A copper plate rolling feeding guide rail
By designing a limiting mechanism, auxiliary devices, and a synchronous transmission system, the problem that existing feeding guides cannot adapt to the length and width of copper plates has been solved. This achieves precise support and limiting of the copper plates, prevents them from tilting and bending, and improves the copper plate rolling effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HUBEI JINGYI HIGH PRECISION COPPER PLASTICS & STRIPS CO LTD
- Filing Date
- 2022-12-26
- Publication Date
- 2026-04-14
AI Technical Summary
Existing feeding guides cannot effectively support and limit the copper plate according to its specific length and width during the copper plate rolling process, which may cause the copper plate to tilt and affect the rolling effect.
A copper plate rolling feeding guide rail was designed, comprising a limiting mechanism, an auxiliary device, a connecting mechanism, a conveying mechanism, an adjusting device, and a driving mechanism. Through the cooperation of a synchronous pulley and a bevel gear, it achieves support and limiting according to the length and width of the copper plate to prevent the copper plate from tilting, and realizes synchronous rotation and distance adjustment of the feeding roller through a synchronous belt device.
It achieves precise support and positioning based on the length and width of the copper plate, preventing the copper plate from tilting during rolling, ensuring uniform force on the upper and lower parts of the copper plate, avoiding bending, and improving the practicality of the feeding guide.
Smart Images

Figure CN115846430B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of copper plate rolling feeding technology, and particularly to a copper plate rolling feeding guide rail. Background Technology
[0002] Copper plate refers to copper sheet material that has been rolled. Rolling includes hot rolling and cold rolling. During the rolling process, feed rollers are used to transport the copper plate.
[0003] Existing feeding guides are not convenient to adjust and support according to the specific length of the copper plate, nor are they convenient to limit the movement according to the specific width of the copper plate. As a result, the copper plate may tilt during the rolling process, which reduces the rolling effect of the copper plate and reduces the practicality of the feeding guide. Summary of the Invention
[0004] In view of this, the present invention provides a copper plate rolling feeding guide rail, which has a limiting mechanism, an auxiliary device, and a connecting mechanism. It realizes the effect of splicing the guide rail according to the specific length of the copper plate, which is beneficial to support the copper plate according to its specific length and can more easily limit it according to the specific width of the copper plate, thus preventing the copper plate from tilting during the rolling process.
[0005] This invention provides a copper plate rolling feeding guide rail, specifically comprising: support columns; four sets of support columns, with a support frame fixedly installed between two sets of support columns, and the main body of the support frame being a T-shaped structure; two sets of horizontal columns fixedly installed between the top of the support columns and the top of the support frame, with a load-bearing rod fixedly installed between the two sets of horizontal columns; the load-bearing rods are arranged in a straight line, and an auxiliary plate is fixedly installed on the outer side of the load-bearing rods; bearings are fitted on the outer side of the load-bearing rods, and rotating rollers are fitted on the outer side of the bearings, with the rotating rollers located on both sides of the auxiliary plate; a conveying mechanism is fixedly installed on the outer side of the horizontal columns, and an auxiliary device is fixedly installed on the outer side of the conveying mechanism, and a connecting mechanism is fixedly installed on the outer side of the conveying mechanism; an adjusting device is installed at the top of the conveying mechanism, and a driving mechanism is fixedly installed on the outer side of the conveying mechanism; and a limit mechanism is installed on the inner side of the horizontal columns.
[0006] Furthermore, a bearing is fitted at the bottom of the cross column, and a double-ended screw is fitted inside the bearing; the number of double-ended screws is set to two sets, and a handwheel is fixedly installed at the top of the double-ended screws; a synchronous pulley A is fixedly installed on the outside of the double-ended screws, and the number of synchronous pulleys A is set to two sets, and a synchronous belt device is provided between the two sets of synchronous pulleys A.
[0007] Furthermore, the limiting mechanism includes: a sliding seat, a limiting frame, a limiting shaft, and a limiting roller; the sliding seats are threadedly connected to both sides of the double-ended screw, and the number of sliding seats is set to four sets, with the two sets of sliding seats arranged symmetrically; the limiting frame is fixedly set between the two sets of sliding seats, and a semi-circular groove is opened at the bottom of the limiting frame, with a rotating roller movably arranged inside the semi-circular groove; a bearing is fitted on the outside of the limiting shaft, and the bearing is fitted inside the limiting frame; the limiting roller is fixedly set on the outside of the limiting shaft, and the limiting roller is located inside the limiting frame.
[0008] Furthermore, the conveying mechanism includes: a fixed frame, a lower feeding roller, a bevel gear A, and a synchronous pulley B; the fixed frame is fixedly installed on the outer sides of both ends of the horizontal column, and the number of fixed frames is set to four; bearings are fitted on the outer sides of both ends of the lower feeding roller, and the bearings are fitted inside the fixed frame; the lower feeding roller is located between two sets of fixed frames, and the number of lower feeding rollers is set to two; the bevel gear A is fixedly installed on the outer side of one set of lower feeding rollers; the number of synchronous pulleys B is set to two, and a synchronous belt device is provided between the two sets of synchronous pulleys B, and the two sets of synchronous pulleys B are respectively fixedly installed on the outer sides of the two sets of lower feeding rollers.
[0009] Furthermore, the auxiliary device includes: an auxiliary frame, an auxiliary hole, a sliding plate, and a shock absorber; the auxiliary frame is fixedly installed on the outside of two sets of fixed frames; the auxiliary hole is opened inside the top side of the auxiliary frame; the sliding plate is slidably installed inside the auxiliary frame; the shock absorber is fixedly installed between the sliding plate and the inside of the auxiliary frame, and the shock absorbers are arranged in a straight line.
[0010] Furthermore, the connecting mechanism includes: a connecting frame, a baffle, and a connecting column; the connecting frame is fixedly disposed on the outside of the other two sets of fixed frames, and the connecting frame and the auxiliary frame are symmetrically arranged, and the connecting frame is movably disposed on the inside of the auxiliary frame; the baffle is slidably disposed inside the connecting frame, and a spring is provided between the bottom of the baffle and the inside of the connecting frame; the connecting column is fixedly disposed on the top of the baffle, and the connecting column is slidably disposed inside the connecting frame; the top of the connecting column is configured as a beveled structure, and the connecting column is slidably disposed inside the auxiliary hole.
[0011] Furthermore, the adjusting device includes: a threaded cylinder, a threaded rod, a handle, a timing pulley C, and an adjusting seat; the threaded cylinder is rotatably disposed inside the top side of the fixed frame; the threaded rod is disposed inside the threaded cylinder via a threaded connection; the handle is fixedly disposed on the outer side of the top of the threaded cylinder, and the handles are arranged in a circular array; the timing pulley C is fixedly disposed on the outer side of the threaded cylinder, and a timing belt device is disposed on the outer side of the timing pulley C; the adjusting seat is fixedly disposed at the bottom of the threaded rod, and the adjusting seat is slidably disposed inside the fixed frame.
[0012] Furthermore, the adjusting device also includes: an upper feeding roller, a bevel gear B, and a synchronous pulley D; a bearing is fitted on the outer side of the upper feeding roller, and the bearing is fitted inside the adjusting seat, and the number of upper feeding rollers is set to two sets; the bevel gear B is fixedly set on the outer side of one end of the upper feeding roller; the number of synchronous pulleys D is set to two sets, and the two sets of synchronous pulleys D are respectively fixedly set on the outer side of the other end of the two sets of upper feeding rollers, and a synchronous belt device is provided between the two sets of synchronous pulleys D.
[0013] Furthermore, the driving mechanism includes: a drive seat A, a drive shaft A, a limiting groove, a bevel gear C, a drive seat B, a drive shaft B, a limiting strip, and a bevel gear D; the drive seat A is fixedly disposed on the outside of the fixed frame; a bearing is fitted on the outside of the drive shaft A, and the bearing is fitted inside the drive seat A; the limiting groove is opened inside the drive shaft A; the bevel gear C is fixedly disposed on the outside of the drive shaft A, and the bevel gear C meshes with the bevel gear A; the drive seat B is fixedly disposed on the outside of the adjusting seat; a bearing is fitted on the outside of the drive shaft B, and the bearing is fitted inside the drive seat B, and the drive shaft B is slidably disposed inside the drive shaft A; the limiting strip is fixedly disposed on the outside of the drive shaft B, and the limiting strip is slidably disposed inside the limiting groove; the bevel gear D is fixedly disposed on the outside of the drive shaft B, and the bevel gear D meshes with the bevel gear B, and the bevel gear D and the bevel gear C are symmetrically arranged.
[0014] Beneficial effects
[0015] According to various embodiments of the present invention, the copper plate rolling feeding guide rail, by setting a limiting mechanism, an auxiliary device, and a connecting mechanism, achieves the effect of splicing the guide rail according to the specific length of the copper plate. This is beneficial for supporting the copper plate according to its specific length and for limiting it more easily according to its specific width, thus preventing the copper plate from tilting during the rolling process.
[0016] Furthermore, by setting up a synchronous pulley A and a synchronous belt device, the two sets of double-headed screws can rotate simultaneously, which achieves the purpose of making the two sets of limit frames and their internal limit rollers move in opposite directions at the same time. This is beneficial for limiting the copper plate according to its specific width and preventing tilting during the copper plate rolling process.
[0017] Furthermore, by incorporating a sloping top structure on the connecting column, the connecting column slides into the auxiliary frame via its sloping top structure when the connecting frame slides into the auxiliary frame. Utilizing a spring mechanism in conjunction with a baffle, the connecting column automatically slides into the auxiliary hole when the connecting frame is fully inserted into the auxiliary frame, thus fixing the connecting frame and the auxiliary frame relatively. This serves to fix and splice the horizontal columns according to the specific length of the copper plate, facilitating support based on the copper plate's length. The inclusion of a sliding plate and a shock absorber achieves vibration damping between the two sets of horizontal columns.
[0018] Furthermore, by incorporating bevel gears C and D, as well as drive shafts A and B, the system achieves the effect of simultaneously rotating bevel gears A and B in opposite directions, thus enabling the upper and lower feed rollers to rotate in opposite directions simultaneously. Utilizing limiting grooves and limiting strips, the system allows drive shaft B to slide within drive shaft A while simultaneously rotating with drive shaft A. This system effectively adjusts the distance between the upper and lower feed rollers while simultaneously causing them to rotate in opposite directions. This ensures that the copper plate experiences equal force from top to bottom during transport, preventing bending due to uneven force distribution during the transport process.
[0019] Furthermore, by incorporating a synchronous pulley C and a synchronous belt device, the two sets of threaded cylinders can rotate simultaneously, thereby enabling the two sets of threaded rods to drive the two sets of adjusting seats to move up and down. This allows for the adjustment of the distance between the upper and lower feeding rollers according to the specific thickness of the copper plate, which is beneficial for conveying the copper plate according to its thickness and enhances the practicality of the feeding guide. Attached Figure Description
[0020] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0021] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0022] In the attached diagram:
[0023] Figure 1 This is a schematic diagram of the overall structure of the copper plate rolling feeding guide rail according to an embodiment of the present invention.
[0024] Figure 2 This is a schematic diagram of the connection structure between the adjustment device and the drive mechanism of the copper plate rolling feeding guide rail according to an embodiment of the present invention.
[0025] Figure 3 This is a schematic diagram of the upper surface of the support frame of the copper plate rolling feeding guide according to an embodiment of the present invention.
[0026] Figure 4 This is a schematic diagram of the limiting mechanism of the copper plate rolling feeding guide rail according to an embodiment of the present invention.
[0027] Figure 5 This is a schematic diagram of the connection structure between the conveying mechanism and the driving mechanism of the copper plate rolling feeding guide rail according to an embodiment of the present invention.
[0028] Figure 6 This is a schematic diagram of the connection structure between the adjustment device and the conveying mechanism of the copper plate rolling feeding guide rail according to an embodiment of the present invention.
[0029] Figure 7 This is a schematic diagram of the structure of the adjustment device for the copper plate rolling feed guide rail according to an embodiment of the present invention.
[0030] Figure 8 This is a schematic diagram of the drive mechanism of the copper plate rolling feeding guide in an embodiment of the present invention.
[0031] Figure 9 This is a schematic diagram of the internal structure of the connecting frame of the copper plate rolling feeding guide in an embodiment of the present invention.
[0032] Figure 10 This is a schematic diagram of the internal structure of the auxiliary frame of the copper plate rolling feeding guide according to an embodiment of the present invention.
[0033] List of reference numerals
[0034] 1. Support column; 101. Support frame; 102. Horizontal column; 103. Load-bearing rod; 104. Auxiliary plate; 105. Rotating roller; 106. Double-ended screw; 107. Synchronous pulley A;
[0035] 2. Limiting mechanism; 201. Sliding seat; 202. Limiting frame; 203. Limiting shaft; 204. Limiting roller;
[0036] 3. Auxiliary devices; 301. Auxiliary frame; 302. Auxiliary hole; 303. Sliding plate; 304. Shock absorber;
[0037] 4. Connecting mechanism; 401. Connecting frame; 402. Baffle; 403. Connecting column;
[0038] 5. Conveying mechanism; 501. Fixed frame; 502. Lower feed roller; 503. Bevel gear A; 504. Synchronous pulley B;
[0039] 6. Adjusting device; 601. Threaded cylinder; 602. Threaded rod; 603. Handle; 604. Synchronous pulley C; 605. Adjusting seat; 606. Upper feed roller; 607. Bevel gear B; 608. Synchronous pulley D;
[0040] 7. Drive mechanism; 701. Drive seat A; 702. Drive shaft A; 7021. Limiting groove; 703. Bevel gear C; 704. Drive seat B; 705. Drive shaft B; 7051. Limiting bar; 706. Bevel gear D. Detailed Implementation
[0041] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.
[0042] Example: Please refer to Figures 1 to 10 As shown:
[0043] This invention provides a copper plate rolling feeding guide rail, including support columns 1; the number of support columns 1 is set to four, and a support frame 101 is fixedly arranged between two sets of support columns 1, and the main body of the support frame 101 is set to a T-shaped structure; a horizontal column 102 is fixedly arranged between the top of the support column 1 and the top of the support frame 101, and the number of horizontal columns 102 is set to two, and a load-bearing rod 103 is fixedly arranged between the two sets of horizontal columns 102; the load-bearing rods 103 are arranged in a straight line, and an auxiliary plate 104 is fixedly arranged on the outside of the load-bearing rods 103; a bearing is installed on the outside of the load-bearing rods 103, and a rotating roller 105 is installed on the outside of the bearing, and the rotating roller 105 is arranged on both sides of the auxiliary plate 104; a conveying mechanism is fixedly arranged on the outside of the horizontal column 102. 5. An auxiliary device 3 is fixedly installed on the outside of the conveying mechanism 5, and a connecting mechanism 4 is fixedly installed on the outside of the conveying mechanism 5. The conveying mechanism 5 includes: a fixed frame 501, a lower feeding roller 502, a bevel gear A 503, and a synchronous pulley B 504. The fixed frame 501 is fixedly installed on the outside of both ends of the horizontal column 102, and the number of fixed frames 501 is set to four. Bearings are installed on the outside of both ends of the lower feeding roller 502, and the bearings are installed inside the fixed frame 501. The lower feeding roller 502 is located between two sets of fixed frames 501, and the number of lower feeding rollers 502 is set to two. The bevel gear A 503 is fixedly installed on the outside of one set of lower feeding rollers 502. The number of synchronous pulleys B 504 is set to two, and a connection mechanism 4 is provided between the two sets of synchronous pulleys B 504. The device includes a synchronous belt, with two sets of synchronous pulleys B504 fixedly mounted on the outer sides of two sets of lower feed rollers 502. The auxiliary device 3 includes an auxiliary frame 301, an auxiliary hole 302, a sliding plate 303, and a shock absorber 304. The auxiliary frame 301 is fixedly mounted on the outer sides of the two sets of fixed frames 501. The auxiliary hole 302 is located inside the top side of the auxiliary frame 301. The sliding plate 303 is slidably mounted inside the auxiliary frame 301. The shock absorber 304 is fixedly mounted between the sliding plate 303 and the auxiliary frame 301, and the shock absorbers 304 are arranged in a straight line. Its specific function is that, by providing a top inclined structure for the connecting column 403, when the connecting frame 401 slides into the auxiliary frame 301, the connecting column 403 slides into the connecting frame 301 via its top inclined structure. The internal effect of frame 401: By using spring components in conjunction with baffle 402, when the connecting frame 401 is fully slid into the auxiliary frame 301, the connecting column 403 automatically slides into the auxiliary hole 302, thus fixing the connecting frame 401 and the auxiliary frame 301 relative to each other. This serves to fix and splice the horizontal columns 102 according to the specific length of the copper plate, which is beneficial for supporting the copper plate according to its specific length. By setting sliding plate 303 and shock absorber 304, the effect of shock absorption between the two sets of horizontal columns 102 is achieved. An adjustment device 6 is set on the top of the conveying mechanism 5, and a drive mechanism 7 is fixedly set on the outside of the conveying mechanism 5. The adjustment device 6 also includes: upper feeding roller 606, bevel gear B607 and synchronous wheel D608.A bearing is fitted to the outer side of the upper feed roller 606, and the bearing is fitted inside the adjusting seat 605. Two sets of upper feed rollers 606 are provided. A bevel gear B607 is fixedly installed on the outer side of one end of the upper feed roller 606. Two sets of synchronous pulleys D608 are provided, and the two sets of synchronous pulleys D608 are respectively fixedly installed on the outer side of the other end of the two sets of upper feed rollers 606. A synchronous belt device is provided between the two sets of synchronous pulleys D608. A limit mechanism 2 is provided on the inner side of the horizontal column 102.
[0044] The horizontal column 102 has a bearing installed at its bottom, and a double-headed screw 106 is installed inside the bearing. There are two sets of double-headed screws 106, and a handwheel is fixedly installed at the top of each double-headed screw 106. A synchronous pulley A107 is fixedly installed on the outside of the double-headed screw 106, and there are two sets of synchronous pulleys A107. A synchronous belt device is installed between the two sets of synchronous pulleys A107. Its specific function is to enable the two sets of double-headed screws 106 to rotate simultaneously, thereby enabling the two sets of limiting frames 202 and their internal limiting rollers 204 to move in opposite directions simultaneously. This helps to limit the copper plate according to its specific width and prevents tilting during the copper plate rolling process.
[0045] The limiting mechanism 2 includes: a sliding seat 201, a limiting frame 202, a limiting shaft 203, and a limiting roller 204. The sliding seat 201 is threadedly connected to both sides of the double-ended screw 106, and there are four sets of sliding seats 201, which are symmetrically arranged between the two sets. The limiting frame 202 is fixedly disposed between the two sets of sliding seats 201, and a semi-circular groove is provided at the bottom of the limiting frame 202, with a rotating roller 105 movably disposed inside the semi-circular groove. A bearing is fitted on the outer side of the limiting shaft 203. The bearing is installed inside the limiting frame 202; the limiting roller 204 is fixedly set outside the limiting shaft 203 and is located inside the limiting frame 202; its specific function is: by setting the synchronous wheel A107 and the synchronous belt device, the two sets of double-headed screws 106 are rotated at the same time, which achieves the purpose of making the two sets of limiting frames 202 and their internal limiting rollers 204 move in opposite directions at the same time, which is beneficial to limit the copper plate according to the specific width of the copper plate and prevent the phenomenon of tilting during the copper plate rolling process.
[0046] The connecting mechanism 4 includes: a connecting frame 401, a baffle 402, and a connecting column 403; the connecting frame 401 is fixedly installed on the outside of the other two sets of fixed frames 501, and the connecting frame 401 and the auxiliary frame 301 are symmetrically arranged, and the connecting frame 401 is movably installed inside the auxiliary frame 301; the baffle 402 is slidably installed inside the connecting frame 401, and a spring is provided between the bottom of the baffle 402 and the inside of the connecting frame 401; the connecting column 403 is fixedly installed on the top of the baffle 402, and the connecting column 403 is slidably installed inside the connecting frame 401; the top of the connecting column 403 is set as a beveled structure, and the connecting column 403 is slidably installed... It is placed inside the auxiliary hole 302; its specific function is: by setting the top inclined structure of the connecting column 403, the connecting column 403 is able to slide into the interior of the connecting frame 401 through its top inclined structure when the connecting frame 401 slides into the auxiliary frame 301; by using the spring element in conjunction with the baffle 402, the connecting column 403 is automatically slid into the auxiliary hole 302 when the connecting frame 401 is completely slid into the auxiliary frame 301, so that the connecting frame 401 and the auxiliary frame 301 are relatively fixed, which plays the role of fixing and splicing the horizontal columns 102 according to the specific length of the copper plate, which is beneficial to support the copper plate according to its specific length.
[0047] The adjusting device 6 includes: a threaded cylinder 601, a threaded rod 602, a handle 603, a timing pulley C604, and an adjusting seat 605; the threaded cylinder 601 is rotatably disposed inside the top side of the fixed frame 501; the threaded rod 602 is threadedly connected inside the threaded cylinder 601; the handle 603 is fixedly disposed on the top outer side of the threaded cylinder 601, and the handles 603 are arranged in a circular array; the timing pulley C604 is fixedly disposed on the outer side of the threaded cylinder 601, and a timing belt device is disposed on the outer side of the timing pulley C604; the adjusting seat 605... 5 is fixedly set at the bottom of the threaded rod 602, and the adjusting seat 605 is slidably set inside the fixed frame 501; its specific function is: by setting the synchronous pulley C604 and the synchronous belt device, the two sets of threaded cylinders 601 are made to rotate simultaneously, so that the two sets of threaded rods 602 drive the two sets of adjusting seats 605 to move up and down, thereby adjusting the distance between the upper feeding roller 606 and the lower feeding roller 502 according to the specific thickness of the copper plate, which is beneficial to conveying the copper plate according to its thickness.
[0048] The drive mechanism 7 includes: a drive seat A701, a drive shaft A702, a limiting groove 7021, a bevel gear C703, a drive seat B704, a drive shaft B705, a limiting strip 7051, and a bevel gear D706; the drive seat A701 is fixedly mounted on the outside of the fixing frame 501; a bearing is fitted on the outside of the drive shaft A702, and the bearing is fitted inside the drive seat A701; the limiting groove 7021 is formed inside the drive shaft A702; the bevel gear C703 is fixedly mounted on the drive seat A704. The drive shaft A702 is located on the outside, and the bevel gear C703 meshes with the bevel gear A503; the drive seat B704 is fixedly mounted on the outside of the adjusting seat 605; a bearing is fitted on the outside of the drive shaft B705, and the bearing is fitted inside the drive seat B704, while the drive shaft B705 is slidably mounted inside the drive shaft A702; a limiting strip 7051 is fixedly mounted on the outside of the drive shaft B705, and the limiting strip 7051 is slidably mounted inside the limiting groove 7021; the bevel gear D706 is fixed. Located outside drive shaft B705, bevel gear D706 meshes with bevel gear B607, and bevel gear D706 and bevel gear C703 are symmetrically arranged. Its specific function is to achieve the effect of simultaneously rotating bevel gears A703 and B607 in opposite directions by setting bevel gears C703 and D706, as well as drive shafts A702 and B705, thereby causing the upper feed roller 606 and lower feed roller 502 to rotate simultaneously in opposite directions. The purpose of the movement is to use the limiting groove 7021 and the limiting strip 7051 to make the drive shaft B705 slide inside the drive shaft A702 while rotating with the drive shaft A702. This achieves the effect of adjusting the distance between the upper feed roller 606 and the lower feed roller 502, while making the upper feed roller 606 and the lower feed roller 502 rotate in opposite directions. This is beneficial to ensure that the copper plate is subjected to the same force at the top and bottom when conveying the copper plate, and to prevent the copper plate from bending due to uneven force at the top and bottom during the conveying process.
[0049] The specific usage and function of this embodiment: In this invention, during use, the device is supported by the support column 1 and the support frame 101; the copper plate is supported by the rotating roller 105; a set of double-headed screws 106 are rotated, and the two sets of double-headed screws 106 rotate simultaneously through the synchronous pulley A107 and the synchronous belt device, thereby causing the two sets of limiting frames 202 to move in opposite directions simultaneously, so that the outer side of the limiting roller 204 is in contact with the two sides of the copper plate, which is beneficial to limit the copper plate according to its specific width and prevent tilting during the copper plate rolling process; the starting motor device drives the drive shaft A702 and the bevel gear C703 to rotate, and the bevel gear C703 rotates. Gear C703 drives the lower feed roller 502 to rotate via bevel gear A503. Both sets of lower feed rollers 502 rotate simultaneously via synchronous pulley B504 and a synchronous belt. Simultaneously, drive shaft A702 drives bevel gear D706 to rotate via drive shaft B705. Bevel gear D706 drives upper feed roller 606 to rotate via bevel gear B607. Both sets of upper feed rollers 606 rotate simultaneously via synchronous pulley D608 and a synchronous belt. By utilizing the limiting groove 7021 and the limiting strip 7051, the drive shaft B705 slides inside drive shaft A702 while simultaneously rotating with drive shaft A702, achieving the desired effect. To adjust the distance between the upper feed roller 606 and the lower feed roller 502, and simultaneously cause them to rotate in opposite directions, this ensures that the copper plate experiences equal force from top to bottom during transport, preventing bending due to uneven force. Rotating a set of threaded cylinders 601 via handle 603 causes both sets of threaded cylinders 601 to rotate simultaneously via synchronous pulley C604 and synchronous belt. This causes the two sets of threaded rods 602 to move the upper feed roller 606 up and down via two sets of adjusting seats 605, thus adjusting the distance between the upper and lower feed rollers 606 according to the specific thickness of the copper plate. The distance between the rollers 502 is adjustable, which is beneficial for conveying the copper plate according to its thickness. When splicing is required according to the length of the copper plate, the connecting frame 401 slides into the auxiliary frame 301, and the connecting column 403 slides into the connecting frame 401 through its top inclined structure. When the connecting frame 401 is fully slid into the auxiliary frame 301, the spring element causes the connecting column 403 to automatically slide into the auxiliary hole 302 through the baffle 402, so that the connecting frame 401 and the auxiliary frame 301 are relatively fixed. This plays a role in fixing and splicing the horizontal columns 102 according to the specific length of the copper plate, which is beneficial for supporting the copper plate according to its specific length.
Claims
1. A copper plate rolling feeding guide rail, characterized in that, include: Support column (1); The number of support columns (1) is set to four groups, and a support frame (101) is fixedly installed between two groups of support columns (1), and the main body of the support frame (101) is set to a T-shaped structure; a horizontal column (102) is fixedly installed between the top of the support column (1) and the top of the support frame (101), and the number of horizontal columns (102) is set to two groups, and a load-bearing rod (103) is fixedly installed between the two groups of horizontal columns (102); the load-bearing rods (103) are arranged in a straight line, and an auxiliary plate (104) is fixedly installed on the outside of the load-bearing rods (103); the outside of the load-bearing rods (103) A bearing is installed in conjunction with the auxiliary plate (104), and a rotating roller (105) is installed on the outside of the bearing. The rotating roller (105) is located on both sides of the auxiliary plate (104). A conveying mechanism (5) is fixedly installed on the outside of the horizontal column (102), and an auxiliary device (3) is fixedly installed on the outside of the conveying mechanism (5). A connecting mechanism (4) is fixedly installed on the outside of the conveying mechanism (5). An adjusting device (6) is provided on the top of the conveying mechanism (5), and a driving mechanism (7) is fixedly installed on the outside of the conveying mechanism (5). A limit mechanism (2) is provided on the inside of the horizontal column (102). The conveying mechanism (5) includes: a fixed frame (501), a lower feeding roller (502), a bevel gear A (503), and a synchronous pulley B (504); the fixed frame (501) is fixedly installed on the outer sides of both ends of the horizontal column (102), and the number of fixed frames (501) is set to four; bearings are fitted on the outer sides of both ends of the lower feeding roller (502), and the bearings are fitted inside the fixed frame (501); the lower feeding roller (502) is located between two sets of fixed frames (501), and the number of lower feeding rollers (502) is set to two; the bevel gear A (503) and the synchronous pulley B (504) are all fixedly installed on the horizontal column (102); the bevel gear A (503) and the synchronous pulley B (504) are all fixedly installed on the horizontal column (102), ... Gear A (503) is fixedly mounted on the outside of a set of lower feed rollers (502); the number of synchronous pulleys B (504) is set to two sets, and a synchronous belt device is provided between the two sets of synchronous pulleys B (504), and the two sets of synchronous pulleys B (504) are respectively fixedly mounted on the outside of the two sets of lower feed rollers (502); the auxiliary device (3) includes: an auxiliary frame (301), an auxiliary hole (302), a sliding plate (303), and a shock absorber (304); the auxiliary frame (301) is fixedly mounted on the outside of the two sets of fixed frames (501); the auxiliary hole ( 302) is opened inside the top side of the auxiliary frame (301); the sliding plate (303) is slidably disposed inside the auxiliary frame (301); the shock absorber (304) is fixedly disposed between the sliding plate (303) and the auxiliary frame (301), and the shock absorbers (304) are arranged in a straight line; the connecting mechanism (4) includes: a connecting frame (401), a baffle (402) and a connecting column (403); the connecting frame (401) is fixedly disposed outside the other two sets of fixed frames (501), and the connecting frame (401) and the auxiliary frame (301) are connected in a straight line. The components are symmetrically arranged between the auxiliary frame (301) and the connecting frame (401) is movably arranged inside the auxiliary frame (301); the baffle (402) is slidably arranged inside the connecting frame (401), and a spring is provided between the bottom of the baffle (402) and the inside of the connecting frame (401); the connecting column (403) is fixedly arranged on the top of the baffle (402), and the connecting column (403) is slidably arranged inside the connecting frame (401); the top of the connecting column (403) is set as a beveled structure, and the connecting column (403) is slidably arranged inside the auxiliary hole (302).
2. The copper plate rolling feeding guide rail as described in claim 1, characterized in that: The bottom of the horizontal column (102) is fitted with a bearing, and a double-headed screw (106) is fitted inside the bearing; the number of double-headed screws (106) is set to two sets, and a handwheel is fixedly installed at the top of the double-headed screws (106); a synchronous pulley A (107) is fixedly installed on the outside of the double-headed screws (106), and the number of synchronous pulleys A (107) is set to two sets, and a synchronous belt device is provided between the two sets of synchronous pulleys A (107).
3. The copper plate rolling feeding guide rail as described in claim 2, characterized in that: The limiting mechanism (2) includes: a sliding seat (201), a limiting frame (202), a limiting shaft (203), and a limiting roller (204); the sliding seat (201) is connected to both sides of the double-ended screw (106) by a threaded connection, and the number of sliding seats (201) is set to four sets, and the two sets of sliding seats (201) are symmetrically arranged; the limiting frame (202) is fixedly arranged between the two sets of sliding seats (201), and a semi-circular groove is opened at the bottom of the limiting frame (202), and a rotating roller (105) is movably arranged inside the semi-circular groove; a bearing is fitted on the outside of the limiting shaft (203), and the bearing is fitted inside the limiting frame (202); the limiting roller (204) is fixedly arranged on the outside of the limiting shaft (203), and the limiting roller (204) is located inside the limiting frame (202).
4. The copper plate rolling feeding guide rail as described in claim 1, characterized in that: The adjusting device (6) includes: a threaded cylinder (601), a threaded rod (602), a handle (603), a synchronous pulley C (604), and an adjusting seat (605); the threaded cylinder (601) is rotatably disposed inside the top side of the fixed frame (501); the threaded rod (602) is disposed inside the threaded cylinder (601) by a threaded connection; the handle (603) is fixedly disposed on the top outer side of the threaded cylinder (601), and the handles (603) are arranged in a ring array; the synchronous pulley C (604) is fixedly disposed on the outer side of the threaded cylinder (601), and a synchronous belt device is disposed on the outer side of the synchronous pulley C (604); the adjusting seat (605) is fixedly disposed at the bottom of the threaded rod (602), and the adjusting seat (605) is slidably disposed inside the fixed frame (501).
5. The copper plate rolling feeding guide rail as described in claim 4, characterized in that: The adjusting device (6) further includes: an upper feeding roller (606), a bevel gear B (607), and a synchronous pulley D (608); a bearing is fitted on the outer side of the upper feeding roller (606), and the bearing is fitted inside the adjusting seat (605), and the number of upper feeding rollers (606) is set to two sets; the bevel gear B (607) is fixedly set on the outer side of one end of the upper feeding roller (606); the number of synchronous pulleys D (608) is set to two sets, and the two sets of synchronous pulleys D (608) are respectively fixedly set on the outer side of the other end of the two sets of upper feeding rollers (606), and a synchronous belt device is provided between the two sets of synchronous pulleys D (608).
6. The copper plate rolling feeding guide rail as described in claim 5, characterized in that: The drive mechanism (7) includes: a drive seat A (701), a drive shaft A (702), a limiting groove (7021), a bevel gear C (703), a drive seat B (704), a drive shaft B (705), a limiting strip (7051), and a bevel gear D (706); the drive seat A (701) is fixedly disposed on the outside of the fixing frame (501); a bearing is fitted on the outside of the drive shaft A (702), and the bearing is fitted inside the drive seat A (701); the limiting groove (7021) is opened inside the drive shaft A (702); the bevel gear C (703) is fixedly disposed on the outside of the drive shaft A (702), and the bevel gear C (703) is aligned with the bevel gear A (503). Meshing; drive seat B (704) is fixedly disposed on the outside of adjustment seat (605); a bearing is fitted on the outside of drive shaft B (705), and the bearing is fitted inside drive seat B (704), and drive shaft B (705) is slidably disposed inside drive shaft A (702); limit strip (7051) is fixedly disposed on the outside of drive shaft B (705), and limit strip (7051) is slidably disposed inside limit groove (7021); bevel gear D (706) is fixedly disposed on the outside of drive shaft B (705), and bevel gear D (706) meshes with bevel gear B (607), and bevel gear D (706) and bevel gear C (703) are symmetrically arranged.
Citation Information
Patent Citations
Plate conveying mechanism
CN112429490A
Device for a roller-conveyor
EP0744362A2