Flexible plate appearance multi-joint punching equipment
The use of a multi-stage punching machine for flexible plate shapes enables automatic loading and unloading and multiple punching operations, solving the problems of high labor costs and product damage in traditional methods, and improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- MFLEX YANCHENG CO LTD
- Filing Date
- 2025-02-05
- Publication Date
- 2026-04-21
AI Technical Summary
When punching the double-sided shape of new energy flexible panels, it is necessary to use a single machine to perform the operation multiple times, which results in high labor costs, low efficiency, and easy damage to product quality.
Design a multi-stage punching device for flexible plate shapes, including a loading and unloading machine, a punching component, a material transfer machine, and an output conveying component, to realize automatic loading and unloading and multiple punching, and continuous conveying through the infeed track and the output track.
It reduces labor costs, improves production efficiency, ensures product quality, and has good adaptability and versatility to meet different punching needs.
Smart Images

Figure CN224154417U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flexible board production technology, and in particular to a multi-stage punching device for the shape of flexible boards. Background Technology
[0002] Flexible printed circuit boards (FPCs) are printed circuit boards with high reliability and excellent flexibility. FPC die-cutting is an important process in FPC manufacturing. It mainly uses precision die-cutting equipment to separate the flexible circuit board, which has already completed the preliminary processes such as circuit pattern making, from a large substrate into individual product shapes.
[0003] When punching double-sided flexible printed circuit boards (within 1.2m) for new energy applications, multiple punching or laser cutting operations are required using a single machine. This process necessitates significant manual labor for material loading, unloading, and transfer, or the addition of numerous laser cutting machines. For modern manufacturing, labor costs are increasingly high, and repetitive labor patterns are unsuitable. Furthermore, the relatively long length of new energy flexible printed circuit boards makes manual loading and unloading difficult, easily leading to folding and pressure damage, which affects product quality. Utility Model Content
[0004] This utility model provides a multi-stage punching equipment for flexible board shapes, which can solve the technical problems of traditional technology, which requires multiple punching or laser cutting using a single machine when punching double-sided flexible boards for new energy, and requires a lot of manual labor for loading, unloading and transferring materials, resulting in high labor costs, low efficiency and easy damage to products, affecting product quality.
[0005] To solve the above-mentioned technical problems, this utility model provides a multi-stage punching device for flexible plate shapes, comprising:
[0006] A loading and unloading machine, wherein the loading and unloading machine has a loading station and a unloading station arranged side by side;
[0007] The punching assembly includes a plurality of conveyor feed rails connected in sequence, and a plurality of punching machines correspondingly disposed on the plurality of conveyor feed rails. One of the conveyor feed rails located at the starting end of the feed is connected to the loading station of the loading and unloading machine.
[0008] A material transfer machine, comprising a receiving station and a discharging station arranged side-by-side, wherein a conveyor rail located at the end of the infeed plate is connected to the receiving station; and...
[0009] The board conveying assembly includes multiple conveying boards connected in sequence, with one conveying board track located at the beginning of the board conveying process connected to the discharge station of the material transfer machine, and another conveying board track located at the end of the board conveying process connected to the unloading station of the loading and unloading machine.
[0010] Optionally, the punching equipment includes a frame and a flexible plate punching die disposed on the frame;
[0011] The flexible plate punching die includes an upper die and a lower die respectively disposed on the upper and lower sides of the equipment frame, and the conveying feed plate track is disposed between the upper die and the lower die.
[0012] Optionally, the conveyor rail includes a feeding conveying mechanism located outside the feeding side of the punching machine, and a lifting conveying mechanism connected to the feeding conveying mechanism, wherein the lifting conveying mechanism passes between the upper mold and the lower mold.
[0013] Optionally, the lifting and conveying mechanism includes a material conveyor belt mounted on the equipment frame and a conveyor belt lifting drive connected to the material conveyor belt. The conveyor belt lifting drive is used to drive the material conveyor belt to move up and down between the conveying plane of the feeding conveying mechanism and the punching surface of the lower die.
[0014] Optionally, the conveyor rail includes a fixed blocking module disposed on the lifting conveying mechanism for blocking the clamps conveyed by the lifting conveying mechanism.
[0015] Optionally, multiple conveyor feed tracks are arranged on one straight line, and multiple conveyor output tracks are arranged on another straight line, with the multiple conveyor feed tracks and multiple conveyor output tracks arranged side by side.
[0016] Optionally, the punching equipment includes an equipment frame and a flexible plate punching die disposed on the equipment frame, wherein the feed plate track and the output plate track are arranged side by side on the equipment frame.
[0017] Optionally, both the material transfer machine and the loading / unloading machine include a frame, a first conveying mechanism and a second conveying mechanism arranged side by side on the frame, and a material transfer mechanism disposed between the first conveying mechanism and the second conveying mechanism.
[0018] Optionally, both the first conveying mechanism and the second conveying mechanism include a material conveying structure disposed on the frame, and the conveying directions of the two material conveying structures are respectively consistent with the conveying directions of the conveying outlet track and the conveying inlet track.
[0019] Optionally, the first conveying mechanism includes a first material conveying structure disposed on the frame, wherein the conveying direction of the first material conveying structure is consistent with the conveying direction of the conveying feed plate track;
[0020] The second conveying mechanism includes a second material conveying structure mounted on the frame, wherein the conveying direction of the second material conveying structure is perpendicular to the conveying direction of the conveying plate track.
[0021] The beneficial effects of the technical solution provided by this utility model include:
[0022] The loading and unloading machine automatically loads the fixture containing the flexible plate to be punched at the loading station and automatically transports the fixture to the feed rail of the punching assembly. The feed rail then transports the fixture and the flexible plate to the punching machine for punching. After punching, the fixture and flexible plate are transported to the next feed rail, which in turn transports the fixture and the punched flexible plate to the next punching machine for further punching, and so on, allowing for multiple punching operations on the flexible plate. After punching the flexible plate, the fixture and the punched plate are unloaded via the feed rail. The flexible board is conveyed to the receiving station on the material transfer machine, and the clamps and flexible board at the receiving station are transferred to the discharge station by the material transfer machine. The clamps and flexible board at the discharge station are then conveyed to the discharge conveyor track of the discharge conveyor assembly by the material transfer machine, and the clamps and flexible board are conveyed to the unloading station of the loading and unloading machine in sequence through multiple discharge conveyor tracks. The punched flexible board on the clamp at the unloading station can be unloaded, and the clamps can be automatically transferred to the loading station by the loading and unloading machine. The flexible board to be punched is placed on the clamp again, and the clamps and flexible board are conveyed to the punching assembly for punching again.
[0023] In this way, the flexible sheet forming multi-unit punching equipment can automatically load and unload double-sided flexible sheets for new energy applications, and can automatically perform continuous multiple punching operations on the double-sided flexible sheet shape. It can also automatically transfer the flexible sheets, eliminating the need for multiple punching operations using a single machine or laser cutting. This significantly reduces labor and material resources, greatly lowering labor costs and improving production efficiency. Furthermore, the use of clamps to support and automatically transport the flexible sheets minimizes damage to the products, ensuring product quality. Moreover, the feeding track and punching equipment of the punching components, as well as the feeding track of the output conveyor components, can be added, removed, or replaced according to punching needs, demonstrating excellent adaptability. Attached Figure Description
[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0025] Figure 1This is a top view of the flexible plate multi-piece punching device described in an embodiment of the present invention;
[0026] Figure 2 This is a front view structural diagram of the flexible plate multi-piece punching equipment described in an embodiment of this utility model;
[0027] Figure 3 This is a side view of the flexible plate multi-piece punching device according to an embodiment of the present invention;
[0028] Figure 4 for Figure 1 A partial structural diagram of the conveyor rail and punching equipment of the flexible plate multi-piece punching equipment;
[0029] Figure 5 for Figure 2 A partial structural diagram of the conveyor rail and punching equipment of the flexible plate multi-piece punching equipment;
[0030] Figure 6 for Figure 1 A partial structural diagram of the loading and unloading machine section of the multi-stage punching equipment for flexible plate shapes;
[0031] Figure 7 for Figure 1 A partial structural diagram of the material transfer machine section of the flexible plate multi-stage punching equipment.
[0032] In the diagram: 10. Flexible plate multi-piece punching machine; 20. Fixture; 22. Flexible plate; 100. Loading and unloading machine; 110. Frame; 120. First conveying mechanism; 130. Second conveying mechanism; 140. Material transfer mechanism; 200. Punching assembly; 210. Conveying and feeding track; 212. Feeding and conveying mechanism; 214. Lifting and conveying mechanism; 2142. Material conveyor belt; 2144. Conveyor belt lifting drive; 216. Fixed blocking module; 220. Punching machine; 222. Equipment frame; 224. Flexible plate punching die; 300. Material transfer machine; 400. Plate output conveying assembly; 410. Plate output track. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0034] like Figures 1 to 3As shown, this utility model proposes a multi-unit punching device 10 for flexible board shapes, including a loading and unloading machine 100, a punching assembly 200 connected to the loading and unloading machine 100, a material transfer machine 300 connected to the punching assembly 200, and a board discharge conveying assembly 400 connected to the material transfer machine 300. The board discharge conveying assembly 400 is connected to the loading and unloading machine 100. The loading and unloading machine 100 can transport a fixture 20 loaded with flexible boards 22 to be punched to the punching assembly 200. The punching assembly 200 continuously punches the flexible boards 22 on the fixture 20. After punching is completed, the fixture 20 and the flexible boards 22 are transported to the material transfer machine 300. The material transfer machine 300 then transfers the fixture 20 and the flexible boards 22 to the board discharge conveying assembly 400. Finally, the board discharge conveying assembly 400 automatically transports them back to the loading and unloading machine 100 to unload the punched flexible boards 22 from the fixture 20.
[0035] Furthermore, the loading and unloading machine 100 may have loading and unloading stations arranged side by side. The punching assembly 200 may include multiple feed rails 210 connected in sequence, and multiple punching machines 220 correspondingly mounted on the feed rails 210. One feed rail 210 at the beginning of the feed is connected to the loading station of the loading and unloading machine 100. The material transfer machine 300 may have receiving and unloading stations arranged side by side, with one feed rail 210 at the end of the feed connected to the receiving station. The unloading conveying assembly 400 may include multiple unloading rails 410 connected in sequence, with one unloading rail 410 at the beginning of the unloading connected to the unloading station of the material transfer machine 300, and one unloading rail 410 at the end of the unloading connected to the unloading station of the loading and unloading machine 100.
[0036] The loading and unloading machine 100 automatically loads the fixture 20, which is loaded with the flexible plate 22 to be punched, at the loading station and automatically transports the fixture 20 to the feed rail 210 of the punching assembly 200. The feed rail 210 transports the fixture 20 and the flexible plate 22 to the punching machine 220 for punching. After punching, the fixture 20 and the flexible plate 22 are transported to the next feed rail 210, which then transports the fixture 20 and the punched flexible plate 22 to the next punching machine 220 for punching again. This process continues, allowing the flexible plate 22 to be punched multiple times. After punching the flexible plate 22, the fixture 20 and the punched flexible plate 22 can be unloaded via the feed rail 210. The plate 22 is conveyed to the receiving station on the material transfer machine 300, and the clamp 20 and flexible plate 22 at the receiving station are transferred to the discharge station by the material transfer machine 300. The clamp 20 and flexible plate 22 at the discharge station are then conveyed to the conveying plate discharge track 410 of the plate discharge conveying assembly 400 by the material transfer machine 300. The clamp 20 and flexible plate 22 are then conveyed to the unloading station of the loading and unloading machine 100 in sequence through multiple conveying plate discharge tracks 410. The punched flexible plate 22 on the clamp 20 at the unloading station can be unloaded, and the clamp 20 can be automatically transferred to the loading station by the loading and unloading machine 100. The flexible plate 22 to be punched is placed on the clamp again, and the clamp 20 and flexible plate 22 are then conveyed to the punching assembly 200 for punching.
[0037] The flexible plate multi-stage punching machine 10 can automatically load and unload double-sided flexible plates for new energy applications, and can automatically perform multiple continuous punching operations on the double-sided flexible plate shape. It can also automatically transfer the flexible plate 22, eliminating the need for multiple punching operations using a single machine or laser cutting. The flexible plate multi-stage punching machine 10 can significantly reduce labor and material resources, greatly reduce labor costs, and improve production efficiency. Moreover, the clamp 20 carries and automatically transports the flexible plate 22, making it less likely to damage the flexible plate product and ensuring product quality. Furthermore, the feed rail 210 of the punching assembly 200 and the punching machine 220, as well as the output rail 410 of the output conveying assembly 400, can be added, removed, or replaced according to punching needs, demonstrating good adaptability.
[0038] Specifically, such as Figure 1 , Figure 6 , Figure 7As shown, both the material transfer machine 300 and the loading and unloading machine 100 may include a frame 110, a first conveying mechanism 120 and a second conveying mechanism 130 arranged side by side on the frame 110, and a material transfer mechanism 140 arranged between the first conveying mechanism 120 and the second conveying mechanism 130. The first conveying mechanism 120 of the loading and unloading machine 100 can be located at the loading station. It can be used to place the fixture 20 and position the flexible plate 22 to be punched on the fixture 20. It can also convey the fixture 20 and the flexible plate 22 to be punched to the conveying feed track 210 at the starting end (i.e., the starting end of the plate feeding) of the punching assembly 200. The second conveying mechanism 130 of the loading and unloading machine 100 can be located at the unloading station. It can be used to receive the fixture 20 and the punched flexible plate 22 from the conveying end (i.e., the end of the plate feeding) of the plate feeding conveying assembly 400. After the punched flexible plate 22 on the fixture 20 at the unloading station is unloaded by the material transfer mechanism 140 of the loading and unloading machine 100, the empty fixture 20 can be transferred to the loading station for reuse.
[0039] Furthermore, the second conveying mechanism 130 of the material transfer machine 300 can be located at the receiving station to receive the clamp 20 and the punched flexible plate 22 conveyed from the end of the punching assembly 200 (i.e., the plate feeding end) via the conveying plate feeding track 210; the first conveying mechanism 120 of the material transfer machine 300 can be located at the discharging station to convey the clamp 20 and the punched flexible plate 22 to the conveying plate discharging track 410 at the conveying start end (i.e., the plate discharging start end) of the plate discharging assembly 400; and the clamp 20 and the punched flexible plate 22 on the second conveying mechanism 130 at the receiving station can be transferred to the first conveying mechanism 120 at the discharging station via the material transfer mechanism 140.
[0040] Furthermore, in some embodiments, both the first conveying mechanism 120 and the second conveying mechanism 130 may include a material conveying structure disposed on the frame 110, and the conveying directions of the two material conveying structures are respectively consistent with the conveying directions of the conveying outlet track 410 and the conveying inlet track 210. For example, the conveying directions of both the conveying outlet track 410 and the conveying inlet track 210 may be horizontal (or horizontal), and the conveying direction of the material conveying structure may be correspondingly set to horizontal (or horizontal).
[0041] In this embodiment, the material conveying structure of the first conveying mechanism 120 of the loading and unloading machine 100 can actively convey the clamp 20 and the flexible plate 22 to the conveying feed track 210 of the punching assembly 200; the material conveying structure of the second conveying mechanism 130 of the loading and unloading machine 100 can actively receive and convey the clamp 20 and the flexible plate 22 conveyed by the conveying feed track 410 of the output conveying assembly 400. Moreover, the material conveying structure of the loading and unloading machine 100 can be connected to external conveying equipment for automatic material reception or automatic material output.
[0042] Furthermore, in this embodiment, the material conveying structure of the second conveying mechanism 130 of the material transfer machine 300 can actively receive and convey the clamp 20 and flexible plate 22 conveyed by the conveying infeed track 210 of the punching component 200; the material conveying structure of the first conveying mechanism 120 of the material transfer machine 300 can actively convey the clamp 20 and flexible plate 22 to the conveying outfeed track 410 of the outfeed conveying component 400.
[0043] Furthermore, in this embodiment, the material conveying structures of the first conveying mechanism 120 and the second conveying mechanism 130 cannot directly transfer materials. A separate material transfer mechanism 140 is required to transfer the clamp 20 (or the clamp 20 and the flexible plate 22). Further, the material transfer mechanism 140 may include a transfer robot mounted on the frame 110, located above the first conveying mechanism 120 and the second conveying mechanism 130, capable of gripping and transferring the clamp 20 from one of them to the other. Additionally, the material transfer mechanism 140 may include a telescopic push-pull structure mounted on the frame 110, located on the side of the first conveying mechanism 120 and / or the second conveying mechanism 130, capable of pushing and pulling the clamp 20 from one of them to the other. In addition, the material transfer mechanism 140 may include a lifting and conveying structure provided on the frame 110, which can lift and move the clamp 20 on one of the first conveying mechanism 120 and the second conveying mechanism 130 (so that the clamp 20 is separated from the material conveying structure), and then move the clamp 20 to the other of the two, and lift and move the clamp 20 to place the clamp 20 on the first conveying mechanism 120 or the second conveying mechanism 130.
[0044] Furthermore, in some embodiments, the first conveying mechanism 120 may include a first material conveying structure disposed on the frame 110, the conveying direction of the first material conveying structure being consistent with the conveying direction of the infeed rail 210. Moreover, the second conveying mechanism 130 may include a second material conveying structure disposed on the frame 110, the conveying direction of the second material conveying structure being perpendicular to the conveying direction of the outfeed rail 410. For example, the conveying directions of both the outfeed rail 410 and the infeed rail 210 may be horizontal (or vertical), the conveying direction of the first material conveying structure may be correspondingly set to horizontal (or vertical), and the conveying direction of the second material conveying structure may be set to vertical (or horizontal).
[0045] Thus, the first material conveying structure of the first conveying mechanism 120 of the loading and unloading machine 100 can actively convey the clamp 20 and the flexible plate 22 to the feed rail 210 of the punching assembly 200 along the horizontal transverse (or horizontal longitudinal) direction; the second material conveying structure of the second conveying mechanism 130 of the loading and unloading machine 100 can passively receive the clamp 20 and the flexible plate 22 conveyed from the feed rail 410 of the output conveying assembly 400 along the horizontal transverse (or horizontal longitudinal) direction. Moreover, the second material conveying structure of the second conveying mechanism 130 of the loading and unloading machine 100 can actively convey the empty clamp 20 to the first material conveying structure of the first conveying mechanism 120 along the horizontal longitudinal (or horizontal transverse) direction. At this time, the second conveying mechanism 130 also serves as the material transfer mechanism 140 of the loading and unloading machine 100.
[0046] Similarly, the second material conveying structure of the second conveying mechanism 130 of the material transfer machine 300 can passively receive the clamp 20 and flexible plate 22 conveyed from the conveying track 210 of the punching assembly 200 along the horizontal transverse (or horizontal longitudinal) direction; the first material conveying structure of the first conveying mechanism 120 of the material transfer machine 300 can actively convey the clamp 20 and flexible plate 22 to the conveying track 410 of the output conveying assembly 400 along the horizontal transverse (or horizontal longitudinal) direction. Moreover, the second material conveying structure of the second conveying mechanism 130 of the material transfer machine 300 can actively convey the clamp 20 and flexible plate 22 to the first material conveying structure of the first conveying mechanism 120 along the horizontal longitudinal (or horizontal transverse) direction. At this time, the second conveying mechanism 130 also serves as the material transfer mechanism 140 of the material transfer machine 300.
[0047] In addition, such as Figure 1 , Figure 4 , Figure 5As shown, each punching device 220 of the punching assembly 200 may include a device frame 222 and a flexible plate punching die 224 disposed on the device frame 222. Moreover, the flexible plate punching die 224 may include an upper die and a lower die disposed on the upper and lower sides of the device frame 222 respectively, and the feed plate track 210 may be disposed between the upper die and the lower die. After the fixture and flexible plate are conveyed to the feed rail 210 at the starting end of the feed plate by the loading and unloading machine 100, the fixture 20 and flexible plate 22 can be conveyed to the upper and lower dies of the flexible plate punching die 224 of a punching machine 220 through the feed rail 210. The upper die can be moved downward to close the upper and lower dies and punch the flexible plate located between the upper and lower dies. After the punching of the flexible plate 22 on the fixture 20 is completed, the upper die of the flexible plate punching die 224 can be moved upward to separate the upper and lower dies, so that the feed rail 210 can convey the punched flexible plate 22 and fixture 20 to the next station.
[0048] Furthermore, each feed rail 210 may include a feeding conveying mechanism 212 located outside the feed side of the punching machine 220, and a lifting conveying mechanism 214 connected to the feeding conveying mechanism 212. The lifting conveying mechanism 214 passes between the upper die and the lower die. The clamp 20 and the flexible plate 22 can be conveyed to the lifting conveying mechanism 214 through the feeding conveying mechanism 212. The clamp 20 and the flexible plate 22 can be conveyed between the upper die and the lower die through the lifting conveying mechanism 214. The clamp 20 and the flexible plate 22 can be lowered and placed on the punching surface of the lower die. Then, the upper die is lowered to punch the flexible plate 22 on the lower die. After punching, the upper die is reset, and the lifting conveying mechanism 214 raises the clamp and the punched flexible plate 22, and then conveys the clamp 20 and the flexible plate 22 to the next station.
[0049] Furthermore, the lifting and conveying mechanism 214 may include a material conveyor belt 2142 mounted on the equipment frame 222, and a conveyor belt lifting drive 2144 connected to the material conveyor belt 2142. The conveyor belt lifting drive 2144 is used to drive the material conveyor belt 2142 to move up and down between the conveying plane of the feeding conveyor mechanism 212 and the punching surface of the lower die. The material conveyor belt 2142 of the lifting and conveying mechanism 214 can receive the clamp 20 and the flexible plate 22 conveyed by the feeding conveyor mechanism 212, and can convey the clamp 20 and the flexible plate 22 to directly above the punching surface of the lower die; then the material conveyor belt 2142 can be driven to rise by the conveyor belt lifting drive 2144 of the lifting and conveying mechanism 2144, and then the clamp 20 and the flexible plate 22 can be conveyed to the next station by the material conveyor belt 2142. Moreover, the material conveyor belt 2142 may be a roller conveyor belt structure or a pulley conveyor belt structure. The conveyor belt lifting drive component 2144 can be configured as a motor lifting drive structure or a cylinder lifting drive structure.
[0050] Furthermore, each conveyor rail 210 may include a fixed blocking module 216 mounted on the lifting conveyor mechanism 214 to block the fixture 20 conveyed by the lifting conveyor mechanism 214. When the fixture 20 and flexible plate 22 are conveyed by the lifting conveyor mechanism 214 to the point directly above the cutting surface of the lower die of the flexible plate punching die 224 of the punching machine 220, the fixed blocking module 216 on the lifting conveyor mechanism 214 can limit the fixture to prevent the flexible plate 22 on the fixture 20 from being conveyed to the next station without being punched. After the flexible plate punching die 224 completes the punching of the flexible plate 22 on the fixture, and after the lifting conveyor mechanism 214 is reset, the fixed blocking module 216 can release the limiting blocking of the fixture, allowing the fixture 20 and flexible plate 22 to be conveyed to the next station by the lifting conveyor mechanism 214. Specifically, the fixed blocking module 216 may include a telescopic blocking structure or a lifting blocking structure provided on the lifting conveying mechanism 214, which can block and limit the clamp 20 conveyed by the lifting conveying mechanism 214 by telescopic or lifting methods.
[0051] In addition, such as Figures 1 to 2 As shown, in this embodiment, multiple infeed conveyor tracks 210 can be arranged on the same straight line, and multiple outfeed conveyor tracks 410 can be arranged on another straight line, with the infeed conveyor tracks 210 and the outfeed conveyor tracks 410 arranged side by side. This allows the punching assembly 200 to be arranged along a straight line, or the outfeed conveyor assembly 400 to be arranged along a straight line, and the punching assembly 200 and the outfeed conveyor assembly 400 to be arranged side by side, resulting in a compact overall equipment layout and smooth material transport.
[0052] Moreover, such as Figure 1 and Figure 4 As shown, each punching machine 220 may include a machine frame 222 and a flexible plate punching die 224 mounted on the machine frame 222. A feed rail 210 and an output rail 410 are arranged side-by-side on the machine frame 222. The machine frame 222 of the punching machine 220 can support the feed rail 210 and output rail 410 at the middle position. The machine frame 110 of the loading / unloading machine 100 and the machine frame 222 of the punching machine 220 can support the feed rail 210 and output rail 410 at one end. The machine frame 110 of the material transfer machine 300 and the machine frame 222 of the punching machine 220 can support the feed rail 210 and output rail 410 at the other end. This not only allows for a more compact arrangement of the feed rail 210 of the punching assembly 200 and the output rail 410 of the output conveying assembly 400, but also reduces the number of support frames and simplifies the structure.
[0053] In addition, such as Figures 1 to 2As shown, the punching assembly 200 may include four feed rails 210 and four punching machines 220, forming a four-stage punching machine capable of punching the flexible plate four times consecutively. Furthermore, as needed, the punching assembly 200 may include more feed rails 210 and punching machines 220 (e.g., five, six, seven, etc.) to meet the requirement of punching more times.
[0054] Furthermore, the specific structure of the conveying track 410 of the plate delivery assembly 400 can be similar to the specific structure of the feeding conveying mechanism 212 of the plate infeed track 210, and both can be set as belt drive structure or roller drive structure, etc.
[0055] The flexible plate multi-piece punching machine 10 provided by this utility model can realize automated production and meet safety standards; it can automatically load and unload materials and transfer them, saving manpower and reducing labor costs; through the punching and conveying track design, it reduces defects caused by product handling and improves product yield; through the modular design of the punching machine 220, the conveying inlet track 210, and the conveying outlet track 410, it can adapt to a large number of products with universal designs, allowing for quick model changes and improving the versatility of the equipment; through the integrated design of functions such as automatic loading and unloading of punching materials, transfer, and multiple continuous punching, it realizes the miniaturization of the machine, combining multiple functions and saving equipment space; the integration of various functions enables automated production, saving manpower, with manual labor only required to change the corresponding molds; it meets customer requirements, realizes automated production processes, and improves market competitiveness.
[0056] It should be noted that in this invention, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0057] The above description is merely a specific embodiment of the present invention, enabling those skilled in the art to understand or implement the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features of the present invention.
Claims
1. A flexible sheet metal profile multiple die apparatus, characterized by, include: A loading and unloading machine, wherein the loading and unloading machine has a loading station and a unloading station arranged side by side; The punching assembly includes a plurality of conveyor feed rails connected in sequence, and a plurality of punching machines correspondingly disposed on the plurality of conveyor feed rails. One of the conveyor feed rails located at the starting end of the feed is connected to the loading station of the loading and unloading machine. A material transfer machine, comprising a receiving station and a discharging station arranged side-by-side, wherein a conveyor rail located at the end of the infeed plate is connected to the receiving station; and... The board conveying assembly includes multiple conveying boards connected in sequence, with one conveying board track located at the beginning of the board conveying process connected to the discharge station of the material transfer machine, and another conveying board track located at the end of the board conveying process connected to the unloading station of the loading and unloading machine.
2. The flexible sheet form multi-hit apparatus according to claim 1, wherein The punching equipment includes an equipment frame and a flexible plate punching die disposed on the equipment frame; The flexible plate punching die includes an upper die and a lower die respectively disposed on the upper and lower sides of the equipment frame, and the conveying feed plate track is disposed between the upper die and the lower die.
3. The flexible sheet form multi-hit apparatus according to claim 2, wherein The conveyor rail includes a feeding conveyor mechanism located outside the material feeding side of the punching machine, and a lifting conveyor mechanism connected to the feeding conveyor mechanism. The lifting conveyor mechanism passes between the upper mold and the lower mold.
4. The flexible sheet panel-forming multiple die apparatus according to claim 3, wherein The lifting and conveying mechanism includes a material conveyor belt mounted on the equipment frame and a conveyor belt lifting drive connected to the material conveyor belt. The conveyor belt lifting drive is used to drive the material conveyor belt to move up and down between the conveying plane of the feeding conveyor mechanism and the punching surface of the lower die.
5. The flexible sheet panel form multiple punch apparatus of claim 3 wherein, The conveyor rail includes a fixed blocking module mounted on the lifting conveyor mechanism, used to block the clamps conveyed by the lifting conveyor mechanism.
6. The flexible sheet and form multiple die apparatus of any of claims 1-5, wherein, Multiple conveyor feed tracks are arranged on one straight line, and multiple conveyor output tracks are arranged on another straight line, with the multiple conveyor feed tracks and multiple conveyor output tracks arranged side by side.
7. The flexible sheet panel form multiple punch apparatus of claim 6 wherein, The punching equipment includes an equipment frame and a flexible plate punching die mounted on the equipment frame. The infeed conveyor track and the outfeed conveyor track are arranged side by side on the equipment frame.
8. The flexible sheet panel form multiple punch apparatus of any one of claims 1-5, wherein, Both the material transfer machine and the loading / unloading machine include a frame, a first conveying mechanism and a second conveying mechanism arranged side by side on the frame, and a material transfer mechanism disposed between the first conveying mechanism and the second conveying mechanism.
9. The flexible sheet panel form multiple punch apparatus of claim 8 wherein, Both the first conveying mechanism and the second conveying mechanism include a material conveying structure mounted on the frame, and the conveying directions of the two material conveying structures are respectively consistent with the conveying directions of the conveying outlet track and the conveying inlet track.
10. The flexible sheet panel form multiple punch apparatus of claim 8 wherein, The first conveying mechanism includes a first material conveying structure disposed on the frame, wherein the conveying direction of the first material conveying structure is consistent with the conveying direction of the conveying feed plate track; The second conveying mechanism includes a second material conveying structure mounted on the frame, wherein the conveying direction of the second material conveying structure is perpendicular to the conveying direction of the conveying plate track.