A frame punching all-in-one machine
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN SHENWAN AUTOMATION EQUIP IND CO LTD
- Filing Date
- 2025-09-15
- Publication Date
- 2026-08-07
AI Technical Summary
现阶段对于边框的冲孔加工,需要生产员将边框放到指定的冲孔工位上,待冲孔加工完成后,生产员将边框取出并重新放上需要冲孔的边框,边框的取放依赖人工实现,生产效率较低,而且人工取放边框还需要注意边框放置后的位置是否准确,容易出现冲孔位置偏差等问题
[0015]本实用新型的有益效果:通过设置上料装置、第一冲孔装置和第二冲孔装置,实现了边框从上料、定位到冲孔的全自动化加工,减少了人工干预,大幅提高了生产效率和加工一致性,并且可以为企业降低用人成本。
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Figure CN224600317U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of punching equipment, and in particular to an integrated frame punching machine. Background Technology
[0002] In the manufacturing of metal doors and windows, display racks, furniture, and various industrial equipment, frames are widely used basic structural components. These profiles often require punching or other processing at specific locations during production to facilitate subsequent assembly and connection. Currently, for frame punching, production workers need to place the frame on a designated punching station. After punching, the worker removes the frame and replaces it with the frame requiring punching. This manual handling of frame placement is inefficient, and it also requires careful attention to ensure accurate frame placement, which can easily lead to problems such as punching position deviations.
[0003] Therefore, it is necessary to make further improvements. Utility Model Content
[0004] To address the aforementioned issues, this utility model proposes an integrated frame punching machine, which boasts advantages such as high automation and high production efficiency.
[0005] This utility model proposes a frame punching integrated machine, which includes a feeding device, a first punching device and a second punching device on a workbench. The first punching device and the second punching device are arranged left and right at intervals, forming a feeding area between the first punching device and the second punching device. The feeding device is located on one side of the feeding area. The first punching device can be driven by a driving device to approach the second punching device. The first punching device is provided with a first feed port, and the second punching device is provided with a second feed port. The first feed port and the second feed port are arranged opposite to each other. The feeding device is used to transport the material between the first feed port and the second feed port. The first punching device is provided with a movable positioning part on the other side opposite to the first feed port.
[0006] In one or more embodiments, the first punching device is provided with a first material support part at the first feed inlet, and the second punching device is provided with a second material support part at the second feed inlet.
[0007] In one or more embodiments, the feeding device includes a material rack, a feeding cylinder assembly, a receiving platform, and a feeding guide rail. The feeding guide rail is used to drive the receiving platform to move. The receiving platform is located on the discharge end of the material rack, and the feeding cylinder assembly is located on the discharge end to control the feeding.
[0008] In one or more embodiments, the material rack includes a left fixed frame, a right fixed frame, and a movable frame. The left fixed frame and the right fixed frame are connected and fixed by a plurality of sliding rods. The movable frame is disposed between the left fixed frame and the right fixed frame and is slidably connected to the sliding rods. The left fixed frame is provided with a rotatable first screw, and the movable frame is provided with a screw sleeve that is screwed to the first screw. A material storage area is formed between the movable frame and the right fixed frame.
[0009] In one or more embodiments, the bottom of the storage area is the discharge end, and the movable frame and the right fixed frame are provided with the discharge cylinder assembly on both sides corresponding to the discharge end. The discharge cylinder assembly includes a first cylinder and a second cylinder distributed vertically.
[0010] In one or more embodiments, the driving device includes a horizontal rail, a second screw, a motor, and a screw seat. The first punching device is slidably connected to the horizontal rail via a slide block, and the screw seat is screwed to the second screw and fixed to the first punching device.
[0011] In one or more embodiments, both the first punching device and the second punching device are provided with a punching assembly. The punching assembly includes a die base, a punching head and a pressing cylinder. The punching head is located above the die base, and a guide rod is provided between the punching head and the die base. The pressing cylinder is used to drive the punching head to move up and down.
[0012] In one or more embodiments, the mold base is provided with a mold cavity, and the side of the mold base is provided with an opening device, the opening device having an opening drill bit, and the side of the mold base having an avoidance opening for the opening drill bit to pass through, the avoidance opening communicating with the mold cavity.
[0013] In one or more embodiments, the positioning part can reciprocate along the feeding direction of the first feed inlet, and the first punching device is provided with a third cylinder that drives the positioning part to move.
[0014] In one or more embodiments, the first material support and the second material support are connected to a material drop guide plate.
[0015] The beneficial effects of this utility model are as follows: by setting up a feeding device, a first punching device and a second punching device, the frame can be fully automated from feeding and positioning to punching, reducing manual intervention, greatly improving production efficiency and processing consistency, and reducing labor costs for enterprises. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the punching machine in this embodiment; Figure 2 This is a schematic diagram of the structure of the receiving platform in this embodiment, which delivers the material to the area between the first and second inlets. Figure 3 This is a schematic diagram of the structure of the first punching device in this embodiment; Figure 4 This is a schematic diagram of the feeding device in this embodiment; Figure 5 for Figure 4 A schematic diagram of the structure from another angle. Detailed Implementation
[0017] To enhance understanding of this utility model, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings. These embodiments are only used to explain the present utility model and do not constitute a limitation on the scope of protection of the present utility model.
[0018] Please refer to the appendix. Figure 1-5 This utility model provides a frame punching integrated machine, which includes a feeding device 200, a first punching device 300 and a second punching device 400 disposed on a workbench 100. The first punching device 300 and the second punching device 400 are arranged at intervals from each other, and a feeding area is formed between the first punching device 300 and the second punching device 400. The feeding device 200 is disposed on one side of the feeding area. The first punching device 300 can be driven by a driving device to approach the second punching device 400. The first punching device 300 is provided with a first feed port 1, and the second punching device 400 is provided with a second feed port 2. The first feed port 1 and the second feed port 2 are arranged opposite to each other. The feeding device 200 is used to transport the material between the first feed port 1 and the second feed port 2. The first punching device 300 is provided with a movable positioning part 3 on the other side opposite to the first feed port. By setting up a feeding device 200, a first punching device 300 and a second punching device 400, and cooperating with a drive device and a positioning part 3, automatic feeding, precise positioning and efficient punching of the frame are realized, thereby improving the level of production automation and processing accuracy.
[0019] Specific working principle: The feeding device 200 delivers the material between the first feed port 1 and the second feed port 2. The first punching device 300 approaches the second punching device 400 under the drive of the driving device. During the movement of the first punching device 300, the material first enters the first feed port 1. When the material comes into contact with the positioning part 3, the positioning part 3 pushes the material into the second feed port. After the first punching device 300 stops moving, the first punching device 300 and the second punching device 400 begin to punch the material. After punching is completed, the punching component on the first punching device 300 remains in the punching state, and the punching component on the second punching device 400 resets. The driving device drives the first punching device 300 away from the second punching device 400, causing the material to leave the second punching device 400. After the first punching device 300 resets, the punching component on the first punching device 300 resets, and the positioning part 3 pushes the material out of the first punching device 300, thus completing the punching work of the material.
[0020] The first punching device 300 is provided with a first material support part 4 at the first feed port 1, and the second punching device 400 is provided with a second material support part 5 at the second feed port 2. The first material support part 4 and the second material support part 5 can support the material, which can facilitate the material support when the first feeding device feeds the material, and the material support when the positioning part 3 pushes out the material.
[0021] The feeding device 200 includes a material rack, a feeding cylinder assembly, a receiving platform 6, and a feeding guide rail 7. The feeding guide rail 7 is used to drive the receiving platform 6 to move. The receiving platform 6 is located on the discharge end of the material rack. The feeding cylinder assembly is located on the discharge end to control the feeding. When the feeding cylinder assembly is working, it releases the material to the receiving platform 6, and then sends the material to the first material support part 4 and the second material support part 5 through the feeding guide rail 7. Automatic feeding is achieved by using the feeding cylinder assembly.
[0022] See Figure 4-5 The material rack includes a left fixed frame 8, a right fixed frame 9, and a movable frame 10. The left fixed frame 8 and the right fixed frame 9 are connected and fixed by several sliding rods 11. The movable frame 10 is located between the left fixed frame 8 and the right fixed frame 9 and is slidably connected to the sliding rods 11. The left fixed frame 8 is provided with a rotatable first screw 12. The movable frame 10 is provided with a screw sleeve 13 that is screwed to the first screw 12. A material storage area is formed between the movable frame 10 and the right fixed frame 9. The distance between the movable frame 10 and the right fixed frame 9 can be adjusted by rotating the first screw 12, thereby adjusting according to the length of the material. The first screw 12 can be connected to a hand crank to facilitate the rotation of the first screw 12.
[0023] The bottom of the storage area is the discharge end. The movable frame 10 and the right fixed frame 9 are equipped with the discharge cylinder group on both sides corresponding to the discharge end. The discharge cylinder group includes a first cylinder 14 and a second cylinder 15 distributed vertically. The first cylinder 14 and the second cylinder 15 control different materials respectively. When material needs to be discharged, the second cylinder 15 releases the material and then resets. After the first cylinder 14 releases the material, the material falls onto the second cylinder 15 under the action of gravity and is discharged under the control of the second cylinder 15, while the first cylinder 14 receives the material again.
[0024] See Figure 1 and 2 The driving device includes a horizontal rail 16, a second screw 17, a motor 18, and a screw seat. The first punching device 300 is slidably connected to the horizontal rail 16 via a slide block 19. The screw seat is screwed to the second screw 17 and fixed to the first punching device 300. The motor 18 drives the second screw 17 to rotate. Since the screw seat is screwed to the second screw 17 and fixed to the first punching device 300, the first punching device 300 moves along the horizontal rail 16 when the second screw 17 rotates.
[0025] See Figure 3Both the first punching device 300 and the second punching device 400 are equipped with punching assemblies. The punching assembly includes a mold base 20, a punching head 21 and a pressing cylinder 22. The punching head 21 is located above the mold base 20. A guide rod 23 is provided between the punching head 21 and the mold base 20. The pressing cylinder 22 is used to drive the punching head 21 to move up and down. After the material enters the mold base 20, the pressing cylinder 22 drives the punching head 21 to punch and open the material.
[0026] The mold base 20 has a mold cavity inside, and the side of the mold base 20 has an opening device 24 with an opening drill bit 25. The side of the mold base 20 has a clearance opening for the opening drill bit 25 to pass through, and the clearance opening is connected to the mold cavity. The opening drill bit 25 can be used to open holes on the side of the material.
[0027] The positioning part 3 can reciprocate along the feeding direction of the first feed port 1. The first punching device 300 is provided with a third cylinder 26 that drives the positioning part 3 to move. The positioning part 3 is driven to move by the third cylinder 26, thereby pushing the processed material out of the first punching device 300.
[0028] The first material support part 4 and the second material support part 5 are connected to a material drop guide plate 27 to facilitate the output of the processed material.
[0029] The above description is only a preferred embodiment of the present utility model. The protection scope of the present utility model is not limited to the above embodiments. Any equivalent modifications or changes made by those skilled in the art based on the content disclosed in the present utility model should be included in the protection scope recorded in the claims.
Claims
1. A frame punching machine, characterized in that: The device includes a feeding device (200), a first punching device (300), and a second punching device (400) mounted on a workbench (100). The first punching device (300) and the second punching device (400) are spaced apart on the left and right sides, forming a feeding area between them. The feeding device (200) is located on one side of the feeding area. The first punching device (300) can approach the second punching device (400) by being driven by a driving device. The first punching device (300) has a first feed port (1), and the second punching device (400) has a second feed port (2). The first feed port (1) and the second feed port (2) are arranged opposite to each other. The feeding device (200) is used to transport the material between the first feed port (1) and the second feed port (2). The first punching device (300) has a movable positioning part (3) on the other side of the first feed port.
2. The frame punching integrated machine according to claim 1, characterized in that: The first punching device (300) is provided with a first material support part (4) at the first feed inlet (1), and the second punching device (400) is provided with a second material support part (5) at the second feed inlet (2).
3. The frame punching integrated machine according to claim 2, characterized in that: The feeding device (200) includes a material rack, a feeding cylinder assembly, a receiving platform (6) and a feeding guide rail (7). The feeding guide rail (7) is used to drive the receiving platform (6) to move. The receiving platform (6) is located on the discharge end of the material rack. The feeding cylinder assembly is located on the discharge end to control the feeding.
4. The frame punching integrated machine according to claim 3, characterized in that: The material rack includes a left fixed frame (8), a right fixed frame (9), and a movable frame (10). The left fixed frame (8) and the right fixed frame (9) are connected and fixed by several sliding rods (11). The movable frame (10) is located between the left fixed frame (8) and the right fixed frame (9) and is slidably connected to the sliding rods (11). The left fixed frame (8) is provided with a rotatable first screw (12). The movable frame (10) is provided with a screw sleeve (13) that is screwed to the first screw (12). A material storage area is formed between the movable frame (10) and the right fixed frame (9).
5. A frame punching integrated machine according to claim 4, characterized in that: The bottom of the storage area is the discharge end. The movable frame (10) and the right fixed frame (9) are equipped with the discharge cylinder group on both sides of the discharge end. The discharge cylinder group includes a first cylinder (14) and a second cylinder (15) distributed vertically.
6. A frame punching integrated machine according to any one of claims 1-5, characterized in that: The drive device includes a horizontal rail (16), a second screw (17), a motor (18), and a screw seat. The first punching device (300) is slidably connected to the horizontal rail (16) through a slide (19). The screw seat is screwed to the second screw (17) and fixed on the first punching device (300).
7. A frame punching integrated machine according to any one of claims 1-5, characterized in that: Both the first punching device (300) and the second punching device (400) are equipped with punching assemblies. The punching assembly includes a die base (20), a punching head (21) and a pressing cylinder (22). The punching head (21) is located above the die base (20). A guide rod (23) is provided between the punching head (21) and the die base (20). The pressing cylinder (22) is used to drive the punching head (21) to move up and down.
8. A frame punching integrated machine according to claim 7, characterized in that: The mold base (20) is provided with a mold cavity, and the side of the mold base (20) is provided with an opening device (24). The opening device (24) has an opening drill bit (25). The side of the mold base (20) has an opening for the opening drill bit (25) to pass through, and the opening is connected to the mold cavity.
9. A frame punching integrated machine according to any one of claims 2-5, characterized in that: The positioning part (3) can reciprocate along the feeding direction of the first feed port (1), and the first punching device (300) is provided with a third cylinder (26) that drives the positioning part (3) to move.
10. A frame punching integrated machine according to claim 9, characterized in that: The first material support section (4) and the second material support section (5) are connected to a material drop guide plate (27).