CN221366032U - Carton die-cutting machine - Google Patents

Carton die-cutting machine Download PDF

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Publication number
CN221366032U
CN221366032U CN202322957838.7U CN202322957838U CN221366032U CN 221366032 U CN221366032 U CN 221366032U CN 202322957838 U CN202322957838 U CN 202322957838U CN 221366032 U CN221366032 U CN 221366032U
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CN
China
Prior art keywords
roller
die
braking
anvil
paper feeding
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CN202322957838.7U
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Chinese (zh)
Inventor
刘庆胜
林强
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Guangzhou Taisheng Carton Machinery Co ltd
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Guangzhou Taisheng Carton Machinery Co ltd
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Application filed by Guangzhou Taisheng Carton Machinery Co ltd filed Critical Guangzhou Taisheng Carton Machinery Co ltd
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Abstract

The utility model discloses a carton die cutting machine, which relates to the technical field of carton processing equipment and comprises a frame, and a cutting die roller, an anvil roller and a waste discharging device which are sequentially arranged in the frame from top to bottom, wherein a die repairing roller is arranged between the anvil roller and the waste discharging device, the length of the die repairing roller is larger than that of the anvil roller, and the die repairing roller and the anvil roller are mutually parallel; lifting mechanisms are symmetrically arranged at two ends of the die repairing roller, and abrasive belts are arranged on the outer peripheral surface of the die repairing roller; the die repairing roller is driven by the lifting mechanism to move towards the anvil roller until the die repairing roller contacts the anvil roller. According to the die repairing device, the die repairing roller is used for repairing the anvil roller in parallel, and the abrasive belt is arranged on the peripheral surface of the die repairing roller, so that the rubber pad of the anvil roller can be effectively repaired and leveled.

Description

Carton die-cutting machine
Technical Field
The utility model relates to the technical field of carton processing equipment, in particular to a carton die-cutting machine.
Background
The paper box is made of paper board through die cutting, indentation, nailing or sticking, and is one kind of widely used packing product with amount in the front of the packing product.
The carton die cutting machine is equipment for processing, forming and die cutting of cartons and comprises an anvil roller and a cutting die roller, wherein a rubber pad is arranged on the anvil roller in a surrounding manner and used for supporting paperboards; the knife die roller is provided with a knife blade for cutting the paper board. In the long-term use process of the carton die cutting machine, the rubber pad on the anvil roll is easily damaged by the blade of the cutter die roll to generate a cutting mark, so that the rubber pad on the anvil roll is required to be trimmed, but the traditional trimming device adopts a turning tool structure, the turning tool is easy to jump in the trimming process to generate a cutter receiving mark, and the rubber pad of the anvil roll is difficult to repair and level.
Disclosure of utility model
The utility model aims to overcome the defects of the prior art, and provides a carton die cutting machine which is characterized in that a die is repaired by a die repairing roller which is arranged in parallel to an anvil roller, and the outer peripheral surface of the die repairing roller is provided with an abrasive belt, so that a rubber pad of the anvil roller can be effectively repaired and leveled.
The utility model provides a carton die-cutting machine, which comprises a frame, and a cutting die roller, an anvil roller and a waste discharging device which are sequentially arranged in the frame from top to bottom, wherein a die repairing roller is arranged between the anvil roller and the waste discharging device, the length of the die repairing roller is larger than that of the anvil roller, and the die repairing roller and the anvil roller are parallel to each other; lifting mechanisms are symmetrically arranged at two ends of the die repairing roller, and abrasive belts are arranged on the outer peripheral surface of the die repairing roller;
the die repairing roller is driven by the lifting mechanism to move towards the anvil roller until the die repairing roller contacts the anvil roller.
Specifically, the lifting mechanism comprises a lifting cylinder and a swing arm, one end of the swing arm is rotationally connected with the frame, the other end of the swing arm is rotationally connected with the output end of the lifting cylinder, the lifting cylinder is positioned below the swing arm, and the body of the lifting cylinder is rotationally connected with the frame; the end part of the die repairing roller is rotatably arranged on the swing arm.
Specifically, a first mounting hole is formed in one end of the swing arm, a second mounting hole is formed in the other end of the swing arm, and a roll shaft mounting part is formed in one end, close to the second mounting hole, of the swing arm;
The first mounting hole is rotationally provided with a first pin shaft, and the first pin shaft is fixedly connected with the rack; a first pile head is fixedly arranged in the second mounting hole, and the output end of the lifting cylinder is rotationally connected with the first pile head; the roller shaft installation part is provided with a belt seat bearing, and the end part of the die repairing roller is rotatably arranged in the belt seat bearing.
Specifically, one end of the die repairing roller is provided with a gear motor, the gear motor is arranged on the frame based on a motor support, a driving gear is fixedly arranged at the output end of the gear motor, a driven gear is fixedly arranged at one end, close to the gear motor, of the die repairing roller, and the driving gear is connected with the driven gear based on belt or chain transmission.
Specifically, braking devices are symmetrically arranged at two ends of the anvil roll.
Specifically, the brake device comprises a brake wheel, a brake arm and a brake cylinder, wherein the brake wheel is fixedly arranged at the end part of the anvil roll, one end of the brake arm is rotationally connected with the frame, the other end of the brake arm is hinged with the output end of the brake cylinder, and the body of the brake cylinder is rotationally connected with the frame;
And a braking cambered surface is formed on one side of the braking arm, which faces the braking wheel, and the braking arm is driven by the braking cylinder to move towards the braking wheel until the braking cambered surface contacts the braking wheel.
Specifically, the carton die-cutting machine further comprises a first synchronizing shaft, the first synchronizing shaft is rotatably arranged in the frame, the first synchronizing shaft is parallel to the anvil roll, and two ends of the first synchronizing shaft are meshed with two ends of the anvil roll based on gears.
Specifically, the carton die cutting machine further comprises a paper feeding device, wherein the paper feeding device is arranged on the feeding side of the cutting die roller, and the paper feeding device and the cutting die roller are parallel to each other;
The paper feeding device comprises a paper feeding shaft and a paper feeding roller, wherein the paper feeding shaft and the paper feeding roller are rotatably arranged in the frame, the paper feeding shaft is positioned above the paper feeding roller, and a plurality of paper feeding wheels are arranged on the paper feeding shaft.
Specifically, the paper feeding device further comprises a second synchronizing shaft, the second synchronizing shaft is rotatably arranged in the frame, the second synchronizing shaft is arranged below the paper feeding roller in parallel, and two ends of the second synchronizing shaft are meshed with two ends of the paper feeding roller based on gears.
Specifically, the waste discharging device comprises a conveyor belt and two waste discharging rollers, the two waste discharging rollers are parallel to each other, the two waste discharging rollers are located at the same horizontal height, the two waste discharging rollers are respectively and rotatably arranged on two sides of the frame, the two waste discharging rollers are connected based on the transmission of the conveyor belt, and the conveyor belt covers the bottom of the frame.
Compared with the prior art, the utility model has the beneficial effects that:
According to the carton die cutting machine, the die repairing roller is arranged below the anvil roller in parallel, the abrasive belt is arranged on the peripheral surface of the die repairing roller, the length of the die repairing roller is larger than that of the anvil roller, lifting mechanisms are symmetrically arranged at two ends of the die repairing roller, and the lifting mechanisms can lift the die repairing roller until the die repairing roller contacts the anvil roller, so that the die repairing roller and the anvil roller can be uniformly contacted, uniform die repairing of the anvil roller is realized, and rubber pads of the anvil roller can be effectively repaired and leveled.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings which are required in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a first perspective view of a carton die cutter according to an embodiment of the utility model;
FIG. 2 is a schematic cross-sectional view of a carton die cutter according to an embodiment of the utility model;
FIG. 3 is a schematic view of a swing arm according to an embodiment of the present utility model;
FIG. 4 is a schematic view of a lifting mechanism and a driving device of a mold repairing roller according to an embodiment of the present utility model;
FIG. 5 is an enlarged schematic view of the area A in FIG. 2;
Fig. 6 is a second perspective view of a carton die cutter in accordance with an embodiment of the utility model.
In the attached drawings, 10, a rack; 100. a cutting die roller; 200. an anvil roll; 210. a first synchronization shaft; 300. a waste discharging device; 310. a conveyor belt; 320. a waste discharge roller; 400. repairing a die roller; 410. a driven gear; 500. a lifting mechanism; 510. lifting a cylinder; 520. swing arms; 521. a first mounting hole; 522. a second mounting hole; 523. a roll shaft mounting part; 600. a speed reducing motor; 610. a motor bracket; 620. a drive gear; 700. a brake device; 710. a brake wheel; 720. a brake arm; 721. a brake cambered surface; 730. a brake cylinder; 800. a paper feeding device; 810. a paper feed shaft; 811. a paper feeding wheel; 820. a paper feed roller; 821. and a second synchronizing shaft.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Fig. 1 shows a first schematic perspective view of a carton die-cutting machine according to an embodiment of the present utility model, the carton die-cutting machine includes a frame 10, and a cutter die roller 100, an anvil roller 200 and a waste discharging device 300 which are sequentially installed in the frame 10 from top to bottom, a die repairing roller 400 is installed between the anvil roller 200 and the waste discharging device 300, the length of the die repairing roller 400 is greater than the length of the anvil roller 200, and the die repairing roller 400 and the anvil roller 200 are parallel to each other; lifting mechanisms 500 are symmetrically arranged at two ends of the die repairing roller 400, and abrasive belts are arranged on the outer peripheral surface of the die repairing roller 400; the stripper roll 400 is driven by the lifting mechanism 500 toward the anvil roll 200 until the stripper roll 400 contacts the anvil roll 200.
According to the carton die cutting machine disclosed by the utility model, the die repairing roller 400 is arranged below the anvil roller 200 in parallel, the abrasive belt is arranged on the outer peripheral surface of the die repairing roller 400, the length of the die repairing roller 400 is longer than that of the anvil roller 200, the lifting mechanisms 500 are symmetrically arranged at the two ends of the die repairing roller 400, and the lifting mechanisms 500 can lift the die repairing roller 400 until the die repairing roller 400 contacts the anvil roller 200, so that the die repairing roller 400 and the anvil roller 200 can be uniformly contacted, uniform die repairing of the anvil roller 200 is realized, and rubber pads of the anvil roller 200 can be effectively repaired and leveled.
Specifically, the abrasive belt completely covers the outer circumferential surface of the die cylinder 400, has no gap, and has good repairing effect on the rubber pad of the anvil cylinder 200.
Fig. 2 shows a schematic cross-sectional structure of a carton die-cutting machine according to an embodiment of the present utility model, the lifting mechanism 500 includes a lifting cylinder 510 and a swing arm 520, one end of the swing arm 520 is rotatably connected to the frame 10, the other end of the swing arm 520 is rotatably connected to an output end of the lifting cylinder 510, the lifting cylinder 510 is located below the swing arm 520, and a body of the lifting cylinder 510 is rotatably connected to the frame 10; the end of the trimming roller 400 is rotatably disposed on the swing arm 520.
When the die repairing work is carried out, the lifting cylinder 510 jacks up one end of the swing arm 520, the swing arm 520 rotates by taking the other end as the center, and in the process, the die repairing roller 400 is driven by the swing arm 520 to approach the anvil roller 200 until the die repairing roller 400 contacts the anvil roller 200, and the rubber pad of the anvil roller 200 is polished and repaired between the die repairing roller 400 and the anvil roller 200 through friction. The lifting mechanism 500 has a simple and practical structure, and is beneficial to saving the manufacturing cost of equipment.
Fig. 3 shows a schematic structural diagram of a swing arm in an embodiment of the present utility model, wherein a first mounting hole 521 is formed at one end of the swing arm 520, a second mounting hole 522 is formed at the other end of the swing arm 520, and a roller shaft mounting portion 523 is formed at one end of the swing arm 520 close to the second mounting hole 522; a first pin shaft is rotatably arranged in the first mounting hole 521, and the first pin shaft is fixedly connected with the frame 10; a first pile head is fixedly arranged in the second mounting hole 522, and the output end of the lifting cylinder 510 is rotationally connected with the first pile head; the roller shaft mounting portion 523 is provided with a seat bearing in which the end of the mold repair roller 400 is rotatably disposed.
Further, an air inlet end of the lifting cylinder 510 is connected with an air source triplet. In the pneumatic technology, three air source processing elements of an air filter, a pressure reducing valve and an oil mist device are assembled together to be called an air source triple piece, and the air source triple piece is used for air source purification filtration of an air source entering a pneumatic instrument and pressure reduction to the rated air source pressure of the instrument. The air source triplet can adjust the air inlet pressure of the lifting cylinder 510, and then the output force of the lifting cylinder 510 is adjusted, so that the contact pressure of the die repairing roller 400 and the anvil roller 200 is adjusted, the die repairing effect of the die repairing roller 400 is convenient to adjust by arranging the air source triplet, and the uniformity of die repairing work is improved.
Fig. 4 shows a schematic structural diagram of a lifting mechanism and a driving device of a mold repairing roller in the embodiment of the utility model, one end of the mold repairing roller 400 is provided with a gear motor 600, the gear motor 600 is arranged on the frame 10 based on a motor support 610, an output end of the gear motor 600 is fixedly provided with a driving gear 620, one end of the mold repairing roller 400, which is close to the gear motor 600, is fixedly provided with a driven gear 410, and the driving gear 620 and the driven gear 410 are in transmission connection based on a belt or a chain. The gear motor 600 can actively drive the die repairing roller 400, increase the rotation speed difference between the die repairing roller 400 and the anvil roller 200, be favorable to improving the friction effect between the die repairing roller 400 and the anvil roller 200, promote the die repairing roller 400 to polish the rubber pad of the anvil roller 200 better, and effectively improve the die repairing efficiency. In addition, the driving gear 620 and the driven gear 410 are connected through the belt or the chain, so that the die repairing roller 400 can be lifted or lowered freely, the flexibility of the die repairing roller 400 can be kept, and the die repairing work of the die repairing roller 400 can not be affected.
In some embodiments, referring to fig. 2, the two ends of the anvil roll 200 are symmetrically provided with braking devices 700, so as to smoothly control the rotation speed of the anvil roll 200.
Specifically, the braking device 700 includes a braking wheel 710, a braking arm 720 and a braking cylinder 730, where the braking wheel 710 is fixedly disposed at an end of the anvil roll 200, one end of the braking arm 720 is rotationally connected with the frame 10, the other end of the braking arm 720 is hinged with an output end of the braking cylinder 730, and a body of the braking cylinder 730 is rotationally connected with the frame 10; fig. 5 shows an enlarged schematic view of the area a in fig. 2, a braking arc surface 721 is formed on a side of the braking arm 720 facing the braking wheel 710, and the braking arm 720 is driven by the braking cylinder 730 to move toward the braking wheel 710 until the braking arc surface 721 contacts the braking wheel 710.
When braking, the brake cylinder 730 drives one end of the brake arm 720, the brake arm 720 rotates around the other end, in this process, the brake arc surface 721 gradually approaches the brake wheel 710 until the brake arc surface 721 contacts the brake wheel 710, and the greater the contact pressure between the brake arc surface 721 and the brake wheel 710, the faster the speed of the brake wheel 710 decelerating, thereby realizing the reduction of the rotation speed of the anvil roll 200.
Further, the outer circumferential surface of the brake wheel 710 is provided with external teeth, and the brake arc surface 721 is provided with internal teeth; the external teeth and the internal teeth are engaged when braking is performed, so that the anvil roll 200 can be rapidly braked and the braking position can be locked.
Fig. 6 shows a second perspective view of the carton die cutter according to the embodiment of the utility model, the carton die cutter further comprises a first synchronizing shaft 210, the first synchronizing shaft 210 is rotatably disposed in the frame 10, the first synchronizing shaft 210 and the anvil roll 200 are parallel to each other, and two ends of the first synchronizing shaft 210 are engaged with two ends of the anvil roll 200 based on gears. The first synchronizing shaft 210 is used for guaranteeing rotation synchronization of two ends of the anvil roll 200, which is beneficial to guaranteeing that the paper board moves along a preset straight line and is not easy to deviate.
In some embodiments, referring to fig. 6, the carton die cutting machine further includes a paper feeding device 800, the paper feeding device 800 is disposed on the feeding side of the die roller 100, and the paper feeding device 800 and the die roller 100 are parallel to each other; the paper feeding device 800 comprises a paper feeding shaft 810 and a paper feeding roller 820 rotatably arranged in the frame 10, wherein the paper feeding shaft 810 is positioned above the paper feeding roller 820, and a plurality of paper feeding wheels 811 are arranged on the paper feeding shaft 810. The paper feeding device 800 is used for feeding a single paper sheet between the die cylinder 100 and the anvil cylinder 200 for die cutting, and ensuring that the paper sheet moves along a preset straight line.
Specifically, referring to fig. 6, the paper feeding device 800 further includes a second synchronizing shaft 821 rotatably disposed in the frame 10, the second synchronizing shaft 821 is disposed in parallel below the paper feeding roller 820, and two ends of the second synchronizing shaft 821 are engaged with two ends of the paper feeding roller 820 based on gears. The second synchronizing shaft 821 is used for guaranteeing rotation synchronization of two ends of the paper feeding roller 820, which is beneficial to guaranteeing that the paper board moves along a preset straight line and is not easy to deviate.
In some embodiments, referring to fig. 6, the waste discharging device 300 includes a conveyor belt 310 and two waste discharging rollers 320, the two waste discharging rollers 320 and the anvil roller 200 are parallel to each other, the two waste discharging rollers 320 are located at the same horizontal level, the two waste discharging rollers 320 are respectively rotatably disposed at two sides of the frame 10, the two waste discharging rollers 320 are in transmission connection based on the conveyor belt 310, and the conveyor belt 310 covers the bottom of the frame 10. The waste discharging device 300 can receive and discharge scraps generated by die cutting, and can also receive and discharge scraps generated by die repairing; the conveyor belt 310 of the waste discharging device 300 has a large area, covers the bottom of the frame 10, and can well receive and discharge scraps; the waste discharge device 300 extends from both sides of the housing 10 to facilitate connection with other conveyor means for better debris transport.
In the carton die cutting machine of the utility model, the die roller 100 and the anvil roller 200 cooperate to perform die cutting work, the paper feeding shaft 810 and the paper feeding roller 820 cooperate to perform paper feeding work, and the die trimming roller 400 and the lifting mechanism 500 cooperate to perform die trimming work.
When the die repairing work is carried out, the lifting cylinder 510 jacks up one end of the swing arm 520, the swing arm 520 rotates by taking the other end as the center, and in the process, the die repairing roller 400 is driven by the swing arm 520 to approach the anvil roller 200 until the die repairing roller 400 contacts the anvil roller 200, and the rubber pad of the anvil roller 200 is polished and repaired between the die repairing roller 400 and the anvil roller 200 through friction.
The die repairing roller 400 can be fixed by rotating the anvil roller 200; the die cylinder 400 can be rotated with the anvil cylinder 200 stationary; both anvil roll 200 and stripper roll 400 may also be rotated. The die repairing work of the anvil roll 200 can be realized by adjusting the contact pressure between the anvil roll 200 and the die repairing roll 400 as long as friction exists between the anvil roll 200 and the die repairing roll 400.
The carton die cutting machine is provided with the die repairing roller 400 with the abrasive belt in parallel and is matched with the lifting mechanism 500 to repair the anvil roller 200, so that the rubber pad of the anvil roller 200 can be repaired and leveled effectively; the lifting mechanism 500 is simple and practical in structure, and is beneficial to saving the manufacturing cost of equipment; the lifting cylinder 510 is provided with an air source triple piece, so that the contact pressure of the die cylinder 400 and the anvil cylinder 200 can be conveniently regulated, and the uniformity of die repairing work can be improved; the die repairing roller 400 is further provided with a speed reducing motor 600, so that the die repairing roller 400 can be actively driven, the rotating speed difference between the die repairing roller 400 and the anvil roller 200 is increased, the friction effect between the die repairing roller 400 and the anvil roller 200 is improved, the die repairing roller 400 is enabled to polish the rubber pad of the anvil roller 200 better, and the die repairing efficiency can be effectively improved; in addition, the driving gear 620 and the driven gear 410 are connected through the belt or the chain, so that the die repairing roller 400 can be lifted or lowered freely, the flexibility of the die repairing roller 400 can be kept, and the die repairing work of the die repairing roller 400 can not be affected.
Brake devices 700 are symmetrically arranged at two ends of the anvil roll 200, so that the rotating speed of the anvil roll 200 can be controlled smoothly; the brake device 700 has simple and practical structure, can also be used for braking through tooth engagement, and can be used for rapidly braking the anvil roll 200 and locking the braking position; the first synchronizing shafts 210 are engaged with the two ends of the anvil roll 200, so that rotation synchronization of the two ends of the anvil roll 200 can be ensured, the paper board can be ensured to move along a preset straight line, and the paper board is not easy to deviate. The second synchronizing shafts 821 are engaged with the two ends of the paper feeding roller 820 of the paper feeding device 800, so that rotation synchronization of the two ends of the paper feeding roller 820 can be guaranteed, the paper board can be guaranteed to move along a preset straight line, and the paper board is not easy to deviate. The conveyor belt 310 of the waste discharging device 300 has a large area, covers the bottom of the frame 10, and can well receive and discharge scraps; the waste discharge device 300 extends from both sides of the housing 10 to facilitate connection with other conveyor means for better debris transport.
The foregoing has described in detail a carton die cutting machine provided by embodiments of the present utility model, and specific examples have been employed herein to illustrate the principles and embodiments of the present utility model, the above description of the embodiments being only for aiding in the understanding of the method and core concept of the present utility model; meanwhile, as those skilled in the art will have variations in the specific embodiments and application scope in accordance with the ideas of the present utility model, the present description should not be construed as limiting the present utility model in view of the above.

Claims (10)

1. The carton die cutting machine is characterized by comprising a frame, a cutting die roller, an anvil roller and a waste discharging device, wherein the cutting die roller, the anvil roller and the waste discharging device are sequentially arranged in the frame from top to bottom; lifting mechanisms are symmetrically arranged at two ends of the die repairing roller, and abrasive belts are arranged on the outer peripheral surface of the die repairing roller;
the die repairing roller is driven by the lifting mechanism to move towards the anvil roller until the die repairing roller contacts the anvil roller.
2. The carton die cutting machine of claim 1, wherein the lifting mechanism comprises a lifting cylinder and a swing arm, one end of the swing arm is rotationally connected with the frame, the other end of the swing arm is rotationally connected with the output end of the lifting cylinder, the lifting cylinder is positioned below the swing arm, and the body of the lifting cylinder is rotationally connected with the frame; the end part of the die repairing roller is rotatably arranged on the swing arm.
3. The carton die cutting machine of claim 2, wherein a first mounting hole is formed at one end of the swing arm, a second mounting hole is formed at the other end of the swing arm, and a roll shaft mounting part is formed at one end of the swing arm, which is close to the second mounting hole;
The first mounting hole is rotationally provided with a first pin shaft, and the first pin shaft is fixedly connected with the rack; a first pile head is fixedly arranged in the second mounting hole, and the output end of the lifting cylinder is rotationally connected with the first pile head; the roller shaft installation part is provided with a belt seat bearing, and the end part of the die repairing roller is rotatably arranged in the belt seat bearing.
4. The carton die cutting machine according to claim 1, wherein one end of the die repairing roller is provided with a gear motor, the gear motor is arranged on the frame based on a motor bracket, a driving gear is fixedly arranged at the output end of the gear motor, a driven gear is fixedly arranged at one end, close to the gear motor, of the die repairing roller, and the driving gear is in transmission connection with the driven gear based on a belt or a chain.
5. The carton die cutter of claim 1 wherein the anvil roll is symmetrically provided with brake means at both ends.
6. The carton die cutting machine according to claim 5, wherein the braking device comprises a braking wheel, a braking arm and a braking cylinder, the braking wheel is fixedly arranged at the end part of the anvil roll, one end of the braking arm is rotationally connected with the frame, the other end of the braking arm is hinged with the output end of the braking cylinder, and the body of the braking cylinder is rotationally connected with the frame;
And a braking cambered surface is formed on one side of the braking arm, which faces the braking wheel, and the braking arm is driven by the braking cylinder to move towards the braking wheel until the braking cambered surface contacts the braking wheel.
7. The carton die cutter of claim 1, further comprising a first synchronizing shaft rotatably disposed in the frame, the first synchronizing shaft and the anvil roll being parallel to each other, both ends of the first synchronizing shaft being engaged with both ends of the anvil roll based on gears.
8. The carton die cutter of claim 1 further comprising a paper feed device disposed on a feed side of the die cylinder, the paper feed device and the die cylinder being parallel to each other;
The paper feeding device comprises a paper feeding shaft and a paper feeding roller, wherein the paper feeding shaft and the paper feeding roller are rotatably arranged in the frame, the paper feeding shaft is positioned above the paper feeding roller, and a plurality of paper feeding wheels are arranged on the paper feeding shaft.
9. The carton die cutter of claim 8, wherein the paper feeding device further comprises a second synchronizing shaft rotatably disposed in the frame, the second synchronizing shaft being disposed in parallel below the paper feeding roller, both ends of the second synchronizing shaft being engaged with both ends of the paper feeding roller based on gears.
10. The carton die cutting machine of claim 1, wherein the waste discharging device comprises a conveyor belt and two waste discharging rollers, the two waste discharging rollers and the anvil roller are parallel to each other, the two waste discharging rollers are positioned at the same horizontal height, the two waste discharging rollers are respectively rotatably arranged at two sides of the frame, the two waste discharging rollers are connected based on the conveyor belt in a transmission manner, and the conveyor belt covers the bottom of the frame.
CN202322957838.7U 2023-11-02 2023-11-02 Carton die-cutting machine Active CN221366032U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322957838.7U CN221366032U (en) 2023-11-02 2023-11-02 Carton die-cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322957838.7U CN221366032U (en) 2023-11-02 2023-11-02 Carton die-cutting machine

Publications (1)

Publication Number Publication Date
CN221366032U true CN221366032U (en) 2024-07-19

Family

ID=91874531

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322957838.7U Active CN221366032U (en) 2023-11-02 2023-11-02 Carton die-cutting machine

Country Status (1)

Country Link
CN (1) CN221366032U (en)

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