CN112659640A - Feeding system of carton cross cutting machine - Google Patents

Feeding system of carton cross cutting machine Download PDF

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Publication number
CN112659640A
CN112659640A CN202011546541.6A CN202011546541A CN112659640A CN 112659640 A CN112659640 A CN 112659640A CN 202011546541 A CN202011546541 A CN 202011546541A CN 112659640 A CN112659640 A CN 112659640A
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lifting
cutting machine
roller
driving
conveying
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CN202011546541.6A
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CN112659640B (en
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洪凯伟
李跃武
罗伍明
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Wuhan Longfa Packaging Co ltd
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Wuhan Longfa Packaging Co ltd
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Abstract

The feeding system comprises a coordinated conveying device, a material guide device and a lifting device which are sequentially arranged along a paperboard conveying direction, wherein the lifting device comprises a lifting frame, a lifting plate arranged by sliding with the lifting frame and a plurality of first cylinders for driving the lifting plate to lift along the vertical direction, the first cylinders are fixedly connected with the lifting frame, the lifting plate is rotatably connected with a plurality of first conveying rollers, and the lifting plate is provided with a power component for driving the first conveying rollers to synchronously rotate; the lifting plate is provided with a limiting component used for limiting the paper plate. This application has the effect of automatic transport cardboard, and make full use of factory space promotes the work efficiency that the cardboard was carried simultaneously.

Description

Feeding system of carton cross cutting machine
Technical Field
The application relates to the field of carton production, especially relates to a feeding system of carton cross cutting machine.
Background
At present, the paper box needs to be processed and cut before being formed, wherein a die cutting machine is common equipment for processing the paper board, and a die cutting process can manufacture printed matters or other paper products into a die cutting cutter plate according to a pre-designed pattern for cutting, so that the shapes of the printed matters are not limited to straight edges and right angles any more. The traditional die cutting production is a forming process that a die cutting cutter is combined into a die cutting plate according to patterns required by product design, and a printed matter or other platy blanks are rolled and cut into required shapes or cutting marks under the action of pressure.
The current chinese patent with patent application number CN201610541941.5 provides a carton automatic molding production line, the carton has can turn over a first panel and a second panel of rolling over, and first panel and second panel turn over a certain angle after, second panel and the laminating of first panel, the production line is including the carton feed mechanism that sets gradually, be used for the point gum machine who glues on first panel and/or second panel construct and be used for the forming mechanism with the folding laminating of first panel and second panel, and the carton falls to a carton conveying mechanism from carton feed mechanism one by one, and the carton passes through carton conveying mechanism and removes, and point gum machine constructs and is located carton conveying mechanism top.
Aiming at the related technology in the foregoing, the inventor thinks that after the cardboard processing is finished, the worker needs to carry the cardboard to the bin, and the defect that the working strength of the worker is increased exists, which affects the working efficiency of the cardboard die cutting.
Disclosure of Invention
In order to improve the problem of transport cardboard work efficiency, this application provides a feeding system of carton cross cutting machine.
The application provides a feeding system of carton cross cutting machine adopts following technical scheme:
a feeding system of a carton die-cutting machine comprises a coordinated conveying device, a material guide device and a lifting device which are sequentially arranged along a paperboard conveying direction, wherein the lifting device comprises a lifting frame, a lifting plate arranged in a sliding mode with the lifting frame and a plurality of first air cylinders for driving the lifting plate to lift along a vertical direction, the first air cylinders are fixedly connected with the lifting frame, the lifting plate is rotatably connected with a plurality of first conveying rollers, and the lifting plate is provided with a power assembly for driving the first conveying rollers to synchronously rotate; the lifting plate is provided with a limiting component used for limiting the paper plate.
Through adopting above-mentioned technical scheme, mutually support through coordinating conveyor and guide device, the cardboard is constantly carried towards lifting board position, the utilization ratio of the whole factory building space of greatly increased, when the cardboard is carried to lifting board position, this moment under spacing subassembly's limiting action, guarantee that the cardboard encloses the space of establishing at lifting board and limiting plate, when lifting board motion to with cross cutting machine processing platform coplanar position, drive a plurality of first conveying rollers simultaneously through power component and rotate, realize the transport effect to the cardboard, greatly reduced staff intensity of labour, promote the efficiency that the cardboard was carried.
Optionally, the guide device is including installing in the first track on ground, stock guide and two sets of first roller train, first roller train include two with the stock guide rotate the first gyro wheel of connection and with two the coaxial first axis of rotation that sets up of first gyro wheel, first gyro wheel roll set up in on the first track, stock guide fixedly connected with drive arbitrary first gyro wheel pivoted first motor, the stock guide rotates and is provided with a plurality of second transfer rollers, the stock guide is provided with and is used for driving simultaneously a plurality ofly the second transfer roller pivoted power component, first orbital length direction is perpendicular with cardboard direction of delivery.
Through adopting above-mentioned technical scheme, rotate through the first gyro wheel of motor drive, consequently become drive power with two first gyro wheels of first rotation axis connection, carry the cardboard of coming with a plurality of not equidirectional transport when the stock guide takes place the motion, rotate together through a plurality of second transfer rollers, the cardboard is carried to the lifting board on the stock guide.
Optionally, coordinate conveyor include a plurality of carriage and a plurality of with the carriage rotates the third transfer roller of connecting, carriage length direction sets up along cardboard direction of delivery, the third transfer roller with the second transfer roller is located same horizontal plane, the carriage is provided with and drives a plurality ofly simultaneously the third transfer roller rotates simultaneously power component.
Through adopting above-mentioned technical scheme, make full use of factory space all can deposit the cardboard on a plurality of carriage, and when the cardboard was carried away on a carriage, the cardboard on another carriage was made preparation work, guaranteed the smooth operation of whole cardboard transfer chain, promoted the work efficiency that the cardboard was carried.
Optionally, one end of the conveying frame, which is far away from the first rail, is fixedly connected with a second rail, the second rail is parallel to the first rail, a feeding cart is arranged on the second rail in a rolling manner, the feeding cart is provided with two groups of second roller sets in a rotating manner, each group of second roller sets comprises a second roller rotatably connected with the feeding cart and a second rotating shaft, two ends of the second rotating shaft are rotatably connected with the two second rollers respectively, and the feeding cart is fixedly connected with a second motor for driving any one of the second rollers to rotate.
Through adopting above-mentioned technical scheme, on the staff placed the pay-off train with the cardboard, when one of them carriage idle state, the pay-off train was carried the cardboard to this carriage this moment, guaranteed that the carriage is in operating condition.
Optionally, the power assembly includes a third motor, a plurality of power sprockets, a driving sprocket and a chain, the output end of the third motor is fixedly connected with the driving sprocket, the chain is meshed with and connected with the driving sprocket and a plurality of power sprockets, the power sprocket is coaxially arranged with any one of the first conveying roller, the second conveying roller and the second conveying roller, the driving sprocket is rotatably connected with any one of the lifting plate, the material guide plate and the conveying frame, and the third motor is fixedly connected with any one of the lifting plate, the material guide plate and the conveying frame.
Through adopting above-mentioned technical scheme, third motor control drive sprocket rotates, and at this moment, under the effect of chain, a plurality of power sprocket rotate just together, and then a plurality of first transfer rollers, second transfer roller or third transfer roller take place to rotate, realize the transport effect to the cardboard.
Optionally, a processing platform of the die-cutting machine is fixedly connected with an identification block, the identification block is hinged with an identification rod, the identification block is provided with a reset piece which is convenient for the identification block to be in a vertical state, and a transmission assembly for driving the identification rod to swing is arranged between the lifting plate and the lifting frame.
Through adopting above-mentioned technical scheme, through the swing of transmission assembly drive sign pole, the swing of sign pole is used for warning staff's lifting board on the cardboard moves to the processing platform of cross cutting machine, and the piece that resets is used for driving sign pole swing to vertical position, promptly, the first position of knowing of sign pole is vertical state.
Optionally, the reset piece is a torsion spring, and two ends of the torsion spring are respectively fixedly connected with the marking rod and the marking block.
Through adopting above-mentioned technical scheme, the elasticity of torsional spring guarantees that the sign pole is in the vertical loading when initial, and realizes automatic re-setting's effect.
Optionally, the transmission assembly include with the identification block slide the actuating lever that sets up and with lifting board fixed connection's sloping block, the inclined plane of sloping block along the orientation the slope takes place for the actuating lever direction, the identification block is provided with and is used for the through-hole that the actuating lever slided, the one end of actuating lever with the abutment of identification lever outer wall, the other end with the inclined plane abutment of sloping block the transmission assembly include with the identification block slide the actuating lever that sets up and with lifting board fixed connection's sloping block, the inclined plane of sloping block along the orientation the slope takes place for the actuating lever direction, the identification block is provided with and is used for the through-hole that the actuating lever slided, the one end of actuating lever with identification lever outer wall abutment, the other end with the inclined plane abutment of sloping block.
Through adopting above-mentioned technical scheme, the sloping block follows the lifting board and moves up, and the actuating lever when moving to with sloping block tip butt, the actuating lever is driven towards the motion of sign pole direction, and the sign pole is driven to take place the swing, realizes the drive effect to the sign pole wobbling.
Optionally, the top end of the identification rod is fixedly connected with a triangular canvas, and a red coating is coated outside the triangular canvas.
Through adopting above-mentioned technical scheme, red triangle canvas has the effect of warning the staff, is convenient for arouse the swing condition that the staff found the sign pole.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the paperboard is automatically lifted to a processing platform of the die-cutting machine through the lifting plate, so that the labor intensity of workers is reduced;
2. the first cylinder drives the lifting plate to move upwards, the inclined block moves along with the lifting plate, when the inclined block moves to abut against the end part of the driving rod and the end part of the inclined block abuts against the driving rod, the identification rod swings to the maximum angle at the moment, under the warning effect of red triangular canvas, a worker stops the work of the first cylinder, and the paper plate moves to the position of a processing platform of the die cutting machine;
3. through placing the cardboard on the stack pallet, through the second motor, mutually supporting of second axis of rotation and second gyro wheel, control stack pallet moves to idle carriage on, with cardboard propelling movement to the third transfer roller on the carriage this moment, through power sprocket, under drive sprocket and the chain interact, the third transfer roller is carried the cardboard towards on the stock guide, the stock guide is used for coordinating a plurality of carriages and undertakes the task of form advancing simultaneously, promote the efficiency of stock guide greatly.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present application;
FIG. 2 is a schematic view of a material guiding device and a lifting device according to an embodiment of the present disclosure;
figure 3 is a schematic view in partial section of a lifting device according to an embodiment of the present application;
fig. 4 is an enlarged view at a in fig. 3.
Reference numerals: 1. a coordinated conveyance device; 2. a material guiding device; 3. a lifting device; 4. a lifting frame; 5. lifting the plate; 6. a first cylinder; 7. a first transfer roller; 8. a first track; 9. a material guide plate; 10. a first roller; 11. a first motor; 12. a second transfer roller; 13. a carriage; 14. a third transfer roller; 15. a second track; 16. a feeding car; 17. a second roller; 18. a second rotating shaft; 19. a second motor; 20. a third motor; 21. a power sprocket; 22. a drive sprocket; 23. a chain; 24. a triangular canvas; 25. a through hole; 26. an identification block; 27. an identification rod; 28. a torsion spring; 29. a drive rod; 30. and (5) an oblique block.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses feeding system of carton cross cutting machine. Referring to fig. 1, the feeding system of the carton die-cutting machine comprises a coordinated conveying device 1, a material guiding device 2 and a lifting device 3 which are sequentially arranged along a paperboard conveying direction, the coordinated conveying device 1 is used for conveying cartons by a plurality of conveying lines, a guiding device is used for conveying the cartons conveyed by different conveying lines to the position of the lifting device 3, a transitional conveying effect is achieved, and the lifting device 3 is used for lifting the cartons to a working platform of the die-cutting machine.
Referring to fig. 1 and 2, the coordinated conveying device 1 includes a plurality of parallel arranged conveying frames 13 and a plurality of third conveying rollers 14 rotatably connected with the conveying frames 13, the length direction of the conveying frames 13 is arranged along the conveying direction of the paper boards, the plurality of third conveying rollers 14 are arranged along the length direction of the conveying frames 13, the conveying frames 13 are provided with power assemblies for simultaneously driving the plurality of third conveying rollers 14 to simultaneously rotate, each power assembly includes a third motor 20, a plurality of power sprockets 21 coaxially arranged with the conveying rollers, a driving sprocket 22 and a chain 23, the output end of the third motor 20 is fixedly connected with the driving sprocket 22, and the chain 23 is connected outside the driving sprocket 22 and the plurality of power sprockets 21 in a meshing manner.
Referring to fig. 1 and 2, a third motor 20 on the conveying frame 13 is fixedly connected with the conveying frame 13, a driving chain wheel 22 and a power chain wheel 21 are rotatably connected with the conveying frame 13, the third motor 20 drives the driving chain wheel 22 to rotate, and simultaneously, under the action of friction force between a chain 23 and the power chain wheel 21, the effect of simultaneously driving a plurality of power chain wheels 21 to rotate is achieved; when the cartons are placed on the surfaces of the plurality of third conveying rollers 14, the third conveying rollers 14 convey the cartons towards the material guiding device 2 under the simultaneous driving action of the chain 23, the driving chain wheel 22 and the power chain wheel 21.
Referring to fig. 1 and 2, the material guiding device 2 includes a first rail 8 installed on the ground, a material guiding plate 9 and two sets of first roller sets, a length direction of the first rail 8 is perpendicular to a conveying direction of the paper board, that is, perpendicular to a conveying direction of the paper board on the conveying frame 13, each first roller set includes two rollers rotatably connected to the material guiding plate 9 and two first rotating shafts coaxially disposed with the rollers, the four first rollers 10 are respectively located at four corners of the material guiding plate 9, the first rollers 10 roll on the first rail 8, the material guiding plate 9 is fixedly connected with a first motor 11 driving any one of the first rollers 10 to rotate, an output end of the first motor 11 is coaxially disposed with the first roller 10, when the first motor 11 drives one of the first rollers 10 to rotate, the other corresponding first roller 10 rotates together, and a driving effect of the material guiding plate 9 is achieved.
Referring to fig. 1 and 2, a plurality of second conveying rollers 12 arranged in parallel are rotatably connected to the upper surface of the material guide plate 9, the material guide plate 9 is provided with a power assembly for simultaneously driving the plurality of second conveying rollers 12 to rotate, similarly, the power assembly on the material guide plate 9 is the same as the power assembly on the conveying frame 13, the power assembly also includes a third motor 20, a plurality of power sprockets 21 coaxially arranged with the conveying rollers, a driving sprocket 22 and a chain 23, the output end of the third motor 20 is fixedly connected with the driving sprocket 22, the chain 23 is engaged and connected outside the driving sprocket 22 and the plurality of power sprockets 21, the third motor 20 on the material guide plate 9 is fixedly connected with the material guide plate 9, and the driving sprocket 22 and the power rollers on the material guide plate 9 are both rotatably connected with the material guide plate 9.
Because the plurality of conveying frames 13 are arranged for realizing the uninterrupted conveying of the sheet guide plates of the material guiding device 2, and meanwhile, in order to realize the full-automatic feeding, one end of the conveying frame 13 far away from the first rail 8 is fixedly connected with a second rail 15, the second rail 15 is arranged in parallel with the first rail 8, that is, the first rail 8 is arranged along the arrangement direction of the plurality of conveying frames 13, a feeding cart 16 is arranged on the second rail 15 in a rolling manner, the feeding cart 16 is rotationally connected with two groups of second roller groups, each second roller group comprises a second roller 17 rotationally connected with the feeding cart 16 and a second rotating shaft 18, two ends of each second roller group are respectively rotationally connected with the two second rollers 17, the feeding cart 16 is fixedly connected with a second motor 19, any one second roller 17 rotates, the second motor 19 drives the second roller 17 to rotate, and under the action of the second rotating shaft 18, the other corresponding second roller 17 rotates, a driving effect on the feed carriage 16 is achieved.
When the paperboard is conveyed to the lifting device 3 from the material guide plate 9, the lifting device 3 comprises a lifting frame 4, a lifting plate 5 arranged in a sliding mode with the lifting frame 4 and a plurality of first air cylinders 6 for driving the lifting plate 5 to lift along the vertical direction, the first air cylinders 6 are fixedly connected with the lifting frame 4, a plurality of first conveying rollers 7 are rotatably connected to the upper surface of the lifting plate 5, the lifting plate 5 is also provided with a power assembly for driving the first conveying rollers 7 to rotate synchronously, the power assembly on the lifting plate 5 is consistent with the power assemblies on the conveying frame 13 and the material guide plate 9, and the driving effect on the first conveying rollers 7 is achieved through a driving chain wheel 22, a power chain wheel 21 and a chain 23.
Referring to fig. 3 and 4, in order to facilitate conveying the paperboard to the processing platform of the die cutting machine, the plane where the paperboard abuts against the first conveying roller 7 and the processing platform are located on the same plane, so that the lifting plate 5 needs to be marked at the moving position in the upward lifting process, the processing platform of the die cutting machine is fixedly connected with a marking block 26, the marking block 26 is hinged to a marking rod 27, a hinge shaft is rotatably connected between the marking rod 27 and the marking block 26, and the axis of the hinge shaft is arranged along the horizontal direction and the length direction of the marking rod 27.
The identification block 26 is provided with the piece that resets that the identification block 26 is in vertical state of being convenient for, it sets up to the torsional spring 28 to reset, the articulated shaft is located outside to the torsional spring 28 cover, the both ends of torsional spring 28 respectively with identification rod 27 and identification block 26 fixed connection, be provided with the wobbling transmission assembly of drive identification rod 27 between lifting frame 4 and the lifting plate 5, transmission assembly includes the actuating lever 29 that slides the setting with identification block 26 and the sloping block 30 with lifting plate 5 fixed connection, the tip of actuating lever 29 orientation sloping block 30 sets up to spherical, the slope of sloping block 30 takes place the slope along orientation actuating lever 29 direction, spherical tip and the sloping block 30 butt when actuating lever 29, the in-process of sloping block 30 up-motion is exerted one to sloping block 30 and is made its effort towards identification rod 27 direction wobbling effort.
The identification block 26 is provided with a through hole 25 for the driving rod 29 to slide, the through hole 25 is arranged in a penetrating way, one end of the driving rod 29 is abutted against the outer wall of the identification rod 27, the other end of the driving rod 29 is abutted against the inclined surface of the inclined block 30, and the two ends of the driving rod 29 are both positioned outside the through hole 25.
When the second cylinder drives the lifting plate 5 to move upwards, the lifting plate 5 drives the inclined block 30 to move upwards together, the inclined surface of the inclined block 30 is abutted against the end part of the driving rod 29, at the moment, under the action of the elastic force of the torsion spring 28, the identification rod 27 is in a vertical state, the driving rod 29 continues to move upwards along with the lifting plate 5, the position of the driving rod 29 on the inclined surface gradually moves towards the end part of the inclined block 30, when the driving rod 29 moves to be abutted against the end part of the inclined block 30, at the moment, the driving rod 29 is driven to swing towards the direction far away from the lifting plate 5 in the through hole 25, when the identification rod 27 swings to the maximum angle, at the moment, the effect of continuing to move upwards on the lifting plate 5 is stopped, and the paperboard on the lifting plate 5 moves.
Sign pole 27 top fixedly connected with triangle canvas 24, triangle canvas 24 coats outward and has red coating, and red has the effect of promoting the warning to people, and when sign pole 27 was driven to take place to swing, triangle canvas 24 followed and rocked together for in time remind the staff to lift board 5 and swing to be in the effect on the same horizontal plane with the processing platform of cross cutting machine.
The implementation principle of the feeding system of the carton die-cutting machine in the embodiment of the application is as follows: the paper boards are placed on the feeding trolley 16, the feeding trolley 16 is controlled to move to the idle conveying frame 13 through the mutual matching of the second motor 19, the second rotating shaft 18 and the second roller 17, the paper boards are pushed to the third conveying roller 14 on the conveying frame 13 at the moment, the third conveying roller 14 conveys the paper boards towards the material guide plate 9 under the mutual action of the power chain wheel 21, the driving chain wheel 22 and the chain 23, the material guide plate 9 is used for coordinating a plurality of conveying frames 13 to simultaneously undertake the task of paper feeding, and the efficiency of the paper guide plate is greatly improved;
carry the cardboard to the first conveying roller 7 on the lifting board 5 through second conveying roller 12 on, the swing of second cylinder drive limiting plate, when the limiting plate swings to vertical position, guarantee that the cardboard is located the limiting plate and lift the space that board 5 encloses and establishes, first cylinder 6 drive lifts board 5 and moves up, sloping block 30 follows and lifts board 5 motion, along with sloping block 30 move to with actuating lever 29 tip butt time, when sloping block 30 moves to tip and actuating lever 29 butt time, marking rod 27 swings to the maximum angle this moment, under red triangle canvas 24 warning effect, the staff stops the work of first cylinder 6, the cardboard moves to the processing platform position with the cross cutting machine this moment, through the conveying effect of first conveying roller 7 to the cardboard, the cardboard is carried to the processing platform of cross cutting machine, accomplish the work of whole cardboard transportation production line.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a feeding system of carton cross cutting machine which characterized in that: including coordinated conveyor (1), guide device (2) and lifting device (3) that set gradually along cardboard direction of delivery, lifting device (3) include lifting frame (4), with lifting frame (4) slide lifting plate (5) and a plurality of drive that set up lifting plate (5) along vertical direction lifting first cylinder (6), first cylinder (6) with lifting frame (4) fixed connection, lifting plate (5) rotate and are connected with a plurality of first transfer roller (7), lifting plate (5) are provided with the drive a plurality ofly first transfer roller (7) synchronous pivoted power component.
2. The feeding system of a carton die cutting machine according to claim 1, characterized in that: guide device (2) including installing in first track (8), stock guide (9) and two sets of first roller train on ground, first roller train include two with stock guide (9) rotate first gyro wheel (10) of connecting and with two the first axis of rotation of the coaxial setting of first gyro wheel (10), first gyro wheel (10) roll set up in on first track (8), stock guide (9) fixedly connected with drive arbitrary first gyro wheel (10) pivoted first motor (11), stock guide (9) are rotated and are provided with a plurality of second transfer rollers (12), stock guide (9) are provided with and are used for driving a plurality of simultaneously second transfer roller (12) pivoted power component, the length direction of first track (8) is perpendicular with cardboard direction of delivery.
3. The feeding system of the carton die cutting machine according to claim 2, characterized in that: coordinate conveyor (1) include a plurality of carriage (13) and a plurality of with carriage (13) rotate third transfer roller (14) of being connected, carriage (13) length direction sets up along cardboard direction of delivery, third transfer roller (14) with second transfer roller (12) are located same horizontal plane, carriage (13) are provided with and drive simultaneously a plurality of third transfer roller (14) pivoted simultaneously power component.
4. The feeding system of the carton die cutting machine according to claim 3, characterized in that: one end, far away from the first rail (8), of the conveying frame (13) is fixedly connected with a second rail (15), the second rail (15) is arranged in parallel with the first rail (8), a feeding trolley (16) is arranged on the second rail (15) in a rolling mode, two groups of second roller sets are arranged on the feeding trolley (16) in a rotating mode, each second roller set comprises a second roller (17) rotatably connected with the feeding trolley (16) and a second rotating shaft (18) with two ends rotatably connected with the two second rollers (17), and the feeding trolley (16) is fixedly connected with a second motor (19) driving any one of the second rollers (17) to rotate.
5. The feeding system of a carton die cutting machine according to any one of claims 1 to 4, characterized in that: the power assembly comprises a third motor (20), a plurality of power chain wheels (21), a driving chain wheel (22) and a chain (23), the output end of the third motor (20) is fixedly connected with the driving chain wheel (22), the chain (23) is connected to the driving chain wheel (22) and the outside of the power chain wheels (21) in a meshed mode, the power chain wheel (21) and any one of the first conveying roller (7), the second conveying roller (12) and the second conveying roller (12) are coaxially arranged, the driving chain wheel (22) is rotatably connected with any one of the lifting plate (5), the material guide plate (9) and the conveying frame (13), and the third motor (20) is fixedly connected with any one of the lifting plate (5), the material guide plate (9) and the conveying frame (13).
6. The feeding system of a carton die cutting machine according to claim 5, characterized in that: the processing platform fixedly connected with sign block (26) of cross cutting machine, sign block (26) articulate there is sign pole (27), sign block (26) are provided with and are convenient for sign block (26) are in the piece that resets of vertical state, lift board (5) with be provided with the drive between lifting frame (4) sign pole (27) wobbling transmission assembly.
7. The feeding system of the carton die cutting machine according to claim 6, characterized in that: the resetting piece is a torsion spring (28), and two ends of the torsion spring (28) are fixedly connected with the marking rod (27) and the marking block (26) respectively.
8. The feeding system of a carton die cutting machine according to claim 7, characterized in that: the transmission assembly comprises a driving rod (29) and an inclined block (30), the driving rod (29) is arranged in a sliding mode with the identification block (26), the inclined block (30) is fixedly connected with the lifting plate (5), the inclined plane of the inclined block (30) inclines towards the driving rod (29), the identification block (26) is provided with a through hole (25) used for sliding of the driving rod (29), one end of the driving rod (29) is abutted to the outer wall of the identification rod (27), and the other end of the driving rod is abutted to the inclined plane of the inclined block (30).
9. The feeding system of a carton die cutting machine according to claim 8, characterized in that: the top end of the marking rod (27) is fixedly connected with a triangular canvas (24), and a red coating is coated outside the triangular canvas (24).
CN202011546541.6A 2020-12-24 2020-12-24 Feeding system of carton cross cutting machine Active CN112659640B (en)

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Cited By (1)

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Publication number Priority date Publication date Assignee Title
CN114558683A (en) * 2022-02-25 2022-05-31 山东高速工程建设集团有限公司 Sand making production process for tunnel slag boring machine

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