CN218694291U - Adjustable transverse shearing device for hot-rolled stainless steel plate - Google Patents
Adjustable transverse shearing device for hot-rolled stainless steel plate Download PDFInfo
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- CN218694291U CN218694291U CN202222722256.6U CN202222722256U CN218694291U CN 218694291 U CN218694291 U CN 218694291U CN 202222722256 U CN202222722256 U CN 202222722256U CN 218694291 U CN218694291 U CN 218694291U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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Abstract
The utility model discloses an adjustable transverse shearing device for hot-rolled stainless steel plates, which comprises a shearing device, a supporting device, a transmission device and a telescopic device; the shearing device is arranged on one side of the supporting device; the transmission device is arranged above the supporting device; the telescopic device is arranged in the middle of the supporting device; the shearing device comprises a supporting table, a sliding chute I, a motor base I, a connecting block, a knife rest I, a knife rest II, a knife II, a hydraulic cylinder I, a connecting frame, a sliding block I, a connecting plate I, a support, a hydraulic cylinder II, a sliding chute II, a sliding block II and a hydraulic cylinder III; the telescoping device comprises a motor II, a chain wheel II, a threaded rod I, a chain wheel III, a limiting plate I, a threaded rod II, a chain wheel IV, a limiting plate II, a threaded rod III, a chain wheel V, a limiting plate III and a motor base II. The utility model discloses can adjust self width, satisfy the requirement of cuting the corrosion resistant plate of different width.
Description
Technical Field
The utility model belongs to the technical field of the corrosion resistant plate hot rolling, in particular to cross shear device with adjustable hot rolling corrosion resistant plate.
Background
The cross shearing machine is named as a cross shearing line, a decoiling machine, a decoiling line and a cross shearing unit, is simple and reliable to operate, neat in stacking, high in automation degree, high in fixed length precision and high in sheet flatness, and the production line of the cross shearing machine mainly comprises a feeding trolley, a decoiler, a leveling machine, a feeding mechanism, a plate shearing machine, a conveying device, a stacking device and the like. The production line can also be provided with a slitting machine, and the plate materials are cut into required width and fixed length to be cut and stacked.
However, the widths of the stainless steel plates of different types are different, and the existing transverse shearing device cannot shear the stainless steel plates of different widths, so that the hot-rolled stainless steel plate adjustable transverse shearing device is required to shear the stainless steel plates of different widths.
Disclosure of Invention
The utility model aims at overcoming not enough among the prior art, providing a horizontal shearing device with adjustable hot rolling corrosion resistant plate, the utility model discloses can adjust self width, satisfy the corrosion resistant plate to different widths and carry out the requirement of cuting.
In order to realize the purpose, the utility model discloses a technical scheme is:
an adjustable transverse shearing device for a hot-rolled stainless steel plate comprises a shearing device, a supporting device, a transmission device and a telescopic device; the shearing device is arranged on one side of the supporting device; the transmission device is arranged above the supporting device; the telescopic device is arranged in the middle of the supporting device; the shearing device comprises a supporting table, a sliding chute I, a motor base I, a connecting block, a knife rest I, a knife rest II, a hydraulic cylinder I, a connecting frame, a sliding block I, a connecting plate I, a support, a hydraulic cylinder II, a sliding chute II, a sliding block II and a hydraulic cylinder III; a sliding chute I is arranged above the supporting platform, and the motor base I is fixedly connected to one side of the supporting platform; two ends of the connecting plate I are fixedly connected with a hydraulic cylinder II fixedly connected to the top end of the support, and the bottom surface of the connecting plate I is fixedly connected with the hydraulic cylinder I; the sliding block II at the bottom of the support is connected with the sliding groove I in a sliding mode, and the sliding groove II is formed above the support; a sliding block I is arranged on the inner side of the connecting frame and is in sliding connection with a sliding groove II; the knife rest I is fixedly connected above the supporting table, a knife blade I is arranged above the knife rest I, connecting blocks are arranged on two sides of the knife rest I, and the connecting blocks are fixedly connected with the supporting table; the top of the tool rest II is fixedly connected with the hydraulic cylinder I, and the blade II is arranged below the tool rest II; and one end of the hydraulic cylinder III is fixedly connected to one side of the connecting block, and the other end of the hydraulic cylinder III is fixedly connected to the bottom of the support.
The supporting device comprises a supporting frame, a sliding chute III, a connecting plate II and a connecting beam; the pair of support frames is arranged, and a chute III is arranged above the support frames; two ends of the connecting plate II are fixedly connected to the middle of the supporting frame, and a through hole is formed in the connecting plate II; and two ends of the connecting beam are fixedly connected with the support frame.
The conveying devices are provided with two groups and are respectively arranged on two sides of the supporting frame, and each conveying device comprises a motor I, a chain wheel I, a conveying roller, a telescopic frame, a sliding block III and a motor base II; the bottom of the telescopic frame is provided with a sliding block III, the sliding block III is connected with the sliding groove III in a sliding mode, one side of the telescopic frame is provided with a through hole, and the other side of the telescopic frame is provided with a threaded hole; two ends of the conveying roller are rotatably connected with the telescopic frame, one side of the conveying roller penetrates through a through hole in the telescopic frame to be fixedly connected with the chain wheel, and the adjacent chain wheels are connected through a chain; the motor base II is fixedly connected to one side of the telescopic frame; i fixed connection of motor is on motor cabinet II, and fixed connection is connected through chain and the sprocket of fixed connection on the transportation roller at the sprocket I of I output of motor.
The telescopic device comprises a motor II, a chain wheel II, a threaded rod I, a chain wheel III, a limiting plate I, a threaded rod II, a chain wheel IV, a limiting plate II, a threaded rod III, a chain wheel V and a limiting plate III; the middle of the threaded rod I is provided with a chain wheel III and a limiting plate I, the middle of the threaded rod II is provided with a chain wheel IV and a limiting plate II, and the middle of the threaded rod III is provided with a chain wheel V and a limiting plate III; the motor II is fixedly connected to the motor base I, a chain wheel II fixedly connected to the output end of the motor II is connected with a chain wheel III through a chain, the chain wheel fixedly connected to one side of the chain wheel III is connected with a chain wheel IV through a chain, and the chain wheel fixedly connected to one side of the chain wheel IV is connected with a chain wheel V through a chain; two ends of the threaded rod I, the threaded rod II and the threaded rod III penetrate through the through hole in the connecting plate II to be in threaded connection with the threaded hole in the telescopic frame; limiting plates are arranged at two ends of the threaded rod I, the threaded rod II and the threaded rod III.
Compared with the prior art, the utility model beneficial effect shows:
1) The connecting frame plays a role in supporting the connecting plate I in an auxiliary mode, the hydraulic cylinder I extends out, the blade I on the tool rest I is matched with the blade II on the tool rest II to shear the stainless steel plate, the hydraulic cylinder II and the hydraulic cylinder III are matched to control the support to extend outwards or retract inwards, and the blade I and the blade II can shear the stainless steel plates with different widths;
2) After the motor I is started, the chain wheel I drives the conveying roller to rotate to convey the stainless steel plate; the limiting plates I, the limiting plates II and the limiting plates III play a role in preventing the telescopic frame from being separated from the threaded rods I, II and III;
3) After motor II starts, sprocket II drives threaded hole internal rotation on the expansion bracket of threaded rod I, threaded rod II and threaded rod III, makes the expansion bracket slide in spout III, realizes stretching out and withdrawing of expansion bracket, satisfies the demand of transporting the corrosion resistant plate of different width.
Drawings
FIG. 1 is a schematic structural view of an adjustable cross shearing device for hot rolling stainless steel plates of the present invention;
FIG. 2 is a schematic view of the shearing apparatus of FIG. 1;
FIG. 3 is a schematic view of the shearing device and the supporting device shown in FIG. 1;
FIG. 4 is a schematic view of the support and the telescoping device of FIG. 1;
FIG. 5 is a schematic view of the support device of FIG. 1;
FIG. 6 is a schematic diagram of the structure of the transfer device of FIG. 1;
in the figure: 1. a shearing device; 101. a support table; 1011. a chute I; 1012. a motor base I; 1013. connecting blocks; 102. a tool rest I; 1021. a blade I; 103. a tool rest II; 1031. a blade II; 1032. a hydraulic cylinder I; 104. a connecting frame; 1041. a sliding block I; 105. a connecting plate I; 106. a support; 1061. a hydraulic cylinder II; 1062. a chute II; 1063. a sliding block II; 107. a hydraulic cylinder III; 2. a support device; 201. a support frame; 2011. a chute III; 2012. a connecting plate II; 2013. a connecting beam; 3. a transmission device; 301. a motor I; 3011. a chain wheel I; 302. a transport roller; 303. a telescopic frame; 3031. a slide block III; 304. a motor base II; 4. a telescoping device; 401. a motor II; 4011. a chain wheel II; 402. a threaded rod I; 4021. a sprocket III; 4022. a limiting plate I; 403. a threaded rod II; 4031. a chain wheel IV; 4032. a limiting plate II; 404. a threaded rod III; 4041. a chain wheel V; 4042. and a limiting plate III.
Detailed Description
In order to facilitate understanding of those skilled in the art, the technical solution of the present invention is further specifically described below with reference to fig. 1 to 6.
An adjustable transverse shearing device for a hot-rolled stainless steel plate comprises a shearing device 1, a supporting device 2, a transmission device 3 and a telescopic device 4; the shearing device 1 is arranged on one side of the supporting device 2; the conveying device 3 is arranged above the supporting device 2; the telescopic device 4 is arranged in the middle of the supporting device 2; the shearing device 1 comprises a supporting table 101, a chute I1011, a motor seat I1012, a connecting block 1013, a knife rest I102, a blade I1021, a knife rest II 103, a blade II 1031, a hydraulic cylinder I1032, a connecting frame 104, a slider I1041, a connecting plate I105, a bracket 106, a hydraulic cylinder II 1061, a chute II 1062, a slider II 1063 and a hydraulic cylinder III 107; a sliding chute I1011 is arranged above the supporting platform 101, and a motor base I1012 is fixedly connected to one side of the supporting platform 101; two ends of the connecting plate I105 are fixedly connected with a hydraulic cylinder II 1061 fixedly connected to the top end of the support 106, and the bottom surface of the connecting plate I105 is fixedly connected with a hydraulic cylinder I1032; a sliding block II 1063 at the bottom of the support 106 is in sliding connection with the sliding groove I1011, and a sliding groove II 1062 is arranged above the support 106; a sliding block I1041 is arranged on the inner side of the connecting frame 104, the sliding block I1041 is in sliding connection with the sliding groove II 1062, and the connecting frame 104 plays a role in assisting in supporting the connecting plate I105; the tool rest I102 is fixedly connected above the supporting table 101, a blade I1021 is arranged above the tool rest I102, connecting blocks 1013 are arranged on two sides of the tool rest I102, and the connecting blocks 1013 are fixedly connected with the supporting table 101; the top of the knife rest II 103 is fixedly connected with a hydraulic cylinder I1032, the blade II 1031 is arranged below the knife rest II 103, and the hydraulic cylinder I1032 extends out, so that the blade I1021 on the knife rest I102 is matched with the blade II 1031 on the knife rest II 103 to shear the stainless steel plate; one end of the hydraulic cylinder III 107 is fixedly connected to one side of the connecting block 1013, the other end of the hydraulic cylinder III is fixedly connected to the bottom of the support 106, and the hydraulic cylinder II 1061 and the hydraulic cylinder III 107 are matched to control the support 106 to extend outwards or retract inwards, so that the blade I1021 and the blade II 1031 can shear stainless steel plates with different widths;
the supporting device 2 comprises a supporting frame 201, a sliding groove III 2011, a connecting plate II 2012 and a connecting beam 2013; a pair of support frames 201 is arranged, and a sliding groove III 2011 is arranged above the support frames 201; two ends of the connecting plate II 2012 are fixedly connected to the middle of the supporting frame 201, and a through hole is formed in the connecting plate II 2012; the two ends of the connecting beam 2013 are fixedly connected with the supporting frame 201;
the two groups of transmission devices 3 are respectively arranged on two sides of the support frame 201, and each transmission device 3 comprises a motor I301, a chain wheel I3011, a conveying roller 302, a telescopic frame 303, a sliding block III 3031 and a motor base II 304; a sliding block III 3031 is arranged at the bottom of the telescopic frame 303, the sliding block III 3031 is in sliding connection with a sliding groove III 2011, a through hole is formed in one side of the telescopic frame 303, and a threaded hole is formed in the other side of the telescopic frame 303; two ends of the conveying roller 302 are rotatably connected with the telescopic frame 303, one side of the conveying roller 302 penetrates through a through hole in the telescopic frame 303 to be fixedly connected with a chain wheel, and adjacent chain wheels are connected through a chain; the motor base II 304 is fixedly connected to one side of the telescopic frame 303; i301 fixed connection of motor is on II 304 of motor cabinet, and fixed connection is connected with the sprocket of fixed connection on transportation roller 302 through the chain at the sprocket I3011 of the I301 output of motor, and when I301 of motor starts the back, sprocket I3011 drives transportation roller 302 and rotates the transportation that realizes corrosion resistant plate.
The telescopic device 4 comprises a motor II 401, a chain wheel II 4011, a threaded rod I402, a chain wheel III 4021, a limit plate I4022, a threaded rod II 403, a chain wheel IV 4031, a limit plate II 4032, a threaded rod III 404, a chain wheel V4041 and a limit plate III 4042; a chain wheel III 4021 and a limiting plate I4022 are arranged in the middle of the threaded rod I402, a chain wheel IV 4031 and a limiting plate II 4032 are arranged in the middle of the threaded rod II 403, and a chain wheel V4041 and a limiting plate III 4042 are arranged in the middle of the threaded rod III 404; the motor II 401 is fixedly connected to a motor base I1012, a chain wheel II 4011 fixedly connected to the output end of the motor II 401 is connected with a chain wheel III 4021 through a chain, the chain wheel fixedly connected to one side of the chain wheel III 4021 is connected with a chain wheel IV 4031 through a chain, and the chain wheel fixedly connected to one side of the chain wheel IV 4031 is connected with a chain wheel V4041 through a chain; two ends of the threaded rod I402, the threaded rod II 403 and the threaded rod III 404 penetrate through the through hole in the connecting plate II 2012 and are in threaded connection with the threaded hole in the telescopic frame 303; limiting plates are arranged at two ends of the threaded rod I402, the threaded rod II 403 and the threaded rod III 404, and the limiting plates at two ends of the threaded rod I402, the threaded rod II 403 and the threaded rod III 404 play a role in preventing the telescopic frame 303 from being separated from the threaded rod I402, the threaded rod II 403 and the threaded rod III 404; the limiting plate I4022, the limiting plate II 4032 and the limiting plate III 4042 play a role in preventing the telescopic frame 303 from being shifted due to the displacement of the threaded rod I402, the threaded rod II 403 and the threaded rod III 404 in the rotating process; after motor II 401 starts, sprocket II 4011 drives threaded rod I402, threaded rod II 403 and the threaded rod III 404 screw hole internal rotation on expansion bracket 303, makes expansion bracket 303 slide in spout III 2011, realizes stretching out and withdrawing of expansion bracket 303, satisfies the demand of transporting the corrosion resistant plate of different width.
An adjustable transverse shearing device for a hot-rolled stainless steel plate comprises the following working processes:
starting a hydraulic cylinder II 1061 and a hydraulic cylinder III 107, and extending or retracting the support 106 outwards or inwards according to the width of the stainless steel plate; starting a motor II 401, enabling the threaded rod I402, the threaded rod II 403 and the threaded rod III 404 to be matched with the threaded hole in the telescopic frame 303, and controlling the telescopic plate to extend outwards or retract inwards according to the width of the stainless steel plate; starting a motor I301 to enable a transmission roller to rotate and transport the stainless steel plate; when the length of the stainless steel plate reaches the preset requirement, the hydraulic cylinder I1032 extends out, the blade I1021 on the knife rest I102 and the blade II 1031 on the knife rest II 103 are matched to shear the stainless steel plate, and the sheared stainless steel plate is conveyed to the next device through the conveying roller 302.
The foregoing is merely exemplary and illustrative of the structure of the invention, and various modifications, additions and substitutions as described in the detailed description may be made by those skilled in the art without departing from the structure or exceeding the scope of the invention as defined in the claims.
Claims (4)
1. An adjustable transverse shearing device for a hot-rolled stainless steel plate comprises a shearing device, a supporting device, a transmission device and a telescopic device; the shearing device is arranged on one side of the supporting device; the transmission device is arranged above the supporting device; the telescopic device is arranged in the middle of the supporting device;
the shearing device comprises a supporting table, a sliding chute I, a motor base I, a connecting block, a knife rest I, a knife rest II, a hydraulic cylinder I, a connecting frame, a sliding block I, a connecting plate I, a support, a hydraulic cylinder II, a sliding chute II, a sliding block II and a hydraulic cylinder III; a sliding chute I is arranged above the supporting platform, and the motor base I is fixedly connected to one side of the supporting platform; two ends of the connecting plate I are fixedly connected with a hydraulic cylinder II fixedly connected to the top end of the support, and the bottom surface of the connecting plate I is fixedly connected with the hydraulic cylinder I; the sliding block II at the bottom of the support is connected with the sliding groove I in a sliding mode, and the sliding groove II is formed above the support; a sliding block I is arranged on the inner side of the connecting frame and is in sliding connection with a sliding groove II; the knife rest I is fixedly connected above the supporting table, a knife blade I is arranged above the knife rest I, connecting blocks are arranged on two sides of the knife rest I, and the connecting blocks are fixedly connected with the supporting table; the top of the tool rest II is fixedly connected with the hydraulic cylinder I, and the blade II is arranged below the tool rest II; and one end of the hydraulic cylinder III is fixedly connected to one side of the connecting block, and the other end of the hydraulic cylinder III is fixedly connected to the bottom of the support.
2. The adjustable transverse shearing device for the hot-rolled stainless steel plate as claimed in claim 1, wherein the telescopic device comprises a motor II, a chain wheel II, a threaded rod I, a chain wheel III, a limiting plate I, a threaded rod II, a chain wheel IV, a limiting plate II, a threaded rod III, a chain wheel V and a limiting plate III; the middle of the threaded rod I is provided with a chain wheel III and a limiting plate I, the middle of the threaded rod II is provided with a chain wheel IV and a limiting plate II, and the middle of the threaded rod III is provided with a chain wheel V and a limiting plate III; the motor II is fixedly connected to the motor base I, a chain wheel II fixedly connected to the output end of the motor II is connected with a chain wheel III through a chain, the chain wheel fixedly connected to one side of the chain wheel III is connected with a chain wheel IV through a chain, and the chain wheel fixedly connected to one side of the chain wheel IV is connected with a chain wheel V through a chain; two ends of the threaded rod I, the threaded rod II and the threaded rod III penetrate through the through hole in the connecting plate II to be in threaded connection with the threaded hole in the telescopic frame; limiting plates are arranged at two ends of the threaded rod I, the threaded rod II and the threaded rod III.
3. The adjustable transverse shearing device for the hot-rolled stainless steel plate as claimed in claim 1, wherein two groups of transmission devices are arranged and respectively arranged on two sides of the supporting frame, and each transmission device comprises a motor I, a chain wheel I, a conveying roller, an expansion bracket, a slide block III and a motor base II; the bottom of the expansion bracket is provided with a sliding block III, the sliding block III is connected with the sliding groove III in a sliding mode, one side of the expansion bracket is provided with a through hole, and the other side of the expansion bracket is provided with a threaded hole; two ends of the conveying roller are rotatably connected with the telescopic frame, one side of the conveying roller penetrates through a through hole in the telescopic frame to be fixedly connected with the chain wheel, and the adjacent chain wheels are connected through a chain; the motor base II is fixedly connected to one side of the telescopic frame; i fixed connection of motor is on motor cabinet II, and fixed connection is connected with the sprocket of fixed connection on the transportation roller through chain at the sprocket I of I output of motor.
4. The adjustable transverse shearing device for the hot-rolled stainless steel plate as claimed in claim 1, wherein the supporting device comprises a supporting frame, a chute III, a connecting plate II and a connecting beam; the pair of support frames is arranged, and a chute III is arranged above the support frames; two ends of the connecting plate II are fixedly connected to the middle of the supporting frame, and a through hole is formed in the connecting plate II; and two ends of the connecting beam are fixedly connected with the support frame.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222722256.6U CN218694291U (en) | 2022-10-17 | 2022-10-17 | Adjustable transverse shearing device for hot-rolled stainless steel plate |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222722256.6U CN218694291U (en) | 2022-10-17 | 2022-10-17 | Adjustable transverse shearing device for hot-rolled stainless steel plate |
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CN218694291U true CN218694291U (en) | 2023-03-24 |
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CN202222722256.6U Active CN218694291U (en) | 2022-10-17 | 2022-10-17 | Adjustable transverse shearing device for hot-rolled stainless steel plate |
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- 2022-10-17 CN CN202222722256.6U patent/CN218694291U/en active Active
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