Adjustable calendering device for aluminum foil processing
By designing an adjustable rolling device for aluminum foil processing, the problems of inconvenient adjustment of traditional equipment and cracking caused by excessive deformation of aluminum foil have been solved. Stable rolling, precise cutting and efficient cleaning of aluminum foil have been achieved, reducing production costs.
Patent Information
- Application Number
- CN202511102715.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2025-11-11
AI Technical Summary
Traditional aluminum foil rolling equipment is inconvenient to adjust, and excessive deformation of the aluminum foil during the rolling process can lead to cracking, increasing production costs.
An adjustable aluminum foil processing rolling device was designed, which includes rolling, cutting and cleaning devices. The motor drives the threaded rod to move the slider and cylinder, so that rolling and cutting are carried out simultaneously. The scrap is cleaned in time by scraper, and counterclockwise ratchet and gear transmission are used to prevent aluminum foil from cracking. The scrap is cleaned by blower.
This technology enables stable rolling and efficient cutting of aluminum foil, reduces aluminum foil cracks, lowers raw material waste and production costs, and improves production efficiency.
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Figure CN120920595A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of rolling equipment for aluminum foil processing, specifically an adjustable rolling equipment for aluminum foil processing. Background Technology
[0002] Aluminum foil is widely used in packaging, electronics, aerospace and other fields. Its thickness uniformity, surface smoothness and mechanical properties directly affect product quality. Traditional rolling equipment has problems such as inconvenient adjustment and insufficient precision, making it difficult to adapt to diversified production requirements.
[0003] Patent publication number CN218134398U relates to an adjustable aluminum foil processing and rolling device. This patent discloses an adjustable aluminum foil processing and rolling device including two fixed seats. A groove A is formed in the middle of each fixed seat. Slider A is symmetrically slidably mounted at the upper and lower ends of groove A. Two rolling rollers are positioned between the two fixed seats, with each end of the rolling roller connected to a slider A on one of the two fixed seats. Grooves B are formed on both sides of groove A, and slider B is fixedly connected to the end face of slider A facing groove B. This patent uses a synchronous pulley and synchronous belt to synchronously drive two bidirectional threaded rods, so that rotating one bidirectional threaded rod drives the other bidirectional threaded rod to rotate synchronously. Rotation of the bidirectional threaded rod causes the two sliders B in groove B to move towards or repel each other, thereby driving the two rolling rollers to move towards or repel each other.
[0004] This patent can be adjusted according to actual usage needs to improve its applicability and practicality. However, the device is prone to excessive deformation of aluminum foil during the calendering process, which can lead to cracking, waste of raw materials, and increased production costs. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides an adjustable rolling apparatus for aluminum foil processing, which solves the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solution: an adjustable aluminum foil processing rolling device, including a base, a fixed rod slidingly through the surface of the base, a track fixedly installed on the fixed rod, a groove first on the base, a worktable fixedly installed on the groove first, a square plate fixedly installed on the side of the base, and also including a rolling device, a cutting device and a cleaning device; The calendering device includes a fixed plate, on which a motor is fixedly mounted. A block is slidably mounted inside the track. An L-shaped rod is fixedly mounted on the side of the block. A threaded rod rotates through the inner wall of the track. A round rod is fixedly mounted on the side of the block. A ring is fixedly mounted on the circumference of the round rod. A scraper is fixedly mounted on the circumference of the ring. A cylinder is fixedly mounted on the circumference of the round rod. A circular piece is fixedly mounted on the side of the cylinder. An L-shaped rod is fixedly mounted on the side of the fixed rod. A round rod rotates through the side of the L-shaped rod. A ring is fixedly mounted on the circumference of the round rod. A baffle is on the circumference of the ring. A gear is slidably mounted on the circumference of the round rod. A short plate is fixedly mounted below the base. When the motor is started, its output drives the threaded rod to rotate. After the threaded rod rotates, the block moves to the left, which in turn drives the round rod to move to the left. The round rod then drives the cylinder to move to the left.
[0007] Preferably, the output end of the motor is connected to the threaded rod, the threaded rod is threaded to the block, the length of the cylinder is the same as the width of the worktable, and the cylinder rotates after contacting the worktable during the movement of the cylinder, and rolls its upper surface. The disc fits against the two sides of the worktable and plays a cutting role. The excess part of the aluminum foil after rolling is cut off by the disc and falls into the groove of the base.
[0008] Preferably, a counterclockwise ratchet is provided between the second round rod and the second L-shaped rod. A toothed block is provided on the side of the short plate. The toothed block meshes with a gear. A toothed groove is provided on the circumferential surface of the second round rod. A toothed block is provided on the inner wall of the gear. The toothed block meshes with the toothed groove. The first L-shaped rod touches the baffle. The baffle rotates counterclockwise around the second round rod. The baffle drives the second ring to rotate counterclockwise. The second ring drives the second round rod to rotate counterclockwise. The second round rod drives the gear to rotate counterclockwise. The counterclockwise rotation of the gear causes the short plate to rise.
[0009] Preferably, the cutting device includes a fixed plate two, on which a motor two is fixedly mounted; a threaded rod two is rotatably driven through the side of the square plate; a sliding groove one is provided on the base; a square block two is slidably mounted in the sliding groove one; a round rod three is fixedly mounted on the side of the square block two; a cylinder two is rotatably mounted on the circumference of the round rod three; a circular piece two is fixedly mounted on the side of the cylinder two; a sliding groove two is provided below the square block two; a rectangular block is slidably mounted in the sliding groove two; a triangular block is fixedly mounted below the rectangular block; an L-shaped piece is fixedly mounted below the base; a ring three is slidably mounted on the circumference of the round rod two; a U-shaped piece is fixedly mounted on the ring three; and a stop block is fixedly mounted on the U-shaped piece. When the motor two is started, the output end of the motor two drives the threaded rod two to rotate, the square block two moves to the right in the sliding groove, the square block two drives the round rod three to the right, the round rod three drives the cylinder two to the right, and the cylinder two drives the disc two to the right.
[0010] Preferably, the threaded rod two is connected to the output end of the motor two, the square block two is threadedly connected to the threaded rod two, the length of the cylinder two is the same as the length of the workbench, the base groove one has a groove two on the ground, the circular piece two engages with the groove two, a spring one is provided between the rectangular block and the square block two, the circular piece two slides in the groove two, the cylinder two presses the aluminum foil on the workbench, the circular piece two cuts the excess scrap material at the front and back, the square block two drives the rectangular block to move to the right, the rectangular block drives the triangular block to move to the right, and the triangular block slides upward after touching the L-shaped part.
[0011] Preferably, the inner wall of the three rings is provided with a toothed block two, which meshes with the toothed groove. A spring two is provided between the three rings and the L-shaped rod two. There are two L-shaped parts, which are evenly distributed under the base. The L-shaped parts and the stop block are on the same horizontal line and are staggered. The triangular block drives the rectangular block to slide upward. After disengaging from the left L-shaped part, the triangular block resets under the action of the spring one and continues to move to the right. The rectangular block contacts the stop block and drives the stop block to move to the right.
[0012] Preferably, the cleaning device includes a fixed plate three, on which a hair dryer is fixedly installed on the side. An H-shaped tube is connected to the side of the hair dryer, and an L-shaped tube is connected to the circumferential surface of the H-shaped tube. A base plate is fixedly installed under the base plate, and a rotary switch is fixedly installed under the base plate. An elastic rod is fixedly installed on the circumferential surface of the rotary switch. When the rectangular block moves the stop block to the right, the stop block touches the elastic rod on the right. The elastic rod drives the rotary switch to rotate counterclockwise and then locks it, and the stop block continues to move to the right.
[0013] Preferably, the L-shaped tube is located on the side of the workbench, and there are two rotary switches evenly distributed under the base. The two rotary switches are in opposite directions. The rotary switches are electrically connected to the blower. When the elastic rod bends, it returns to its original shape. At this time, the blower is working and blows air out of the L-shaped tube through the H-shaped tube. The L-shaped tube opening is located on the side of the workbench, which can blow out the scraps cut from the front and back, as well as the scraps that may accumulate on the left and right sides.
[0014] This invention provides an adjustable rolling apparatus for aluminum foil processing, which has the following advantages:
[0015] (1) The rolling device drives the threaded rod to move the square block, the round rod and the cylinder to roll the aluminum foil on the worktable. The process is stable. Then the round plate is attached to both sides of the worktable. The rolling process completes the cutting of excess parts at the same time. The scrap material is scraped off by the scraper in time. The rolling, cutting and cleaning are carried out simultaneously. The square block drives the L-shaped rod to touch the baffle. Through multi-phase transmission, the base and the worktable are raised. The motor reverses the cylinder to roll back and forth, so that the worktable is gradually raised. This can prevent the aluminum foil from cracking due to excessive adjustment distance.
[0016] (2) The rolling device drives the threaded rod 2 through the motor 2, which causes the square block 2 to move the round rod 3, the cylinder 2 and the round plate 2. When the cylinder 2 presses the aluminum foil, the round plate 2 completes the cutting of the excess scrap material at the front and back. The rectangular block drives the triangular block to move. After touching the L-shaped part, it slides back to its original position. When it touches the stop block, the gear is driven by the U-shaped part and the ring 3 to disengage from the short plate, so that the base falls and is limited by the L-shaped rod 2. The falling of the base under the pressure of the cylinder 2 does not affect the aluminum foil. The triangular block then contacts the L-shaped part again, allowing the gear to reset and mesh. The cutting and base reset are completed in one movement, which is efficient and precise.
[0017] (3) When the rectangular block moves the stop block to the right, the stop block touches the right elastic rod, causing the rotary switch to rotate counterclockwise and lock. After the elastic rod bends and resets, it triggers the blower to work. The air is blown out from the L-shaped tube through the H-shaped tube, which can blow out the scraps piled up on the front, back and left and right sides of the workbench. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the side structure of the present invention; Figure 3 This is a schematic diagram of the scraper structure of the present invention; Figure 4 This is a schematic diagram of the cross-sectional structure of the present invention; Figure 5 This is a schematic diagram of the rectangular block structure of the present invention; Figure 6 This is a schematic diagram of the H-shaped tube structure of the present invention; Figure 7 This is a schematic diagram of the cross-sectional structure of the L-shaped tube of the present invention; Figure 8 This is a schematic diagram of the rectangular block and stop structure of the present invention.
[0019] In the diagram: 1. Base; 101. Fixing rod; 102. Track; 103. Workbench; 104. Square plate; 2. Fixing plate one; 201. Motor one; 202. Block one; 203. L-shaped rod one; 204. Threaded rod one; 205. Round rod one; 206. Ring one; 207. Scraper; 208. Cylinder one; 209. Circular piece one; 210. L-shaped rod two; 211. Round rod two; 212. Ring two; 213. Baffle; 214. Gear; 215. 3. Short board; 4. Fixed plate 2; 5. Motor 2; 6. Threaded rod 2; 7. Square block 2; 8. Round rod 3; 9. Cylinder 2; 10. Round piece 2; 11. Rectangular block; 22. Triangular block; 33. L-shaped part; 44. Ring 3; 55. U-shaped part; 66. Stop block; 7. Fixed plate 3; 8. Hair dryer; 9. H-shaped tube; 10. L-shaped tube; 11. Base plate; 12. Rotary switch; 13. Elastic rod. Detailed Implementation
[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0021] Please see Figures 1-8 An embodiment of the present invention is: an adjustable aluminum foil processing rolling device, including a base 1, a fixed rod 101 slidingly through the surface of the base 1, a track 102 fixedly installed on the fixed rod 101, a groove 1 on the base 1, a worktable 103 fixedly installed on the groove 1, a square plate 104 fixedly installed on the side of the base 1, and also including a rolling device, a cutting device and a cleaning device. The calendering device includes a fixed plate 2, on which a motor 201 is fixedly mounted. A block 202 is slidably mounted inside a track 102. An L-shaped rod 203 is fixedly mounted on the side of the block 202. A threaded rod 204 rotatably passes through the inner wall of the track 102. A round rod 205 is fixedly mounted on the side of the block 202. A ring 206 is fixedly mounted on the circumference of the round rod 205. A scraper 207 is fixedly mounted on the circumference of the ring 206. A cylinder 208 is fixedly mounted on the circumference of the round rod 205. A circular piece 209 is fixedly mounted on the side of the cylinder 208. An L-shaped rod 210 is fixedly mounted on the side of the fixed rod 101. A round rod 211 rotatably passes through the side of the L-shaped rod 210. A circular ring 212 is fixedly installed on the circumferential surface of the circumferential surface of the circular ring 212, a baffle 213 on the circumferential surface of the circular rod 211, a gear 214 is slidably installed on the circumferential surface of the circular rod 211, and a short plate 215 is fixedly installed under the base 1. The motor 201 is started, and the output end of the motor 201 drives the threaded rod 204 to rotate. After the threaded rod 204 rotates, the block 202 moves to the left. The block 202 drives the circular rod 205 to move to the left. The circular rod 205 drives the cylinder 208 to move to the left. The motor 201 drives the threaded rod 204 to move the block 202, the circular rod 205 and the cylinder 208, thereby realizing the rolling of aluminum foil on the worktable 103. The process is stable, and then the circular piece 209 is attached to both sides of the worktable 103.
[0022] The output end of motor 201 is connected to threaded rod 204, which is threaded to block 202. The length of cylinder 208 is the same as the width of workbench 103. During the movement of cylinder 208, it rotates after contacting the workbench 103, and rolls its upper surface. The disc 209 is attached to both sides of workbench 103 and plays a cutting role. The excess part of the aluminum foil after rolling is cut off by disc 209 and falls into the groove of base 1. The rolling process completes the cutting of the excess part at the same time, and the scrap material is scraped off by scraper 207 in time. The rolling, cutting and cleaning are carried out simultaneously.
[0023] A counterclockwise ratchet is provided between the round rod 211 and the L-shaped rod 210. A toothed block is provided on the side of the short plate 215, and the toothed block meshes with the gear 214. A toothed groove is provided on the circumferential surface of the round rod 211. A toothed block is provided on the inner wall of the gear 214, and the toothed block meshes with the toothed groove. The L-shaped rod 203 touches the baffle 213, and the baffle 213 rotates counterclockwise around the round rod 211. The baffle 213 drives the ring 212 to rotate counterclockwise. 212 drives the second round rod 211 to rotate counterclockwise, the second round rod 211 drives the gear 214 to rotate counterclockwise, the gear 214 rotates counterclockwise and drives the short plate 215 to rise, the first square block 202 drives the first L-shaped rod 203 to touch the baffle 213, and through multiple transmissions, the base 1 and the worktable 103 rise. In conjunction with the first motor 201, the first cylinder 208 rolls back and forth, so that the worktable 103 gradually rises, avoiding cracks in the aluminum foil caused by direct short-distance rolling.
[0024] In this embodiment, during operation: the aluminum foil to be rolled is placed on the worktable 103. Motor 201 is started, and its output drives the threaded rod 204 to rotate. After the threaded rod 204 rotates, block 202 moves to the left, which in turn moves the round rod 205 to the left. The round rod 205 then moves the cylinder 208 to the left. During this movement, the cylinder 208 contacts the worktable 103 and rotates, rolling its upper surface. The disc 209 fits against both sides of the worktable 103, serving a cutting function. Excess material extending from the rolled aluminum foil is cut off by the disc 209 and falls into the groove of the base 1. The round rod 205 moves the ring 206, which in turn moves the scraper 207 to the left. While the disc 209 cuts, the scraper 207 removes the cut-off scrap. The square block 202 continues to move to the left, driving the L-shaped rod 203 to move to the left. During this movement... In the middle, L-shaped rod 203 touches baffle 213, baffle 213 rotates counterclockwise around round rod 211, baffle 213 drives ring 212 to rotate counterclockwise, ring 212 drives round rod 211 to rotate counterclockwise, round rod 211 drives gear 214 to rotate counterclockwise, gear 214 rotates counterclockwise and drives short plate 215 to rise, short plate 215 drives base 1 to rise, base 1 drives worktable 103 to rise, at this time control motor 201 rotates counterclockwise. Rotate, block 202 returns along the original path, L-shaped rod 203 contacts baffle 213. Since the counterclockwise ratchet of round rod 211 and L-shaped rod 210 will not affect each other, and the ratchet can also prevent the base 1 from falling off. During the return of cylinder 208, after the worktable 103 rises, the distance between it and cylinder 208 becomes smaller. By rolling back and forth with cylinder 208, the worktable 103 rises little by little, which can prevent the aluminum foil from cracking due to excessive adjustment distance.
[0025] Please see Figures 1-8Based on the above embodiments, in another embodiment of the present invention, the cutting device includes a fixing plate 2 3, on which a motor 2 301 is fixedly mounted; a threaded rod 2 302 is rotatably mounted through the side of a square plate 104; a sliding groove 1 is provided on the base 1; a square block 2 303 is slidably mounted in the sliding groove 1; a round rod 304 is fixedly mounted on the side of the square block 2 303; a cylinder 2 305 is rotatably mounted on the circumference of the round rod 304; a round piece 2 306 is fixedly mounted on the side of the cylinder 2 305; a sliding groove 2 is provided below the square block 2 303; a rectangular block 307 is slidably mounted in the sliding groove 2; a triangular block 308 is fixedly mounted below the rectangular block 307; an L-shaped piece 309 is fixedly mounted below the base 1; and a round rod 2 21... A circular ring 310 is slidably mounted on the circumferential surface. A U-shaped part 311 is fixedly mounted on the circular ring 310. A stop block 312 is fixedly mounted on the U-shaped part 311. When the motor 2 301 is started, the output end of the motor 2 301 drives the threaded rod 2 302 to rotate. The square block 2 303 moves to the right in the sliding groove. The square block 2 303 drives the round rod 304 to the right. The round rod 304 drives the cylinder 2 305 to the right. The cylinder 2 305 drives the disc 2 306 to the right. Through the motor 2 301 driving the threaded rod 2 302, the square block 2 303 drives the round rod 304, the cylinder 2 305 and the disc 2 306 to move. When the cylinder 2 305 presses the aluminum foil, the disc 2 306 completes the cutting of the excess scrap material at the front and back.
[0026] Threaded rod 302 is connected to the output end of motor 301. Block 303 is threadedly connected to threaded rod 302. Cylindrical cylinder 305 has the same length as workbench 103. The base 1 has a groove 2 on its surface. Circular plate 306 engages with groove 2. A spring 1 is installed between rectangular block 307 and block 303. Circular plate 306 slides within groove 2. Cylindrical cylinder 305 presses down on the aluminum foil on workbench 103, and circular plate 306 pushes away excess material. The scrap material is cut, and the square block 303 drives the rectangular block 307 to move to the right. The rectangular block 307 drives the triangular block 308 to move to the right. After the triangular block 308 touches the L-shaped part 309, it slides upward. The rectangular block 307 drives the triangular block 308 to move. After touching the L-shaped part 309, it slides back to its original position. When it contacts the stop block 312, the gear 214 is driven by the U-shaped part 311 and the ring 310 to disengage from the short plate 215, so that the base 1 falls and is limited by the L-shaped rod 210.
[0027] The inner wall of the three-ring 310 is provided with a toothed block 2, which meshes with the tooth groove. A spring 2 is provided between the three-ring 310 and the L-shaped rod 210. There are two L-shaped parts 309, which are evenly distributed under the base 1. The L-shaped parts 309 and the stop block 312 are on the same horizontal line but staggered. The triangular block 308 drives the rectangular block 307 to slide upward. After disengaging from the left L-shaped part 309, the triangular block 308 resets under the action of the spring 1 and continues to move to the right. The rectangular block 307 contacts the stop block 312 and drives the stop block 312 to move to the right. The cylinder 2 305 presses down the base 1 and falls without affecting the aluminum foil. Subsequently, the triangular block 308 contacts the L-shaped part 309 again, allowing the gear 214 to reset and mesh. The cutting and base 1 reset are completed in one movement, which is efficient and precise.
[0028] The cleaning device includes a fixed plate 3 4, on the side of which a blower 401 is fixedly mounted. An H-shaped tube 402 is connected to the side of the blower 401, and an L-shaped tube 403 is connected to the circumference of the H-shaped tube 402. A base plate 404 is fixedly mounted under the base 1, and a rotary switch 405 is fixedly mounted under the base plate 404. An elastic rod 406 is fixedly mounted on the circumference of the rotary switch 405. When the rectangular block 307 drives the stop block 312 to move to the right, the stop block 312 touches the right elastic rod 406. The elastic rod 406 drives the rotary switch 405 to rotate counterclockwise and then locks it. The stop block 312 continues to move to the right. When the rectangular block 307 drives the stop block 312 to move to the right, the stop block 312 touches the right elastic rod 406, causing it to drive the rotary switch 405 to rotate counterclockwise and lock it. The elastic rod 406 bends and then resets, triggering the blower 401 to work.
[0029] The L-shaped tube 403 is installed on the side of the workbench 103. There are two rotary switches 405, which are evenly distributed under the base 1. The two rotary switches 405 are in opposite directions. The rotary switches 405 are electrically connected to the blower 401. The elastic rod 406 bends and then returns to its original shape. At this time, the blower 401 works and blows air out of the L-shaped tube 403 through the H-shaped tube 402. The L-shaped tube 403 is located on the side of the workbench 103 and can blow out the scraps cut off from the front and back, as well as the scraps that may accumulate on the left and right. The air blown out of the L-shaped tube 403 through the H-shaped tube 402 can blow out the scraps accumulated on the front, back and left and right sides of the workbench 103.
[0030] In this embodiment, after the aluminum foil is rolled, the front and rear ends need to be cut. At this time, motor 1 (201) is turned off, and motor 2 (301) is started. The output end of motor 2 (301) drives the threaded rod 2 (302) to rotate. The square block 2 (303) moves to the right in the sliding groove. The square block 2 (303) drives the round rod 3 (304) to the right. The round rod 3 (304) drives the cylinder 2 (305) to the right. The cylinder 2 (305) drives the disc 2 (306) to the right. The disc 2 (306) slides in the groove 2. The cylinder 2 (305) presses against the worktable 103. The aluminum foil, circular piece 306 cuts off the excess scraps at the front and back. Square piece 303 moves rectangular piece 307 to the right, which in turn moves triangular piece 308 to the right. Triangular piece 308 touches L-shaped piece 309 and slides upwards, causing rectangular piece 307 to slide upwards. After disengaging from the left L-shaped piece 309, triangular piece 308 resets under the action of spring 1 and continues to move to the right. Rectangular piece 307 contacts stop block 312, causing stop block 312 to move to the right. The U-shaped component 311 moves to the right, which in turn moves the ring 310 to the right. The ring 310 then moves the gear 214 to the right. At this point, the gear 214 and the short plate 215 are no longer engaged, and the base 1 falls. The L-shaped rod 210 on the side of the fixing rod 101 blocks the base 1. The cylinder 305 has not yet detached from the worktable 103. Under the pressure of the cylinder 305, the falling base 1 will not affect the aluminum foil. The block continues to move to the right, and the subsequent triangular block 308... After touching the L-shaped part 309 on the right, the rectangular block 307 is driven to rise. The rectangular block 307 disengages from the stop block 312. The ring 310 drives the U-shaped part 311 to reset under the action of the spring 2. The U-shaped part 311 drives the gear 214 to re-engage with the short plate 215. The second block 303 moves to the right edge and stops moving. The front and back cutting is completed. The second motor 301 is stopped. When cutting again, the second motor 301 is started to reset the second block 303. The cutting and the reset of the base 1 are completed in one movement.
[0031] As the rectangular block 307 moves the stop block 312 to the right, the stop block 312 touches the elastic rod 406 on the right. The elastic rod 406 drives the rotary switch 405 to rotate counterclockwise and then locks it. The stop block 312 continues to move to the right, and the elastic rod 406 bends and then returns to its original shape. At this time, the blower 401 works, blowing air out of the L-shaped tube 403 through the H-shaped tube 402. The opening of the L-shaped tube 403 is set on the side of the workbench 103 to blow out the scraps cut from the front and back, as well as any scraps that may accumulate on the left and right. When the stop block 312 resets, it touches the elastic rod 406 again. At this time, the elastic rod 406 rotates clockwise, and the rotary switch 405 is turned off. The next time the front and back are cut, the second block 303 moves from right to left, and the rotary switch 405 on the left is set to the opposite direction.
[0032] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An adjustable aluminum foil processing rolling device, comprising: a base (1), a fixed rod (101) slidingly passing through the surface of the base (1), a track (102) fixedly mounted on the fixed rod (101), a groove being formed in the base (1), a worktable (103) fixedly mounted on the groove, and a square plate (104) fixedly mounted on the side of the base (1), characterized in that: It also includes calendering equipment, cutting equipment, and cleaning equipment; The calendering device includes a fixed plate (2), on which a motor (201) is fixedly mounted. A block (202) is slidably mounted inside the track (102). An L-shaped rod (203) is fixedly mounted on the side of the block (202). A threaded rod (204) rotates through the inner wall of the track (102). A round rod (205) is fixedly mounted on the side of the block (202). A ring (206) is fixedly mounted on the circumference of the round rod (205). A scraper (207) is fixedly mounted on the circumference of the ring (206). A cylindrical rod (208) is fixedly installed on the circumference of a cylindrical rod (205). A circular piece (209) is fixedly installed on the side of the cylindrical rod (208). An L-shaped rod (210) is fixedly installed on the side of the fixed rod (101). A cylindrical rod (211) is rotatably inserted through the side of the L-shaped rod (210). A circular ring (212) is fixedly installed on the circumference of the cylindrical rod (211). A baffle (213) is attached to the circumference of the circular ring (212). A gear (214) is slidably installed on the circumference of the cylindrical rod (211). A short plate (215) is fixedly installed under the base (1).
2. The adjustable aluminum foil processing rolling device according to claim 1, characterized in that: The output end of the motor (201) is connected to the threaded rod (204), the threaded rod (204) is threadedly connected to the block (202), and the length of the cylinder (208) is the same as the width of the worktable (103).
3. The adjustable aluminum foil processing rolling device according to claim 2, characterized in that: A counterclockwise ratchet is provided between the second round rod (211) and the second L-shaped rod (210). A toothed block is provided on the side of the short plate (215). The toothed block meshes with the gear (214). A toothed groove is provided on the circumferential surface of the second round rod (211). A toothed block is provided on the inner wall of the gear (214). The toothed block meshes with the toothed groove.
4. The adjustable aluminum foil processing rolling device according to claim 3, characterized in that: The cutting device includes a fixed plate 2 (3), on which a motor 2 (301) is fixedly mounted. A threaded rod 2 (302) is rotatably inserted through the side of the square plate (104). The base (1) has a sliding groove 1, in which a block 2 (303) is slidably mounted. A round rod 3 (304) is fixedly mounted on the side of the block 2 (303). A cylinder 2 (305) is rotatably mounted on the circumference of the round rod 3 (304). A circular piece is fixedly mounted on the side of the cylinder 2 (305). Second (306), a sliding groove is provided under the second block (303), a rectangular block (307) is slidably installed in the sliding groove, a triangular block (308) is fixedly installed under the rectangular block (307), an L-shaped piece (309) is fixedly installed under the base (1), a circular ring (310) is slidably installed on the circumference of the second round rod (211), a U-shaped piece (311) is fixedly installed on the circular ring (310), and a stop block (312) is fixedly installed on the U-shaped piece (311).
5. The adjustable aluminum foil processing rolling apparatus according to claim 4, characterized in that: The threaded rod 2 (302) is connected to the output end of the motor 2 (301), the block 2 (303) is threadedly connected to the threaded rod 2 (302), the length of the cylinder 2 (305) is the same as the length of the workbench (103), the base (1) has a groove 2 on the ground, the circular plate 2 (306) meshes with the groove 2, and a spring 1 is provided between the rectangular block (307) and the block 2 (303).
6. The adjustable aluminum foil processing rolling apparatus according to claim 5, characterized in that: The inner wall of the three rings (310) is provided with a toothed block two, which meshes with the toothed groove. A spring two is provided between the three rings (310) and the L-shaped rod two (210). There are two L-shaped parts (309), and the two L-shaped parts (309) are evenly distributed under the base (1). The L-shaped parts (309) and the stop block (312) are on the same horizontal line and staggered.
7. The adjustable aluminum foil processing rolling apparatus according to claim 6, characterized in that: The cleaning device includes a fixed plate three (4), on which a blower (401) is fixedly installed. An H-shaped tube (402) is connected to the side of the blower (401), and an L-shaped tube (403) is connected to the circumferential surface of the H-shaped tube (402). A base plate (404) is fixedly installed under the base (1), and a rotary switch (405) is fixedly installed under the base plate (404). An elastic rod (406) is fixedly installed on the circumferential surface of the rotary switch (405).
8. The adjustable aluminum foil processing rolling apparatus according to claim 7, characterized in that: The L-shaped tube (403) is set on the side of the workbench (103). There are two rotary switches (405) evenly distributed under the base (1). The two rotary switches (405) are in opposite directions. The rotary switches (405) are electrically connected to the blower (401).
Citation Information
Patent Citations
Adjustable aluminum foil processing calendering device
CN218134398U