Corner plate processing system

By designing a corner panel processing system and using cutting equipment and bending equipment to automatically process corner panels, the problem of existing equipment being unable to process efficiently was solved, and efficient production and adaptability to multiple specifications were achieved.

CN119304614BActive Publication Date: 2025-09-30MULTIDIMENSIONAL ENERGY-SAVING NEW MATERIALS (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202411388222.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-09-30
Estimated Expiration
2044-09-30

AI Technical Summary

Technical Problem

Existing processing equipment is unable to efficiently process corner panels, resulting in low production efficiency and unsuitable for large-scale production.

Method used

A corner panel processing system was designed, including cutting equipment and bending equipment. Cutting was performed using an inclined cutting saw and a pressing mechanism, and the edges of the corner panels were bent using a bending device. Automated processing was achieved by combining panel feeding and discharging conveying devices.

Benefits of technology

It realizes efficient processing and bending of corner panels, improves production efficiency, is suitable for large-scale production, and can process corner panels of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a corner panel processing system, comprising: a cutting device, including a cutting saw, the cutting device further comprising a drive device, the cutting saw being mounted on the drive device; a bending device mounted on one side of a plate delivery conveyor; a processing fixture for mounting the corner panel to be processed and a balancing mold plate; wherein the cutting device further comprises two pressing plate mechanisms, wherein after the processing fixture is fed into the cutting device via the plate delivery conveyor, the pressing plate mechanisms press the corner panel to be processed and / or the balancing mold plate on the processing fixture; and the cutting saw moves along a cutting direction to cut the corner panel in the cutting area of ​​the cutting device. In the technical solution provided in the present application, the corner panel processing system can not only process the corner panel but also bend the edge of the corner panel. The cutting saw can quickly cut a cutting bevel at the edge of the corner panel, resulting in simple processing steps and high processing efficiency.
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Description

Technical Field

[0001] The present application relates to the field of building board processing equipment, and in particular to a corner board processing system. Background Art

[0002] With the continuous advancement of construction technology, sandwich panels are widely used in building construction. Buildings constructed using sandwich panels feature simple construction and rapid construction. They also offer excellent structural strength and thermal insulation. However, when sandwich panels are used to construct building walls, the connection between two perpendicular walls is typically achieved by directly connecting the two walls at right angles. This connection is unsightly and makes the building's corners more pronounced.

[0003] To achieve a better and more aesthetically pleasing connection between two intersecting walls, a corner panel is used. This corner panel features chamfered surfaces at each end, allowing different chamfers to connect to different wall surfaces. However, existing processing equipment is insufficient for the production of such corner panels, requiring only manual processing, which is labor-intensive and inefficient, making it unsuitable for large-scale production. Summary of the Invention

[0004] In view of the above problems, the present application is proposed to provide a corner panel processing system that solves the above problems.

[0005] In one embodiment of the present application, a corner panel processing system is provided, comprising:

[0006] The cutting device further comprises at least one inclined cutting saw, the cutting device is further provided with a driving device, the cutting saw is arranged on the driving device; a board feeding conveyor device and a board discharging conveyor device are respectively provided on both sides of the cutting device;

[0007] A bending device is provided on one side of the plate delivery conveyor device, and is used to bend the metal plate at the edge of the cut corner plate so that the metal plate at the edge of the corner plate fits the cut surface of the corner plate;

[0008] A processing fixture, the processing fixture comprising a first installation area and a second installation area, the first installation area being used to install the corner plate to be processed, and the second installation area being used to install a balancing mold plate;

[0009] In which, the cutting equipment also includes two pressing plate mechanisms. After the processing fixture is fed into the cutting equipment through the plate feeding conveying device, the pressing plate mechanism will press the corner plate and / or the balancing mold plate to be processed on the processing fixture; the driving device can drive the cutting saw to move along the cutting direction to cut the corner plate on the cutting area of ​​the cutting equipment.

[0010] Optionally, along the length direction of the processing fixture, the first installation area and the second installation area are spaced apart;

[0011] The corner plate is detachably connected to the first installation area, and the balancing mold plate is fixedly or detachably connected to the second installation area;

[0012] The length direction of the processing fixture is in the same direction as the feeding direction of the plate feeding conveying device.

[0013] Optionally, the balancing mold plate is a corner plate having the same structure as the corner plate on the first installation area.

[0014] Optionally, the height of the corner plate is the same as the height of the balancing mold plate.

[0015] Optionally, the cutting direction is perpendicular to the feeding direction of the plate feeding conveying device;

[0016] The cutting device includes a first cutting saw and a second cutting saw, which move along the cutting direction, wherein the first cutting saw forms a first cutting bevel on the front side of the corner piece, and the second cutting saw forms a second cutting bevel on the rear side of the corner plate;

[0017] The first cutting saw and the second cutting saw are inclined in opposite directions.

[0018] Optionally, the corner panel is a sandwich panel, which includes a bottom metal plate, a sandwich layer and a top metal plate;

[0019] The lowest point of the cutting saw is located above the bottom metal plate;

[0020] When the cutting saw cuts the corner panel, the cutting saw cuts the top metal plate and part of the sandwich layer.

[0021] Optionally, the cutting direction is the same as the length direction of the corner plate, the first cutting saw forms a first bevel when cutting the corner plate, and the second cutting saw forms a second cutting bevel when cutting the corner plate, and the angle between the first cutting bevel and the underlying metal plate is the same as the angle between the second cutting bevel and the underlying metal plate.

[0022] Optionally, a plurality of limiting columns are provided on the edge of the first installation area, and the edges of the corner plate abut against the limiting columns respectively.

[0023] Optionally, the bending device is arranged on one side of the plate delivery conveyor, and the corner plate on the processing fixture will be transferred to the bending device after cutting.

[0024] Optionally, the bending device includes a main body, a fixing component and a bending component, wherein the fixing component is provided on the main body for fixing the corner plate to be bent;

[0025] After the corner plate is cut, the edge of the bottom metal plate of the corner plate forms an external leakage section;

[0026] The bending component can be rotatably connected to one side of the main body, and the pressing surface of the bending component abuts against the external leakage section. As the bending component flips upward, the pressing surface pushes the external leakage section to bend upward so that the external leakage section fits the inclined surface of the cut surface.

[0027] Optionally, a slidable pressing block is provided on the pressing surface, and the shape of the pressing block matches the shape of the cutting bevel of the corner plate;

[0028] During the first bending, the pressing surface pushes the external leakage section to bend upward at a first angle;

[0029] During the subsequent second bending, the pressing block slides to a position close to the rotation point of the bending assembly, and the pressing block continues to push the external leakage section to fit onto the cutting bevel.

[0030] In the technical solution provided in the embodiment of the present application, the corner panel processing system can not only process the corner panels but also bend the edges of the corner panels. The cutting saw can quickly cut out cutting bevels at the edges of the corner panels. The processing steps of the corner panels are simple and the processing efficiency is high, which is conducive to the large-scale production of corner panels. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, a brief introduction will be given below to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0032] Figure 1 A schematic diagram of a corner panel in use provided in an embodiment of the present application;

[0033] Figure 2 A simplified structural diagram of a corner panel processing system provided in an embodiment of the present application;

[0034] Figure 3a A top view of a processing fixture provided in an embodiment of the present application;

[0035] Figure 3b A front view of a processing fixture provided in an embodiment of the present application;

[0036] Figure 4aA top view of another processing fixture provided in an embodiment of the present application;

[0037] Figure 4b A front view of another processing fixture provided in an embodiment of the present application;

[0038] Figure 5 A simplified structural diagram of a corner panel processing system in a first state provided in an embodiment of the present application;

[0039] Figure 6 A simplified structural diagram of a corner panel processing system in a second state provided in an embodiment of the present application;

[0040] Figure 7 A simplified structural diagram of a corner panel processing system in a third state provided in an embodiment of the present application;

[0041] Figure 8 A simplified structural diagram of a bending device in a first state provided in an embodiment of the present application;

[0042] Figure 9 A schematic diagram of the second state structure of a bending device provided in an embodiment of the present application;

[0043] Figure 10 This is a simplified structural diagram of a bending device in the third state provided in an embodiment of the present application.

[0044] Description of the accompanying figures:

[0045] Corner plate 1, top metal plate 11, sandwich layer 12, bottom metal plate 13, external leakage section 14,

[0046] Cutting device 2, device body 21, cutting saw 22, first cutting saw 221, second cutting saw 222, pressing plate mechanism 23,

[0047] Processing fixture 3, limiting column 31,

[0048] Bending device 4, main body 41, fixing component 42, bending component 43, pressing block 44,

[0049] Balance mold plate 5,

[0050] Board feeding conveying device 6,

[0051] Plate delivery conveying device 7. DETAILED DESCRIPTION

[0052] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the embodiments described are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative work are within the scope of protection of this application. The "including" mentioned throughout the specification and claims is an open term and should be interpreted as "including but not limited to". "Approximately" means that within an acceptable error range, those skilled in the art can solve the technical problem within a certain error range and basically achieve the technical effect. In addition, in the embodiments of the present application, a plurality refers to two or more. Unless there is any contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0053] For sandwich panel walls that intersect in two directions, the two walls are usually directly connected at the intersection to form a complete wall surface. However, this type of building structure has obvious corners, and the resulting building is not beautiful and cannot meet the needs of users. After technological updates, a corner panel is used to connect the two walls. Figure 1 The corner panel 1 has beveled surfaces on both sides, which can be connected to the end faces of the sandwich panels on different walls (such as sandwich panel A and sandwich panel B), thereby forming a wall structure with a relatively gentle corner, and the building is more beautiful.

[0054] Typically, the corner panel 1 is made from a conventional sandwich panel, which typically includes a bottom metal plate 13, a top metal plate 11, and a core layer 12. The bottom metal plate 13 and the top metal plate 11 are bonded to opposite sides of the core layer 12, forming a sandwich structure. The bottom metal plate 13 and the top metal plate 11 include, but are not limited to, stainless steel plates, aluminum plates, and color-coated steel plates. The core layer 12 includes, but is not limited to, rock wool, foam, and fiberglass. Because this corner panel 11 has two beveled surfaces, it is difficult to process in a factory, resulting in low production efficiency and unsuitable for large-scale production.

[0055] See also Figure 2 In one embodiment of the present application, a corner panel processing system is provided. The corner panel 1 processing system includes: a cutting device 2, a bending device 4, and a processing fixture 3. When processing the corner panel 1, the corner panel 1 is first mounted on the processing fixture 3. The cutting device 2 then cuts the corner panel 1 on the processing fixture 3. The bending device 4 then bends the edge metal sheet of the corner panel 1 to complete the processing of the entire corner panel 1.

[0056] The cutting device 2 includes a device body 21 and at least one inclined cutting saw 22. The cutting device 2 is also equipped with a drive device (not shown in the figure). The drive device is connected to the device body 21, and the cutting saw 22 is mounted on the drive device. The drive device can drive the cutting saw 22 to move within the cutting area of ​​the cutting device 2, thereby achieving straight-line cutting of the corner panels 1. To facilitate feeding and unloading, a board feed conveyor 6 and a board discharge conveyor 7 are respectively provided on both sides of the cutting device 2. Unprocessed corner panels 1 can be transported to the cutting area of ​​the cutting device 2 via the board feed conveyor 6, and processed corner panels 1 can be discharged via the board discharge conveyor 7, thereby facilitating the next step of processing of the corner panels 1. The board feed conveyor 6 and the board discharge conveyor 7 can be conveyor belts or rollers.

[0057] The bending device 4 is located on one side of the plate delivery conveyor 7 and is used to bend the metal sheet at the edge of the cut corner panel 1 so that the metal sheet at the edge of the corner panel 1 is aligned with the cut surface of the corner panel 1. The processing fixture 3 includes a first mounting area for mounting the corner panel 1 to be processed and a second mounting area for mounting the balancing mold plate 5.

[0058] The cutting device 2 also includes two pressing mechanisms 23. After the processing fixture 3 is fed into the cutting device 2 via the plate feed conveyor 6, the pressing mechanisms 23 press against the corner panel 1 and / or the balancing mold plate 5 to be processed on the processing fixture 3. The drive device drives the cutting saw 22 in the cutting direction to cut the corner panel 1 in the cutting area of ​​the cutting device 2, thereby forming one or more cutting bevels on the corner panel 1. The plate discharge conveyor 7 then outputs the processing fixture 3, and the completed corner panel 1 can be removed from the processing fixture 3. The completed corner panel 1 is then fed into the bending device 4, which then bends the corner panel 1.

[0059] See also Figure 3a and Figure 3b In one embodiment provided in this application, along the length direction of the processing fixture 3, the first installation area (such as Figure 3a The dotted box A area) and the second installation (such as Figure 3a The corner plate 1 is detachably connected to the first mounting area, and the balancing mold plate 5 is fixed or detachably connected to the second mounting area. The length direction of the processing fixture 3 is in the same direction as the feeding direction of the plate feed conveyor 6.

[0060] In the technical solution provided in this application, the balancing mold plate 5 can be an integral structure with the processing fixture 3, or a separate structure with the processing fixture 3. For example, see Figure 3a and Figure 3bThe balance mold plate 5 is detachably connected to the processing fixture 3. The balance mold plate 5 is a corner plate 1 with the same structure as the corner plate 1 on the first installation area. In this way, the cutting device 2 can process the two corner plates 1 separately, which is more efficient. For another example, see Figure 4a and Figure 4b The balance mold plate 5 can also be fixedly connected to the processing fixture 3, or be an integral structure with the processing fixture 3. When processing, the cutting device 2 only processes the corner plate 1 on the first area of ​​the processing fixture 3.

[0061] Furthermore, the cutting direction is perpendicular to the feeding direction of the plate feeding conveyor 6; see Figure 5 and Figure 6 The cutting device 2 includes a first cutting saw 221 and a second cutting saw 222. The first cutting saw 221 moves in a cutting direction, forming a first cutting bevel on the front side of the corner piece, and the second cutting saw 222 forms a second cutting bevel on the back side of the corner panel 1. The first cutting saw 221 and the second cutting saw 222 are tilted in opposite directions. The cutting saw 22 can be a cutting blade, and the tilt angles of the first cutting saw 221 and the second cutting saw 222 can be the same or different. In order to form cutting surfaces with different tilt angles on the corner panel 1, the tilt angles of the first cutting saw 221 and the second cutting saw 222 can be adjusted. For example, if the user requires a corner panel 1 with a cutting bevel with a 45-degree tilt angle, the tilt angle of the cutting saw 22 can be adjusted to 45 degrees.

[0062] join Figure 5 The direction of arrow X in the figure can be considered as the feeding processing direction. When the front edge and the rear edge of the corner panel 1 need to be processed into cutting bevels, the first cutting saw 221 is used to cut the front edge of the corner panel 1, and then the processing fixture 3 moves forward. After moving to the predetermined position, the second cutting saw 222 is used to cut the rear edge of the corner panel 1.

[0063] The drive device may include a slide rail and a power assembly. The slide rail is arranged along the cutting direction, and the cutting saw 22 is slidably connected to the slide rail. When the cutting saw 22 cuts the corner panel 1, the saw blade rotates, and then the power assembly drives the cutting saw 22 to slide on the slide rail, and the rotating saw blade can cut the corner panel 1.

[0064] As mentioned above, the cutting apparatus 2 also includes a pressure plate mechanism 23. Before the saw 22 begins cutting, the pressure plate mechanism 23 presses against the corner panel 1 and / or the balancing mold plate 5 to be processed on the processing fixture 3. This is primarily to ensure sufficient stability of the corner panel 1 during cutting, resulting in a smoother edge. Typically, the cutting apparatus 2 is provided with two pressure plate mechanisms 23 in the front and rear directions. Different pressure plate mechanisms 23 can press against the corner panel 1 or the balancing mold plate 5, respectively, thereby ensuring the stability of the entire processing fixture 3 during cutting.

[0065] For example, see Figure 5 When the first cutting saw 221 cuts the front edge of the corner panel 1, the front pressing plate mechanism 23 presses the balance mold plate 5 on the processing fixture 3, while the rear pressing plate mechanism 23 presses the corner panel 1 on the processing fixture 3. Figure 6 When the second cutting saw 222 cuts the rear edge of the corner panel 1 , only the front pressing plate mechanism 23 presses the corner panel 1 .

[0066] In the technical solution provided in the present application, by setting the corner panel 1 on the processing fixture 3 and the height of the balancing mold plate 5 being the same as the height of the corner panel 1, the stability of the corner panel 1 can be ensured when the pressure plate mechanism 23 applies pressure to the corner panel 1, and it is not easy for the cutting edge to warp or the cutting to be misaligned.

[0067] Specifically, see Figure 5 If the processing fixture 3 is not set, at this time, the rear pressure plate mechanism 23 will directly press against the rear side of the corner panel 1. In addition, the cutting area of ​​the cutting device 2 is provided with a plurality of horizontally arranged rollers, and there is a gap between the rollers. When the rear side of the corner panel 1 directly set on the rollers is subjected to pressure, the front side of the corner panel 1 will warp. At this time, the first cutting saw 221 will inevitably cause misalignment when cutting the front side of the corner panel 1, and the processing error is too large, causing the panel to be cut to waste. After the processing fixture 3 is set, the front pressure plate mechanism 23 and the rear pressure plate mechanism 23 can be considered to be indirectly pressed against the front and rear sides of the processing fixture 3, and the front and rear forces of the processing fixture 3 are balanced. In addition, since the corner panel 1 is set on the plane of the processing fixture 3, one side of the corner panel 1 is under pressure, and the corner panel 1 is not easy to warp.

[0068] See also Figure 6 When the second cutting edge is cutting the rear edge of the corner panel 1, although only the front pressure plate mechanism 23 presses against the corner panel 1, the balancing die plate 5 and the processing fixture 3 are located outside the cutting device 2 and have a certain weight, which provides a certain balance for the processing fixture 3. In addition, because the upper surface of the processing fixture 3 is flat, the corner panel 1 placed on the flat surface is pressed, and the corner panel 1 does not warp.

[0069] In one embodiment provided in the present application, when the cutting saw 22 cuts the corner panel 1, it does not directly cut through the corner panel 1 from top to bottom. The lowest point of the cutting saw 22 is located above the bottom metal plate 13. During the entire cutting process, the cutting saw 22 does not cut the bottom metal plate 13. When the cutting saw 22 cuts the corner panel 1, it only cuts the top metal plate 11 and part of the sandwich layer 12. After the cutting is completed, the remaining sandwich panels in the area corresponding to the cutting position are peeled off, so that the bottom metal plate 13 of the corner panel 1 forms an external leakage section 14 (such as Figure 8 shown).

[0070] Furthermore, the cutting direction is in the same direction as the length direction of the corner plate 1, such as Figure 3a In the direction of the middle arrow Y, the first cutting saw 221 forms a first bevel when cutting the corner panel 1, and the second cutting saw 222 forms a second bevel when cutting the corner panel 1. The angle between the first bevel and the underlying metal plate 13 is the same as the angle between the second bevel and the underlying metal plate 13. As mentioned above, the setting angle of the cutting saw 22 can be adjusted to achieve the processing of cutting bevels with different inclination angles, meeting the processing requirements of corner panels 1 of various specifications.

[0071] See also Figures 3a to 4b In one embodiment provided herein, multiple retaining posts 31 are provided at the edge of the first installation area, and the edges of the corner panel 1 abut against the retaining posts 31. When the corner panel 1 is installed in the first installation area, the multiple retaining posts 31 can respectively retain different edges of the corner panel 1, thereby ensuring a stable connection between the corner panel 1 and the processing fixture 3. This connection method not only facilitates the installation of the corner panel 1, but also facilitates its removal after processing.

[0072] See also Figures 5 to 10 The bending device 4 is located on one side of the plate delivery conveyor 7. After the corner plate 1 on the processing fixture 3 is cut, it will be transferred to the bending device 4. The bending device 4 is mainly used to bend the outer leakage section 14 of the bottom metal plate 13 so that the outer leakage section 14 fits the cut bevel.

[0073] Furthermore, the bending device 4 includes a main body 41, a fixing assembly 42, and a bending assembly 43. The fixing assembly 42 is provided on the main body 41 for fixing the corner panel 1 to be bent. The fixing assembly 42 is similar to the pressing plate mechanism 23 mentioned above. The fixing assembly 42 is mainly used to prevent the corner panel 1 from shifting during bending.

[0074] As mentioned above, when the saw 22 cuts the corner panel 1, it does not cut the underlying metal sheet 13. After the corner panel 1 is cut, the edge of the underlying metal sheet 13 forms an outer leaking section 14. The bending assembly 43 is rotatably connected to one side of the main body 41. The pressing surface of the bending assembly 43 abuts against the outer leaking section 14. As the bending assembly 43 tilts upward, the pressing surface pushes the outer leaking section 14 upward, so that the outer leaking section 14 aligns with the cut bevel.

[0075] Furthermore, a slidable pressure block 44 is provided on the pressing surface. The shape of the pressure block 44 matches the shape of the cut bevel of the corner panel 1. A sliding groove is provided on the pressing surface, and the pressure block 44 is slidably connected to the groove. The pressure block 44 has a wedge-shaped structure, and the angle of the bevel of the pressure block 44 matches the angle of the cut bevel of the corner panel 1.

[0076] The bending process of the outer leakage section 14 of the corner plate 1 by the bending device 4 will be described in detail below.

[0077] When the bending assembly 43 of the bending device 4 bends the external leakage section 14, the bending of the external leakage section 14 is mainly achieved in two steps. During the first bending, the pressure block 44 slides to a position away from the external leakage section 14. As the bending assembly 43 flips upward, the pressure surface of the bending assembly 43 pushes the external leakage section 14 to bend upward to a first angle, and the first angle is greater than or equal to 90 degrees. After the bending assembly 43 is reset, the pressure block 44 slides to a position close to the external leakage section 14. The bending device 4 can then perform a second bending. During the bending process, the pressure block 44 pushes the external leakage section 14 to continue bending from the first angle until it fits onto the cutting bevel. The two-step bending process of the external leakage section 14 can be considered to be achieved by the pressure surface in the first step and the pressure block 44 in the second step. Only after the external leakage section 14 is bent to the first angle can the pressure block 44 slide to a position close to the external leakage section 14, thereby achieving further bending of the external leakage section 14.

[0078] In summary, the technical solutions provided in the embodiments of the present application enable the corner panel processing system to not only process corner panels but also bend their edges. The cutting saw can quickly create a beveled surface at the edge of the corner panel, simplifying the processing steps and increasing efficiency, thus facilitating large-scale production of corner panels. Furthermore, by adjusting the setting angle of the cutting saw, corner panels with beveled surfaces at varying angles can be processed, thereby meeting the processing requirements of panels of varying specifications.

[0079] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A corner plate processing system, characterized in that: include: The cutting device further comprises at least one inclined cutting saw, the cutting device is further provided with a driving device, the cutting saw is arranged on the driving device; a board feeding conveyor device and a board discharging conveyor device are respectively provided on both sides of the cutting device; A bending device is provided on one side of the plate delivery conveyor device, and is used to bend the metal plate at the edge of the cut corner plate so that the metal plate at the edge of the corner plate fits the cut surface of the corner plate; A processing fixture, the processing fixture comprising a first installation area and a second installation area, the first installation area being used to install the corner plate to be processed, and the second installation area being used to install a balancing mold plate; The cutting device further comprises two pressing plate mechanisms. After the processing fixture is fed into the cutting device via the plate feeding conveyor, the pressing plate mechanisms press the corner plate and / or the balancing die plate to be processed on the processing fixture. The driving device can drive the cutting saw to move in the cutting direction to cut the corner plate on the cutting area of ​​the cutting device. After the corner plate is cut, the edge of the bottom metal plate of the corner plate forms an external leakage section. In which, the bending equipment includes a main body, a fixing component and a bending component, the fixing component is arranged on the main body for fixing the corner plate to be bent; the bending component can be rotatably connected to one side of the main body, and the pressure surface of the bending component is in contact with the external leakage section. As the bending component flips upward, the pressure surface pushes the external leakage section to bend upward to a first angle; a slidable pressure block is provided on the pressure surface, and after the external leakage section is bent upward to the first angle, the pressure block slides to a position close to the rotation point of the bending component, and the pressure block continues to push the external leakage section to fit onto the cutting bevel.

2. The corner panel processing system according to claim 1, characterized in that: Along the length direction of the processing fixture, the first installation area and the second installation area are spaced apart; The corner plate is detachably connected to the first installation area, and the balancing mold plate is fixedly or detachably connected to the second installation area; The length direction of the processing fixture is in the same direction as the feeding direction of the plate feeding conveying device.

3. The corner panel processing system according to claim 2, characterized in that: The balancing mold plate is a corner plate with the same structure as the corner plate on the first installation area.

4. The corner panel processing system according to claim 2, characterized in that: The height of the corner plate is the same as that of the balancing mold plate.

5. The corner panel processing system according to any one of claims 1 to 4, characterized in that: The cutting direction is perpendicular to the feeding direction of the plate feeding conveying device; The cutting device includes a first cutting saw and a second cutting saw, which move along the cutting direction, wherein the first cutting saw forms a first cutting bevel on the front side of the corner piece, and the second cutting saw forms a second cutting bevel on the rear side of the corner plate; The first cutting saw and the second cutting saw are inclined in opposite directions.

6. The corner panel processing system according to claim 5, characterized in that: The corner panel is a sandwich panel, which includes a bottom metal plate, a sandwich layer and a top metal plate; The lowest point of the cutting saw is located above the bottom metal plate; When the cutting saw cuts the corner panel, the cutting saw cuts the top metal plate and part of the sandwich layer.

7. The corner panel processing system according to claim 6, characterized in that: The cutting direction is the same as the length direction of the corner plate, the first cutting saw forms a first bevel when cutting the corner plate, and the second cutting saw forms a second cutting bevel when cutting the corner plate. The angle between the first cutting bevel and the underlying metal plate is the same as the angle between the second cutting bevel and the underlying metal plate.

8. The corner panel processing system according to claim 1, characterized in that: A plurality of limiting columns are provided at the edge of the first installation area, and the edges of the corner plate abut against the limiting columns respectively.

9. The corner panel processing system according to claim 1, characterized in that: The bending device is arranged on one side of the plate delivery conveying device, and the corner plate on the processing fixture will be transferred to the bending device after cutting.

10. The corner panel processing system according to claim 1, characterized in that: The shape of the pressing block matches the shape of the cutting bevel of the corner plate.