An integrated cutting and grinding device for copper clad laminate production and processing.
By designing an integrated cutting and grinding device for copper clad laminate production and processing, and adopting a motor drive and dust collection system, the problems of low efficiency and fine particulate pollution caused by manual pushing in the existing technology have been solved, realizing automated cutting and grinding and environmental protection.
Patent Information
- Application Number
- CN202311169681.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-12
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2043-09-12
AI Technical Summary
Existing copper clad laminate cutting equipment requires manual pushing during cutting, which is inefficient and poses safety hazards. Furthermore, the fine particles generated during cutting, if not properly treated, can affect the health of workers.
A cutting and grinding integrated device for copper clad laminate production and processing was designed. It adopts a moving device, a gripper system and a dust collection system. The device is driven by a motor to achieve automated cutting and grinding, and uses an air pump and a water circulation system to collect and process cutting debris.
It has enabled automated cutting and polishing of copper-clad laminates, improving production efficiency, ensuring operational safety, reducing the dispersion of fine particles, and protecting workers' health.
Smart Images

Figure CN117226913B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of copper clad laminate production technology, specifically to an integrated cutting and grinding device for copper clad laminate production and processing. Background Technology
[0002] Copper-clad laminate (CCL) is a crucial basic material in printed circuit boards (PCBs). Technicians perform drilling, machining, copper plating, and etching processes on CCL according to requirements to obtain PCBs with different functions and forms. These PCBs can be single-sided, double-sided, or multi-layered. CCL plays a vital role in supporting, insulating, and interconnecting PCBs, and it directly affects the characteristic impedance, energy loss, and transmission speed of signals in the circuit. Therefore, the technology and quality of CCL determine the quality, performance, stability, reliability, and manufacturing cost of PCBs. Cutting and polishing are among the main manufacturing processes for CCL.
[0003] For example, patent number CN210704001U discloses an integrated device for cutting and polishing copper-clad laminates. This utility model has a polishing device fixedly installed behind the circular cutting blade of an existing copper-clad laminate cutting device along the copper-clad laminate transport direction. The polishing device includes a polishing block and a scraper. The polishing block is perpendicular to the copper-clad laminate transport track and is located directly behind the circular cutting blade. The thickness of the polishing block is slightly greater than the thickness of the circular cutting blade. An upper scraper and a lower scraper are provided on both sides of the polishing block. The upper scraper and the lower scraper are parallel, and the distance between the upper scraper and the lower scraper is just enough to accommodate the thickness of the copper-clad laminate. This utility model has a simple and reasonable structure, is easy to operate, and realizes the polishing and scraping process at the same time as cutting. It has high work efficiency, ensures that the processed copper-clad laminate has no burrs or cutting debris on the edge, eliminates the need for a polishing machine and an edge scraping machine, and saves processing costs.
[0004] In the process of developing this application, the following problems were found with the technology: the device cuts and fixes the copper-clad laminate by two clamping members under the fixed crossbeam. However, in order to ensure that the copper-clad laminate does not deviate during cutting, the clamping force is very large. However, the device does not have a design to push the copper-clad laminate for cutting. Manual pushing is inefficient and dangerous. In addition, the cutting of the copper-clad laminate will generate a lot of fine particles. If they are not treated, they will affect the health of workers in the production workshop. Therefore, the above-mentioned parts can be designed, and an integrated cutting and grinding device for copper-clad laminate production and processing is proposed. Summary of the Invention
[0005] The purpose of this invention is to provide an integrated cutting and grinding device for copper clad laminate production and processing in order to solve the problems mentioned above.
[0006] The technical solution adopted in this invention is as follows: A cutting and grinding integrated device for copper clad laminate production and processing includes a base plate, a support platform fixedly installed on the top of the base plate, a third slider and a second slider slidably installed on the left and right sides of the top of the support platform respectively, a connecting plate fixedly installed on the top of the second slider, two corner plates fixedly installed on the top of the connecting plate, and a cutting table fixedly installed in the middle of the top of the support platform.
[0007] A side plate is fixedly installed on the top of the third slider, and a movable plate is slidably installed on the right side of the side plate. A dust cover is fixedly installed on the right end of the movable plate, and a cutting wheel is provided at the bottom of the dust cover. A cutting groove is opened on the top left side of the cutting table below the dust cover. An L-shaped bracket is fixedly installed behind the top left side of the support platform, and a grinding roller is rotatably installed on the L-shaped bracket above the cutting groove.
[0008] The bottom of the cutting groove has multiple sets of air holes. An air pump is fixedly installed at the bottom of the support platform, and the air pump's suction end is connected to the cutting groove through a pipe. A water tank is fixedly installed at the top of the base plate. A filter plate is fixedly connected to the left side of the water tank. A collection cylinder is fixedly connected to the left side of the filter plate. A nozzle is installed inside the collection cylinder, and the nozzle is connected to the air pump's exhaust end through a pipe.
[0009] In a preferred embodiment of the invention, a moving device is fixedly installed at each of the four bottom ends of the base plate, a support rod is fixedly installed on the outer bottom of the moving device, and a roller rod is slidably installed on the inner bottom of the moving device.
[0010] In a preferred embodiment of the invention, a rubber anti-slip pad is fixedly installed at the bottom of the support rod, a roller is rotatably installed at the bottom of the roller rod, a first groove adapted to the roller rod is opened at the bottom of the moving device, and a first lead screw is threadedly connected to the top of the roller rod, and the rotational power of the first lead screw comes from a first motor inside the moving device.
[0011] In a preferred embodiment of the invention, a second sliding groove adapted to the second slider is provided on the top right side of the support platform. The second slider is threadedly connected to a second lead screw, and the rotational power of the second lead screw comes from a second motor inside the support platform.
[0012] In a preferred embodiment of the invention, a No. 3 sliding groove adapted to the No. 3 slider is provided on the top right side of the support platform. The No. 3 slider is threadedly connected to a No. 3 lead screw, and the rotational power of the No. 3 lead screw comes from a No. 3 motor inside the support platform.
[0013] In a preferred embodiment of the invention, an extension block is slidably mounted on the left side of the corner plate, a clamping seat is fixedly mounted on the left side of the extension block, a linkage block is slidably mounted on the top of the clamping seat, a gripper is slidably mounted on the upper left side of the clamping seat, a gripper is fixedly mounted on the lower left side of the clamping seat, and the upper gripper is fixedly connected to the linkage block.
[0014] In a preferred embodiment of the invention, a fourth sliding groove adapted to the extension block is provided on the left side of the corner plate, and a first electric telescopic rod is fixedly installed in the inner cavity of the corner plate, with the extension end of the first electric telescopic rod being fixedly connected to the extension block.
[0015] In a preferred embodiment of the invention, the top of the clamp is provided with a fifth sliding groove adapted to the linkage block, a second electric telescopic rod is fixedly installed inside the extension block, a U-shaped rod is fixedly installed above the extension end of the second electric telescopic rod, the sliding end of the linkage block is provided with an oblique sliding groove adapted to the U-shaped rod, and the U-shaped rod is slidably installed on the oblique sliding groove, and the top of the lower clamp is on the same horizontal line as the top of the cutting table.
[0016] In a preferred embodiment of the invention, the side plate is provided with a No. 6 sliding groove adapted to the movable plate, and the movable plate is threadedly connected with a No. 6 lead screw, the rotational power of which comes from a No. 4 motor fixedly installed on the top of the side plate.
[0017] In a preferred embodiment of the invention, the water preparation cylinder, the filter plate, and the collection cylinder are all filled with water, the filter plate is provided with filter cloth, an exhaust pipe is fixedly installed on the top of the water preparation cylinder, and a drain pipe with an on / off valve is fixedly installed on the bottom of the collection cylinder.
[0018] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0019] 1. In this invention, by setting up a moving device, when it is necessary to move the device, the No. 1 motor in the moving device is started, which drives the No. 1 lead screw to rotate, pushing the roller rod downward until the roller at the bottom of the roller rod contacts the ground. At this time, the device can be moved. When it is moved into place, the No. 1 motor is started to drive the No. 1 lead screw to rotate in the opposite direction, which can retract the roller rod upward. At this time, the support rod contacts the ground, and it can be fixed.
[0020] 2. In this invention, by setting grippers, when it is necessary to fix the copper-clad laminate to be cut, the copper-clad laminate can be placed on the cutting table, and the right side of the copper-clad laminate can fall on the gripper below. Then, the second electric telescopic rod is activated to retract, driving the U-shaped rod to move to the right, which forces the U-shaped rod to drive the linkage block to move downward. Since the upper gripper is fixedly connected to the linkage block, the upper gripper will move closer to the lower gripper, thereby clamping the copper-clad laminate and preparing it for cutting and polishing. In addition, since the extension block is slidably installed on the left side of the corner plate, by activating the extension or retraction of the first electric telescopic rod, the gripper holding the copper-clad laminate can be moved left and right, thereby adjusting the cutting position.
[0021] 3. In this invention, by setting a third slider, after the gripper has clamped and fixed the copper-clad laminate placed on the cutting table, the first electric telescopic rod is activated to drive the gripper to move the copper-clad laminate left and right, so that the cutting position is located below the cutting wheel at the bottom of the dust cover. Then, the cutting wheel is started to rotate, and the fourth motor is started to drive the sixth lead screw to rotate, so that the moving plate moves downward, thereby driving the cutting wheel to approach the copper-clad laminate for cutting. Then, the third motor is started to drive the third lead screw to rotate, which can drive the third slider to move back and forth, thereby causing the cutting wheel to move back and forth on the copper-clad laminate for cutting. After the cutting is completed, the second motor is started to drive the second lead screw to rotate, thereby causing the second slider to move backward, and the copper-clad laminate held by the gripper also moves backward. At this time, the burrs cut on the copper-clad laminate will encounter the grinding roller for grinding, thus completing the cutting and grinding work.
[0022] 4. In this invention, by setting a cutting groove, since the dust hood covers the cutting groove during cutting, the jumping debris from the cutting wheel cutting the copper-clad laminate will be blocked by the dust hood and collected in the cutting groove. At this time, the air pump is started to draw air into the cutting groove through the pipeline, sucking in the fine dust and discharging it into the collection cylinder through the pipeline. Since both the collection cylinder and the water tank are filled with water, the fine dust will mix with the water when discharged through the nozzle, and the heavier fine dust will also settle down. The gas passes through the filter cloth in the filter plate and is discharged through the exhaust pipe at the top of the water tank. Here, due to the resistance of the filter cloth, it will also force the dust to settle down. This prevents fine dust from following the gas to the water tank for discharge, further preventing fine dust from scattering in the workshop. When the cutting work is completed and it is necessary to remove the fine dust from the collection tank, place a collection device or external pipe on the drain pipe at the bottom of the collection tank, and open the valve to discharge the wastewater in the collection tank. It should be noted that when the collection tank is drained, the water in the water tank will pass through the filter cloth to replenish the collection tank. This process forms a backwash of the filter cloth, which can activate the anti-clogging function of the filter cloth. After the drainage is completed, water can be added back to the water tank. Attached Figure Description
[0023] Figure 1 This is a perspective view of the present invention;
[0024] Figure 2 This is a plan view of the present invention;
[0025] Figure 3 This is a cross-sectional view of the mobile device in this invention;
[0026] Figure 4 This is a cross-sectional view of the corner plate in this invention;
[0027] Figure 5 This is a cross-sectional view of the water preparation cylinder, filter plate, and collection cylinder in this invention.
[0028] The markings in the diagram are: 1-base plate, 2-moving device, 3-support rod, 4-roller rod, 5-lead screw No. 1, 6-support platform, 7-slider No. 2, 8-slider No. 3, 9-lead screw No. 2, 10-lead screw No. 3, 11-connecting plate, 12-corner plate, 13-cutting table, 14-extension block, 15-electric telescopic rod No. 1, 16-clamp seat, 17-linkage block, 18-gripper, 19-electric telescopic rod No. 2, 20-U-shaped rod, 21-slanted slide, 22-side plate, 23-moving plate, 24-lead screw No. 6, 25-cutting groove, 26-dust hood, 27-L-shaped bracket, 28-grinding roller, 29-air pump, 30-water tank, 31-filter plate, 32-collection cylinder, 33-filter cloth, 34-exhaust pipe, 35-nozzle. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0030] The following will combine Figures 1-5 A detailed description is provided of an integrated cutting and grinding device for copper-clad laminate production and processing according to an embodiment of the present invention.
[0031] Example:
[0032] Reference Figure 1 , 23. A cutting and grinding integrated device for copper clad laminate production and processing, comprising a base plate 1, with a moving device 2 fixedly installed at each of the four ends of the bottom of the base plate 1, a support rod 3 fixedly installed on the outer side of the bottom of the moving device 2, a roller rod 4 slidably installed on the inner side of the bottom of the moving device 2, a rubber anti-slip pad fixedly installed on the bottom of the support rod 3, a roller rotatably installed on the bottom of the roller rod 4, a first sliding groove adapted to the roller rod 4 being opened on the bottom of the moving device 2, and a first lead screw 5 threadedly connected to the top of the roller rod 4, the rotation power of the first lead screw 5 being derived from a first motor inside the moving device 2, and a support platform 6 fixedly installed on the top of the base plate 1.
[0033] By setting up the moving device 2, when it is necessary to move this device, start the No. 1 motor in the moving device 2 to drive the No. 1 lead screw 5 to rotate, and push the roller rod 4 downward until the roller at the bottom of the roller rod 4 contacts the ground. At this time, the device can be moved. When it is moved into place, start the No. 1 motor to drive the No. 1 lead screw 5 to rotate in the opposite direction, and the roller rod 4 can be retracted upward. At this time, the support rod 3 contacts the ground and can be fixed.
[0034] Reference Figure 1 , 2 4. Sliding sliders 8 (number 3) and 7 (number 2) are respectively mounted on the left and right sides of the top of the support platform 6. A second groove, matching the second slider 7, is provided on the right side of the top of the support platform 6. A second lead screw 9 is threaded onto the second slider 7, and the rotational power of the second lead screw 9 comes from a second motor inside the support platform 6. A third groove, matching the third slider 8, is provided on the right side of the top of the support platform 6. A third lead screw 10 is threaded onto the third slider 8, and the rotational power of the third lead screw 10 comes from a third motor inside the support platform 6. A connecting plate 11 is fixedly mounted on the top of the second slider 7. Two corner plates 12 are fixedly mounted on the top of the connecting plate 11. A cutting table 13 is fixedly mounted in the middle of the top of the support platform 6. An extension block 14 is slidably mounted on the left side of the corner plate 12. A fourth groove, matching the extension block 14, is provided on the left side of the corner plate 12. The inner cavity of the corner plate 12... A first electric telescopic rod 15 is fixedly installed, and the extended end of the first electric telescopic rod 15 is fixedly connected to the extension block 14. A clamping seat 16 is fixedly installed on the left side of the extension block 14. A linkage block 17 is slidably installed on the top of the clamping seat 16. A gripper 18 is slidably installed on the upper left side of the clamping seat 16. A gripper 18 is fixedly installed on the lower left side of the clamping seat 16, and the upper gripper 18 is fixedly connected to the linkage block 17. A fifth sliding groove adapted to the linkage block 17 is opened on the top of the clamping seat 16. A second electric telescopic rod 19 is fixedly installed inside the extension block 14. A U-shaped rod 20 is fixedly installed on the upper part of the extended end of the second electric telescopic rod 19. An oblique sliding groove 21 adapted to the U-shaped rod 20 is opened on the sliding end of the linkage block 17, and the U-shaped rod 20 is slidably installed on the oblique sliding groove 21. The top of the lower gripper 18 is on the same horizontal line as the top of the cutting table 13.
[0035] By setting the gripper 18, when it is necessary to fix the copper-clad laminate to be cut, the copper-clad laminate can be placed on the cutting table 13, and the right side of the copper-clad laminate can fall on the gripper 18 below. Then, the second electric telescopic rod 19 is activated to retract, driving the U-shaped rod 20 to move to the right, which forces the U-shaped rod 20 to drive the linkage block 17 to move downward. Since the upper gripper 18 is fixedly connected to the linkage block 17, the upper gripper 18 will move closer to the lower gripper 18, thereby clamping the copper-clad laminate and preparing it for cutting and polishing. In addition, since the extension block 14 is slidably installed on the left side of the corner plate 12, by activating the extension or retraction of the first electric telescopic rod 15, the gripper 18 holding the copper-clad laminate can be moved left and right, thereby adjusting the cutting position.
[0036] Reference Figure 1 , 2 A side plate 22 is fixedly installed on the top of the third slider 8. A movable plate 23 is slidably installed on the right side of the side plate 22. A sixth groove is opened on the side plate 22 to match the movable plate 23. A sixth lead screw 24 is threadedly connected to the movable plate 23. The rotation power of the sixth lead screw 24 comes from the fourth motor fixedly installed on the top of the side plate 22. A dust cover 26 is fixedly installed on the right end of the movable plate 23. A cutting wheel is set at the bottom of the dust cover 26. A cutting groove 25 is opened on the top left side of the cutting table 13 below the dust cover 26. An L-shaped bracket 27 is fixedly installed on the rear left side of the top of the support 6. A grinding roller 28 is rotatably installed on the L-shaped bracket 27 above the cutting groove 25.
[0037] By setting slider 8, once the gripper 18 has clamped and fixed the copper-clad laminate placed on the cutting table 13, the electric telescopic rod 15 is activated to move the gripper 18 left and right, thus positioning the cutting position below the cutting wheel at the bottom of the dust cover 26. Then, the cutting wheel is started to rotate, and motor 4 is activated to drive lead screw 24 to rotate, causing the moving plate 23 to move downward, thereby moving the cutting wheel closer to the copper-clad laminate for cutting. Then, motor 3 is activated to drive lead screw 10 to rotate, which can move slider 8 back and forth, thus moving the cutting wheel back and forth on the copper-clad laminate for cutting. After cutting, motor 2 is activated to drive lead screw 9 to rotate, thus moving slider 7 backward, and the copper-clad laminate held by gripper 18 also moves backward. At this time, the rough edges of the cut copper-clad laminate will encounter the grinding roller 28 for grinding, thereby completing the cutting and grinding work.
[0038] Reference Figure 1 , 25. The bottom of the cutting groove 25 has multiple sets of air holes. The bottom of the support 6 is fixedly installed with an air pump 29, and the air pump 29 is connected to the cutting groove 25 through a pipe. The top of the base plate 1 is fixedly installed with a water tank 30. The left side of the water tank 30 is fixedly connected with a filter plate 31. The left side of the filter plate 31 is fixedly connected with a collection cylinder 32. The collection cylinder 32 is equipped with a nozzle 35, and the nozzle 35 is connected to the exhaust end of the air pump 29 through a pipe. The water tank 30, the filter plate 31 and the collection cylinder 32 are all filled with water. The filter plate 31 is equipped with a filter cloth 33. The top of the water tank 30 is fixedly installed with an exhaust pipe 34, and the bottom of the collection cylinder 32 is fixedly installed with a drain pipe with an on / off valve.
[0039] By setting the cutting groove 25, since the dust cover 26 covers the cutting groove 25 during cutting, when the cutting wheel cuts the copper-clad laminate, the jumping debris will be blocked by the dust cover 26 and fall into the cutting groove 25 for collection. At this time, the air pump 29 is started to draw air into the cutting groove 25 through the pipeline, sucking in the fine dust and discharging it into the collection cylinder 32 through the pipeline. Since both the collection cylinder 32 and the water tank 30 are filled with water, the fine dust will mix with the water when discharged through the nozzle 35, and the heavier fine dust will also settle down. The gas passes through the filter cloth 33 in the filter plate 31 and is discharged through the exhaust pipe 34 at the top of the water tank 30. Here, due to the resistance of the filter cloth 33, it will also be discharged. This prevents fine dust from following the gas to the water tank 30 for discharge, further preventing fine dust from scattering in the workshop. When the cutting work is completed and it is necessary to remove the fine dust from the collection tank 32, a collection device or external pipe is placed on the drain pipe at the bottom of the collection tank 32, and the valve is opened to discharge the wastewater in the collection tank 32. It should be noted that when the collection tank 32 is drained, the water in the water tank 30 will pass through the filter cloth 33 to replenish the collection tank 32. This process forms a backwash of the filter cloth 33, which can activate the anti-clogging function of the filter cloth 33. After the drainage is completed, water can be added back into the water tank 30.
[0040] The implementation principle of the integrated cutting and grinding device for copper-clad laminate production and processing according to this application is as follows:
[0041] When it is necessary to move this device, start the No. 1 motor in the moving device 2 to drive the No. 1 lead screw 5 to rotate, and push the roller rod 4 downward until the roller at the bottom of the roller rod 4 contacts the ground. At this time, the device can be moved. When it is in place, start the No. 1 motor to drive the No. 1 lead screw 5 to rotate in the opposite direction, and the roller rod 4 can be retracted upward. At this time, the support rod 3 contacts the ground and can be fixed.
[0042] When it is necessary to fix the copper-clad laminate for cutting, the copper-clad laminate can be placed on the cutting table 13, with the right side of the copper-clad laminate resting on the lower clamp 18. Then, the second electric telescopic rod 19 is activated to retract, causing the U-shaped rod 20 to move to the right. This forces the U-shaped rod 20 to move the linkage block 17 downward. Since the upper clamp 18 is fixedly connected to the linkage block 17, the upper clamp 18 will move closer to the lower clamp 18, thereby clamping the copper-clad laminate and preparing it for cutting and polishing. In addition, since the extension block 14 is slidably installed on the left side of the corner plate 12, by activating the extension or retraction of the first electric telescopic rod 15, the clamp 18 holding the copper-clad laminate can be moved left and right, thereby adjusting the cutting position.
[0043] After the gripper 18 clamps and fixes the copper-clad laminate placed on the cutting table 13, the first electric telescopic rod 15 is activated to drive the gripper 18 to move the copper-clad laminate left and right, so that the cutting position is below the cutting wheel at the bottom of the dust cover 26. Then the cutting wheel is started to rotate, and the fourth motor is started to drive the sixth lead screw 24 to rotate, so that the moving plate 23 moves downward, thereby driving the cutting wheel to approach the copper-clad laminate for cutting. Then the third motor is started to drive the third lead screw 10 to rotate, which can drive the third slider 8 to move back and forth, thereby causing the cutting wheel to move back and forth on the copper-clad laminate for cutting. After the cutting is completed, the second motor is started to drive the second lead screw 9 to rotate, thereby causing the second slider 7 to move backward. The copper-clad laminate held by the gripper 18 also moves backward. At this time, the burrs cut by the copper-clad laminate will meet the grinding roller 28 for grinding, thus completing the cutting and grinding work.
[0044] Since the dust hood 26 covers the cutting groove 25 during cutting, the jumping debris from the cutting wheel cutting the copper-clad laminate is blocked by the dust hood 26 and collected in the cutting groove 25. At this time, the air pump 29 is started to draw air into the cutting groove 25 through the pipeline, sucking in the fine dust and discharging it into the collection cylinder 32 through the pipeline. Since both the collection cylinder 32 and the water tank 30 are filled with water, the fine dust will mix with the water when discharged through the nozzle 35, and the heavier fine dust will settle down. The gas passes through the filter cloth 33 in the filter plate 31 and is discharged through the exhaust pipe 34 at the top of the water tank 30. Here, the filter cloth 33 also forces the fine dust to pass through. The wastewater follows the gas to the water tank 30 and is discharged, further preventing fine dust from scattering in the workshop. When the cutting work is completed and it is necessary to remove the fine dust from the collection tank 32, a collection device or external pipe is placed on the drain pipe at the bottom of the collection tank 32, and the valve is opened to discharge the wastewater in the collection tank 32. It should be noted that when the collection tank 32 is discharged, the water in the water tank 30 will pass through the filter cloth 33 to replenish the collection tank 32. This process forms a backwash of the filter cloth 33, which can activate the anti-clogging function of the filter cloth 33. After the discharge is completed, water can be added back into the water tank 30.
[0045] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A cutting and grinding integrated device for copper clad laminate production and processing, comprising a base plate (1), characterized in that: A support platform (6) is fixedly installed on the top of the base plate (1). A third slider (8) and a second slider (7) are slidably installed on the left and right sides of the top of the support platform (6). A connecting plate (11) is fixedly installed on the top of the second slider (7). Two corner plates (12) are fixedly installed on the top of the connecting plate (11). A cutting table (13) is fixedly installed in the middle of the top of the support platform (6). A side plate (22) is fixedly installed on the top of the third slider (8). A movable plate (23) is slidably installed on the right side of the side plate (22). A dust cover (26) is fixedly installed on the right end of the movable plate (23). A cutting wheel is provided at the bottom of the dust cover (26). A cutting groove (25) is opened on the top left side of the cutting table (13) below the dust cover (26). An L-shaped bracket (27) is fixedly installed behind the top left side of the support platform (6). A grinding roller (28) is rotatably installed on the L-shaped bracket (27) above the cutting groove (25). The bottom of the cutting groove (25) has multiple sets of air holes. An air pump (29) is fixedly installed at the bottom of the support (6), and the air pump (29) is connected to the cutting groove (25) through a pipe. A water tank (30) is fixedly installed at the top of the base plate (1). A filter plate (31) is fixedly connected to the left side of the water tank (30). A collection cylinder (32) is fixedly connected to the left side of the filter plate (31). A nozzle (35) is installed inside the collection cylinder (32), and the nozzle (35) is connected to the exhaust end of the air pump (29) through a pipe. An extension block (14) is slidably installed on the left side of the corner plate (12). A clamp (16) is fixedly installed on the left side of the extension block (14). A linkage block (1) is slidably installed on the top of the clamp (16). 7) A gripper (18) is slidably installed on the upper left side of the clamping seat (16), and a gripper (18) is fixedly installed on the lower left side of the clamping seat (16). The upper gripper (18) is fixedly connected to the linkage block (17). The top of the clamping seat (16) is provided with a No. 5 sliding groove that matches the linkage block (17). A No. 2 electric telescopic rod (19) is fixedly installed inside the extension block (14). A U-shaped rod (20) is fixedly installed above the extension end of the No. 2 electric telescopic rod (19). The sliding end of the linkage block (17) is provided with an oblique sliding groove (21) that matches the U-shaped rod (20). The U-shaped rod (20) is slidably installed on the oblique sliding groove (21). The top of the lower gripper (18) is on the same horizontal line as the top of the cutting table (13).
2. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 1, characterized in that: The bottom of the base plate (1) is fixedly installed with a moving device (2) at each of the four ends. A support rod (3) is fixedly installed on the outer side of the bottom of the moving device (2). A roller rod (4) is slidably installed on the inner side of the bottom of the moving device (2).
3. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 2, characterized in that: The bottom of the support rod (3) is fixedly installed with a rubber anti-slip pad, the bottom of the roller rod (4) is rotatably installed with a roller, the bottom of the moving device (2) is provided with a first sliding groove that is compatible with the roller rod (4), and the top of the roller rod (4) is threadedly connected with a first lead screw (5), and the rotation power of the first lead screw (5) comes from the first motor in the moving device (2).
4. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 1, characterized in that: The top right side of the support platform (6) is provided with a second sliding groove that is compatible with the second slider (7). The second slider (7) is threadedly connected to the second lead screw (9), and the rotation power of the second lead screw (9) comes from the second motor inside the support platform (6).
5. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 1, characterized in that: The top right side of the support platform (6) is provided with a No. 3 sliding groove that is compatible with the No. 3 slider (8). The No. 3 slider (8) is threadedly connected to the No. 3 lead screw (10), and the rotation power of the No. 3 lead screw (10) comes from the No. 3 motor inside the support platform (6).
6. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 1, characterized in that: The corner plate (12) has a fourth sliding groove on its left side that is compatible with the extension block (14). The inner cavity of the corner plate (12) is fixedly installed with an electric telescopic rod (15), and the extension end of the electric telescopic rod (15) is fixedly connected to the extension block (14).
7. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 1, characterized in that: The side plate (22) is provided with a No. 6 sliding groove that is compatible with the movable plate (23). The movable plate (23) is threaded with a No. 6 lead screw (24). The rotational power of the No. 6 lead screw (24) comes from a No. 4 motor fixedly installed on the top of the side plate (22).
8. The integrated cutting and grinding device for copper-clad laminate production and processing as described in claim 1, characterized in that: The water preparation cylinder (30), filter plate (31) and collection cylinder (32) are all filled with water. The filter plate (31) is provided with filter cloth (33). The top of the water preparation cylinder (30) is fixedly installed with an exhaust pipe (34). The bottom of the collection cylinder (32) is fixedly installed with a drain pipe with an opening and closing valve.
Citation Information
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