A cutting device and method for producing high-strength aluminum plates
By introducing push plates, limiting plates and flip components into the cutting device, the problem of difficult debris collection during the cutting process of high-strength aluminum plates is solved, automatic debris collection and processing is realized, and production efficiency and equipment cleanliness are improved.
Patent Information
- Application Number
- CN202510377425.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-03-28
AI Technical Summary
During the cutting of high-strength aluminum plates, debris on the surface of the aluminum plates are difficult to effectively collect and process, resulting in low production efficiency and equipment contamination.
A cutting device including push plate, limit plate and flip assembly is designed. The station connection is realized through push plate. The limit plate plays a limit and debris collection role during the push plate. The flip assembly uses gravity to realize the debris falling and collecting by itself.
Automatic collection and treatment of debris on the surface of aluminum plates is realized, production efficiency is improved, equipment pollution is reduced, and process flow is simplified.
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Figure CN119870575B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of cutting equipment, and specifically relates to a cutting device and method for the production of high-strength aluminum plates. Background Art
[0002] An aluminum plate refers to a plate-shaped material made of aluminum or aluminum alloy materials. Or it is a plate-shaped aluminum product manufactured by processes such as heating, rolling, and straightening an aluminum billet. Aluminum plates are also widely used. After the aluminum plate is cast, it needs to be cut into aluminum segments by a cutting machine.
[0003] During the cutting process of the aluminum plate, high-temperature metal cutting chips will be generated. When the metal plate is cut, the metal cutting chips will fly, and most of the chips generated after cutting will deposit on the surface of the aluminum plate. And high-strength aluminum plates, that is, thickened plates, are relatively heavy, and it is difficult to collect and process the chips. How to collect and process the chips on the surface of the thickened aluminum plate is a problem that needs to be considered in the present invention. Summary of the Invention
[0004] Aiming at the deficiencies of the above-mentioned prior art, the technical problem to be solved by the embodiments of the present invention is to provide a cutting device and method for the production of high-strength aluminum plates.
[0005] To solve the above technical problems, the present invention provides the following technical solutions: A cutting device for the production of high-strength aluminum plates, including a first support table, a cutting frame body, a cutting blade, a motor, a second telescopic member, and a mounting plate. The mounting plate is slidably installed on the cutting frame body, the motor is slidably installed on the mounting plate, the output end of the motor is connected to the cutting blade, the first support table is located on one side of the cutting blade, and further includes a third support table, a fourth support table, and a flipping assembly. The third support table and the fourth support table are located on the other side of the cutting blade. The first support table is fixedly installed on a base, a support frame is installed on the base, the fourth support table is fixedly installed on the support frame, the third support table is rotatably installed on the support frame, a limiting plate is movably installed between the third support table and the fourth support table, one end of the limiting plate is fixedly installed with a rotating shaft, the rotating shaft is located in a fixed cylinder and is rotatably connected to the fixed cylinder, fixing plates are fixedly installed at both ends of the fixed cylinder, the fixing plates are slidably connected to the support frame, a fourth spring is connected between the fixed cylinder and the support frame, a third spring inclined towards the limiting plate is fixedly installed on the fourth support table, a first telescopic member is arranged on one side of the fourth support table, the output end of the first telescopic member is connected to a pushing plate, the flipping assembly is used to drive the third support table to rotate while driving the limiting plate to move up and down, the first telescopic member is used to push the aluminum plate on the fourth support table to the next working station through the pushing plate, the limiting plate is hollow, and a number of leakage holes are arranged on the side of the limiting plate facing the third support table.
[0006] As a further improvement: The flipping assembly includes a driving gear, a driven gear, and a rack. Driving gears are fixedly installed on both sides of the third support platform. Driven gears are rotatably installed on both sides of the support frame. A rack is arranged on the fixed plate. The driving gear is meshed with the driven gear, and the driven gear is meshed with the rack.
[0007] As a further improvement: The inner wall of the leakage hole is inclined towards the outside.
[0008] As a further improvement: It further includes a third telescopic member. The support frame is slidably installed on the base. A second support platform is arranged between the first support platform and the third support platform. One end of the third support platform is slidably connected to the second support platform. The output end of the second telescopic member is connected to the support frame.
[0009] As a further improvement: Clamping assemblies are installed at positions on the second support platform and the first support platform close to the cutting blade. The clamping assemblies are used for clamping the aluminum plate.
[0010] As a further improvement: The clamping assembly includes an installation frame, a first wedge block, and a second spring. The installation frame is installed on both sides of the first support platform and the second support platform. A first wedge block is slidably installed in the installation frame. A second spring is installed between the first wedge block and the bottom surface of the installation frame.
[0011] As a further improvement: Fixed seats are fixedly installed on both the first support platform and the second support platform. A telescopic rod is slidably installed on the fixed seat. The end of the telescopic rod away from the fixed seat is fixedly connected to the installation frame. A first spring is installed outside the telescopic rod. A second wedge block is fixedly installed at the bottom of the installation frame. A third wedge block is fixedly installed on the fixed seat. The inclination directions of the second wedge block and the third wedge block are the same. Side pressure rods are fixedly installed on both sides of the installation plate. The side pressure rods are intermittently connected to the installation frame. A fifth spring is connected between the end of the telescopic rod close to the fixed seat and the fixed seat.
[0012] The present invention also provides a cutting method for producing high-strength aluminum plates, which is realized by the cutting device for producing high-strength aluminum plates described above, and specifically includes:
[0013] Place one end of the thick aluminum plate on the first support platform, and push the thick aluminum plate until one end of the aluminum plate abuts against the limit plate;
[0014] Start the second telescopic member, lower the cutting blade to a specified height, start the motor and push the motor to move horizontally for cutting;
[0015] After cutting is completed, start the second telescopic member to drive the installation plate and the cutting blade away from the aluminum plate;
[0016] Start the flipping component. When the aluminum plate rotates to the horizontal position, start the first telescopic member, and under the action of the pushing plate, push the aluminum plate to the next working station.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: By providing a pushing plate, the connection between the cutting station and other stations can be realized. By providing a limiting plate, it can play a role of limiting and blocking during the advancement of the aluminum plate, and play a role of supporting and debris collection during flipping. By providing a flipping component, during the flipping process, the cutting debris can fall and be collected by its own gravity. Description of the Drawings
[0018] Figure 1 Schematic diagram of the overall structure of a cutting device for high-strength aluminum plate production Figure 1 ;
[0019] Figure 2 Schematic diagram of the support frame structure of a cutting device for high-strength aluminum plate production Figure 1 ;
[0020] Figure 3 Schematic diagram of the solar heating structure of a cutting device for high-strength aluminum plate production Figure 2 ;
[0021] Figure 4 Schematic diagram of the structure of the flipping component of a cutting device for high-strength aluminum plate production;
[0022] Figure 5 Schematic diagram of the structure of the limiting plate of a cutting device for high-strength aluminum plate production Figure 1 ;
[0023] Figure 6 Schematic diagram of the structure of the limiting plate of a cutting device for high-strength aluminum plate production Figure 2 ;
[0024] Figure 7 Schematic diagram of the cross-sectional structure of the limiting plate of a cutting device for high-strength aluminum plate production;
[0025] Figure 8 Schematic diagram of the structure of the cutting frame of a cutting device for high-strength aluminum plate production Figure 1 ;
[0026] Figure 9 Schematic diagram of the structure of the cutting frame of a cutting device for high-strength aluminum plate production Figure 2 ;
[0027] Figure 10 Schematic diagram of the structure of the side pressure rod of a cutting device for high-strength aluminum plate production;
[0028] Figure 11Schematic diagram of the clamping assembly structure of a cutting device for producing high-strength aluminum plates Figure 1 II;
[0029] Figure 12 Schematic diagram of the clamping assembly structure of a cutting device for producing high-strength aluminum plates Figure 2 ;
[0030] Figure 13 Schematic sectional view of the clamping assembly structure of a cutting device for producing high-strength aluminum plates Figure 1 ;
[0031] Figure 14 Schematic sectional view of the clamping assembly structure of a cutting device for producing high-strength aluminum plates Figure 2 ;
[0032] In the figure: 1. Base; 110. Moving groove; 2. Limiting plate; 3. First telescopic member; 4. Flipping assembly; 41. Driving gear; 42. Driven gear; 43. Rack; 44. Fixed plate; 5. Second telescopic member; 6. Mounting plate; 7. Clamping assembly; 71. Mounting frame; 72. First wedge block; 73. Fixed seat; 74. Second wedge block; 75. Third wedge block; 76. First spring; 77. Telescopic rod; 78. Accommodating groove; 79. Second spring; 8. Cutting blade; 9. Motor; 10. Side pressing rod; 100. Roller; 11. First support platform; 12. Second support platform; 13. Third support platform; 14. Fourth support platform; 15. Support frame; 16. Cutting frame body; 160. Limiting groove; 17. Support seat; 18. Third telescopic member; 19. Third spring; 20. Leakage hole; 21. Pushing plate; 22. Fixed cylinder; 23. Bracket; 24. Fourth spring; 25. Fixed frame; 26. Support leg. Detailed implementation manners
[0033] The technical solutions of the present application will be further described in detail below in conjunction with the detailed implementation manners.
[0034] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application and should not be construed as a limitation to the present application.
[0035] Please refer to Figures 1 to 14, in one embodiment, a cutting device for producing high-strength aluminum plates includes a first support table 11, a cutting frame 16, a cutting blade 8, a motor 9, a second telescopic member 5, and a mounting plate 6. The mounting plate 6 is slidably mounted on the cutting frame 16, and the motor 9 is slidably mounted on the mounting plate 6. The output end of the motor 9 is connected to the cutting blade 8. The first support table 11 is located on one side of the cutting blade 8. It further includes a third support table 13, a fourth support table 14, and a flipping assembly 4. The third support table 13 and the fourth support table 14 are located on the other side of the cutting blade 8. The first support table 11 is fixedly mounted on a base 1. A support frame 15 is mounted on the base 1. The fourth support table 14 is fixedly mounted on the support frame 15. The third support table 13 is rotatably mounted on the support frame 15. A limiting plate 2 is movably mounted between the third support table 13 and the fourth support table 14. One end of the limiting plate 2 is fixedly mounted with a rotating shaft. The rotating shaft is located inside a fixed cylinder 22 and is rotatably connected to the fixed cylinder 22. Fixing plates 44 are fixedly mounted at both ends of the fixed cylinder 22. The fixing plates 44 are slidably connected to the support frame 15. A fourth spring 24 is connected between the fixed cylinder 22 and the support frame 15. A third spring 19 inclined towards the limiting plate 2 is fixedly mounted on the fourth support table 14. A first telescopic member 3 is provided on one side of the fourth support table 14. The output end of the first telescopic member 3 is connected to a push plate 21. The flipping assembly 4 is used to drive the third support table 13 to rotate and at the same time drive the limiting plate 2 to move up and down. The first telescopic member 3 is used to push the thick aluminum plate on the fourth support table 14 to the next working station through the push plate 21. The limiting plate 2 is hollow. A number of leakage holes 20 are provided on the side of the limiting plate 2 facing the third support table 13.
[0036] In this embodiment, a bracket 23 is fixedly mounted between the limiting plate 2 and the rotating shaft. A support seat 17 is fixedly mounted on one side of the base 1. The first telescopic member 3 is fixedly mounted on one side of the support seat 17. A fixed frame 25 is fixedly mounted on the support frame 15. A fourth spring 24 is connected between the fixed frame 25 and the fixed cylinder 22. A limiting groove 160 is provided on the cutting frame 16. Both ends of the mounting plate 6 are located inside the limiting groove 160 and are slidably connected to the limiting groove 160. A discharge port (not shown in the figure) is further provided at the bottom of the limiting plate 2. When a cutting is completed, the limiting plate 2 descends to the lowest position, and the discharging of debris can be carried out.
[0037] When cutting, first place one end of the thick aluminum plate on the first support table 11, and push the thick aluminum plate until one end of the thick aluminum plate abuts against the limit plate 2. At this time, one end of the limit plate 2 is located below the third support table 13 and the fourth support table 14. Therefore, the limit plate 2 remains upright, that is, the thick aluminum plate is limited by the limit plate 2. When the thick aluminum plate reaches the position of the limit plate 2, at this time, start the second telescopic member 5, lower the cutting blade 8 to the specified height, and then start the motor 9 and push the motor 9 to move in the horizontal direction to complete the cutting work. When the cutting work is completed, start the second telescopic member 5 to drive the mounting plate 6 and the cutting blade 8 away from the thick aluminum plate. At this time, the cut thick aluminum plate is located on the third support table 13 and the second support table 12. At this time, start the flipping assembly 4. During the rotation, the debris on the surface of the thick aluminum plate will fall to the leakage hole 20 under the action of gravity, and then the debris is collected into the limit plate 2 through the leakage hole 20. When the fixed cylinder 22 moves above the gap between the third support table 13 and the fourth support table 14, the limit plate 2 rotates naturally. When rotating, it can rotate slowly under the supporting action of the third spring 19. When the thick aluminum plate rotates to the horizontal position, the flipping is completed. Then start the first telescopic member 3, and under the action of the push plate 21, push the thick aluminum plate to the next working station. During the pushing process, the debris on the surface of the thick aluminum plate will gradually fall into the limit plate 2 through the leakage hole 20, so that the collection of the debris on the surface of the thick aluminum plate can be automatically realized.
[0038] By providing the push plate 21, the connection between the cutting station and other stations can be realized. By providing the limit plate 2, it can play a role of limiting and blocking during the advancement of the thick aluminum plate, and play a role of supporting and debris collection during flipping. By providing the flipping assembly 4, during the flipping process, the cutting debris is made to fall and collect itself by gravity.
[0039] Please refer to Figures 4 to 6 In one embodiment, the flipping assembly 4 includes a driving gear 41, a driven gear 42, and a rack 43. The driving gears 41 are fixedly installed on both sides of the third support table 13. The driven gears 42 are rotatably installed on both sides of the support frame 15. The rack 43 is provided on the fixing plate 44. The driving gear 41 is meshed with the driven gear 42, and the driven gear 42 is meshed with the rack 43.
[0040] In this embodiment, fixed shafts (not shown in the figure) are fixedly installed on both sides of the third support table 13. The fixed shafts penetrate through the support frame 15 and are connected with the driving gears 41. The driving gears 41 can be driven by the motor 9.
[0041] When flipping is required, the driving gear 41 is started. The rotation of the driving gear 41 drives the rotation of the third support platform 13, and the thick aluminum plate disengages from the first wedge block 72. While the third support platform 13 rotates, it drives the fixed plate 44 and the limiting plate 2 to move upward together. Initially, the thick aluminum plate is in close contact with the limiting plate 2. When it rotates, due to the blocking effect of the limiting plate 2, the thick aluminum plate has a certain position movement. During the rotation process, the debris on the surface of the thick aluminum plate will fall to the leakage hole 20 under the action of gravity, and then the debris is collected into the limiting plate 2 through the leakage hole 20. When the fixed cylinder 22 moves above the gap between the third support platform 13 and the fourth support platform 14, the limiting plate 2 rotates naturally. When rotating, it can rotate slowly under the supporting action of the third spring 19. When the thick aluminum plate rotates to the horizontal position, the flipping is completed.
[0042] Please refer to Figure 7 , in one embodiment, the inner wall of the leakage hole 20 is inclined outward.
[0043] In this embodiment, the inner diameter of the inner wall of the leakage hole 20 gradually increases from the outside to the inside of the limiting plate 2. Through the above setting, when the debris enters the inside of the limiting plate 2 through the leakage hole 20, the situation where the debris detaches from the limiting plate 2 is not likely to occur during the process of the debris falling to the bottom. The above setting forms an inclined surface below the leakage hole 20, so as to facilitate the debris to enter the limiting plate 2.
[0044] Please refer to Figure 1 , in one embodiment, it further includes a third telescopic member 18. The support frame 15 is slidably installed on the base 1. A second support platform 12 is arranged between the first support platform 11 and the third support platform 13. One end of the third support platform 13 is slidably connected to the second support platform 12. The output end of the second telescopic member 5 is connected to the support frame 15.
[0045] In this embodiment, a third telescopic member 18 is fixedly installed on the base 1. A moving groove 110 is formed on the base 1. The support frame 15 is slidably installed in the moving groove 110. The second support platform 12 and the third support platform 13 are of an L-shaped structure. The first support platform 11 and the second support platform 12 are fixedly installed on the base 1 through support legs 26. A gap is arranged between the first support platform 11 and the second support platform 12, and the gap is equal to the thickness of the cutting blade 8.
[0046] When cutting, first obtain the width of the thick aluminum plate to be cut, then start the third telescopic member 18, adjust the position of the support frame 15 through the third telescopic member 18, so that the distance between the limiting plate 2 and the cutting blade 8 is the width to be cut. Then place one end of the thick aluminum plate on the first support table 11, push the thick aluminum plate. During the pushing process, one end of the thick aluminum plate contacts the first wedge block 72. During the continuous advancement of the thick aluminum plate, the first wedge block 72 is squeezed into the mounting frame 71. Under the action of the second spring 79 on both sides, the first wedge blocks 72 can limit the advancing direction of the thick aluminum plate. During the continuous advancement of the thick aluminum plate, the first wedge block 72 always presses against the side of the thick aluminum plate until one end of the thick aluminum plate abuts against the limiting plate 2.
[0047] Please refer to Figures 10 to 14 , in one embodiment, a clamping assembly 7 is installed at positions on the second support table 12 and the first support table 11 close to the cutting blade 8, and the clamping assembly 7 is used for clamping the thick aluminum plate.
[0048] In this embodiment, by providing the clamping assembly 7, the advancement of the thick aluminum plate can be clamped and the moving direction can be limited.
[0049] Please refer to Figures 10 to 14 , in one embodiment, the clamping assembly 7 includes a mounting frame 71, a first wedge block 72 and a second spring 79. The mounting frame 71 is installed on both sides of the first support table 11 and the second support table 12. The first wedge block 72 is slidably installed in the mounting frame 71, and a second spring 79 is installed between the first wedge block 72 and the bottom surface of the mounting frame 71.
[0050] In this embodiment, the side of the thick aluminum plate can be clamped by the first wedge block 72 and the first spring 76.
[0051] Please refer to Figures 10 to 14 , in one embodiment, fixing seats 73 are fixedly installed on both the first support table 11 and the second support table 12. A telescopic rod 77 is slidably installed on the fixing seat 73. One end of the telescopic rod 77 away from the fixing seat 73 is fixedly connected to the mounting frame 71. A first spring 76 is installed outside the telescopic rod 77. A second wedge block 74 is fixedly installed at the bottom of the mounting frame 71. A third wedge block 75 is fixedly installed on the fixing seat 73. The inclined directions of the second wedge block 74 and the third wedge block 75 are the same. Side pressure rods 10 are fixedly installed on both sides of the mounting plate 6. The side pressure rods 10 are intermittently connected to the mounting frame 71. A fifth spring is connected between one end of the telescopic rod 77 close to the fixing seat 73 and the fixing seat 73.
[0052] In this embodiment, a receiving groove 78 is formed in the fixed seat 73, the telescopic rod 77 is slidably installed in the receiving groove 78, a roller 100 is rotatably installed at the bottom of the side pressing rod 10, and a fifth spring (not shown in the figure) is connected between the inner wall of the receiving groove 78 and the telescopic rod 77.
[0053] In the initial state, the fifth spring, the first spring 76 and the second spring 79 are in their original lengths. When the thick aluminum plate is pushed forward, the second spring 79 is compressed. After the mounting plate 6 descends, that is, when the fixed seat 73 finishes moving downward and moving toward the center, the fifth spring is in a stretched state and the first spring 76 is compressed, that is, the telescopic rod 77 is subjected to the restoring force in the reverse direction of the fifth spring.
[0054] When cutting, push the thick aluminum plate. During the pushing process, one end of the thick aluminum plate contacts the first wedge block 72. During the continuous advancement of the thick aluminum plate, the first wedge block 72 is squeezed into the mounting frame 71. Under the action of the second spring 79, the two first wedge blocks 72 on both sides can limit the advancing direction of the thick aluminum plate. During the continuous advancement of the thick aluminum plate, the first wedge block 72 is always squeezed against the side of the thick aluminum plate until one end of the thick aluminum plate abuts against the limiting plate 2. When the thick aluminum plate reaches the position of the limiting plate 2, at this time, start the second telescopic member 5 to lower the cutting blade 8 to a specified height. During the descending process, the side pressing rod 10 presses the mounting frame 71, that is, gives the mounting frame 71 a downward pressure. At this time, the mounting frame 71 is subjected to the pressure, so that the second wedge block 74 slides on the surface of the third wedge block 75, and at the same time has a tendency to move downward and move toward the center of the second support table 12. When moving downward, the first wedge block 72 abuts against the lowermost part of the thick aluminum plate. When moving toward the center of the second support table 12, under the action of the second spring 79, the clamping force on the thick aluminum plate is increased, so as to avoid displacement of the thick aluminum plate during cutting. Then start the motor 9 and push the motor 9 to move horizontally, and the cutting work can be completed. When the cutting work is completed, start the second telescopic member 5 to drive the mounting plate 6 and the cutting blade 8 away from the thick aluminum plate, and the mounting frame 71 returns to the initial position again.
[0055] Please refer to Figures 1 to 14 , the present invention also provides a cutting method for producing high-strength thick aluminum plates, which is realized by the above-mentioned cutting device for producing high-strength thick aluminum plates, and specifically includes:
[0056] Place one end of the thick aluminum plate on the first support table 11 and push the thick aluminum plate until one end of the thick aluminum plate abuts against the limiting plate 2;
[0057] Start the second telescopic member 5 to lower the cutting blade 8 to a specified height, start the motor 9 and push the motor 9 to move horizontally for cutting;
[0058] After the cutting is completed, start the second telescopic member 5 to drive the mounting plate 6 and the cutting blade 8 away from the thick aluminum plate;
[0059] Start the flipping assembly 4. When the thick aluminum plate rotates to the horizontal position, start the first telescopic member 3, and under the action of the pushing plate 21, push the thick aluminum plate to the next working station.
[0060] Working process of the present invention: When cutting, first obtain the width of the thick aluminum plate to be cut, then start the third telescopic member 18, and adjust the position of the support frame 15 through the third telescopic member 18 so that the distance between the limit plate 2 and the cutting blade 8 is the width to be cut. Then place one end of the thick aluminum plate on the first support table 11 and push the thick aluminum plate. During the pushing process, one end of the thick aluminum plate contacts the first wedge block 72. During the continuous advancement of the thick aluminum plate, the first wedge block 72 is squeezed into the mounting frame 71. Under the action of the second spring 79, the two side first wedge blocks 72 can limit the advancing direction of the thick aluminum plate. During the continuous advancement of the thick aluminum plate, the first wedge block 72 is always pressed against the side of the thick aluminum plate until one end of the thick aluminum plate is tightly attached to the limit plate 2. At this time, one end of the limit plate 2 is located below the third support table 13 and the fourth support table 14. Therefore, the limit plate 2 remains upright, that is, the thick aluminum plate is limited by the limit plate 2. When the thick aluminum plate reaches the position of the limit plate 2, at this time, start the second telescopic member 5 to lower the cutting blade 8 to the specified height. During the lowering process, the side pressure rod 10 presses the mounting frame 71, that is, gives the mounting frame 71 a downward pressure. At this time, the mounting frame 71 is under pressure, causing the second wedge block 74 to slide on the surface of the third wedge block 75. During the sliding process, it has a tendency to move downward and move towards the center of the second support table 12. When moving downward, the first wedge block 72 is tightly attached to the bottom of the thick aluminum plate. When moving towards the center of the second support table 12, under the action of the second spring 79, the clamping force on the thick aluminum plate is increased, so as to avoid displacement of the thick aluminum plate during cutting. Then start the motor 9 and push the motor 9 to move horizontally to complete the cutting work. When the cutting work is completed, start the second telescopic member 5 to drive the mounting plate 6 and the cutting blade 8 away from the thick aluminum plate, and the mounting frame 71 returns to the initial position again. At this time, the cut thick aluminum plate is located on the third support table 13 and the second support table 12. At this time, start the driving gear 41, and drive the third support table 13 to rotate through the rotation of the driving gear 41. The thick aluminum plate is separated from the first wedge block 72. While the third support table 13 rotates, it drives the fixing plate 44 and the limit plate 2 to move upward together. At first, the thick aluminum plate is tightly attached to the limit plate 2. When rotating, due to the blocking effect of the limit plate 2, the thick aluminum plate has a certain position movement. During the rotation process, the debris on the surface of the thick aluminum plate will fall to the leakage hole 20 under the action of gravity, and then the debris is collected into the limit plate 2 through the leakage hole 20. When the fixed cylinder 22 moves above the gap between the third support table 13 and the fourth support table 14, the limit plate 2 rotates naturally. During the rotation, under the supporting action of the third spring 19, it can rotate slowly. When the thick aluminum plate rotates to the horizontal position, the flipping is completed. Then start the first telescopic member 3, and push the thick aluminum plate to the next working station under the action of the push plate 21. During the pushing process, the debris on the surface of the thick aluminum plate will gradually fall into the limit plate 2 through the leakage hole 20, so as to automatically collect the debris on the surface of the thick aluminum plate.
[0061] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention, and any reference signs in the claims should not be regarded as limiting the claims involved.
[0062] In addition, it should be understood that although this specification is described in terms of embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A cutting device for producing high-strength aluminum plates, comprising a first support platform, a cutting frame, a cutting blade, a motor, a second telescopic member, and a mounting plate, wherein a mounting plate is slidably mounted on the cutting frame, a motor is slidably mounted on the mounting plate, an output end of the motor is connected to the cutting blade, the first support platform is located on one side of the cutting blade, and is characterized in that: It also includes a third support platform, a fourth support platform and a flip assembly, the third support platform and the fourth support platform are located on the other side of the cutting blade, the first support platform is fixedly installed on the base, a support frame is installed on the base, a fourth support platform is fixedly installed on the support frame, the third support platform is rotatably installed on the support frame, a limit plate is movably installed between the third support platform and the fourth support platform, one end of the limit plate is fixedly installed with a rotating shaft, the rotating shaft is located in the fixed cylinder and is rotatably connected to the fixed cylinder, both ends of the fixed cylinder are fixedly installed with fixed plates, the fixed plate is slidably connected to the support frame, a fourth spring is connected between the fixed cylinder and the support frame, a third spring inclined toward the limit plate is fixedly installed on the fourth support platform, a first telescopic member is arranged on one side of the fourth support platform, a push plate is connected to the output end of the first telescopic member, the flip assembly is used to drive the third support platform to rotate while driving the limit plate to move up and down, the first telescopic member is used to push the aluminum plate on the fourth support platform to the next station through the push plate, the limit plate is hollow, and a plurality of leak holes are arranged on the side of the limit plate facing the third support platform.
2. A cutting device for producing high-strength aluminum plates according to claim 1, characterized in that: The flip assembly includes a driving gear, a driven gear, and a rack. The driving gears are fixedly installed on both sides of the third support platform, and the driven gears are rotatably installed on both sides of the support frame. A rack is arranged on the fixed plate, and the driving gear is meshed and connected with the driven gear, and the driven gear is meshed and connected with the rack.
3. A cutting device for producing high-strength aluminum plates according to claim 2, characterized in that: The inner wall of the leakage hole is inclined toward the outside.
4. A cutting device for producing high-strength aluminum plates according to any one of claims 1 to 3, characterized in that: It also includes a third telescopic member, the support frame is slidably installed on the base, a second support platform is arranged between the first support platform and the third support platform, one end of the third support platform is slidably connected to the second support platform, and the output end of the second telescopic member is connected to the support frame.
5. A cutting device for producing high-strength aluminum plates according to claim 4, characterized in that: A clamping assembly is installed on the second support platform and the first support platform at a position close to the cutting blade, and the clamping assembly is used to clamp the aluminum plate.
6. A cutting device for producing high-strength aluminum plates according to claim 5, characterized in that: The clamping assembly includes a mounting frame, a first wedge block and a second spring. The mounting frame is mounted on both sides of the first support platform and the second support platform. The first wedge block is slidably mounted in the mounting frame, and the second spring is installed between the first wedge block and the bottom surface of the mounting frame.
7. A cutting device for producing high-strength aluminum plates according to claim 6, characterized in that: A fixing seat is fixedly installed on the first support platform and the second support platform, a telescopic rod is slidably installed on the fixing seat, an end of the telescopic rod away from the fixing seat is fixedly connected to the mounting frame, a first spring is installed on the outer side of the telescopic rod, a second wedge block is fixedly installed on the bottom of the mounting frame, a third wedge block is fixedly installed on the fixing seat, and the inclination directions of the second wedge block and the third wedge block are the same, side pressure rods are fixedly installed on both sides of the mounting plate, the side pressure rods are intermittently connected to the mounting frame, and a fifth spring is connected between one end of the telescopic rod close to the fixing seat and the fixing seat.
8. A cutting method for producing high-strength aluminum plates, characterized in that: The method is implemented by the cutting device for producing high-strength aluminum plates according to any one of claims 1 to 7, and specifically comprises: Place one end of the thick aluminum plate on the first support platform, and push the thick aluminum plate until one end of the aluminum plate is close to the limit plate; Start the second telescopic member to lower the cutting blade to a specified height, start the motor and push the motor to move in the horizontal direction for cutting; After the cutting is completed, the second telescopic member is activated to drive the mounting plate and the cutting blade away from the aluminum plate; Start the flip assembly, and when the aluminum plate rotates to the horizontal, start the first telescopic member, and push the aluminum plate to the next station under the action of the push plate.
Citation Information
Patent Citations
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CN108213588A
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