A batch cutting device for aluminum alloy sheets
By designing a batch cutting device for aluminum alloy sheets, a stacking and clamping device is achieved using rotating rollers and telescopic cylinders. By using fiber lasers and cleaning agent spraying technology, the problems of incomplete cutting, slag adhesion, and splashing during batch cutting of aluminum alloy sheets in existing technologies are solved, thereby improving cutting efficiency and quality.
Patent Information
- Application Number
- CN202510718898.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2045-05-30
AI Technical Summary
Existing aluminum alloy sheet cutting equipment is prone to problems such as incomplete cuts, molten slag adhesion, and spattering when cutting in batches. It also poses a high risk of injury to equipment and personnel, and the excessively long cutting time affects the work cycle.
A batch cutting device for aluminum alloy sheets was designed, including a base frame, an operating platform, a cutting structure, an adjustment structure, and a conveying structure. The sheet metal is stacked and clamped by rotating rollers and telescopic cylinders, and a fiber laser is used for cutting during the cutting process. A storage frame is set up for spraying cleaning agent to remove oxide film and ensure cutting quality.
It enables efficient batch cutting of sheet metal parts, avoids incomplete cutting and slag adhesion, increases output per unit time, ensures equipment and personnel safety, and improves cutting quality.
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Figure CN120461111B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of aluminum alloy plate processing, and in particular relates to a batch cutting device for aluminum alloy plates. BACKGROUND
[0002] In the use of aluminum alloy, it often appears in the form of a plate, especially in the construction industry, and now aluminum alloy formwork is generally used for pouring construction, which is convenient and fast, and the aluminum alloy formwork can be used repeatedly, greatly reducing the construction cost. In order to meet the use requirements of aluminum alloy plate products, the aluminum alloy plate will be cut to a specific size and shape according to the design requirements during production, and in order to increase the output per unit of time, a batch cutting method will be used during the cutting of the aluminum alloy plate.
[0003] A patent application with the publication number CN221047765U discloses an aluminum alloy profile laser cutting and polishing device, which comprises a base, a profile placed on the top end of the base, and a pressing plate arranged above the profile. A first push plate is arranged at one end of the profile, and a second push plate is arranged on one side of the profile. The device places the profile on the base and pushes it in order, and limits one end of the profile. When the laser cutting head cuts the profile, the cutting size and position of the profile can be easily adjusted, which facilitates the cutting of the profile. After the cutting of the profile is completed, the profile is pressed on the base by the pressing plate, and the cutting edge of the profile is polished by the polishing piece driven by the motor.
[0004] The above-mentioned scheme still has some problems in actual application. Although the cutting surface of the aluminum alloy profile can be processed after cutting with the above-mentioned device, only one aluminum alloy plate can be cut at a time. If two aluminum alloy plates are stacked and cut in batches, the output per unit of time can be increased, but there is no gap between the aluminum alloy plates during cutting. Not only will the cutting surface not be cut off and the slag will be adhered, but also the slag will splash between the plates, causing injury to the equipment and personnel. Moreover, if the distance between the two aluminum alloy plates is too large, the cutting time will be increased, affecting the work cycle.
[0005] Therefore, the application provides a batch cutting device for aluminum alloy plates. SUMMARY
[0006] In order to make up for the shortcomings of the prior art and solve at least one technical problem proposed in the background art.
[0007] The technical scheme adopted by the present application to solve its technical problems is: the batch cutting device for aluminum alloy plate, comprising a base frame, the upper end of the base frame is provided with an operation platform, the two sides of the operation platform are provided with an adjusting structure, one side of the upper end of the base frame is provided with a cutting structure, and the upper surface of the base frame is provided with a conveying structure near one end of the adjusting structure; the cutting structure comprises a cutting module, the cutting module is arranged at the upper end of the operation platform, and the lower end of the cutting module is provided with a cutting head; the adjusting structure comprises: two adjusting plates, the two adjusting plates are respectively arranged on the two sides of the upper surface of the operation platform; a temporary groove is formed in the surface of the adjusting plate; a lower sliding groove is formed in the surface of the adjusting plate, and the lower sliding groove and the temporary groove are in the same horizontal line, and the lower sliding groove is in communication with the temporary groove; an upper sliding groove is formed in the upper end of the lower sliding groove, and the upper sliding groove is in communication with the temporary groove; a rotating ring is rotatably connected between the upper sliding groove and the lower sliding groove; a transfer bar is arranged at one end of the rotating ring; a plurality of clamping frames are arranged at the lower end of the cutting head, and the upper and lower ends of the clamping frame are provided with clamping plates; the conveying structure comprises a placing plate, and the two sides of the placing plate slide on the inner walls of the temporary groove, the upper sliding groove and the lower sliding groove.
[0008] Preferably, the conveying structure further comprises a telescopic air cylinder arranged at one end of the placing plate; the cutting structure further comprises: a first moving plate arranged on the upper surface of the adjusting plate; a second moving plate slidably connected to the surface of the first moving plate, and the cutting module slides on the surface of the second moving plate; the adjusting structure further comprises: a rotating roller arranged on both sides of the placing plate, and the rotating roller slides on the inner walls of the temporary groove, the upper sliding groove and the lower sliding groove; an adjusting rod is arranged between the two adjusting plates, and a plurality of clamping frames slide on the surface of the adjusting rod.
[0009] Preferably, the transfer bar is rotatably connected with the rotating ring, one side of the rotating ring is provided with a coil spring, the arc surface of the rotating ring is provided with an abutting bar, and the abutting bar is in contact with the rotating roller during work, the surface of the abutting bar is provided with a clamping ball, the inner wall of the adjusting plate is slidably connected with a sliding rod, one end of the sliding rod is provided with a buckle, and the buckle is clamped with the clamping ball, the other end of the sliding rod is provided with a sliding block, the inner wall of the adjusting plate near the sliding block is up and down slidably connected with a pressing block, and the pressing block extends into the temporary groove in the initial state.
[0010] Preferably, the inner part of the clamping plate is provided with a plurality of clamping strips.
[0011] Preferably, the end of the card is provided with an arc-shaped opening.
[0012] Preferably, the upper end of one of the two card boards is provided with a storage frame, the side wall of the storage frame is provided with a plurality of spray heads, and the inside of the storage frame is slidably connected with a rubber sheet.
[0013] Preferably, the inside of the clamping frame is slidably connected with a pressing strip, the upper end of the pressing strip is connected with a connecting plate, and the connecting plate is connected with the rubber sheet.
[0014] Preferably, the inner wall of the storage frame is provided with a reset rubber block, and the reset rubber block is in contact with the connecting plate.
[0015] Preferably, an adjusting spring is arranged between the pressing strip and the clamping frame.
[0016] Preferably, the surface of the placing plate is provided with a plurality of polishing rollers.
[0017] The beneficial effects of the present application are as follows:
[0018] 1. The batch cutting device for aluminum alloy plate material, by setting the conveying structure, when cutting the plate piece, first place two plate pieces on the surface of the placing plate, then start the rotating roller, the rotating roller will move the placing plate to the direction close to the cutting module, then the placing plate will move to the inside of the lower sliding groove, and drive the transfer strip to rotate, at this time, start the telescopic cylinder, the telescopic cylinder will push the first plate piece to the inside of the clamping frame and fix it, then start the rotating roller again, the rotating roller will drive the placing plate to move away from the cutting module, although the transfer strip has been rotated at this time, but since the transfer strip can rotate unidirectionally on the surface of the rotating ring, so at this time the rotating roller will pass through the transfer strip, then start the rotating roller again, the rotating roller will contact the surface of the transfer strip at this time, so as to enter the inside of the upper sliding groove, and be clamped and fixed by the clamping frame close to one end of the upper sliding groove, at this time, the stacking of the plate pieces is completed, and there is a proper gap between the plate pieces, then start the cutting module to cut the batch of plate pieces, and by adjusting the position of the clamping frame on the adjusting rod, the size and shape to be cut can also be controlled.
[0019] 2. The batch cutting device for aluminum alloy plate material, by setting the storage frame, when the plate piece moves to the inside of the clamping frame for clamping, the plate piece will contact the pressing strip and move against the pressing strip, in the process of moving the pressing strip, the rubber sheet will be driven to move by the connecting plate, so as to extrude the cleaning agent in the inside of the storage frame from the spray head to the surface of the plate piece, remove the oxide film on the surface of the plate piece, so that the surface of the plate piece is smoother and more uniform, and the cutting quality of the subsequent process is improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] The application will be further described below with reference to the drawings.
[0021] Figure 1 is a perspective view of embodiment one of the application;
[0022] Figure 2 is a front view of embodiment one of the application;
[0023] Figure 3 is a perspective view of the adjusting plate of the application;
[0024] Figure 4 is Figure 3 is a partial enlarged view at A in the figure;
[0025] Figure 5 is Figure 3 is a partial enlarged view at B in the figure;
[0026] Figure 6 is a position view of the upper sliding groove and the rotating ring of the application;
[0027] Figure 7 is a position view of the adjusting plate and the placing plate of the application;
[0028] Figure 8 is Figure 7 is a partial enlarged view at C in the figure;
[0029] Figure 9 is a perspective view of the clamping frame of the application;
[0030] In the figure: 1, base frame; 2, operation platform; 3, cutting structure; 31, first moving plate; 32, second moving plate; 33, cutting module; 34, cutting head; 4, conveying structure; 41, placing plate; 42, telescopic air cylinder; 43, polishing roller; 5, adjusting structure; 501, adjusting plate; 502, lower sliding groove; 503, upper sliding groove; 504, rotating roller; 505, temporary groove; 506, sliding rod; 507, rotating ring; 508, abutting strip; 509, clamping ball; 510, buckle; 511, shifting strip; 512, coil spring; 513, pressing block; 514, sliding block; 515, adjusting rod; 516, clamping frame; 517, clamping strip; 518, storage frame; 519, spray head; 520, arc-shaped opening; 521, pressing strip; 522, adjusting spring; 523, rubber sheet; 524, connecting plate; 525, reset rubber block; 526, clamping plate; 6, plate piece. DETAILED DESCRIPTION
[0031] In order to make the technical means, creative features, purposes and effects realized by the application easy to understand, the application will be further described below in combination with specific embodiments.
[0032] Example 1: As Figures 1 to 9 As shown, an embodiment of the present invention provides a batch cutting device for aluminum alloy sheets, comprising a base frame 1, an operating platform 2 at the upper end of the base frame 1, adjustment structures 5 on both sides of the operating platform 2, a cutting structure 3 on one side of the upper end of the base frame 1, and a conveying structure 4 at the end of the upper surface of the base frame 1 near the adjustment structure 5; the cutting structure 3 includes a cutting module 33, which is located at the upper end of the operating platform 2, and a cutting head 34 is located at the lower end of the cutting module 33; the adjustment structure 5 includes: an adjustment plate 501, with two adjustment plates 501 respectively located on both sides of the upper surface of the operating platform 2; a temporary groove 505, which is formed on the surface of the adjustment plate 501; and a lower sliding groove 502, which is formed on the surface of the adjustment plate 501. The lower sliding groove 502 and the temporary groove 505 are on the same horizontal line and are connected to each other; the upper sliding groove 503 is opened at the upper end of the lower sliding groove 502 and is connected to the temporary groove 505; the rotating ring 507 is rotatably connected between the upper sliding groove 503 and the lower sliding groove 502; the transfer bar 511 is provided at one end of the rotating ring 507; the clamping frame 516 is provided at the lower end of the cutting head 34, and the upper and lower ends of the clamping frame 516 are provided with clamping plates 526; the conveying structure 4 includes a placement plate 41, and the two sides of the placement plate 41 slide on the inner walls of the temporary groove 505, the upper sliding groove 503 and the lower sliding groove 502.
[0033] Specifically, the aluminum alloy plate batch cutting device is mainly used for cutting the aluminum alloy plate 6. In use, first, two plate pieces 6 are transferred to the surface of the placement plate 41, and then the placement plate 41 is started to move. Since the rollers on both sides of the placement plate 41 are located on the inner wall of the temporary groove 505 in the initial state, and the rollers on both sides of the placement plate 41 can slide on the inner wall of the temporary groove 505, at this time, the placement plate 41 will drive the two plate pieces 6 to move towards the cutting module 33. Then the placement plate 41 will move to the inside of the lower sliding groove 502, and at this time, the plate piece 6 on the surface of the placement plate 41 is pushed, and the plate piece 6 will be clamped and fixed in the clamping plate 526 inside the clamping frame 516. Then the placement plate 41 is started to move away from the moving cutting module 33, and when the placement plate 41 moves out of the lower sliding groove 502, the rotating ring 507 is started to rotate, which drives the transfer bar 511 to rotate, thereby blocking the channel of the temporary groove 505 and the lower sliding groove 502. Then the placement plate 41 is started again, which will contact the surface of the transfer bar 511 at this time, thereby entering the inside of the upper sliding groove 503, and then clamping into the inside of the clamping plate 526. At this time, the two plate pieces 6 are in the same vertical line and have a proper gap between them. Then the cutting module 33 is started, and the fiber laser inside the cutting module 33 outputs a high-energy-density laser beam, which is focused on the surface of the plate piece 6 by the cutting head 34, so that cutting can be performed. By arranging the adjusting structure 5, the plate pieces 6 can be stacked and placed during conveying, and the plate pieces 6 have a proper gap between them. This not only increases the output per unit time during cutting, but also avoids the occurrence of uncut cutting surfaces and slag adhesion.
[0034] As shown in Figures 1 to 9 , the conveying structure 4 further comprises a telescopic air cylinder 42 arranged at one end of the placement plate 41; the cutting structure 3 further comprises: a first moving plate 31 arranged on the upper surface of the adjusting plate 501; a second moving plate 32 slidably connected to the surface of the first moving plate 31, and the cutting module 33 slides on the surface of the second moving plate 32; the adjusting structure 5 further comprises: a rotating roller 504 arranged on both sides of the placement plate 41, and the rotating roller 504 slides on the inner walls of the temporary groove 505, the upper sliding groove 503 and the lower sliding groove 502; an adjusting rod 515 arranged between the two adjusting plates 501, and a plurality of clamping frames 516 slide on the surface of the adjusting rod 515.
[0035] Specifically, when the plate piece 6 is conveyed, the rotating roller 504 is started to drive the placing plate 41 to move, when the placing plate 41 moves to the inside of the upper sliding groove 503 and the lower sliding groove 502, the telescopic air cylinder 42 is started to drive the plate piece 6 to move, thereby assisting the plate piece 6 to be clamped into the inside of the clamping frame 516, and when cutting, the cutting module 33 is adjusted to be located on the surface of the first moving plate 31 and the second moving plate 32, thereby precise cutting can be realized, and the size and shape of the cutting can also be controlled by adjusting the position of the clamping frame 516 on the adjusting rod 515.
[0036] As shown in Figures 1 to 7 The transfer bar 511 is rotationally connected with the rotating ring 507, one side of the rotating ring 507 is provided with the coil spring 512, the arc surface of the rotating ring 507 is provided with the abutting bar 508, and the abutting bar 508 is in contact with the rotating roller 504 in working, the surface of the abutting bar 508 is provided with the clamping ball 509, the inner wall of the adjusting plate 501 is slidably connected with the sliding rod 506, one end of the sliding rod 506 is provided with the buckle 510, and the buckle 510 is clamped with the clamping ball 509, the other end of the sliding rod 506 is provided with the sliding block 514, the inner wall of the adjusting plate 501 is slidably connected with the pressing block 513 near one end of the sliding block 514, and the pressing block 513 is extended into the temporary groove 505 in the initial state.
[0037] Specifically, when the rotating roller 504 moves to the inside of the lower sliding groove 502, it will first contact the abutting strip 508, so that the abutting strip 508 drives the transfer strip 511 to rotate through the rotating ring 507, and the clamping ball 509 will also be clamped into the inside of the buckle 510, thereby blocking the passage of the temporary groove 505 and the lower sliding groove 502. After the fixing of a plate piece 6 is completed, the rotating roller 504 moves away from the cutting module 33, and will contact the lower surface of the transfer strip 511. Since the transfer strip 511 is in rotating connection with the rotating ring 507, and the upper surface of the end of the rotating ring 507 abuts against the transfer strip 511, the transfer strip 511 can only rotate counterclockwise on the surface of the rotating ring 507. At this time, the rotating roller 504 will pass through the transfer strip 511 and enter the inside of the temporary groove 505, but not contact the pressing block 513. Then the rotating roller 504 is started again, and at this time the rotating roller 504 will contact the upper surface of the transfer strip 511, thereby entering the inside of the upper sliding groove 503. After the fixing of two plate pieces 6 is completed, the rotating roller 504 will enter the inside of the temporary groove 505 and contact the pressing block 513, so that the pressing block 513 moves downward by a distance. At this time, the pressing block 513 will abut against the inclined surface of the sliding block 514, so that the sliding block 514 drives the buckle 510 to move through the sliding rod 506. At this time, the clamping ball 509 and the buckle 510 will be separated, and the coil spring 512 will release the elastic force to reset the rotating ring 507 and the transfer strip 511 for the next cutting process.
[0038] As shown in Figures 8 to 9 , the inside of the clamping plate 526 is provided with a plurality of clamping strips 517.
[0039] Specifically, by arranging the clamping strips 517 in the inside of the clamping plate 526, when the clamping plate 526 clamps the plate piece 6, the plate piece 6 will contact the clamping strips 517, thereby reducing the friction between the plate piece 6 and the clamping plate 526 and increasing the service life of the plate piece 6.
[0040] As shown in Figures 8 to 9 , the end of the clamping plate 526 is provided with an arc-shaped opening 520.
[0041] Specifically, by arranging the arc-shaped opening 520 at the end of the clamping plate 526, when the plate piece 6 moves to the inside of the clamping plate 526, the arc-shaped opening 520 can guide the movement of the plate piece 6, thereby making the movement of the plate piece 6 more accurate.
[0042] Embodiment two: as shown in Figures 7 to 9 , compared with embodiment one, another embodiment of the present application is that the upper end of one of the two clamping plates 526 is provided with a storage frame 518, the side wall of the storage frame 518 is provided with a plurality of spray heads 519, and the inside of the storage frame 518 is slidably connected with a rubber sheet 523.
[0043] Specifically, by setting the storage frame 518 at the upper end of the clamping plate 526, and placing the cleaning agent inside the storage frame 518, after the fixing of the plate piece 6 is completed, the rubber sheet 523 will move on the inner wall of the storage frame 518, so that the cleaning agent inside the storage frame 518 is extruded from the nozzle 519 to the surface of the plate piece 6, removing the oxide film on the surface of the plate piece 6, so that the surface of the plate piece 6 is smoother and more uniform, improving the cutting quality of the subsequent.
[0044] As shown in Figures 1 to 9 , the clamping frame 516 is slidably connected with the pressing strip 521, the upper end of the pressing strip 521 is connected with the connecting plate 524, and the connecting plate 524 is connected with the rubber sheet 523.
[0045] Specifically, by setting the pressing strip 521, when the plate piece 6 moves to the inside of the clamping plate 526, it will be in contact with the pressing strip 521 and drive the pressing strip 521 to move, so that the pressing strip 521 drives the rubber sheet 523 to move through the connecting plate 524, and finally automatically sprays the cleaning agent.
[0046] As shown in Figure 9 , the inner wall of the storage frame 518 is provided with a reset rubber block 525, and the reset rubber block 525 is in contact with the connecting plate 524.
[0047] Specifically, by setting the reset rubber block 525, the reset rubber block 525 will crack a small gap when it is in contact with the connecting plate 524, so that the connecting plate 524 can move, and when the reset rubber block 525 is not in contact with the connecting plate 524, the reset rubber block 525 will be in contact with the reset rubber block 525, so as to close the storage frame 518 and the outside space, so as to avoid leakage of the cleaning agent inside.
[0048] As shown in Figure 9 , the pressing strip 521 and the clamping frame 516 are provided with an adjusting spring 522.
[0049] Specifically, by setting the adjusting spring 522, and the elastic force of the adjusting spring 522 is smaller than the clamping force of the two clamping plates 526 on the plate piece 6, when the plate piece 6 is cut and taken out, the adjusting spring 522 will release the elastic force and push the pressing strip 521 to the original position for subsequent cutting.
[0050] As shown in Figures 1 to 2 , the surface of the placing plate 41 is provided with a plurality of polishing rollers 43.
[0051] Specific, by setting grinding roller 43 in the surface of the placement plate 41, when the telescopic cylinder 42 pushes the plate piece 6, the grinding roller 43 will polish the plate piece 6, thereby polishing the surface impurities, so that the cutting effect is better.
[0052] Working principle: in use, first, two plate pieces 6 are transferred to the surface of the placement plate 41, then the rotating roller 504 can drive the placement plate 41 to move, when the placement plate 41 moves to the inside of the upper sliding groove 503 and the lower sliding groove 502, the telescopic cylinder 42 can push the plate piece 6 to move, thereby assisting the plate piece 6 to be clamped into the inside of the clamping frame 516, and at this time the rotating roller 504 will also be in contact with the abutment strip 508, so that the abutment strip 508 drives the transfer strip 511 to rotate through the rotating ring 507, and the clamping ball 509 will also be clamped into the inside of the buckle 510, thereby blocking the channel of the temporary groove 505 and the lower sliding groove 502, after one plate piece 6 is fixed, the rotating roller 504 moves away from the cutting module 33, which will be in contact with the lower surface of the transfer strip 511, because the transfer strip 511 is in rotating connection with the rotating ring 507, and because the upper surface of the end of the rotating ring 507 is in abutment with the transfer strip 511, the transfer strip 511 can only rotate counterclockwise on the surface of the rotating ring 507, at this time the rotating roller 504 will pass through the transfer strip 511 and enter the inside of the temporary groove 505, but not in contact with the pressing block 513, then the rotating roller 504 is started again, at this time the rotating roller 504 will be in contact with the upper surface of the transfer strip 511, thereby entering the inside of the upper sliding groove 503, after two plate pieces 6 are fixed, the rotating roller 504 will enter the inside of the temporary groove 505 and be in contact with the pressing block 513, thereby making the pressing block 513 move downward by a distance, the pressing block 513 will be in abutment with the inclined surface of the sliding block 514 at this time, thereby making the sliding block 514 drive the buckle 510 to move through the sliding rod 506, at this time the clamping ball 509 and the buckle 510 will be separated, the coil spring 512 will release the elastic force, so that the rotating ring 507 and the transfer strip 511 reset for the next cutting process, then the cutting module 33 is started, the fiber laser inside the cutting module 33 outputs a high-energy-density laser beam, which is focused on the surface of the plate piece 6 through the cutting head 34, thereby cutting the plate piece 6 in batches.
[0053] The basic principles, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A batch cutting device for aluminum alloy sheets, characterized by: Including base frame (1), the upper end of base frame (1) is equipped with operation platform (2), both sides of operation platform (2) are equipped with adjusting structure (5), one side of the upper end of base frame (1) is equipped with cutting structure (3), and the upper surface of base frame (1) is equipped with conveying structure (4) near one end of adjusting structure (5); The cutting structure (3) includes a cutting module (33), which is arranged at the upper end of the operation platform (2), and a cutting head (34) is arranged at the lower end of the cutting module (33); The adjusting structure (5) includes: Adjusting plate (501), two adjusting plates (501) are arranged on both sides of the upper surface of the operation platform (2); Temporary groove (505), the surface of the adjusting plate (501) is provided with a temporary groove (505); Lower sliding groove (502), the surface of the adjusting plate (501) is provided with a lower sliding groove (502), and the lower sliding groove (502) is in the same horizontal line with the temporary groove (505), and the lower sliding groove (502) is communicated with the temporary groove (505); Upper sliding groove (503), the upper end of the lower sliding groove (502) is provided with an upper sliding groove (503), and the upper sliding groove (503) is communicated with the temporary groove (505); Rotary ring (507), the rotary ring (507) is rotatably connected between the upper sliding groove (503) and the lower sliding groove (502); Transfer bar (511), the transfer bar (511) is arranged at one end of the rotary ring (507); Clamping frame (516), a plurality of clamping frames (516) are arranged at the lower end of the cutting head (34), and the upper and lower ends of the clamping frame (516) are provided with clamping plates (526); The conveying structure (4) includes a placing plate (41), and the two sides of the placing plate (41) slide on the inner walls of the temporary groove (505), the upper sliding groove (503) and the lower sliding groove (502).
2. The batch cutting apparatus for aluminum alloy sheets according to claim 1, characterized by: The conveying structure (4) further includes a telescopic air cylinder (42), and the telescopic air cylinder (42) is arranged at one end of the placing plate (41); the cutting structure (3) further includes: First moving plate (31), the first moving plate (31) is arranged on the upper surface of the adjusting plate (501); Second moving plate (32), the second moving plate (32) is slidably connected to the surface of the first moving plate (31), and the cutting module (33) slides on the surface of the second moving plate (32); The adjusting structure (5) further includes: Rotary roller (504), the rotary roller (504) is arranged on both sides of the placing plate (41), and the rotary roller (504) slides on the inner walls of the temporary groove (505), the upper sliding groove (503) and the lower sliding groove (502); Adjusting rod (515), the adjusting rod (515) is arranged between the two adjusting plates (501), and a plurality of clamping frames (516) slide on the surface of the adjusting rod (515).
3. The batch cutting apparatus for aluminum alloy sheets according to claim 2, characterized by: The transfer strip (511) is rotationally connected with the rotating ring (507), one side of the rotating ring (507) is provided with a coil spring (512), the arc surface of the rotating ring (507) is provided with an abutting strip (508), and the abutting strip (508) is in contact with the rotating roller (504) during work, the surface of the abutting strip (508) is provided with a clamping ball (509), the inner wall of the adjusting plate (501) is slidably connected with a sliding rod (506), one end of the sliding rod (506) is provided with a buckle (510), and the buckle (510) is clamped with the clamping ball (509), the other end of the sliding rod (506) is provided with a sliding block (514), the inner wall of the adjusting plate (501) is slidably connected with a pressing block (513) at one end close to the sliding block (514), and the pressing block (513) extends into the inside of the temporary groove (505) in the initial state.
4. The batch cutting apparatus for aluminum alloy sheets according to claim 1, characterized by: The inside of the clamping plate (526) is provided with a plurality of clamping strips (517).
5. The batch cutting apparatus for aluminum alloy sheets according to claim 4, characterized by: The end of the clamping plate (526) is provided with an arc-shaped opening (520).
6. The batch cutting apparatus for aluminum alloy sheets according to claim 5, characterized by: The upper end of one of the two clamping plates (526) is provided with a storage frame (518), the side wall of the storage frame (518) is provided with a plurality of spray heads (519), and the inside of the storage frame (518) is slidably connected with a rubber sheet (523).
7. The batch cutting apparatus for aluminum alloy sheets according to claim 6, characterized by: The inside of the clamping frame (516) is slidably connected with a pressing strip (521), the upper end of the pressing strip (521) is connected with a connecting plate (524), and the connecting plate (524) is connected with the rubber sheet (523).
8. The batch cutting apparatus for aluminum alloy sheets according to claim 7, characterized by: The inner wall of the storage frame (518) is provided with a reset rubber block (525), and the reset rubber block (525) is in contact with the connecting plate (524).
9. The batch cutting apparatus for aluminum alloy sheets according to claim 7, characterized by: The pressing strip (521) and the clamping frame (516) are provided with an adjusting spring (522).
10. The batch cutting apparatus for aluminum alloy sheets according to claim 2, characterized by: The surface of the placing plate (41) is provided with a plurality of polishing rollers (43).
Citation Information
Patent Citations
Aluminum alloy profile laser cutting and grinding device
CN221047765U
Bending and cutting device for fitness equipment processing
CN117697426A
Batch cutting device for aluminum alloy plates
CN118768950A