A plate processing apparatus

By designing a sheet metal processing equipment, the synchronous forming of the sheet metal body and the insert is realized, which solves the problems of multiple equipment, high cost, large footprint and a lot of chips in the existing technology, and improves processing efficiency and reduces cost.

CN116619035BActive Publication Date: 2026-03-24NINGBO ZENGHONG HARDWARE MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-28
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In the existing technology, the processing of sheet metal requires two machines, which results in high costs, large footprint, and a lot of chips, requiring manual cleaning.

Method used

Design a sheet metal processing equipment that enables the synchronous forming of the first mounting slot and the insert of the sheet metal body through a drive assembly and a limiting fixture, and uses the waste area to process another product, thereby reducing costs and improving efficiency.

Benefits of technology

It achieves convenient and low-cost sheet metal processing, reduces equipment footprint, avoids the problem of manual cleaning of large amounts of chips, and has high economic benefits and promising prospects for widespread application.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of hardware machining, in particular to a plate machining device, which comprises a machine body, the machine body is provided with a second cavity, the second cavity is connected with the outside; a driving assembly is arranged on the top of the second cavity in a liftable mode; a limiting clamp is arranged on the bottom wall of the second cavity, and the plate body is arranged on the top of the limiting clamp; the driving assembly can move to the direction of the limiting clamp by a predetermined distance to machine the first mounting groove. The application can effectively utilize the structural configuration to realize the advantages of convenient plate machining, machining of another product by the waste area, low plate machining cost and high efficiency.
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Description

Technical Field

[0001] This application relates to the field of hardware processing, and more specifically to a sheet metal processing equipment. Background Technology

[0002] like Figure 2 The illustrated plate includes a plate body 11 and at least one insert 12. The plate body has a first cavity 1101, which communicates with the outside. The wall of the first cavity 1101 has at least one first mounting groove 1102, which communicates with both the first cavity 1101 and the outside. The insert 12 has an insertion end 121 and an abutment end 122. The insertion end 121 is connected to the abutment end 122. The insertion end 121 is slidably passed through the first mounting groove 1102 and is positioned on the outside, while the abutment end 122 abuts against the bottom wall of the first cavity 1101. The first mounting groove 1102 of the plate body 11 is mostly machined using a milling cutter, while the insert 12 is directly formed by stamping. Machining these two parts requires two different machines, which significantly increases processing costs and requires considerable space. The present invention utilizes a specially developed processing equipment to simultaneously form the insert 12 while processing the first mounting groove 1102. This not only effectively improves processing efficiency and reduces processing costs, but also reduces the footprint by combining two machines into one. Compared with existing technologies, the present invention directly processes the portion of the first mounting groove 1102 that would otherwise be milled away into the desired product, thus reducing costs and avoiding the problem of excessive shavings requiring manual cleaning. Therefore, it has significant application potential.

[0003] Therefore, there is a need for a board processing equipment that is convenient to process, can utilize the waste area to process another product, has low processing cost, and is highly efficient. Summary of the Invention

[0004] The main objective of this application is to provide a sheet metal processing equipment, wherein the sheet metal structure equipment can achieve the advantages of convenient sheet metal processing, the ability to process another product using the waste area, and low sheet metal processing cost through its own configuration.

[0005] Another objective of this application is to provide a processing setup for a sheet metal part, wherein the processing equipment for the sheet metal part includes a driving component and a limiting fixture, the sheet metal part body is disposed on the limiting fixture, and the driving component is configured to stamp the sheet metal part body to process the first mounting groove area of ​​the sheet metal part body into the insert, thereby improving the processing efficiency of the sheet metal part and reducing the manufacturing cost of the sheet metal part.

[0006] Another objective of this application is to provide a plate processing equipment, wherein the plate processing equipment has a simple structure, is easy to operate, does not involve complex manufacturing processes and expensive materials, has high economic efficiency, and is easy to promote and use.

[0007] To achieve at least one of the above-mentioned inventive objectives, this application provides a plate comprising:

[0008] A plate body, the plate body having a first cavity communicating with the outside, and the wall forming the first cavity having at least one first mounting groove, the first mounting groove communicating with both the first cavity and the outside; and

[0009] At least one insert having an insertion end and an abutment end connected to the abutment end, wherein the insertion end is slidably passed through the first mounting groove and is positioned externally, while the abutment end abuts against the bottom wall forming the first cavity.

[0010] To achieve at least one of the above-mentioned objectives, this application provides a sheet metal processing apparatus, the processing apparatus comprising:

[0011] A body having a second cavity that communicates with the outside;

[0012] A drive assembly is vertically and retractably disposed at the top forming the second cavity;

[0013] A limiting fixture is disposed on the bottom wall forming the second cavity, and the plate body is disposed on the top of the limiting fixture, wherein the driving assembly is movable a predetermined distance toward the limiting fixture to process the first mounting groove.

[0014] In one or more embodiments of this application, the driving assembly includes a first driving component, a first telescopic rod, and a connecting plate. One end of the first driving component is disposed on the top wall forming the second cavity. One end of the first telescopic rod is connected to the other end of the first driving component, and the other end of the first telescopic rod is fixedly connected to the connecting plate.

[0015] In one or more embodiments of this application, the drive assembly further includes at least one pressing member, and the connecting disc has at least one mounting hole corresponding to the first mounting groove, and the pressing member cooperates with the mounting hole.

[0016] In one or more embodiments of this application, the extrusion member includes a second driving component, a second telescopic rod, a fixing block, and an extrusion block. The second driving component is disposed on the side of the connecting plate away from the plate body and facing the assembly hole. One end of the second telescopic rod is connected to the second driving component, and the other end is placed in the assembly hole. The fixing block is fixed on the side of the connecting plate near the plate body and facing the assembly hole. One end of the extrusion block is fixedly connected to the end of the second telescopic rod away from the second driving component, and the other end passes through the fixing block and is placed on the side of the fixing block away from the connecting plate.

[0017] In one or more embodiments of this application, the limiting clamp includes a base plate, the top of the base plate has at least one positioning groove, the plate body is disposed in the positioning groove, and the bottom wall forming the positioning groove also has an upper mold groove, and the bottom wall forming the upper mold groove has a lower grinding groove, and the lower mold groove is connected to the outside and the upper mold groove respectively. In addition, the middle section of the top of the base plate also has a third mounting groove, the third mounting groove is located on one side of the second mounting groove, and the bottom wall forming the third mounting groove has a connecting groove, the connecting groove penetrating the base plate.

[0018] In one or more embodiments of this application, the bottom wall forming the second cavity further has at least one second mounting groove, the second mounting groove corresponding to the lower mold groove, and the processing equipment further includes at least one abutting component, the abutting component including a third driving component, a third telescopic rod and a limiting plate, the third driving component being placed in the second mounting groove, and one end of the third telescopic rod being connected to the third driving component, and the other end being placed in the lower mold groove and connected to the limiting plate.

[0019] In one or more embodiments of this application, the limiting clamp further includes a blocking assembly, the blocking assembly comprising a fourth driving component, a fourth telescopic rod, and a baffle, and the bottom wall forming the second cavity has a fourth mounting groove, the fourth mounting groove being connected to the communicating groove, and the fourth driving component being disposed in the fourth mounting groove, one end of the fourth telescopic rod being connected to the fourth driving component, and the other end being placed in the communicating groove, wherein the baffle has a blocking portion and an extension portion, the blocking portion being connected to the extension portion, the blocking portion being placed in the third mounting groove, and the extension portion being connected to the fourth telescopic rod.

[0020] In one or more embodiments of this application, a detachable collar is further provided on the side wall forming the upper mold groove, and the bottom wall of the collar has an annular groove, which is close to the bottom wall of the upper mold groove and communicates with the upper mold groove.

[0021] In one or more embodiments of this application, the processing equipment further includes an annular turntable rotatably disposed on the top wall forming the second cavity, and the first driving component is located at the center of the annular turntable. The processing equipment further includes a cutting assembly, which includes a connecting rod and a water jet. One end of the connecting rod is fixedly connected to the annular turntable, and the other end is connected to the water jet. The water jet is spaced at a predetermined distance from the bottom wall forming the second cavity, and the water jet is configured to separate the insert and the plate body. Attached Figure Description

[0022] These and / or other aspects and advantages of this application will become clearer and more readily understood from the following detailed description of embodiments of this application taken in conjunction with the accompanying drawings, wherein:

[0023] Figure 1 The illustration shows a top view of the main body of the panel.

[0024] Figure 2 The diagram shows a cross-sectional view of the sheet metal.

[0025] Figure 3 The diagram shows a schematic representation of the outer contour of the machine.

[0026] Figure 4 The diagram shows a partial schematic of the processing equipment. Figure 1 .

[0027] Figure 5 The diagram shows a partial schematic of the processing equipment. Figure 2 .

[0028] Figure 6 The diagram shows a partial schematic of the processing equipment. Figure 3 .

[0029] Figure 7 The diagram shows a partial schematic of the processing equipment. Figure 4 .

[0030] Figure 8 The diagram shows a partial schematic of the processing equipment. Figure 5 .

[0031] Figure 9 The diagram shows... Figure 8 A magnified view of A in the middle. Detailed Implementation

[0032] like Figure 2The illustrated plate includes a plate body 11 and at least one insert 12. The plate body has a first cavity 1101, which communicates with the outside. The wall of the first cavity 1101 has at least one first mounting groove 1102, which communicates with both the first cavity 1101 and the outside. The insert 12 has an insertion end 121 and an abutment end 122. The insertion end 121 is connected to the abutment end 122. The insertion end 121 is slidably passed through the first mounting groove 1102 and is positioned on the outside, while the abutment end 122 abuts against the bottom wall of the first cavity 1101. The first mounting groove 1102 of the plate body 11 is mostly machined using a milling cutter, while the insert 12 is directly formed by stamping. Machining these two parts requires two different machines, which significantly increases processing costs and requires considerable space. The present invention utilizes a specially developed processing equipment to simultaneously form the insert 12 while processing the first mounting groove 1102. This not only effectively improves processing efficiency and reduces processing costs, but also reduces the footprint by combining two machines into one. Compared with existing technologies, the present invention directly processes the portion of the first mounting groove 1102 that would otherwise be milled away into the desired product, thus reducing costs and avoiding the problem of excessive shavings requiring manual cleaning. Therefore, it has significant application potential.

[0033] Therefore, there is a need for a board processing equipment that is convenient to process, can utilize the waste area to process another product, has low board processing cost, and is highly efficient.

[0034] Based on the above-mentioned technical problems, this application proposes a plate processing equipment. The plate processing equipment has a simple structure, does not involve complex manufacturing processes and expensive materials, and has high economic efficiency. At the same time, for manufacturers, the plate processing equipment provided by this application is easy to produce and has low cost, which is more conducive to controlling production costs and further facilitates product promotion and use.

[0035] Schematic diagram of sheet metal processing equipment

[0036] refer to Figures 1 to 9 The present invention relates to a preferred embodiment of a plate processing apparatus. The present invention will be described in detail below to facilitate understanding of the present invention.

[0037] Specifically, such as Figure 2As shown, the plate body includes a plate body 11 and at least one insert 12. The plate body has a first cavity 1101, which communicates with the outside. The wall surface forming the first cavity 1101 has at least one first mounting groove 1102, which communicates with both the first cavity 1101 and the outside. The insert 12 has an insertion end 121 and an abutment end 122. The insertion end 121 is connected to the abutment end 122. The insertion end 121 is slidably passed through the first mounting groove 1102 and is positioned on the outside, while the abutment end 122 abuts against the bottom wall forming the first cavity 1101. It should be noted that the size of the first mounting groove 1102 is larger than the size of the insertion end 121. Furthermore, the insertion end 121 of the insert 12 also mates with an external component, and the end of the external component mating with the insert 12 is placed within the first mounting groove 1102. It should also be noted that the conventional processing methods for the aforementioned plate body 11 and the insert 12 mostly involve secondary processing, that is, processing two raw materials separately into the aforementioned plate body 11 and the aforementioned insert 12.

[0038] It should be noted that the processing method of the first mounting groove 1102 of the aforementioned plate body 11 is mostly improved by using milling cutters, while the insert 12 is directly formed by stamping. Processing these two workpieces requires two different machines, which significantly increases processing costs, and the two large machines also occupy considerable space. However, the processing equipment developed in this invention simultaneously forms the insert 12 while processing the first mounting groove 1102, effectively improving processing efficiency, reducing processing costs, and reducing the footprint by combining two machines into one. Compared with existing technologies, this invention directly processes the portion of the first mounting groove 1102 that would otherwise be milled away into the desired product, reducing costs and avoiding the problem of excessive shavings requiring manual cleaning, thus having significant application prospects. The processing equipment of this invention will be described in detail below to facilitate understanding of the product.

[0039] Specifically, the processing equipment includes a body 20, which has a second cavity 201 connected to the outside. The side of the body 20 with the second cavity 201 also has two opposite doors 21. The two doors 21 are movably connected to the body 20, that is, the two doors 21 can move a predetermined distance toward each other or away from each other to close or open the second cavity 201.

[0040] It is worth mentioning that the processing equipment also includes a drive assembly 30, which is vertically and flexibly disposed at the top of the second cavity 201, and the plate body 11 is disposed in the second cavity 201. The bottom of the drive assembly 30 is directly opposite the first mounting groove 1102 of the plate body 11. It should be noted that the drive assembly 30 can move a predetermined distance toward the first mounting groove 1102 to process the first mounting groove 1102.

[0041] Further, the drive assembly 30 includes a first drive component 31, a first telescopic rod 32, and a connecting plate 33. One end of the first drive component 31 is disposed on the top wall forming the second cavity 201. One end of the first telescopic rod 32 is connected to the other end of the first drive component 31, and the other end of the first telescopic rod 32 is fixedly connected to the connecting plate 33. The first drive component 31 is configured to drive the first telescopic rod 32 to extend a predetermined length, so that the connecting plate 33 moves a predetermined distance closer to the first mounting groove 1102 to facilitate machining of the first mounting groove 1102. It is worth noting that the first drive component 31 can be implemented as a hydraulic cylinder.

[0042] Specifically, the drive assembly 30 further includes at least one pressing member 34, and the connecting disk 33 has at least one mounting hole 3301, the mounting hole 3301 corresponding to the first mounting groove 1102, and the pressing member 34 cooperating with the mounting hole 3301. When the connecting disk 33 moves downward a predetermined distance, the pressing member 34 forms the bottom wall of the first cavity 1101, thereby causing the bottom wall of the first cavity 1101 that contacts the pressing member 34 to deform, that is, the bottom wall of the first cavity 1101 that contacts the pressing member 34 deforms downward. It should be noted that a limiting clamp 40 is also provided inside the first cavity 1101. The plate body 11 is fixed on the limiting clamp 40. When a part of the bottom wall of the first cavity 1101 deforms downward, the deformed part fits the top of the limiting clamp 40 to form the outline of the insert 12, thereby initially forming the plate body 11 and the insert 12. It should be noted that when the insert 12 is separated from the plate body 11, the first mounting groove 1102 and the insert 12 are processed simultaneously.

[0043] It should also be noted that when the connecting disc 33 contacts the bottom wall forming the first cavity 1101, the extrusion member moves into place, and at this time the insert 12 is extruded and formed as a whole.

[0044] Further, the extrusion member 34 includes a second driving component 341, a second telescopic rod 342, a fixing block 343, and an extrusion block 344. The second driving component 341 is disposed on the side of the connecting plate 33 away from the plate body 11 and facing the assembly hole 3301. One end of the second telescopic rod 342 is connected to the second driving component 341, and the other end is placed in the assembly hole 3301. The fixing block 343 is fixed on the side of the connecting plate 33 near the plate body 11 and facing the assembly hole 3301. One end of the extrusion block 344 is fixedly connected to the end of the second telescopic rod 342 away from the second driving component 341, and the other end passes through the fixing block 343 and is placed on the side of the fixing block 343 away from the connecting plate 33. It is worth mentioning that the size of the fixing block 343 is larger than the size of the pressing block 344. When the second driving component 341 controls the second telescopic rod 342 to extend or retract by a predetermined length, the pressing block 344 can move a predetermined distance toward or away from the plate body 11.

[0045] It should be noted that when the connecting disc 33 moves downward, the pressing block 344 is positioned within the assembly hole 3301. That is, the fixing block 343 first contacts the bottom wall forming the first cavity 1101, causing a portion of the bottom wall forming the first cavity 1101 to deform downward, forming the abutment end 122 of the insert 12. Then, the second driving component 341 operates, causing the pressing block 344 to move downward a predetermined distance, thereby pressing the wall surface forming the abutment end 122 until the insert end 121 is formed. At this time, the deformed portion is in contact with the top of the limiting clamp 40.

[0046] The limiting clamp 40 is described in detail below. Further, the limiting clamp 40 includes a base plate 41, which is fixed to the bottom wall of the second cavity 201. The top of the base plate 41 has at least one positioning groove 4101, and the plate body 11 is disposed within the positioning groove 4101, thereby limiting the position of the plate body 11. It should also be noted that the bottom wall forming the positioning groove 4101 also has an upper mold groove 4102, and the bottom wall forming the upper mold groove 4102 has a lower grinding groove. The lower mold groove 4103 is connected to the outside and the upper mold groove 4102 respectively, that is, the lower mold groove 4103 penetrates the base plate 41. It should be noted that the upper mold groove 4102 is configured to form the abutment end 122, and the lower mold groove 4103 is configured to form the insertion end 121.

[0047] Furthermore, the bottom wall forming the second cavity 201 also has at least one second mounting groove 202, which corresponds to the lower die groove 4103. The processing equipment also includes at least one abutting component 42, which includes a third driving component 421, a third telescopic rod 422, and a limiting plate 423. The third driving component 421 is placed within the second mounting groove 202, and one end of the third telescopic rod 422 is connected to the third driving component 421, while the other end is placed within the lower die groove 4103 and connected to the limiting plate 423. Notably, the limiting plate 423 is configured to limit the movement distance of the extrusion plate.

[0048] Additionally, it should be noted that the top middle section of the base plate 41 also has a third mounting groove 4105, which is located on one side of the second mounting groove 202. The bottom wall forming the third mounting groove 4105 has a connecting groove 4106, which penetrates the base plate 41. Furthermore, the limiting clamp 40 also has a blocking assembly 43, which includes a fourth driving component 431, a fourth telescopic rod 432, and a baffle 433. The bottom wall forming the second cavity 201 also has a fourth mounting groove 203. The fourth mounting slot 203 is connected to the communicating slot 4106, and the fourth driving component 431 is disposed within the fourth mounting slot 203. One end of the fourth telescopic rod 432 is connected to the fourth driving component 431, and the other end is placed within the communicating slot 4106. The baffle 433 has a blocking portion 4331 and an extension portion 4332. The blocking portion 4331 is connected to the extension portion 4332. The blocking portion 4331 is placed within the third mounting slot 4105, and the extension portion 4332 is connected to the fourth telescopic rod 432. When the fourth telescopic rod 432 extends a predetermined length, the blocking portion 4331 moves upward a predetermined distance.

[0049] The second drive component 341, the third drive component 421 and the fourth drive component 431 are all implemented as hydraulic cylinders.

[0050] Additionally, it should be noted that a detachable collar 400 is provided on the side wall forming the upper mold groove 4102, and the bottom of the collar 400 has an annular groove 4001. The annular groove 4001 is close to the bottom wall forming the upper mold groove 4102 and communicates with the upper mold groove 4102. The center of the collar also has a through hole, which passes through the collar and communicates with the annular groove. When the fixing block 343 compresses to form the bottom wall of the first cavity 1101, the wall surface of the first cavity 1101 deforms and fits against the wall surface of the inner wall of the collar 400. At this time, the second driving component 341 does not operate, and the connecting disc 33 continues to apply downward force, so that the fixing block 343 continues to compress the deformed wall surface of the first cavity 1101, so that the deformed wall surface of the first cavity 1101 deforms into the annular groove 4001 by a predetermined distance, thereby completely forming the abutment end 122. Then the second driving component 341 starts to operate to process the insertion end 121. At this time, the insertion part 12 has been processed. First, the second driving component 341... The moving component 341 drives the second telescopic rod 342 to retract to a predetermined length. Then, the first driving component 31 drives the connecting plate 33 to move upward a predetermined distance, so that the connecting plate 33 no longer presses against the plate body 11. Then, the collar 400 is manually removed. At this time, the third driving component 421 operates, and the third telescopic rod 422 extends to a predetermined length, so that the limiting plate 423 presses against the insertion end 121, so that the plate body 11 and the insertion part 12 move upward a predetermined distance as a whole. At the same time, the fourth driving component 431 starts to operate, and the fourth telescopic rod 432 extends to a predetermined length so that the baffle 433 contacts the bottom of the plate body 11.

[0051] It should be noted that the processing equipment further includes an annular turntable 200, which is rotatably disposed on the top wall forming the second cavity 201, and the first driving component 31 is located at the center of the annular turntable 200. Notably, the annular turntable 200 is meshed with an external rotating gear, meaning that when the external rotating gear rotates, the annular turntable 200 rotates accordingly. The processing equipment also includes a cutting assembly 50, which cooperates with the annular turntable 200, and the cutting assembly 50 is configured to separate the insert 12 and the plate body 11.

[0052] Furthermore, the cutting assembly 50 includes a connecting rod 51 and a water jet 52. One end of the connecting rod 51 is fixedly connected to the annular turntable 200, and the other end is connected to the water jet 52. The water jet 52 is spaced at a predetermined distance from the bottom wall forming the second cavity 201. In addition, the water jet 52 is configured to spray a high-speed precision water stream to cut the connecting portion that abuts against the plate body 11, thereby separating the plate body 11 and the insert 12.

[0053] It should be noted that the baffle 433 is made of an alloy material, thereby defining the water jet spray area.

[0054] In summary, the sheet metal processing equipment described in the embodiments of this application is explained, which provides advantages such as convenient sheet metal processing, the ability to process another product using the waste area, low sheet metal processing cost, and high efficiency.

[0055] It is worth mentioning that, in this embodiment, the sheet metal processing equipment has a simple structure, does not involve complex manufacturing processes or expensive materials, and is highly economical. At the same time, for manufacturers, the sheet metal processing equipment provided in this application is easy to produce and inexpensive, which is more conducive to controlling production costs and further facilitates product promotion and use.

[0056] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not 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 explained in the embodiments, and any modifications or variations of the embodiments of the present invention may be made without departing from these principles.

Claims

1. A sheet metal processing apparatus, the sheet metal processing apparatus being used to process sheet metal, the sheet metal comprising a sheet metal body having a first cavity communicating with an outside, and a wall forming the first cavity having at least one first mounting groove communicating with both the first cavity and the outside; and at least one insert having an insertion end and an abutment end, the insertion end being connected to the abutment end, wherein the insertion end is slidably passed through the first mounting groove and positioned externally, while the abutment end abuts against the bottom wall forming the first cavity, characterized in that... The plate processing equipment includes: A body having a second cavity that communicates with the outside; A drive assembly is vertically and retractably disposed at the top forming the second cavity; A limiting fixture is provided on the bottom wall forming the second cavity, and the plate body is provided on the top of the limiting fixture. The driving assembly can move a predetermined distance toward the limiting fixture to process the first mounting groove. The limiting fixture includes a base plate, the top of which has at least one positioning groove. The plate body is provided in the positioning groove. The bottom wall forming the positioning groove also has an upper mold groove and a lower mold groove. The lower mold groove is connected to the outside and the upper mold groove respectively. The side wall forming the upper mold groove is also provided with a detachable collar. The bottom wall of the collar has an annular groove. The annular groove is close to the bottom wall of the upper mold groove and is connected to the upper mold groove.

2. The plate processing equipment according to claim 1, wherein the driving assembly includes a first driving component, a first telescopic rod and a connecting plate, one end of the first driving component is disposed on the top wall forming the second cavity, one end of the first telescopic rod is connected to the other end of the first driving component, and the other end of the first telescopic rod is fixedly connected to the connecting plate.

3. The plate processing equipment according to claim 2, wherein the driving assembly further includes at least one extrusion member, and the connecting plate has at least one mounting hole, the mounting hole corresponding to the first mounting groove, and the extrusion member cooperating with the mounting hole.

4. The sheet metal processing equipment according to claim 3, wherein the extrusion member comprises a second driving component, a second telescopic rod, a fixing block, and an extrusion block; the second driving component is disposed on the side of the connecting plate away from the sheet metal body and facing the assembly hole; one end of the second telescopic rod is connected to the second driving component, and the other end is placed in the assembly hole; the fixing block is fixed on the side of the connecting plate near the sheet metal body and facing the assembly hole; one end of the extrusion block is fixedly connected to the end of the second telescopic rod away from the second driving component, and the other end passes through the fixing block and is placed on the side of the fixing block away from the connecting plate.

5. The plate processing equipment according to claim 4, wherein the bottom wall forming the second cavity further has at least one second mounting groove, the middle section of the top of the bottom plate further has a third mounting groove, the third mounting groove is located on one side of the second mounting groove, and the bottom wall forming the third mounting groove has a communicating groove that penetrates the bottom plate, the second mounting groove corresponds to the lower mold groove, and the plate processing equipment further includes at least one abutting component, the abutting component including a third driving component, a third telescopic rod and a limiting plate, the third driving component being placed in the second mounting groove, and one end of the third telescopic rod being connected to the third driving component, and the other end being placed in the lower mold groove and connected to the limiting plate.

6. The plate processing equipment according to claim 5, wherein the limiting fixture further comprises a blocking assembly, the blocking assembly comprising a fourth driving component, a fourth telescopic rod and a baffle, and the bottom wall forming the second cavity has a fourth mounting groove, the fourth mounting groove being connected to the communicating groove, and the fourth driving component being disposed in the fourth mounting groove, one end of the fourth telescopic rod being connected to the fourth driving component and the other end being placed in the communicating groove, wherein the baffle has a blocking portion and an extension portion, the blocking portion being connected to the extension portion, the blocking portion being placed in the third mounting groove, and the extension portion being connected to the fourth telescopic rod.

7. The plate processing equipment according to claim 6, wherein the plate processing equipment further includes an annular turntable, the annular turntable being rotatably disposed on the top wall forming the second cavity, and the first driving component being located at the center of the annular turntable, the plate processing equipment further includes a cutting assembly, the cutting assembly including a connecting rod and a water jet, one end of the connecting rod being fixedly connected to the annular turntable, the other end being connected to the water jet, and the water jet being spaced at a predetermined distance from the bottom wall forming the second cavity, and the water jet being configured to separate the insert and the plate body.

Citation Information

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