CN113954421B - Corrugated board printing grooving machine - Google Patents

Corrugated board printing grooving machine Download PDF

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Publication number
CN113954421B
CN113954421B CN202111249488.8A CN202111249488A CN113954421B CN 113954421 B CN113954421 B CN 113954421B CN 202111249488 A CN202111249488 A CN 202111249488A CN 113954421 B CN113954421 B CN 113954421B
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China
Prior art keywords
plate
conveying
pushing
box
sliding
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CN202111249488.8A
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Chinese (zh)
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CN113954421A (en
Inventor
曹伟
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Zhejiang Dongsheng Packaging Technology Co ltd
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Zhejiang Dongsheng Packaging Technology Co ltd
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Priority to CN202111249488.8A priority Critical patent/CN113954421B/en
Publication of CN113954421A publication Critical patent/CN113954421A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B50/00Making rigid or semi-rigid containers, e.g. boxes or cartons
    • B31B50/14Cutting, e.g. perforating, punching, slitting or trimming
    • B31B50/20Cutting sheets or blanks
    • B31B50/22Notching; Trimming edges of flaps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B50/00Making rigid or semi-rigid containers, e.g. boxes or cartons
    • B31B50/02Feeding or positioning sheets, blanks or webs
    • B31B50/04Feeding sheets or blanks
    • B31B50/042Feeding sheets or blanks using rolls, belts or chains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B50/00Making rigid or semi-rigid containers, e.g. boxes or cartons
    • B31B50/74Auxiliary operations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B50/00Making rigid or semi-rigid containers, e.g. boxes or cartons
    • B31B50/74Auxiliary operations
    • B31B50/88Printing; Embossing

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  • Making Paper Articles (AREA)

Abstract

The application relates to a corrugated board printing grooving machine, which belongs to the technical field of corrugated board processing equipment, and comprises a grooving machine body and a storage rack connected with the grooving machine body, wherein the storage rack comprises a support frame and a plurality of groups of conveying belts which are arranged on the support frame at intervals and used for conveying corrugated boards, a recycling box is arranged below the conveying belts in a sliding manner and used for receiving paper scraps falling from the conveying belts, the removing direction of the recycling box is perpendicular to the discharging direction of the corrugated boards, the corrugated board printing grooving machine further comprises a box feeding device used for providing the recycling box, the box feeding device comprises a box conveying mechanism, a conveying mechanism and a pushing mechanism, the box conveying mechanism is used for intermittently conveying single recycling boxes to the conveying mechanism, the conveying mechanism is used for pushing the recycling boxes intermittently conveyed to the box conveying mechanism to the pushing mechanism, and the pushing mechanism is used for pushing the recycling boxes intermittently conveyed to the conveying mechanism to the lower parts of the conveying belts. The application has the effect of improving the production efficiency.

Description

Corrugated board printing grooving machine
Technical Field
The application relates to the technical field of corrugated board processing equipment, in particular to a corrugated board printing grooving machine.
Background
The printing grooving machine, also called water-based printing grooving machine, paper box printing grooving machine, ink printing grooving machine or corrugated board printing grooving machine, is comprehensive paper box processing equipment integrating five procedures of printing, grooving, corner cutting, line pressing and edge cutting, and generally consists of a paper feeding part, a printing part and a grooving part, and is indispensable processing equipment in corrugated paper box production.
In the related art, chinese patent document with publication number CN212194421U discloses a waste collection device of printing groover, including setting up in the storage rack that is used for collecting corrugated cardboard in fluting portion discharge gate department, the storage rack is including the storage table that supplies corrugated cardboard to deposit and the baffle of vertical setting in storage table one side of keeping away from fluting portion, the storage table includes many and baffle looks vertically bracing piece, the receiving workbin that is used for collecting the waste material is installed to the below of storage table, be equipped with the clearance subassembly that is used for clearing up the waste material in the receiving workbin, the clearance subassembly includes sliding connection in the push pedal of receiving workbin, one side that the fluting portion was kept away from to the push pedal is connected with the pull rod, the pull rod is kept away from the one end of push pedal and is worn out the receiving workbin, the discharge gate has been seted up on the lateral wall that the receiving workbin worn out the baffle. Through pulling the pull rod for the push pedal moves towards the direction of keeping away from fluting portion, and the waste material in the receipts workbin is pushed to the portion that the receipts workbin stretches out outside the baffle, then, the staff can promote the waste material to one side of bin outlet, thereby shifts out the waste material, collects.
For the related art in the foregoing, the inventor found that, after the material receiving box is filled with the waste material, if the pull rod is pulled to remove the waste material without stopping the grooving machine, the waste material on the support rod will drop to one side of the push plate close to the grooving portion, the push plate will not reset, in actual production, after stopping, the pull rod is pulled again to remove the waste material, and the production efficiency is lower.
Disclosure of Invention
In order to improve production efficiency, the application provides a corrugated board printing grooving machine.
The application provides a corrugated board printing grooving machine which adopts the following technical scheme:
The utility model provides a corrugated board printing groover, includes the groover body and with the storage rack that the groover body links up, the storage rack includes support frame and interval setting be used for conveying corrugated board's multiunit conveyer belt on the support frame, the conveyer belt below slides and is provided with the recovery case, the recovery case is used for accepting the paper dust that drops from the conveyer belt, the direction of shifting out of recovery case perpendicular to corrugated board's ejection of compact direction still includes the case feeding device that is used for providing the recovery case, the case feeding device includes case feeding mechanism, transport mechanism and pushing mechanism, case feeding mechanism is used for carrying single recovery case intermittent type to transport mechanism department, transport mechanism is used for pushing the recovery case that the case feeding mechanism intermittent type was to pushing mechanism department, pushing mechanism is used for pushing the recovery case that transport mechanism intermittent type was sent to the conveyer belt below.
By adopting the technical scheme, the corrugated board after cutting and the paper scraps fall onto the conveyor belt together, and the paper scraps fall into the recovery box from the conveyor belt, so that the paper scraps are collected; after a certain time, when the recycling bin is fully collected, a single recycling bin is conveyed to the conveying mechanism through the bin conveying mechanism, the conveying mechanism pushes the recycling bin to the pushing mechanism, then the recycling bin to be charged is pushed to the lower part of the conveying belt through the pushing mechanism, and meanwhile the recycling bin filled with paper scraps is pushed out of the lower part of the conveying belt, so that the recycling bin is replaced, paper scraps do not need to be cleaned by stopping, and the recycling bin does not need to be replaced by stopping, and the production efficiency is improved; meanwhile, the box feeding mechanism intermittently conveys the recovery boxes to the conveying mechanism, so that the recovery boxes are replaced at regular time, workers are not required to observe the collection condition of the recovery boxes, and the box feeding mechanism is simple and convenient and saves manpower.
Preferably, the support frame is provided with a receiving hopper, the receiving hopper is used for receiving paper scraps falling from the conveyor belt, the receiving hopper is positioned below the conveyor belt, a discharge hole for removing the paper scraps is formed in the receiving hopper, and the recycling bin is used for being connected with the discharge hole.
Through adopting above-mentioned technical scheme, connect the setting of hopper in order to carry the collection box with the paper dust that drops on the conveyer belt in to reduce the setting of collection box size, the collection box that fills with the paper dust is pushed out the back, so that the staff will be equipped with the collection box of paper dust and lift to required department, simple and convenient uses manpower sparingly.
Preferably, the tank feeding mechanism comprises a tank channel arranged on one side of the supporting frame and an adjusting component arranged on the tank channel, the tank channel is used for storing a plurality of recovery tanks, the height of the inlet of the tank channel is larger than that of the outlet of the tank channel, the recovery tanks in the tank channel slide to the conveying mechanism through self gravity, and the adjusting component is used for adjusting the intermittent movement of the single recovery tank in the tank channel to the conveying mechanism.
By adopting the technical scheme, the single recovery box in the storage box channel is regulated to intermittently slide to the conveying mechanism through the regulating component, and when the recovery box is fully collected, the recovery box is replaced at regular time without stopping the machine, so that the production efficiency is improved; meanwhile, a plurality of recovery boxes are placed in the storage box channel, so that the recovery boxes can be supplied, and the recovery boxes do not need to be stopped to be supplied when the recovery boxes are used up, thereby being beneficial to improving the production efficiency; the arrangement of the storage tank channel is beneficial to saving the occupied space.
Preferably, the recycling bin is provided with a convex block, the inner wall of the bin channel is provided with a chute which is in sliding fit with the convex block, the adjusting component comprises a baffle plate which is arranged at the outlet of the bin channel in a sliding manner, the baffle plate is used for opening or shielding the chute, and the bin channel is provided with a control piece which is used for driving the baffle plate to slide so as to intermittently open the chute.
Through adopting above-mentioned technical scheme, drive the separation blade through the control and slide, make the separation blade open the spout for the collection box in the storage tank passageway slides to transport mechanism department, and the separation blade recloses the spout in order to inject the slip of next collection box, opens the spout through the baffle interval, thereby adjusts collection box intermittent type and slides to transport mechanism department, in order to realize regularly changing the collection box, need not to shut down and change the collection box, also need not the collecting condition that the staff observed the collection box always, is favorable to improving production efficiency.
Preferably, the control member comprises an air cylinder arranged on the storage tank channel, a timing controller used for controlling the air cylinder to drive the baffle to slide so as to intermittently open the chute is arranged on the support frame, and the air cylinder is electrically connected with the timing controller.
Through adopting above-mentioned technical scheme, drive the separation blade through timing controller timing control cylinder and slide to realize that the separation blade intermittent type opens the spout, with the adjustment collection box roll-off storage tank passageway, for intermittent type change collection box is convenient, be favorable to improving production efficiency.
Preferably, the conveying mechanism comprises a conveying plate and a first driving piece, wherein the conveying plate is arranged below the receiving hopper in an intermittent reciprocating sliding mode, the first driving piece is used for driving the conveying plate to intermittently reciprocate, the conveying plate is used for pushing a single recovery box intermittently removed from the outlet of the storage channel to the pushing mechanism, and the sliding direction of the conveying plate is parallel to the discharging direction of the corrugated board.
Through adopting above-mentioned technical scheme, drive the transfer board through first driving piece and slide, the transfer board will follow the collection box propelling movement to pushing mechanism department that storage channel department intermittently moved out to be convenient for change the collection box, need not to shut down and handle, be favorable to improving production efficiency.
Preferably, the first driving piece comprises a moving rod for pushing the conveying plate to intermittently reciprocate, a moving plate for driving the moving rod to intermittently reciprocate and an electric push rod for driving the moving plate to reciprocate, the moving rod is arranged on one side of the conveying plate away from the storage tank channel, the moving plate is arranged below the receiving hopper in a sliding mode, the sliding direction of the moving plate is perpendicular to the sliding direction of the conveying plate, one end of the moving rod away from the conveying plate slides in the moving plate, the sliding direction of the moving rod is perpendicular to the sliding direction of the moving plate, two ends of the moving rod penetrate through the moving plate, a cavity for the moving rod to slide is formed in the moving plate, the cavity penetrates through two sides of the moving plate along the length direction of the moving rod, a chute inclined towards the direction close to the conveying plate is formed in the moving plate, one end of the chute away from the conveying plate is communicated with a buffer groove, the length direction of the buffer groove is parallel to the sliding direction of the moving plate, the chute and the buffer groove are both communicated with the cavity, and a sliding block used for sliding in the chute and the connecting groove is formed in the moving rod.
Through adopting above-mentioned technical scheme, drive the movable plate reciprocating motion through electric putter for the slider takes place relative slip with chute and buffer tank, because the chute inclines towards the direction that is close to the transfer board, the movable plate drives the movable lever and slides, thereby makes the movable lever drive the transfer board reciprocating motion, and the transfer board will follow the single collection box of intermittent type roll-off in the storage tank passageway and push to transport mechanism, so that change to full collection box, need not to shut down and change the collection box, be favorable to improving production efficiency; when the sliding block slides in the buffer tank, the distance from the movable rod to the discharge port is kept unchanged, so that intermittent sliding of the conveying plate is realized, the recovery box is replaced regularly, a worker is not required to observe the collection condition of the recovery box, and the device is simple and convenient and saves manpower.
Preferably, the pushing mechanism comprises a pushing plate which is arranged below the receiving hopper in a reciprocating sliding manner and a second driving piece which is used for driving the pushing plate to slide in a reciprocating manner, the pushing plate is used for pushing the recycling bin to which the conveying plate is intermittently sent to below the discharging hole, and the sliding direction of the pushing plate is perpendicular to the discharging direction of the corrugated board.
Through adopting above-mentioned technical scheme, drive the push pedal through the second driving piece and reciprocate to make the push pedal promote the collection box that the delivery board was intermittently sent to the discharge gate below, release the collection box that will fill up the wastepaper simultaneously from the discharge gate below, change the collection box, need not to shut down the operation, be favorable to improving production efficiency.
Preferably, the second driving piece comprises a cam arranged below the receiving hopper in a rotating mode and a motor for driving the cam to rotate, the rotation axis of the cam is perpendicular to the sliding direction of the push plate, a push rod is arranged between the push plate and the cam, one end of the push rod, far away from the push plate, is in sliding connection with the peripheral wall of the cam, and when the push rod slides on the short side of the cam, the horizontal distance from the push rod to the discharge hole is larger than the side length of the recovery box.
Through adopting above-mentioned technical scheme, the starter motor, the motor drives the cam and rotates, and the cam drives the catch bar reciprocating motion, realizes the reciprocating motion of push pedal, because the catch bar slides on the minor face of cam, the distance of catch bar to the discharge gate is greater than the side length of collection box, leaves the migration space for the collection box of transfer plate propelling movement, and the gliding process of direction of discharge gate is kept away from to the push pedal orientation simultaneously is favorable to the intermittent type to promote the collection box to remove to the discharge gate below, carries out the time-varying to the collection box, for improving production efficiency and provides convenience.
In summary, the present application includes at least one of the following beneficial technical effects:
The corrugated board after cutting and the paper scraps fall onto a conveyor belt together, and the paper scraps fall into a recovery box from the conveyor belt, so that the paper scraps are collected; when the recycling bin is fully collected, a single recycling bin is conveyed to the conveying mechanism through the bin conveying mechanism, the conveying mechanism pushes the recycling bin to the pushing mechanism, then the recycling bin to be charged is pushed to the lower part of the conveying belt through the pushing mechanism, and meanwhile the recycling bin filled with paper scraps is pushed out from the lower part of the conveying belt, so that the recycling bin is replaced, paper scraps do not need to be cleaned when the machine is stopped, and the recycling bin does not need to be replaced when the machine is stopped, so that the production efficiency is improved;
The air cylinder is controlled to drive the baffle to slide at regular time through the timing controller, so that the intermittent opening of the sliding chute by the baffle is realized, the recycling bin is adjusted to slide out of the bin channel, convenience is brought to intermittent replacement of the recycling bin, and production efficiency is improved.
Drawings
Fig. 1 is a schematic overall structure of an embodiment of the present application.
Fig. 2 is a partial sectional exploded view of an embodiment of the present application.
Fig. 3 is a schematic partial structure of an embodiment of the present application.
Fig. 4 is an enlarged view of a portion a in fig. 3.
Fig. 5 is an enlarged view of a portion B in fig. 3.
Reference numerals illustrate: 1. the grooving machine comprises a grooving machine body; 2. a storage rack; 201. a support frame; 202. a conveyor belt; 3. a recovery box; 4. a box feeding device; 41. a box feeding mechanism; 411. a tank channel; 412. an adjustment assembly; 4121. a baffle; 4122. a control member; 41221. a cylinder; 41222. a timing controller; 42. a conveying mechanism; 421. a transfer plate; 422. a first driving member; 4221. a moving rod; 4222. a moving plate; 4223. an electric push rod; 43. a pushing mechanism; 431. a push plate; 432. a second driving member; 4321. a cam; 4322. a motor; 5. a receiving hopper; 6. a discharge port; 7. a bump; 8. a chute; 9. a cavity; 10. a chute; 11. a buffer tank; 12. a slide block; 13. a push rod; 14. a bottom plate; 15. a bracket; 16. a ramp; 17. a support post; 18. a support plate; 19. a first guide ring; 20. a guide block; 21. a guide groove; 22. a mounting plate; 23. a groove; 24. a second guide ring; 25. a mounting block; 26. a mounting groove; 27. a connecting plate; 28. and a baffle.
Detailed Description
The application is described in further detail below with reference to fig. 1-5.
The embodiment of the application discloses a corrugated board printing grooving machine. Referring to fig. 1, the corrugated board printing groover includes a groover body 1 and a material storage rack 2 connected with the groover body 1, the material storage rack 2 includes a supporting frame 201 and a plurality of groups of conveying belts 202 arranged on the supporting frame 201 at intervals for conveying corrugated boards, and since the groover body 1 and the material storage rack 2 belong to the prior art, redundant description is omitted in this embodiment.
Referring to fig. 1 and 2, the bottom end of a supporting frame 201 is fixedly connected with a bottom plate 14, a bracket 15 is fixedly connected to the bottom plate 14, a receiving hopper 5 is fixedly connected to the bracket 15, the receiving hopper 5 is positioned below a conveying belt 202, the receiving hopper 5 is used for receiving paper scraps falling from the conveying belt 202, a discharging hole 6 for removing the paper scraps is formed in the receiving hopper 5, the distance from one side of the receiving hopper 5 to the discharging hole 6 is greater than the distance from the opposite side to the discharging hole 6, a recovery box 3 is slidably arranged on the bottom plate 14, the cross section of the recovery box 3 is square, the recovery box 3 is positioned below the receiving hopper 5, the recovery box 3 is used for being connected with the discharging hole 6, the removing direction of the recovery box 3 is perpendicular to the discharging direction of corrugated boards, a slope 16 is fixedly connected to one side of the bottom plate 14 close to the discharging hole 6, and the slope 16 is used for connecting the bottom plate 14 with the ground so that the recovery box 3 slides to the ground smoothly; the corrugated board printing grooving machine further comprises a case feeding device 4 for providing the recycling case 3, the case feeding device 4 comprises a case feeding mechanism 41, a conveying mechanism 42 and a pushing mechanism 43, the case feeding mechanism 41 is used for intermittently conveying the single recycling case 3 to the conveying mechanism 42, the conveying mechanism 42 is used for pushing the recycling case 3 fed by the case feeding mechanism 41 to the pushing mechanism 43 along a direction parallel to the discharging direction of the corrugated board, and the pushing mechanism 43 is used for pushing the recycling case 3 fed by the conveying mechanism 42 to the position below the discharging hole 6 along a direction perpendicular to the discharging direction of the corrugated board.
The corrugated board discharged from the grooving machine body 1 is conveyed to a required position through the conveying belt 202, the paper scraps after cutting the corrugated board drop into the receiving hopper 5 from the conveying belt 202, then drop into the recovery box 3 below the discharging hole 6 from the discharging hole 6, after the recovery box 3 is fully collected, the single recovery box 3 is conveyed to the conveying mechanism 42 through the box conveying mechanism 41, the conveying mechanism 42 pushes the recovery box 3 conveyed by the box conveying mechanism 41 to the pushing mechanism 43, and then the pushing mechanism 43 pushes the recovery box 3 conveyed by the conveying mechanism 42 to the position below the discharging hole 6, so that the recovery box 3 filled with the paper scraps is pushed to slide out of the receiving hopper 5 along the slope 16, the replacement of the recovery box 3 is realized, the grooving work is not required to clean the paper scraps, and the production efficiency is improved; the paper scraps falling from the conveyor belt 202 are conveyed into the recovery box 3 through the receiving hopper 5, so that the size of the recovery box 3 is reduced, and a worker can convey the recovery box 3 pushed out of the lower part of the receiving hopper 5 to a required position conveniently, so that labor is saved, and simplicity and convenience are realized; send case mechanism 41 intermittent type to conveying mechanism 42 carry collection box 3 to make regularly change collection box 3, need not the staff and observe the condition of charging of collection box 3 always, reduce collection box 3 and change untimely condition, be favorable to using manpower sparingly, improve production efficiency.
Referring to fig. 2 and 3, a pillar 17 is fixedly connected to a side of the bottom plate 14 far from the slope 16, the box feeding mechanism 41 includes a box channel 411 fixedly connected to the pillar 17 and an adjusting assembly 412 disposed on the box channel 411, the box channel 411 is used for storing a plurality of recovery boxes 3, the recovery boxes 3 are sequentially arranged in the box channel 411, the height of an inlet of the box channel 411 is greater than the height of an outlet of the box channel 411, the recovery boxes 3 in the box channel 411 slide to the conveying mechanism 42 through self gravity, the box channel 411 is an arc channel, the box channel 411 is outwards protruded in a direction far from the receiving hopper 5, a tangential direction at the outlet of the box channel 411 is perpendicular to a discharging direction of corrugated cardboard, and the adjusting assembly 412 is used for adjusting intermittent movement of a single recovery box 3 in the box channel 411 to the conveying mechanism 42.
Referring to fig. 2 and 4, a protruding block 7 is fixedly connected to one side of the recovery tank 3, a sliding groove 8 which is in sliding fit with the protruding block 7 is formed in the inner wall of the tank channel 411, the sliding groove 8 is located on one side, close to the grooving machine body 1 (refer to fig. 1), of the tank channel 411, the adjusting component 412 comprises a baffle 4121 which is arranged at the outlet of the tank channel 411 in a sliding mode, the sliding direction of the baffle 4121 is perpendicular to the tangential direction of the outlet of the tank channel 411, the baffle 4121 is used for opening or shielding the sliding groove 8, a control piece 4122 which is used for pushing the baffle 4121 to slide to intermittently shield the sliding groove 8 is arranged on the tank channel 411, a support plate 18 is fixedly connected to the outer wall, close to the sliding groove 8, of the tank channel 411, of the control piece 4122 comprises a cylinder 41221 fixedly connected to the support plate 18, the extending direction of the cylinder 41221 is parallel to the sliding direction of the baffle 4121, a timing controller 41222 (refer to fig. 1) which is used for controlling the cylinder 41221 to push the baffle 4121 to slide to intermittently shield the sliding groove 8 is fixedly connected to the support frame 201 (refer to fig. 1), and the cylinder 41221 is electrically connected to the timing controller 41222. The timing controller 41222 controls the time for the shutter 4121 to intermittently slide to open the chute 8 according to the time setting from the start of collection to the full collection of the recovery tank 3.
When the recovery boxes 3 need to be replaced, the timing controller 41222 controls the air cylinder 41221 to drive the baffle 4121 to slide towards a direction away from the storage box channel 411, so that the baffle 4121 opens the sliding groove 8, the recovery boxes 3 in the storage box channel 411 slide out of the storage box channel 411 under the action of gravity and move to the conveying mechanism 42, and the air cylinder 41221 drives the baffle 4121 to slide towards a direction close to the storage box channel 411, so that the baffle 4121 seals the sliding groove 8, and the next recovery box 3 in the storage box channel 411 is blocked, thereby providing convenience for replacement of the recovery boxes 3; the timing controller 41222 controls the air cylinder 41221 to push the baffle 4121 to intermittently seal the chute 8, so that the recovery box 3 is intermittently moved out of the storage box channel 411, the recovery box 3 is conveniently replaced at regular time, workers do not need to constantly observe the collection condition of the recovery box 3, labor is saved, and production efficiency is improved; when the recovery tank 3 in the tank channel 411 is used up, the empty recovery tank 3 is placed at the inlet of the tank channel 411, so that the recovery tank 3 is replenished without stopping the machine, and the recovery tank 3 is replenished, thereby being beneficial to improving the production efficiency.
Referring to fig. 3 and 5, the transfer mechanism 42 includes a transfer plate 421 provided on the bottom plate 14 to intermittently reciprocate and a first driving member 422 for driving the transfer plate 421 to intermittently reciprocate, the first driving member 422 is provided on the bottom plate 14, the transfer plate 421 is for pushing the single recovery tank 3 intermittently removed from the outlet of the tank passage 411 to the pushing mechanism 43, the sliding direction of the transfer plate 421 is parallel to the discharging direction of the corrugated cardboard, the transfer plate 421 is located on the side of the tank passage 411 away from the groover body 1 (refer to fig. 1), the first driving member 422 includes a moving rod 4221 intermittently reciprocate on the bottom plate 14, a moving plate 4222 reciprocally moved on the bottom plate 14, and an electric push rod 4223 fixedly connected to the bottom plate 14, the moving rod 4221 is for pushing the transfer plate 421 to intermittently reciprocate, one end of the moving rod 4221 is fixedly connected to the side of the transfer plate 421 away from the groover body 1, the other end is slid in the moving plate 4222, the sliding direction of the moving rod 4221 is parallel to the sliding direction of the transfer plate 421, and the electric push rod 4223 is fixedly connected to the output end of the electric push rod 4223 of the moving rod 4223 away from the side of the groover body 4223.
Referring to fig. 3 and 5, the bottom plate 14 is fixedly connected with a first guide ring 19, and the moving rod 4221 slides in the first guide ring 19, so that sliding guide of the moving rod 4221 is facilitated; the plane of the moving plate 4222 is perpendicular to the plane of the conveying plate 421, the sliding direction of the moving plate 4222 is perpendicular to the sliding direction of the conveying plate 421, the extending direction of the electric push rod 4223 is parallel to the sliding direction of the moving plate 4222, a guide block 20 is fixedly connected to one side of the moving plate 4222, which is close to the bottom plate 14, the guide block 20 is T-shaped, and a guide groove 21 for sliding fit with the guide block 20 is formed in the bottom plate 14; the two ends of the moving rod 4221 penetrate through the moving plate 4222, a cavity 9 for sliding the moving rod 4221 is formed in the moving plate 4222, the cavity 9 penetrates through the moving plate 4222 along two sides of the length direction of the moving rod 4221, a chute 10 inclining towards the direction close to the conveying plate 421 is formed in the moving plate 4222, one end of the chute 10 away from the conveying plate 421 inclines towards the direction close to the electric push rod 4223, the distance between the two ends of the chute 10 along the length direction of the moving rod 4221 is equal to the side length of the recovery box 3 (refer to fig. 2), one end of the chute 10 away from the conveying plate 421 is communicated with a buffer groove 11, the length direction of the buffer groove 11 is parallel to the sliding direction of the moving plate 4222, the chute 10 and the buffer groove 11 are communicated with the cavity 9, a sliding block 12 for sliding in the chute 10 and the buffer groove 11 is fixedly connected to the moving rod 4221, and an arc section is formed at the communicating position of the chute 10 and the buffer groove 11 so as to facilitate the sliding of the sliding block 12; when the slider 12 slides in the chute 10, the moving lever 4221 slides in a direction away from or toward the groover body 1; when the slider 12 slides in the buffer tank 11, the distance from the moving rod 4221 to the discharge port 6 (see fig. 2) remains unchanged.
When the recovery box 3 needs to be replaced, the recovery box 3 intermittently sliding out from the outlet of the storage box channel 411 slides to one side of the conveying plate 421 close to the grooving machine body 1, the electric push rod 4223 is started, the electric push rod 4223 drives the moving plate 4222 to reciprocate, the chute 10 and the sliding block 12 on the moving rod 4221 slide relatively in the process that the moving plate 4222 slides in the direction far away from the storage box channel 411, the chute 10 drives the moving rod 4221 to slide in the direction close to the grooving machine body 1, and the conveying plate 421 pushes the recovery box 3 to slide in the direction close to the grooving machine body 1, so that the recovery box 3 is pushed to the pushing mechanism 43; when the electric push rod 4223 drives the moving plate 4222 to slide towards the direction close to the tank channel 411, the chute 10 drives the sliding block 12 to slide towards the direction far away from the grooving machine body 1, so that the conveying plate 421 is reset, the reciprocating movement of the conveying plate 421 is realized, when the sliding block 12 slides into the buffer groove 11, the distance from the moving rod 4221 to the discharge hole 6 is kept unchanged, the intermittent reciprocating sliding of the conveying plate 421 is realized, the recovery tank 3 is convenient to wait for the next replacement, the recovery tank 3 is replaced at regular time, the recovery tank 3 is not required to be replaced by stopping, and the production efficiency is improved; meanwhile, the collection condition of the recovery box 3 is not required to be observed by workers at any time, and labor is saved. The sliding direction of the conveying plate 421 is parallel to the discharging direction of the corrugated board, so that the conveying plate 421 and the moving plate 4222 are both located below the conveying belt 202, which is beneficial to saving the occupied space.
Referring to fig. 2 and 3, the pushing mechanism 43 includes a push plate 431 reciprocally slidably disposed on the bottom plate 14, the push plate 431 being located at a side of the tank passage 411 near the groover body 1 (refer to fig. 1), the push plate 431 being located at a side of the discharge port 6 away from the slope 16, and a second driving member 432 being disposed on the bottom plate 14, the push plate 431 being for pushing the recovery box 3 to which the transfer plate 421 is intermittently fed to below the discharge port 6, the sliding direction of the push plate 431 being perpendicular to the discharge direction of the corrugated cardboard.
Referring to fig. 3 and 4, the mounting plate 22 is fixedly connected to the bottom plate 14, the second driving member 432 includes a cam 4321 rotatably disposed on the mounting plate 22 and a motor 4322 fixedly connected to the mounting plate 22, the cam 4321 and the motor 4322 are both located below the receiving hopper 5 (refer to fig. 2), the cam 4321 is fixedly connected to an output end of the motor 4322, a rotation axis of the cam 4321 is perpendicular to a sliding direction of the push plate 431, a groove 23 for the cam 4321 to rotate is formed in the bottom plate 14, a push rod 13 is disposed between the push plate 431 and the cam 4321, one end of the push rod 13 is fixedly connected to a side of the push plate 431 away from the discharge port 6, the other end of the push rod 13 is slidingly connected with a peripheral wall of the cam 4321, one end of the push rod 13 away from the push plate 431 is fixedly connected with a mounting block 25, the mounting block 25 is T-shaped, and a mounting groove 26 for sliding fit with the mounting block 25 is formed in a peripheral wall of the cam 4321; the bottom plate 14 is fixedly connected with a second guide ring 24, the push rod 13 slides in the second guide ring 24, the second guide ring 24 guides the movement of the push rod 13, the sliding direction of the push rod 13 is parallel to the sliding direction of the push plate 431, and when the mounting block 25 slides on the long edge of the cam 4321, the push rod 13 slides towards the direction approaching or separating from the discharge hole 6; when the mounting block 25 slides on the short side of the cam 4321, the horizontal distance from the push plate 431 to the discharge port 6 is longer than the side length of the recovery tank 3.
When the conveying plate 421 pushes the recovery box 3 to one side of the push plate 431 close to the discharge port 6, the motor 4322 drives the cam 4321 to rotate, and the cam 4321 drives the push plate 431 to slide towards the direction close to the discharge port 6, so that the recovery box 3 to be charged is pushed to the position below the discharge port 6, and meanwhile, the recovery box 3 filled with paper scraps is pushed out from the slope 16; the cam 4321 drives the push plate 431 to slide in a direction away from the discharge hole 6 in the process of continuing to rotate, so that the reciprocating movement of the push plate 431 is realized; when the mounting block 25 slides on the short side of the cam 4321, the distance between the push plate 431 and the discharge port 6 is greater than the side length of the recovery box 3, so that the conveying plate 421 is convenient to convey the next recovery box 3 to one side of the push plate 431 close to the discharge port 6, convenience is brought to replacement of the recovery box 3, and meanwhile intermittent pushing of the recovery box 3 by the conveying plate 421 is facilitated.
Referring to fig. 1 and 2, a connecting plate 27 is fixedly connected to one side of the receiving hopper 5, which is close to the grooving machine body 1, and the connecting plate 27 is inclined upwards towards the grooving machine body 1, and the connecting plate 27 is positioned below the grooving part of the grooving machine body 1 so as to guide paper scraps falling from the grooving part of the grooving machine body 1 into the receiving hopper 5, so that the possibility that the paper scraps fall to the ground is reduced.
Referring to fig. 1 and 3, a baffle 28 is disposed on one side of the push plate 431 away from the storage tank channel 411 and on two sides of the discharge port 6 below the recovery tank 3 in the moving-out direction, the baffle 28 is used for guiding the sliding of the recovery tank 3, and the baffle 28 is fixedly connected to the bottom plate 14, so that the sliding of the recovery tank 3 is facilitated, and the sliding effect of the recovery tank 3 is improved.
The implementation principle of the embodiment of the application is as follows:
The cut corrugated boards and paper scraps are discharged from the grooving machine body 1 and fall onto the conveying belt 202, the corrugated boards are conveyed to a required position through the conveying belt 202, the paper scraps fall into the receiving hopper 5 from a gap between the conveying belts 202 and then fall into the recovery box 3 from the discharge port 6, when the recovery box 3 is full of the paper scraps, the timing controller 41222 controls the air cylinder 41221 to drive the baffle 4121 to slide in a direction away from the storage box channel 411, the baffle 4121 opens the sliding groove 8, the recovery box 3 in the storage box channel 411 slides out of the storage box channel 411 under the action of gravity and moves to one side of the conveying plate 421 close to the grooving machine body 1, and the air cylinder 41221 drives the baffle 4121 to slide in a direction close to the storage box channel 411, so that the baffle 4121 seals the sliding groove 8, and then the next recovery box 3 in the storage box channel 411 is blocked; the timing controller 41222 controls the air cylinder 41221 to drive the baffle 4121 to intermittently open the chute 8, so that the recovery tank 3 in the tank channel 411 intermittently slides to the conveying plate 421.
The electric push rod 4223 drives the moving plate 4222 to slide, at this time, the sliding block 12 slides in the buffer tank 11, the moving plate 4222 moves towards the direction away from the tank channel 411, the moving plate 4222 drives the moving rod 4221 to slide towards the direction close to the grooving machine body 1, so that the conveying plate 421 pushes the recovery tank 3 sliding out of the tank channel 411 to the push plate 431, then the electric push rod 4223 drives the moving plate 4222 to slide towards the direction close to the tank channel 411, the sliding block 12 slides in the chute 10 to slide in the buffer tank 11, so that the conveying plate 421 slides towards the direction away from the discharge hole 6, and resetting is achieved, and meanwhile when the sliding block 12 slides in the buffer tank 11, the distance between the moving rod 4221 and the discharge hole 6 is equal, so that the next recovery tank 3 is waited for to slide out of the tank channel 411.
At this time, the motor 4322 drives the cam 4321 to rotate, the mounting block 25 slides on the short side of the cam 4321, the cam 4321 continues to rotate to drive the push rod 13 to slide towards the direction close to the discharge port 6, the push plate 431 pushes the recovery box 3 sent by the conveying plate 421 to move to the position below the discharge port 6, the cam 4321 continues to rotate to drive the push rod 13 to slide towards the direction far away from the discharge port 6, and when the mounting block 25 slides on the short side of the cam 4321, the distance from the push plate 431 to the discharge port 6 is greater than the side length of the recovery box 3, so that the conveying plate 421 pushes the push plate 431 to push the next recovery box 3 to one side close to the discharge port 6; the recycling bin 3 filled with paper scraps is pushed out along the slope 16, the recycling bin 3 is replaced at regular time, the grooving work is not required to be stopped for processing the paper scraps or replacing the recycling bin 3, and the production efficiency is improved; meanwhile, the collection condition of the recovery box 3 is not required to be observed all the time by workers, and the recovery box is simple and convenient and saves manpower.
The above embodiments are not intended to limit the scope of the present application, so: all equivalent changes in structure, shape and principle of the application should be covered in the scope of protection of the application.

Claims (5)

1. The utility model provides a corrugated board printing groover, includes groover body (1) and with storage frame (2) that groover body (1) links up, storage frame (2) include support frame (201) and interval setting are used for conveying multiunit conveyer belt (202) of corrugated board on support frame (201), its characterized in that: the recycling bin (3) is arranged below the conveying belt (202) in a sliding manner, the recycling bin (3) is used for receiving paper scraps falling from the conveying belt (202), the moving-out direction of the recycling bin (3) is perpendicular to the discharging direction of corrugated paper boards, the recycling bin further comprises a bin feeding device (4) used for providing the recycling bin (3), the bin feeding device (4) comprises a bin feeding mechanism (41), a conveying mechanism (42) and a pushing mechanism (43), the bin feeding mechanism (41) is used for intermittently conveying single recycling bin (3) to the conveying mechanism (42), the conveying mechanism (42) is used for pushing the recycling bin (3) intermittently conveyed by the bin feeding mechanism (41) to the pushing mechanism (43), the pushing mechanism (43) is used for pushing the recycling bin (3) intermittently conveyed by the conveying mechanism (42) to the position below the conveying belt (202), the supporting frame (201) is provided with a receiving hopper (5), the hopper (5) is used for receiving the paper scraps falling from the conveying belt (202), the hopper (5) is arranged below the conveying mechanism (202) and is used for being connected with a discharging port (6) for discharging the recycling bin (6), the box feeding mechanism (41) comprises a box channel (411) arranged on one side of the supporting frame (201) and an adjusting component (412) arranged on the box channel (411), the box channel (411) is used for storing a plurality of recovery boxes (3), the height of the inlet of the box channel (411) is larger than that of the outlet of the box channel (411), the recovery boxes (3) in the box channel (411) slide to a conveying mechanism (42) through self gravity, the adjusting component (412) is used for adjusting the intermittent movement of the single recovery box (3) in the box channel (411) to the conveying mechanism (42), the conveying mechanism (42) comprises a conveying plate (421) arranged below the receiving hopper (5) in an intermittent reciprocating manner and a first driving piece (422) used for driving the conveying plate (421) to intermittently reciprocate, the conveying plate (421) is used for pushing the single recovery box (3) at the outlet of the box channel to a pushing mechanism (43), the sliding direction of the conveying plate (421) is parallel to the discharging direction of the paper plate (421) to the first driving piece (4221), the corrugated plate (4222) is used for driving the intermittent reciprocating rod (4222) to reciprocate, the first driving piece (4222) is used for driving the intermittent reciprocating rod (4222), the utility model discloses a movable rod (4221) is located one side that the bin passageway (411) was kept away from to movable rod (4221), movable plate (4222) slides and is set up in receiving hopper (5) below, the slip direction of movable plate (4222) perpendicular to the slip direction of movable plate (421), the one end that movable rod (4221) kept away from movable plate (421) slides in movable plate (4222), the slip direction of movable rod (4221) perpendicular to movable plate (4222) slides, movable rod (4221) both ends run through movable plate (4222), set up in movable plate (4222) and be used for supplying movable rod (4221) gliding cavity (9), cavity (9) run through movable plate (4222) along movable rod (4221) length direction's both sides, set up chute (10) that are close to the direction of movable plate (421) slope on movable plate (4222), the one end that movable plate (421) was kept away from to chute (10) communicates has buffer groove (11), buffer groove (11) length direction (4222) are parallel to movable plate (4222) and chute (10) are used for connecting in buffer groove (4221) and sliding groove (10) and sliding groove (42) to be connected.
2. A corrugated board printing groover as defined in claim 1, wherein: be provided with lug (7) on recycling bin (3), set up on the inner wall of bin passageway (411) be used for with lug (7) sliding fit's spout (8), adjusting part (412) are including sliding setting up in separation blade (4121) of bin passageway (411) exit, separation blade (4121) are used for opening or shelter from spout (8), be provided with on bin passageway (411) and be used for driving separation blade (4121) to slide in order to intermittently open control piece (4122) of spout (8).
3. A corrugated board printing groover as defined in claim 2, wherein: the control piece (4122) comprises an air cylinder (41221) arranged on the storage tank channel (411), a timing controller (41222) used for controlling the air cylinder (41221) to drive the baffle piece (4121) to slide so as to intermittently open the sliding groove (8) is arranged on the supporting frame (201), and the air cylinder (41221) is electrically connected with the timing controller (41222).
4. A corrugated board printing groover as defined in claim 1, wherein: the pushing mechanism (43) comprises a pushing plate (431) which is arranged below the receiving hopper (5) in a reciprocating sliding manner and a second driving piece (432) which is used for driving the pushing plate (431) to slide in a reciprocating manner, the pushing plate (431) is used for pushing the recycling bin (3) to which the conveying plate (421) is intermittently sent to below the discharging hole (6), and the sliding direction of the pushing plate (431) is perpendicular to the discharging direction of the corrugated board.
5. A corrugated board printing groover as defined in claim 4, wherein: the second driving piece (432) comprises a cam (4321) arranged below the receiving hopper (5) in a rotating mode and a motor (4322) used for driving the cam (4321) to rotate, the rotation axis of the cam (4321) is perpendicular to the sliding direction of the pushing plate (431), a pushing rod (13) is arranged between the pushing plate (431) and the cam (4321), one end of the pushing rod (13) away from the pushing plate (431) is in sliding connection with the peripheral wall of the cam (4321), and when the pushing rod (13) slides on the short side of the cam (4321), the horizontal distance from the pushing rod (13) to the discharge hole (6) is larger than the side length of the recovery box (3).
CN202111249488.8A 2021-10-26 2021-10-26 Corrugated board printing grooving machine Active CN113954421B (en)

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