Visual inspection mechanism for materials on die-cutting machine
Through the visual detection mechanism of the material on the die-cutting machine, the laser ranging sensor and clamp rod are used to achieve accurate placement and automatic removal of the aerogel plate, which solves the problem of position deviation in die-cutting of aerogel and improves the accuracy and convenience of die-cutting.
Patent Information
- Application Number
- CN202510829780.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-20
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-06-20
AI Technical Summary
During the aerogel die cutting process, the staff cannot ensure the accurate placement of the aerogel plate, resulting in the generation of defective products.
The visual detection mechanism of the material on the die-cutting machine is adopted, and the position of the aerogel plate is measured and compared with the first laser ranging sensor and the second laser ranging sensor. Automatically adjust and clamp the clamp rod to achieve accurate placement of the aerogel plate, and automatic removal and lubrication are achieved through the electric telescopic rod and nozzle.
It improves the accuracy of aerogel die cutting, reduces the labor intensity and operation risks of staff, and increases the convenience of use of the device.
Smart Images

Figure CN120396053A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of die-cutting machines, and particularly to a visual inspection mechanism for materials on a die-cutting machine. Background Art
[0002] A die-cutting machine, also known as a beer machine, a cutting machine or a numerical control stamping machine, is a mechanical device widely used in industries such as printing and packaging, electronics, automotive, and medical. Its main function is to precisely cut, indent, hot-stamp, bond, and waste-discharge materials through a mold to meet the shape and function requirements of different products.
[0003] When producing aerogel thermal insulation pads, it is necessary to die-cut the aerogel. Currently, the method of die-cutting the aerogel is that workers place the aerogel plate to be die-cut into the interior of the die-cutting machine, and then start the die-cutting machine to die-cut the aerogel on the aerogel plate. In this operation mode, workers cannot ensure that the placement position of the aerogel plate does not deviate. When die-cutting under the condition of inaccurate placement position of the aerogel plate, it will cause the generation of defective products. Therefore, a die-cutting machine with a visual inspection function for materials is needed. Summary of the Invention
[0004] The purpose of the present invention is to solve the deficiencies existing in the prior art, and to propose a visual inspection mechanism for materials on a die-cutting machine.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions: A visual inspection mechanism for materials on a die-cutting machine, including a die-cutting machine body. The die-cutting machine body is provided with a die-cutting upper plate, a die-cutting stabilizing rod, and a die-cutting bottom plate. A die-cutting tool group is provided at the bottom of the die-cutting upper plate. An auxiliary rod is movably installed on the opening side of the die-cutting machine body. Two clamping rods are movably installed on the side of the auxiliary rod close to the die-cutting machine body. First moving rods are movably installed on both sides of the top of the die-cutting bottom plate. An auxiliary mechanism is provided on the first moving rods. A connecting member is movably installed on the side of the top of the die-cutting bottom plate far from the auxiliary rod. A rotating rod is movably installed inside the connecting member.
[0006] Preferably, fixing rods are installed on both sides of the die-cutting machine body. A first slot is opened on the side of the fixing rod far from the die-cutting machine body. A lead screw is rotatably installed inside the first slot. A first rotating motor is installed on the top of the fixing rod. The output end of the first rotating motor movably penetrates through the top of the fixing rod and is connected to the lead screw. A lifting block is slidably installed inside the first slot. The lead screw threadedly penetrates through the lifting block. A connecting rod is installed on the side of the lifting block far from the fixing rod. Both ends of the auxiliary rod are movably connected to connecting blocks. The side of the connecting block close to the connecting rod is movably connected to the connecting rod.
[0007] Preferably, one end of the connecting rod close to the connecting block is embedded with an electric telescopic rod, and the telescopic end of the electric telescopic rod is connected to the connecting block. One side of the connecting block close to the auxiliary rod is embedded with a second rotary motor, and the output end of the second rotary motor is connected to the auxiliary rod.
[0008] Preferably, a displacement chute is provided on one side of the auxiliary rod close to the die-cutting machine body. One end of the clamping rod close to the displacement chute is connected with a displacement electric slider, and the displacement electric slider is slidably installed inside the displacement chute.
[0009] Preferably, a nozzle is embedded on one side of the clamping rod close to the die-cutting stabilizing rod, and a connecting head is installed on the top of the clamping rod.
[0010] Preferably, both sides of the two first moving rods away from each other are movably connected with first fixing blocks. At the positions of the first fixing blocks on the top of the die-cutting bottom plate, first electric lifting rods are embedded. The lifting ends of the first electric lifting rods face upward, and the lifting ends of the first electric lifting rods are connected to the bottoms of the first fixing blocks. One side of the first fixing block away from the first moving rod is embedded with a first electric extension rod, and the extension end of the first electric extension rod movably passes through the first fixing block and is connected to the first moving rod.
[0011] Preferably, the auxiliary mechanism includes a bolt sleeve and a first laser distance sensor. A plurality of first laser distance sensors are embedded on both sides of the two first moving rods close to each other. Two driving motors are embedded on the top of the first moving rod. The output ends of the driving motors face upward, and the output ends of the driving motors are connected with a bolt sleeve.
[0012] Preferably, auxiliary rings are provided on the outer sides of the die-cutting stabilizing rods. First chutes are provided on the inner walls of the auxiliary rings. Rotating rings are movably installed at the inner walls of the auxiliary rings. First electric sliders are installed at the parts of the rotating rings close to the first chutes, and the first electric sliders are slidably installed inside the first chutes.
[0013] Preferably, the side of the connecting piece away from the auxiliary rod is movably connected with a second fixing block. A second electric lifting rod is embedded at the top of the die-cutting bottom plate close to the second fixing block. The lifting end of the second electric lifting rod faces upward, and the lifting end of the second electric lifting rod is connected to the top of the second fixing block. A second electric extension rod is embedded on the second fixing block. The extension end of the second electric extension rod movably passes through the second fixing block, and the extension end of the second electric extension rod is connected to the connecting piece.
[0014] Preferably, the rotating rod is rotatably installed inside the connecting piece, and the end wall of the connecting piece close to the rotating rod is connected to the rotating rod through an electric rotating shaft. A second slotted groove is formed inside the rotating rod, a connecting hole is formed at the top of the rotating rod, the connecting hole communicates with the second slotted groove, a plurality of second laser range sensors are installed at the top of the rotating rod, and an air outlet groove is formed on the side of the rotating rod away from the connecting piece, and the air outlet groove communicates with the second slotted groove.
[0015] Compared with the prior art, the beneficial effects of the present invention are: In the present invention, by providing the first moving rod, the rotating rod and the clamping rod, the aerogel plate to be die-cut is placed on the die-cut bottom plate in the die-cutting machine body. The first laser range sensor and the second laser range sensor can measure the position of the aerogel plate and transmit it to the background control system for comparison with the standard placement position. Through this operation method, the detection of the accuracy of the placement position of the aerogel plate can be completed, and the unqualified die-cut quality of the aerogel caused by the deviation of the placement position of the aerogel plate can be prevented; After detecting that the placement position of the aerogel plate is deviated, the two clamping rods can clamp both sides of the aerogel plate. Subsequently, by clamping the aerogel plate with the clamping rods and moving it, the automatic adjustment of the placement position of the aerogel plate can be completed, thereby increasing the accuracy of aerogel die-cutting and the convenience of using the device; After the die-cutting of the aerogel is completed, at this time, by clamping both sides of the aerogel plate with the clamping rods, and then by driving the auxiliary rod to expand and contract with the electric telescopic rod, the clamping rods can clamp the aerogel plate and move it to the outside of the die-cutting machine body. Through this operation method, the automatic removal of the die-cut aerogel plate can be realized, without manual taking by the staff, reducing the labor intensity and operation risk of the staff; The nozzle is aligned with the die-cutting stabilizing rod. The lubricating oil can be sprayed through the nozzle by the booster pump arranged in the lubricating oil barrel, and the lubricating oil can be sprayed on the outside of the die-cutting stabilizing rod, so that the rotating ring rotates inside the auxiliary ring. When the auxiliary ring moves up and down to the oil spraying position of the die-cutting stabilizing rod, under the rotation of the rotating ring, the distribution of the lubricating oil on the outside of the die-cutting stabilizing rod can be made more uniform; When the die-cutting tool group needs to be maintained and replaced, the two clamping rods move closer to each other and clamp on both sides of the die-cutting tool group. The bolt sleeve enters the bolt at the connection of the die-cutting tool group. Under the rotation of the driving motor, the bolt sleeve disassembles the bolt at the connection of the die-cutting tool group, and the clamping rods clamp the die-cutting tool group and move it out of the outside of the die-cutting machine body, and the automatic disassembly of the die-cutting tool group can be completed. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the installation structure of the clamping rod of the present invention; Figure 3 Schematic diagram of the installation structure of the second rotating motor of the present invention; Figure 4 Schematic diagram of the installation structure of the electric telescopic rod of the present invention; Figure 5 Schematic diagram of the installation structure of the displacement electric slider of the present invention; Figure 6 Schematic diagram of the installation structure of the die-cutting tool group of the present invention; Figure 7 Schematic diagram of the sectional structure of the die-cutting machine body of the present invention; Figure 8 Schematic diagram of the installation structure of the first laser ranging sensor of the present invention; Figure 9 Schematic diagram of the installation structure of the drive motor of the present invention; Figure 10 Schematic diagram of the installation structure of the first electric slider of the present invention; Figure 11 Schematic diagram of the structure of the rotating rod of the present invention.
[0017] In the figure: 1. Die-cutting machine body; 2. Die-cutting upper plate; 3. Die-cutting stabilizing rod; 4. Fixed rod; 5. Connecting rod; 6. Connecting block; 7. Auxiliary rod; 8. First rotating motor; 9. First slot; 10. Lead screw; 11. Lifting block; 12. Clamping rod; 13. Nozzle; 14. Connecting head; 15. Second rotating motor; 16. Electric telescopic rod; 17. Displacement chute; 18. Displacement electric slider; 19. Die-cutting tool group; 20. Die-cutting bottom plate; 21. First fixing block; 22. Bolt sleeve; 23. First moving rod; 24. Second fixing block; 25. Connecting piece; 26. Rotating rod; 27. Auxiliary ring; 28. First electric extension rod; 29. First electric lifting rod; 30. First laser ranging sensor; 31. Rotating ring; 32. First chute; 33. First electric slider; 34. Second electric extension rod; 35. Second electric lifting rod; 36. Second laser ranging sensor; 37. Connecting hole; 38. Second slot; 39. Air outlet groove; 40. Drive motor. Detailed implementation manners
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0019] Refer to Figures 1-11, A visual inspection mechanism for materials on a die-cutting machine, including a die-cutting machine body 1. On the die-cutting machine body 1, there are a die-cutting upper plate 2, a die-cutting stabilizing rod 3, and a die-cutting bottom plate 20. At the bottom of the die-cutting upper plate 2, there is a die-cutting tool group 19. On the open side of the die-cutting machine body 1, an auxiliary rod 7 is movably installed. On the side of the auxiliary rod 7 close to the die-cutting machine body 1, two clamping rods 12 are movably installed. On both sides of the top of the die-cutting bottom plate 20, first moving rods 23 are movably installed. An auxiliary mechanism is provided on the first moving rods 23. On the side of the top of the die-cutting bottom plate 20 away from the auxiliary rod 7, a connecting piece 25 is movably installed. Inside the connecting piece 25, a rotating rod 26 is movably installed. The clamping rod 12 can clamp and adjust the aerogel plate. The auxiliary mechanism can detect the accuracy of the placement position of the aerogel plate. The rotating rod 26 can clean the top of the die-cutting bottom plate 20.
[0020] As a technical optimization scheme of the present invention, fixing rods 4 are installed on both sides of the die-cutting machine body 1. On the side of the fixing rod 4 away from the die-cutting machine body 1, a first slot 9 is opened. Inside the first slot 9, a lead screw 10 is rotatably installed. On the top of the fixing rod 4, a first rotating motor 8 is installed. The output end of the first rotating motor 8 movably penetrates the top of the fixing rod 4 and is connected to the lead screw 10. Inside the first slot 9, a lifting block 11 is slidably installed. The lead screw 10 threadedly penetrates the lifting block 11. On the side of the lifting block 11 away from the fixing rod 4, a connecting rod 5 is installed. Both ends of the auxiliary rod 7 are movably connected to connecting blocks 6. The side of the connecting block 6 close to the connecting rod 5 is movably connected to the connecting rod 5. By driving the lead screw 10 to rotate through the first rotating motor 8, the lifting block 11 can be driven to lift inside the first slot 9, so that the use height position of the connecting rod 5 and the auxiliary rod 7 can be adjusted.
[0021] As a technical optimization scheme of the present invention, an electric telescopic rod 16 is embedded at one end of the connecting rod 5 close to the connecting block 6. The telescopic end of the electric telescopic rod 16 is connected to the connecting block 6. A second rotating motor 15 is embedded on the side of the connecting block 6 close to the auxiliary rod 7. The output end of the second rotating motor 15 is connected to the auxiliary rod 7. By the telescopic movement of the electric telescopic rod 16, the auxiliary rod 7 can be driven to move according to different use requirements. By driving the auxiliary rod 7 to rotate through the second rotating motor 15, the die-cutting tool group 19 can be flipped when the clamping rod 12 clamps the die-cutting tool group 19, which is convenient for the staff to maintain and replace the die-cutting tool head.
[0022] As a technical optimization scheme of the present invention, a displacement chute 17 is opened on the side of the auxiliary rod 7 close to the die-cutting machine body 1. One end of the clamping rod 12 close to the displacement chute 17 is connected to a displacement electric slider 18. The displacement electric slider 18 is slidably installed inside the displacement chute 17. By the sliding of the displacement electric slider 18 in the displacement chute 17, the clamping rod 12 can be driven to move on the auxiliary rod 7.
[0023] As a technical optimization solution of the present invention, a nozzle 13 is embedded and installed on one side of the clamping rod 12 close to the die-cutting stabilizing rod 3, and a connector 14 is installed on the top of the clamping rod 12. Connect the connector 14 with the connecting pipe of the preset lubricating oil barrel outside the device. Then, the clamping rod 12 moves towards the die-cutting stabilizing rod 3, so that the nozzle 13 is aligned with the die-cutting stabilizing rod 3. The lubricating oil can be sprayed through the nozzle 13 by the booster pump arranged in the lubricating oil barrel, and the lubricating oil can be sprayed on the outer side of the die-cutting stabilizing rod 3.
[0024] As a technical optimization solution of the present invention, two first moving rods 23 are movably connected with first fixing blocks 21 on the sides away from each other. At the positions of the first fixing blocks 21 on the top of the die-cutting bottom plate 20, first electric lifting rods 29 are embedded and installed. The lifting ends of the first electric lifting rods 29 face upwards, and the lifting ends of the first electric lifting rods 29 are connected to the bottoms of the first fixing blocks 21. On the side of the first fixing block 21 away from the first moving rod 23, a first electric extension rod 28 is embedded and installed. The extending end of the first electric extension rod 28 movably penetrates through the first fixing block 21 and is connected to the first moving rod 23. The first electric lifting rod 29 can drive the first moving rod 23 to adjust the height position, and the first electric extension rod 28 can drive the first moving rod 23 to adjust the using position.
[0025] As a technical optimization solution of the present invention, the auxiliary mechanism includes a bolt sleeve 22 and a first laser distance sensor 30. A plurality of first laser distance sensors 30 are embedded and installed on the sides of the two first moving rods 23 close to each other. Two driving motors 40 are embedded and installed on the tops of the first moving rods 23. The output ends of the driving motors 40 face upwards, and the output ends of the driving motors 40 are connected with the bolt sleeve 22. The first laser distance sensor 30 can realize the accuracy detection of the placement position of the aerogel plate. The bolt sleeve 22 enters the bolt at the connection of the die-cutting tool group 19, and then under the rotation of the driving motor 40, the bolt sleeve 22 can disassemble the bolt at the connection of the die-cutting tool group 19.
[0026] As a technical optimization solution of the present invention, auxiliary rings 27 are provided on the outer sides of the die-cutting stabilizing rods 3. First chutes 32 are opened on the inner walls of the auxiliary rings 27. A rotating ring 31 is movably installed at the inner wall of the auxiliary ring 27. A first electric slider 33 is installed at the part of the rotating ring 31 close to the first chute 32. The first electric slider 33 is slidably installed inside the first chute 32. When lubricating the die-cutting stabilizing rod 3 by spraying oil, the first electric slider 33 slides in the first chute 32, so that the rotating ring 31 rotates inside the auxiliary ring 27. When the auxiliary ring 27 moves up and down to the oil spraying position of the die-cutting stabilizing rod 3, at this time, under the rotation of the rotating ring 31, the distribution of the lubricating oil on the outer side of the die-cutting stabilizing rod 3 can be made more uniform.
[0027] As a technical optimization solution of the present invention, a second fixing block 24 is movably connected to the side of the connecting member 25 away from the auxiliary rod 7. A second electric lifting rod 35 is embedded and installed at the top of the die-cutting bottom plate 20 near the second fixing block 24. The lifting end of the second electric lifting rod 35 faces upward, and the lifting end of the second electric lifting rod 35 is connected to the top of the second fixing block 24. A second electric extension rod 34 is embedded and installed on the second fixing block 24. The extending end of the second electric extension rod 34 movably penetrates through the second fixing block 24, and the extending end of the second electric extension rod 34 is connected to the connecting member 25. The second electric lifting rod 35 can adjust the use height position of the connecting member 25, and the second electric extension rod 34 can adjust the use horizontal position of the connecting member 25.
[0028] As a technical optimization solution of the present invention, the rotating rod 26 is rotatably installed inside the connecting member 25, and the end wall of the connecting member 25 near the rotating rod 26 is connected to the rotating rod 26 through an electric rotating shaft. A second slot 38 is opened inside the rotating rod 26, a connection hole 37 is opened at the top of the rotating rod 26, the connection hole 37 is communicated with the second slot 38, a plurality of second laser distance sensors 36 are installed at the top of the rotating rod 26, and an air outlet groove 39 is opened on the side of the rotating rod 26 away from the connecting member 25. The air outlet groove 39 is communicated with the second slot 38. During the use of the device, the connecting member 25 drives the rotating rod 26 to rise, so that the bottom of the rotating rod 26 rises above the top of the die-cutting bottom plate 20. Combining the rotation of the rotating rod 26 in the connecting member 25 and starting the fan connected to the connection hole 37, at this time, the air outlet groove 39 can blow outwards, and the impurities on the top of the die-cutting bottom plate 20 can be automatically cleared, increasing the use convenience of the device.
[0029] When the present invention is in use, the electrical equipment used in this device is all powered by connecting to an external power supply through wires. The electrical equipment in this device is controlled by presetting a control system. The die-cutting machine body 1, die-cutting upper plate 2, die-cutting stabilizing rod 3, die-cutting tool group 19, die-cutting bottom plate 20, first laser distance sensor 30 and second laser distance sensor 36 used in this device are all existing mature technologies, so no more elaboration will be made on them here. The connection hole 37 on the rotating rod 26 of this device is connected to a preset fan outside the device through a conduit. A connecting pipe is provided inside the clamping rod 12 to connect the nozzle 13 and the connecting head 14. When the nozzle 13 needs to be used, the staff can connect a preset lubricating oil barrel outside the device to the connecting head 14 through the connecting pipe. The connection method of the connecting pipe and the connecting head 14 is an existing mature technology, so no more elaboration will be made on it here. After the connecting pipe and the connecting head 14 are connected, the lubricating oil can be sprayed out through the nozzle 13 by a booster pump arranged in the lubricating oil barrel. A sponge is provided on the inner wall of the rotating ring 31.
[0030] When the aerogel pad needs to be die-cut, the staff places the aerogel plate to be die-cut on the die-cut bottom plate 20 in the die-cutting machine body 1. The aerogel plate is an existing mature technology, so it will not be elaborated too much here. At this time, the first electric lifting rod 29 drives the first moving rod 23 to rise to the preset use height position. By combining the second electric lifting rod 35 to drive the rotating rod 26 to rise to the preset use height position, the first laser distance sensor 30 and the second laser distance sensor 36 can measure the position of the aerogel plate and transmit it to the background control system for comparison with the standard placement position. Through this operation method, the detection of the accuracy of the placement position of the aerogel plate can be completed, preventing the unqualified quality of the aerogel die-cut caused by the deviation of the placement position of the aerogel plate; After detecting that the placement position of the aerogel plate is deviated, at this time, the first rotating motor 8 drives the lead screw 10 to rotate, so that the lifting block 11 rises and falls in the first slot 9, thereby driving the auxiliary rod 7 to rise and fall until the bottom of the clamping rod 12 moves to the position where it is at the same horizontal use height as the bottom of the aerogel plate. Then, by the displacement electric slider 18 sliding in the displacement chute 17, the two clamping rods 12 can clamp both sides of the aerogel plate. Subsequently, by the way that the clamping rod 12 clamps the aerogel plate and moves it, the automatic adjustment of the placement position of the aerogel plate can be completed, thereby increasing the accuracy of the aerogel die-cut and the convenience of using the device.
[0031] After the die-cutting of the aerogel is completed, at this time, by the way that the clamping rod 12 clamps both sides of the aerogel plate, and then by the electric telescopic rod 16 driving the auxiliary rod 7 to expand and contract, the clamping rod 12 can clamp the aerogel plate and move it to the outside of the die-cutting machine body 1. Through this operation method, the automatic extraction of the die-cut aerogel plate can be realized, without the staff manually taking it, reducing the labor intensity and operation risk of the staff.
[0032] During the use of the die-cutting machine body 1, under the use of the die-cutting upper plate 2, oil stains will accumulate on the die-cutting stabilizing rod 3. At this time, the die-cutting upper plate 2 rises to the preset use height position. Then, by the first electric lifting rod 29 driving the first moving rod 23 to rise and fall, the auxiliary ring 27 can be driven to rise and fall on the outside of the die-cutting stabilizing rod 3, so that the sponge inside the rotating ring 31 can clean the outside of the die-cutting stabilizing rod 3, increasing the convenience of using the device. The sponge inside the rotating ring 31 can be disassembled and replaced after being used for a period of time.
[0033] When it is necessary to spray lubricant on the outside of the die-cutting stabilizer bar 3, at this time, the connecting head 14 is connected to the connecting pipe of the preset lubricant bucket outside the device. Then, the clamping rod 12 moves towards the die-cutting stabilizer bar 3, so that the nozzle 13 is aligned with the die-cutting stabilizer bar 3. The lubricant can be sprayed through the nozzle 13 by the booster pump arranged in the lubricant bucket, and the lubricant can be sprayed on the outside of the die-cutting stabilizer bar 3. At the same time, the first electric slider 33 slides in the first chute 32, so that the rotating ring 31 rotates inside the auxiliary ring 27. When the auxiliary ring 27 moves up and down to the lubricant spraying position of the die-cutting stabilizer bar 3, at this time, under the rotation of the rotating ring 31, the distribution of the lubricant on the outside of the die-cutting stabilizer bar 3 can be made more uniform. At this time, the die-cutting upper plate 2 moves up and down, and the automatic lubrication of the die-cutting stabilizer bar 3 can be completed.
[0034] During the use of the device, the connecting piece 25 drives the rotating rod 26 to rise, so that the bottom of the rotating rod 26 rises above the top of the die-cutting bottom plate 20. Combining the rotation of the rotating rod 26 in the connecting piece 25 and starting the blower connected to the connecting hole 37, at this time, the air outlet groove 39 can blow air outwards, and the automatic cleaning of the impurities on the top of the die-cutting bottom plate 20 can be completed, increasing the convenience of using the device.
[0035] When it is necessary to maintain and replace the die-cutting tool group 19, the auxiliary rod 7 rises to the preset height position, and the two clamping rods 12 move closer to each other and clamp on both sides of the die-cutting tool group 19. The first electric lifting rod 29 drives the first moving rod 23 to rise and combines with the first electric extension rod 28 driving the first moving rod 23 to extend, so that the bolt sleeve 22 can enter the bolts at the connection of the die-cutting tool group 19. Then, under the rotation of the driving motor 40, the bolt sleeve 22 can disassemble the bolts at the connection of the die-cutting tool group 19. Then, the clamping rod 12 clamps the die-cutting tool group 19 and moves it out of the outside of the die-cutting machine body 1, and the automatic disassembly of the die-cutting tool group 19 can be completed. By rotating the auxiliary rod 7 driven by the second rotating motor 15, the die-cutting tool group 19 can be flipped under the condition that the clamping rod 12 clamps the die-cutting tool group 19, which is convenient for the staff to maintain and replace the die-cutting tool head.
[0036] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A visual inspection mechanism for materials on a die-cutting machine, including a die-cutting machine body (1), characterized in that, On the die-cutting machine body (1), there are a die-cutting upper plate (2), a die-cutting stabilizing rod (3) and a die-cutting bottom plate (20). A die-cutting tool set (19) is provided at the bottom of the die-cutting upper plate (2). An auxiliary rod (7) is movably installed on the open side of the die-cutting machine body (1). Two clamping rods (12) are movably installed on the side of the auxiliary rod (7) close to the die-cutting machine body (1). On both sides of the top of the die-cutting bottom plate (20), first moving rods (23) are movably installed. An auxiliary mechanism is provided on the first moving rods (23). A connecting piece (25) is movably installed on the side of the top of the die-cutting bottom plate (20) far from the auxiliary rod (7). A rotating rod (26) is movably installed inside the connecting piece (25).
2. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, characterized in that, Fixed rods (4) are installed on both sides of the die-cutting machine body (1). A first slot (9) is opened on the side of the fixed rod (4) far from the die-cutting machine body (1). A lead screw (10) is rotatably installed inside the first slot (9). A first rotating motor (8) is installed on the top of the fixed rod (4). The output end of the first rotating motor (8) movably penetrates through the top of the fixed rod (4) and is connected to the lead screw (10). A lifting block (11) is slidably installed inside the first slot (9). The lead screw (10) threadedly penetrates through the lifting block (11). A connecting rod (5) is installed on the side of the lifting block (11) far from the fixed rod (4). Both ends of the auxiliary rod (7) are movably connected to connecting blocks (6). The side of the connecting block (6) close to the connecting rod (5) is movably connected to the connecting rod (5).
3. The visual inspection mechanism for materials on a die-cutting machine according to claim 2, wherein, An electric telescopic rod (16) is embedded and installed at one end of the connecting rod (5) close to the connecting block (6). The telescopic end of the electric telescopic rod (16) is connected to the connecting block (6). A second rotating motor (15) is embedded and installed on the side of the connecting block (6) close to the auxiliary rod (7). The output end of the second rotating motor (15) is connected to the auxiliary rod (7).
4. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, characterized in that, A displacement chute (17) is opened on the side of the auxiliary rod (7) close to the die-cutting machine body (1). One end of the clamping rod (12) close to the displacement chute (17) is connected to a displacement electric slider (18). The displacement electric slider (18) is slidably installed inside the displacement chute (17).
5. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, characterized in that, A nozzle (13) is embedded and installed on the side of the clamping rod (12) close to the die-cutting stabilizing rod (3). A connecting head (14) is installed on the top of the clamping rod (12).
6. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, characterized in that, On the side where the two first moving rods (23) are away from each other, they are both movably connected to first fixing blocks (21). A first electric lifting rod (29) is embedded and installed at the position of the first fixing block (21) on the top of the die-cutting bottom plate (20). The lifting end of the first electric lifting rod (29) faces upward. The lifting end of the first electric lifting rod (29) is connected to the bottom of the first fixing block (21). A first electric extension rod (28) is embedded and installed on the side of the first fixing block (21) far from the first moving rod (23). The extending end of the first electric extension rod (28) movably penetrates through the first fixing block (21) and is connected to the first moving rod (23).
7. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, characterized in that, The auxiliary mechanism includes a bolt sleeve (22) and a first laser distance sensor (30). A plurality of first laser distance sensors (30) are embedded on one side of two first moving rods (23) close to each other. Two driving motors (40) are embedded at the top of the first moving rod (23). The output end of the driving motor (40) faces upward, and the output end of the driving motor (40) is connected to the bolt sleeve (22).
8. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, characterized in that, Auxiliary rings (27) are provided on the outer sides of the die-cutting stabilizing rods (3). First chutes (32) are formed on the inner walls of the auxiliary rings (27). A rotating ring (31) is movably installed at the inner wall of the auxiliary ring (27). A first electric slider (33) is installed at a position of the rotating ring (31) close to the first chute (32). The first electric slider (33) is slidably installed inside the first chute (32).
9. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, wherein One side of the connecting piece (25) away from the auxiliary rod (7) is movably connected to a second fixing block (24). A second electric lifting rod (35) is embedded at the top of the die-cutting bottom plate (20) close to the second fixing block (24). The lifting end of the second electric lifting rod (35) faces upward, and the lifting end of the second electric lifting rod (35) is connected to the top of the second fixing block (24). A second electric extension rod (34) is embedded in the second fixing block (24). The extending end of the second electric extension rod (34) movably penetrates the second fixing block (24), and the extending end of the second electric extension rod (34) is connected to the connecting piece (25).
10. The visual inspection mechanism for materials on a die-cutting machine according to claim 1, wherein, The rotating rod (26) is rotatably installed inside the connecting piece (25), and the end wall of the connecting piece (25) close to the rotating rod (26) is connected to the rotating rod (26) through an electric rotating shaft. A second slot (38) is formed inside the rotating rod (26). A connecting hole (37) is formed at the top of the rotating rod (26). The connecting hole (37) communicates with the second slot (38). A plurality of second laser distance sensors (36) are installed at the top of the rotating rod (26). An air outlet groove (39) is formed on one side of the rotating rod (26) away from the connecting piece (25). The air outlet groove (39) communicates with the second slot (38).
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