CN211515740U - Aluminum alloy sheet stamping and cutting device - Google Patents
Aluminum alloy sheet stamping and cutting device Download PDFInfo
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- CN211515740U CN211515740U CN202020101611.6U CN202020101611U CN211515740U CN 211515740 U CN211515740 U CN 211515740U CN 202020101611 U CN202020101611 U CN 202020101611U CN 211515740 U CN211515740 U CN 211515740U
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Abstract
The utility model discloses an aluminum alloy sheet stamping and cutting device, which comprises a frame (1), wherein a stamping platform (2) is arranged on the frame (1), a stamping frame (3) is arranged above the stamping platform (2), and four corners between the stamping frame (3) and the frame (1) are connected with hydraulic cylinders (4); two rows of stamping holes (5) which are distributed in a staggered manner are formed in the stamping platform (2), and circular stamping cutting knives (6) which are protruded downwards and matched with the stamping holes (5) are arranged at the bottom end of the stamping frame (3); the stamping machine is characterized in that a collecting tank (7) is arranged at a position, corresponding to the lower portion of the stamping platform (2), on the rack (1), and the collecting tank (7) is obliquely arranged. The utility model discloses not only can reduce the waste material, still have the finished product and take out more convenient and the more stable advantage of aluminum alloy piece pay-off.
Description
Technical Field
The utility model relates to a punching press cutting device, especially aluminum alloy sheet punching press cutting device.
Background
The aluminum pot and the aluminum oxygen cylinder are both made by stretching and forming an aluminum wafer; at present, common aluminum wafers in the market are prepared by processing aluminum alloy into aluminum alloy sheets, and then stamping and cutting the aluminum alloy sheets; the existing aluminum alloy sheet stamping and cutting device is characterized in that a row of circular stamping and cutting knives are arranged between a stamping platform and a stamping frame, and an aluminum wafer is processed along with the gradual conveying of an aluminum alloy sheet; in order to ensure the integrity of the processed aluminum wafer, the distance of one-time movement of the aluminum alloy sheet is greater than the diameter of the stamping cutting knife, so that more leftover bits and pieces can be generated; meanwhile, the aluminum wafer which is punched and cut can fall to a collecting tank below from a punching hole on the punching platform under the action of self gravity, a worker needs to bend down to take out the aluminum wafer from the lower part of the rack, and a finished product is inconvenient to take out. Therefore, the existing aluminum alloy sheet stamping and cutting device has the problems of more waste and inconvenient taking out of finished products.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an aluminum alloy sheet punching press cutting device. The utility model discloses not only can reduce the waste material, still have the finished product and take out more convenient advantage.
The technical scheme of the utility model: the aluminum alloy sheet stamping and cutting device comprises a rack, wherein a stamping platform is arranged on the rack, a stamping frame is arranged above the stamping platform, and hydraulic cylinders are connected at four corners between the stamping frame and the rack; two rows of stamping holes which are distributed in a staggered manner are formed in the stamping platform, and circular stamping cutting knives which are protruded downwards and matched with the stamping holes are arranged at the bottom end of the stamping frame; and a collecting tank is arranged at a position on the rack corresponding to the lower part of the stamping platform and is obliquely arranged.
In the aluminum alloy sheet stamping and cutting device, a feeding frame is arranged on one side of the rack, and a feeding roller is rotatably arranged on the feeding frame; the top of pay-off frame articulates there is the compression roller, and the compression roller setting is in the pay-off roller top.
In the aluminum alloy sheet stamping and cutting device, two guide rods which are horizontally arranged are arranged on one side of the rack facing the feeding frame, one end of each guide rod is fixed with the rack, and the other end of each guide rod is connected with a fixing frame; a horizontal telescopic cylinder is connected to the position, corresponding to the middle of the two guide rods, on the rack, a horizontal supporting plate which is connected to the guide rods in a sliding mode is fixed to the end portion of the horizontal telescopic cylinder, and a connecting frame is connected to the upper portion of the horizontal supporting plate; horizontal clamping plates are arranged between the connecting frame and the horizontal supporting plate, and vertical telescopic cylinders are connected at the positions of the two end parts of the connecting frame and the horizontal clamping plates.
In the aluminum alloy sheet stamping and cutting device, four corners between the collecting tank and the rack are connected with the vibrating motors.
Compared with the prior art, the utility model improves the existing aluminum alloy sheet stamping and cutting device, and by arranging two rows of round stamping and cutting knives which are distributed in a staggered way, the distance for moving the aluminum alloy sheet when the two rows of round stamping and cutting knives cut is less than the sum of the diameters of the two round stamping and cutting knives, so that the waste material caused by the cutting is less; simultaneously, the below of punching press platform is provided with the collecting vat, and the collecting vat is the slope setting, and the aluminium system disk that drops from the punching press hole is collected by the collecting vat and slides to the frame outside under self action of gravity, and the staff need not to bow and takes out aluminium system disk from the frame bottom, and it is more convenient that the finished product takes out. In addition, one side of the middle frame of the utility model is provided with a feeding frame, the feeding roller which is rotatably arranged on the feeding frame can be sleeved with an aluminum alloy sheet reel, and a compression roller is arranged above the aluminum alloy reel, so that the aluminum alloy sheet reel can be stably and uniformly sent out; two guide rods which are horizontally arranged are arranged on one side of the rack facing the feeding frame, a horizontal telescopic cylinder is connected to the position, corresponding to the middle parts of the two guide rods, of the rack, and the horizontal telescopic cylinder can drive the horizontal supporting plate to slide on the guide rods; meanwhile, a connecting frame is connected above the horizontal supporting plate, a horizontal clamping plate is arranged between the connecting frame and the horizontal supporting plate, the horizontal clamping plate can clamp the aluminum alloy sheet on the horizontal supporting plate under the action of vertical telescopic cylinders at two end parts of the connecting frame, and the aluminum alloy sheet is conveyed into the rack by a certain distance through the horizontal telescopic cylinders, so that the conveying distance of the aluminum alloy sheet is stable each time; the horizontal pressing plate and the horizontal supporting plate can clamp the aluminum alloy sheet flat, so that subsequent stamping and cutting are facilitated; be connected with vibrating motor between the four corners position department and the frame of collecting vat bottom, vibrating motor drives the collecting vat vibration can further make things convenient for the aluminium system disk in the collecting vat to be sent to the frame outside (prevent that the aluminium system disk that is stained with lubricating oil from gluing in the collecting vat), makes things convenient for the finished product to take out. Therefore, the utility model discloses not only can reduce the waste material, still have the finished product and take out more convenient and the more stable advantage of aluminum alloy piece pay-off.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
fig. 2 is a schematic structural view of the punching stage.
The labels in the figures are: 1-a rack, 2-a stamping platform, 3-a stamping frame, 4-a hydraulic cylinder, 5-a stamping hole, 6-a round stamping cutting knife, 7-a collecting tank, 8-a feeding frame, 9-a feeding roller, 10-a pressing roller, 11-a guide rod, 12-a fixing frame, 13-a horizontal telescopic cylinder, 14-a horizontal supporting plate, 15-a connecting frame, 16-a horizontal clamping plate, 17-a vertical telescopic cylinder and 18-a vibrating motor.
Detailed Description
The following description is made with reference to the accompanying drawings and examples, but not to be construed as limiting the invention.
Examples are given. An aluminum alloy sheet stamping and cutting device is shown in figures 1 and 2 and comprises a frame 1, wherein a stamping platform 2 is arranged on the frame 1, a stamping frame 3 is arranged above the stamping platform 2, and four corners between the stamping frame 3 and the frame 1 are connected with hydraulic cylinders 4; two rows of stamping holes 5 which are distributed in a staggered manner are formed in the stamping platform 2, and circular stamping cutting knives 6 which are protruded downwards and matched with the stamping holes 5 are arranged at the bottom end of the stamping frame 3; a collecting tank 7 is arranged on the frame 1 at a position corresponding to the lower part of the stamping platform 2, and the collecting tank 7 is obliquely arranged.
A feeding frame 8 is arranged on one side of the rack 1, and a feeding roller 9 is rotatably arranged on the feeding frame 8; the top end of the feeding frame 8 is hinged with a press roller 10, and the press roller 10 is arranged above the feeding roller 9; two guide rods 11 which are horizontally arranged are arranged on one side of the rack 1 facing the feeding frame 8, one ends of the guide rods 11 are fixed with the rack 1, and the other ends of the guide rods 11 are connected with a fixed frame 12; a horizontal telescopic cylinder 13 is connected to the position, corresponding to the middle of the two guide rods 11, on the rack 1, a horizontal supporting plate 14 connected to the guide rods 11 in a sliding manner is fixed to the end of the horizontal telescopic cylinder 13, and a connecting frame 15 is connected to the upper part of the horizontal supporting plate 14; a horizontal clamping plate 16 is arranged between the connecting frame 15 and the horizontal supporting plate 14, and vertical telescopic cylinders 17 are connected to the positions of two end parts of the connecting frame 15 and the horizontal clamping plate 16; and vibration motors 18 are connected at four corners between the collecting tank 7 and the rack 1.
The working principle is as follows: placing an aluminum alloy sheet reel on a feeding roller 9 on a feeding frame 8, and pressing a compression roller 10 on the feeding frame 8 to the top end of the aluminum alloy sheet reel; then, one end of the aluminum alloy sheet is led out to pass through a horizontal supporting plate 14 and then is placed on a stamping platform 2 on the frame 1; then, a vertical telescopic cylinder 17 on the connecting frame 15 drives a horizontal pressing plate 16 to press downwards, so that the aluminum alloy sheet is pressed on the horizontal supporting plate 14 and is pressed flatly; then, a horizontal telescopic cylinder 13 on the frame 1 contracts to move a horizontal supporting plate 14 to the direction of the frame 1 for a certain distance along a guide rod 11 (one end of the guide rod 11 is fixed with the frame 1, and the other end of the guide rod 11 is fixed with the ground through a fixing frame 12, so that the guide rod 11 can be kept horizontal while the horizontal supporting plate 14 is arranged in a sliding mode), and an aluminum alloy sheet is conveyed to the position of a stamping hole 5 on the stamping platform 2; the hydraulic cylinders 4 at the four corners of the punching frame 3 move downwards, so that two rows of circular punching cutting knives 6 which are distributed in a staggered manner at the bottom end of the punching frame 3 are matched with the punching holes 5 to cut the aluminum alloy sheet into aluminum wafers; the aluminum wafer falls into a collecting tank 7 below the stamping platform 2 under the action of self gravity, and vibration motors 18 at four corners of the bottom end of the collecting tank 7 drive the inclined collecting tank 7 to vibrate, so that the aluminum wafer in the collecting tank 7 is sent out of the bottom end of the rack 1; subsequently, the horizontal supporting plate 14 successively sends the aluminum alloy sheets to the stamping platform 2, and stamping and cutting of the aluminum round sheets are completed.
Claims (4)
1. Aluminium alloy piece punching press cutting device, its characterized in that: the stamping machine comprises a rack (1), wherein a stamping platform (2) is arranged on the rack (1), a stamping frame (3) is arranged above the stamping platform (2), and four corners between the stamping frame (3) and the rack (1) are connected with hydraulic cylinders (4); two rows of stamping holes (5) which are distributed in a staggered manner are formed in the stamping platform (2), and circular stamping cutting knives (6) which are protruded downwards and matched with the stamping holes (5) are arranged at the bottom end of the stamping frame (3); the stamping machine is characterized in that a collecting tank (7) is arranged at a position, corresponding to the lower portion of the stamping platform (2), on the rack (1), and the collecting tank (7) is obliquely arranged.
2. The aluminum alloy sheet stamping and cutting device of claim 1, wherein: a feeding frame (8) is arranged on one side of the rack (1), and a feeding roller (9) is rotatably arranged on the feeding frame (8); the top end of the feeding frame (8) is hinged with a press roller (10), and the press roller (10) is arranged above the feeding roller (9).
3. The aluminum alloy sheet stamping and cutting device of claim 2, wherein: two guide rods (11) which are horizontally arranged are arranged on one side of the rack (1) facing the feeding frame (8), one ends of the guide rods (11) are fixed with the rack (1), and the other ends of the guide rods (11) are connected with a fixed frame (12); a horizontal telescopic cylinder (13) is connected to the position, corresponding to the middle of the two guide rods (11), on the rack (1), a horizontal supporting plate (14) which is connected to the guide rods (11) in a sliding mode is fixed to the end portion of the horizontal telescopic cylinder (13), and a connecting frame (15) is connected to the upper portion of the horizontal supporting plate (14); a horizontal clamping plate (16) is arranged between the connecting frame (15) and the horizontal supporting plate (14), and vertical telescopic cylinders (17) are connected at the positions of two end parts of the connecting frame (15) and the horizontal clamping plate (16).
4. The aluminum alloy sheet press cutting apparatus of claim 1, 2 or 3, wherein: and vibration motors (18) are connected at four corners between the collecting tank (7) and the rack (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020101611.6U CN211515740U (en) | 2020-01-17 | 2020-01-17 | Aluminum alloy sheet stamping and cutting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020101611.6U CN211515740U (en) | 2020-01-17 | 2020-01-17 | Aluminum alloy sheet stamping and cutting device |
Publications (1)
Publication Number | Publication Date |
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CN211515740U true CN211515740U (en) | 2020-09-18 |
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CN202020101611.6U Active CN211515740U (en) | 2020-01-17 | 2020-01-17 | Aluminum alloy sheet stamping and cutting device |
Country Status (1)
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CN (1) | CN211515740U (en) |
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2020
- 2020-01-17 CN CN202020101611.6U patent/CN211515740U/en active Active
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