven by the first cylinder 7.2, the first pressure head 7.1 can perform a clamping movement toward the first support 1.1. When welding and fixing are performed, the first cylinder 7.2 is activated, pushing the first pressure head 7.1 to move toward the first support 1.1, clamping the two ends of the transverse rib 4 on the panel 3. This clamping movement can ensure that the transverse rib 4 is tightly combined with the panel 3 to prevent it from moving or deforming during the welding process.

[0031] The specific second clamping mechanism 8 consists of a second pressure head 8.1 and a second cylinder 8.2. The second pressure head 8.1 is located directly above the second support 1.2. The upper portion of the second support 1.2 is provided with a second positioning groove 1.2.1 along the short side and a second slot 1.2.2 along the long side. The lower portion of the second pressure head 8.1 is provided with a second positioning protrusion 8.1.1 adapted to be inserted into the second positioning groove 1.2.1 and a second positioning block 8.1.2 adapted to be inserted into the second slot 1.2.2. The second cylinder 8.2 is located on one side of the second pressure head 8.1, with its bottom fixed to the base plate 1, and its output end connected to one end of the second pressure head 8.1. The other end of the second pressure head 8.1 is provided with a first card slot 8.1.3, the shape of which matches the transverse rib 4. During the welding and fixing process, the second pressure head 8.1 is driven by the second cylinder 8.2 to perform a clamping movement toward the second support 1.2. At this time, the transverse rib 4 will be inserted into the first slot 8.1.3 that matches its shape to prevent the middle part of the transverse rib 4 from shifting. The second cylinder 8.2 continuously clamps and fixes the position of the middle part of the transverse rib 4 on the panel 3.

[0032] The specific third clamping mechanism 9 consists of a third pressure head 9.1 and a third cylinder 9.2. The third pressure head 9.1 is located directly above the third support 1.3. The upper portion of the third support 1.3 is provided with a third positioning groove 1.3.1 along the long side and a third slot 1.3.2 along the short side. The lower portion of the third pressure head 9.1 is provided with a third positioning protrusion 9.1.1 adapted to be inserted into the third positioning groove 1.3.1 and a third positioning block 9.1.2 adapted to be inserted into the third slot 1.3.2. The third cylinder 9.2 is located on one side of the third pressure head 9.1, with its bottom fixed to the base plate 1, and its output end connected to one end of the third pressure head 9.1. The other end of the third pressure head 9.1 is provided with a second slot 9.1.3, the shape of which matches the abutting end of the transverse rib 4 on the longitudinal rib 5. During the welding process, the abutting ends of the transverse ribs 4 on the longitudinal ribs 5 are inserted into the second retaining grooves 9.1.3, which match their shape, to prevent displacement of the abutting ends of the longitudinal ribs 5 and transverse ribs 4. Simultaneously, the third cylinder 9.2 drives the third ram 9.1 toward the third support 1.3 to clamp the abutting ends of the longitudinal ribs 5 and transverse ribs 4, securing them on the panel 3.

[0033] Please refer to Figure 4 The specific fourth clamping mechanism 10 is composed of a fourth pressure head 10.1 and a fourth cylinder 10.2. The fourth pressure head 10.1 is located directly above the fourth support 1.4. The upper part of the fourth support 1.4 is provided with a fourth positioning groove 1.4.1 along the short side direction, and the lower part of the fourth pressure head 10.1 is provided with a fourth positioning protrusion 10.1.1 adapted to be inserted into the fourth positioning groove 1.4.1. The fourth cylinder 10.2 is located on one side of the fourth pressure head 10.1, and its bottom is fixed to the base plate 1. The output end is connected to one end of the fourth pressure head 10.1, and the other end of the fourth pressure head 10.1 is provided with a third card slot 10.1.2. During the welding and fixing process, the abutting end of the long side on the longitudinal rib 5 will be inserted into the third card slot 10.1.2 that matches its shape, which can prevent the end from displacement. At the same time, the fourth pressure head 10 . 1 is driven by the fourth cylinder 10 . 2 to perform a clamping movement toward the fourth support 1 . 4 , thereby fixing the position of the end portion on the panel 3 .

[0034] The specific fifth clamping mechanism 11 consists of a fifth ram 11.1 and a fifth cylinder 11.2. The fifth ram 11.1 is located directly above the fifth support 1.5. The upper portion of the fifth support 1.5 is provided with a fifth positioning groove 1.5.1 along the short side and a fifth slot 1.5.2 along the long side. The lower portion of the fifth ram 11.1 is provided with a fifth positioning protrusion 11.1.1 adapted to be inserted into the fifth positioning groove 1.5.1 and a fifth positioning block 11.1.2 adapted to be inserted into the fifth slot 1.5.2. The fifth cylinder 11.2 is located on one side of the fifth ram 11.1, with its bottom fixed to the base plate 1, and its output end connected to one end of the fifth ram 11.1. The other end of the fifth ram 11.1 is provided with a positioning groove 11.1.3. The inner wall of the positioning groove 11.1.3 matches the outer wall of the insert block 6. During the welding process, the insert 6 is inserted into the matching positioning groove 11.1.3 to prevent displacement of the insert 6. At the same time, the fifth cylinder 11.2 drives the fifth ram 11.1 to clamp toward the fifth support 1.5, fixing the position of the insert 6 on the panel 3.

[0035] The above description is merely a description of the preferred embodiment of the present invention and should not be construed as limiting the claims. The present invention is not limited to the above embodiment, and variations in its specific structure are permitted. All variations within the scope of the independent claims of the present invention are within the scope of protection of the present invention.

Claims

1. A small door panel for an energy storage battery box, characterized in that: The invention comprises a panel (3), wherein a transverse rib (4) is placed on one side of the long side of the panel (3), and the two ends of the transverse rib (4) are against the two sides of the short side of the panel (3); longitudinal ribs (5) are placed on both sides of the short side of the panel (3), one end of the longitudinal rib (5) is against the transverse rib (4), and the other end is against the other long side of the panel (3); and two inserts (6) are placed between the longitudinal ribs (5).

2. A processing mechanism, characterized in that: A small door panel for an energy storage battery box for processing the method according to claim 1, comprising a base plate (1) and a placement plane (2), wherein the placement plane (2) is fixed on the base plate (1), and a panel (3) is placed on the placement plane (2), a first clamping mechanism (7) for clamping the two ends of the transverse rib (4) is provided above the two ends thereof, and a plurality of second clamping mechanisms (8) for clamping the middle thereof are provided above the middle thereof along the long side direction, a third clamping mechanism (9) for clamping the longitudinal rib (5) and the transverse rib (4) is provided above the end where the longitudinal rib (5) and the transverse rib (4) abut against each other, a fourth clamping mechanism (10) is provided above the other end, and a fifth clamping mechanism (11) for clamping the insert (6) is provided above the insert (6).

3. A processing mechanism according to claim 2, characterized in that: The placement plane (2) comprises a first support (1.1) located below the first clamping mechanism (7), a second support (1.2) located below the second clamping mechanism (8), a third support (1.3) located below the third clamping mechanism (9), a fourth support (1.4) located below the fourth clamping mechanism (10), and a fifth support (1.5) located below the fifth clamping mechanism (11); the lower end surfaces of the first support (1.1), the second support (1.2), the third support (1.3), the fourth support (1.4), and the fifth support (1.5) are all fixed on the base plate (1), and the upper end surfaces are all provided with gaskets (1.6) and placement blocks (1.7) from bottom to top; the upper end surface of the placement block (1.7) abuts against the lower end surface of the panel (3).

4. A processing mechanism according to claim 3, characterized in that: A positioning pin (1.1.1) is provided on the first support (1.1), and the positioning pin (1.1.1) is inserted into the positioning hole (3.1) of the panel (3), and the shape of the positioning pin (1.1.1) matches the shape of the positioning hole (3.1).

5. A processing mechanism according to claim 2, characterized in that: The first clamping mechanism (7) comprises a first pressing head (7.1) and a first cylinder (7.2); the first pressing head (7.1) is located directly above the first support (1.1); the first cylinder (7.2) is located on one side of the first pressing head (7.1), and its bottom is fixed on the base plate (1); its output end is connected to one end of the first pressing head (7.1); and the first cylinder (7.2) drives the first pressing head (7.1) to perform a clamping movement toward the first support (1.1).

6. A processing mechanism according to claim 2, characterized in that: The second clamping mechanism (8) comprises a second pressing head (8.1) and a second cylinder (8.2); the second pressing head (8.1) is located directly above the second support (1.2); the upper portion of the second support (1.2) is provided with a second positioning groove (1.2.1) along the short side direction and a second slot (1.2.2) along the long side direction; the lower portion of the second pressing head (8.1) is provided with a second positioning protrusion (8.1.1) adapted to be inserted into the second positioning groove (1.2.1) and a second positioning block (8.1.2) adapted to be inserted into the second slot (1.2.2) 8.1.2), the second cylinder (8.2) is located on one side of the second pressure head (8.1), and the bottom is fixed on the base plate (1), the output end of the second cylinder (8.2) is connected to one end of the second pressure head (8.1), the second cylinder (8.2) drives the second pressure head (8.1) to perform a clamping movement toward the second support (1.2), and a first clamping groove (8.1.3) is provided on the other end of the second pressure head (8.1), and the shape of the first clamping groove (8.1.3) matches the transverse rib (4).

7. A processing mechanism according to claim 2, characterized in that: The third clamping mechanism (9) comprises a third pressure head (9.1) and a third cylinder (9.2). The third pressure head (9.1) is located directly above the third support (1.3). The upper portion of the third support (1.3) is provided with a third positioning groove (1.3.1) along the long side and a third slot (1.3.2) along the short side. The lower portion of the third pressure head (9.1) is provided with a third positioning protrusion (9.1.1) adapted to be inserted into the third positioning groove (1.3.1) and a third positioning block (1.3.2) adapted to be inserted into the third slot (1.3.2). 9.1.2), the third cylinder (9.2) is located on one side of the third pressure head (9.1), and the bottom is fixed on the base plate (1), the output end of the third cylinder (9.2) is connected to one end of the third pressure head (9.1), the third cylinder (9.2) drives the third pressure head (9.1) to perform a clamping movement toward the third support (1.3), and a second clamping groove (9.1.3) is provided on the other end of the third pressure head (9.1), and the shape of the second clamping groove (9.1.3) matches the abutting end of the transverse rib (4) on the longitudinal rib (5).

8. A processing mechanism according to claim 2, characterized in that: The fourth clamping mechanism (10) comprises a fourth pressure head (10.1) and a fourth cylinder (10.2); the fourth pressure head (10.1) is located directly above the fourth support (1.4); the upper portion of the fourth support (1.4) is provided with a fourth positioning groove (1.4.1) along the short side direction; the lower portion of the fourth pressure head (10.1) is provided with a fourth positioning protrusion (1.4.1) adapted to be inserted into the fourth positioning groove (1.4.1) 10.1.1), the fourth cylinder (10.2) is located on one side of the fourth pressure head (10.1), and the bottom is fixed on the base plate (1), the output end of the fourth cylinder (10.2) is connected to one end of the fourth pressure head (10.1), the fourth cylinder (10.2) drives the fourth pressure head (10.1) to perform a clamping movement toward the fourth support (1.4), and a third clamping groove (10.1.2) is provided on the other end of the fourth pressure head (10.1), and the shape of the third clamping groove (10.1.2) matches the end of the long side of the longitudinal rib (5).

9. A processing mechanism according to claim 2, characterized in that: The fifth clamping mechanism (11) is provided with a fifth pressure head (11.1) and a fifth cylinder (11.2); the fifth pressure head (11.1) is located directly above the fifth support (1.5); the upper portion of the fifth support (1.5) is provided with a fifth positioning groove (1.5.1) along the short side direction and a fifth slot (1.5.2) along the long side direction; the lower portion of the fifth pressure head (11.1) is provided with a fifth positioning protrusion (11.1.1) adapted to be plugged into the fifth positioning groove (1.5.1) and a fifth positioning protrusion (11.1.2) adapted to be plugged into the fifth slot (1.5.2) ) is adapted to be plugged into a fifth positioning block (11.1.2), the fifth cylinder (11.2) being located on one side of the fifth pressure head (11.1) and having its bottom fixed on the base plate (1), its output end being connected to one end of the fifth pressure head (11.1), the fifth cylinder (11.2) driving the fifth pressure head (11.1) to perform a clamping movement toward the fifth support (1.5), a positioning groove (11.1.3) being provided on the other end of the fifth pressure head (11.1), the inner wall of the positioning groove (11.1.3) matching the outer wall of the insert block (6).