CN111546704A - Novel corrugated paper processing device and novel corrugated paper processing technology - Google Patents
Novel corrugated paper processing device and novel corrugated paper processing technology Download PDFInfo
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- CN111546704A CN111546704A CN202010415730.3A CN202010415730A CN111546704A CN 111546704 A CN111546704 A CN 111546704A CN 202010415730 A CN202010415730 A CN 202010415730A CN 111546704 A CN111546704 A CN 111546704A
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- 238000012545 processing Methods 0.000 title claims abstract description 27
- 238000005516 engineering process Methods 0.000 title abstract description 7
- 230000007246 mechanism Effects 0.000 claims abstract description 163
- 239000000123 paper Substances 0.000 claims abstract description 136
- 239000011087 paperboard Substances 0.000 claims abstract description 53
- 238000004026 adhesive bonding Methods 0.000 claims abstract description 43
- 239000003292 glue Substances 0.000 claims abstract description 39
- 238000004049 embossing Methods 0.000 claims abstract description 32
- 238000003825 pressing Methods 0.000 claims abstract description 27
- 238000005520 cutting process Methods 0.000 claims abstract description 14
- 238000003892 spreading Methods 0.000 claims abstract 5
- 239000011111 cardboard Substances 0.000 claims description 39
- 238000003860 storage Methods 0.000 claims description 21
- 230000006835 compression Effects 0.000 claims description 20
- 238000007906 compression Methods 0.000 claims description 20
- 230000005540 biological transmission Effects 0.000 claims description 14
- 230000000712 assembly Effects 0.000 claims description 13
- 238000000429 assembly Methods 0.000 claims description 13
- 230000007306 turnover Effects 0.000 claims description 8
- 230000001629 suppression Effects 0.000 claims description 6
- 239000011248 coating agent Substances 0.000 claims description 5
- 238000000576 coating method Methods 0.000 claims description 5
- 230000015572 biosynthetic process Effects 0.000 claims description 3
- 238000004519 manufacturing process Methods 0.000 abstract description 5
- 238000010073 coating (rubber) Methods 0.000 description 7
- 230000033001 locomotion Effects 0.000 description 6
- 230000000694 effects Effects 0.000 description 4
- 235000017166 Bambusa arundinacea Nutrition 0.000 description 3
- 235000017491 Bambusa tulda Nutrition 0.000 description 3
- 241001330002 Bambuseae Species 0.000 description 3
- 235000015334 Phyllostachys viridis Nutrition 0.000 description 3
- 230000009471 action Effects 0.000 description 3
- 230000002337 anti-port Effects 0.000 description 3
- 239000011425 bamboo Substances 0.000 description 3
- 238000004806 packaging method and process Methods 0.000 description 3
- 239000002994 raw material Substances 0.000 description 3
- 230000001360 synchronised effect Effects 0.000 description 3
- 230000008859 change Effects 0.000 description 2
- 238000005034 decoration Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
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- 238000005096 rolling process Methods 0.000 description 2
- 230000001174 ascending effect Effects 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 230000003028 elevating effect Effects 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000012856 packing Methods 0.000 description 1
- 239000003973 paint Substances 0.000 description 1
- 238000007761 roller coating Methods 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B31—MAKING 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
- B31F—MECHANICAL WORKING OR DEFORMATION OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
- B31F1/00—Mechanical deformation without removing material, e.g. in combination with laminating
- B31F1/20—Corrugating; Corrugating combined with laminating to other layers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D1/00—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor
- B26D1/01—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work
- B26D1/12—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis
- B26D1/125—Cutting through work characterised by the nature or movement of the cutting member or particular materials not otherwise provided for; Apparatus or machines therefor; Cutting members therefor involving a cutting member which does not travel with the work having a cutting member moving about an axis for thin material, e.g. for sheets, strips or the like
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Abstract
The invention discloses a novel corrugated paper processing device and a novel corrugated paper processing technology, wherein the novel corrugated paper processing device comprises a bulging mechanism, wherein a first raw paper conveying mechanism is arranged at the input end of the bulging mechanism, a gluing mechanism is arranged at the output end of the bulging mechanism, a second raw paper conveying mechanism is arranged at the output end of the gluing mechanism, a splitting mechanism is arranged at the output end of the second raw paper conveying mechanism, and a stacking mechanism is arranged at the output end of the splitting mechanism; the first body paper conveying mechanism is used for conveying a first paperboard to the embossing mechanism, the glue spreading mechanism is used for spreading glue on the protrusions pressed on the first paperboard, the second body paper conveying mechanism is used for conveying a second paperboard to the positions above the protrusions of the first paperboard and pressing the second paperboard to form corrugated paper, the cutting mechanism is used for cutting the corrugated paper, and the stacking mechanism is used for stacking the cut corrugated paper; this novel corrugated paper processing device production efficiency is high, and the novel corrugated paper quality of production is unified moreover.
Description
Technical Field
The invention relates to the corrugated paper processing industry, in particular to a novel corrugated paper processing device and a novel corrugated paper processing technology.
Background
Along with the rise of network electricity merchants, the scale of the express delivery industry is increasingly huge, a large amount of corrugated paper is needed for packaging operation, and the corrugated paper industry is also developed. Along with the rapid development of the E-commerce, the express industry is prosperous and brings troubles, the packaging weight is reduced, the packaging garbage is treated, and the environment is protected. Conventional corrugated paper is typically shaped into three, U, V, or UV, sheets, and then laminated with three, five, or seven layers of paperboard. Taking three layers as an example, regardless of the U-shaped, V-shaped or UV-shaped corrugated board, each piece of corrugated board needs a relatively long base paper, and the weight of the board is relatively heavy with respect to the raw materials. The corrugated paper finished product with the same length has the advantages that compared with the traditional U, V corrugated paper and UV corrugated paper finished product, the corrugated paper finished product with the same length has the advantages that raw materials are saved, the weight is lighter, the strength and the rigidity are good, and the effects of the traditional three layers can be achieved only by two layers, so that materials are saved; however, most of the new corrugated paper is processed manually, which not only wastes time and labor, but also makes the quality of the manufactured products non-uniform.
Disclosure of Invention
The invention aims to provide a novel corrugated paper processing device which can realize the stamping, gluing, cutting and stacking of novel corrugated paper raw materials, has high production efficiency and produces novel corrugated paper with uniform quality.
In order to achieve the purpose, the invention provides the following technical scheme:
a novel corrugated paper processing device comprises a convex pressing mechanism, wherein a first raw paper conveying mechanism is arranged at the input end of the convex pressing mechanism, a gluing mechanism is arranged at the output end of the convex pressing mechanism, a second raw paper conveying mechanism is arranged at the output end of the gluing mechanism, a splitting mechanism is arranged at the output end of the second raw paper conveying mechanism, and a stacking mechanism is arranged at the output end of the splitting mechanism; first body paper conveying mechanism is used for carrying first cardboard to the mechanism of embossing, the mechanism of embossing is used for suppressing the arch on first cardboard, glue spreader is used for scribbling glue for the arch of suppression on the first cardboard, second body paper conveying mechanism is used for delivering to the protruding top of first cardboard and compresses tightly the formation corrugated paper with the second cardboard, it is used for cutting the corrugated paper to cut the mechanism to cut, pile up neatly mechanism is used for the corrugated paper of putting the cutting in order.
Through the technical scheme, this novel corrugated paper processingequipment during operation, the first body paper conveying mechanism of control carries first cardboard to the embossing mechanism, embossing mechanism is protruding to the first cardboard suppression of carrying to deliver to the rubber coating mechanism, and the rubber coating mechanism paints glue to the arch of suppression on the first cardboard, and deliver to second body paper mechanism, and second body paper conveying mechanism delivers to the protruding top of first cardboard with the second cardboard and compresses tightly and form the corrugated paper, then delivers to cutting mechanism, cuts the mechanism and cuts the corrugated paper and deliver to the pile up neatly mechanism, the pile up neatly mechanism puts things in good order the corrugated paper of cutting.
In a further technical scheme, the first base paper conveying mechanism and the second base paper conveying mechanism are identical in structure and respectively comprise a conveying frame, a roller is connected in the conveying frame in a rotating mode, a paper board is wound on the roller, an output end of the conveying frame is connected with an upper output roller in a rotating mode, the upper output roller and the roller are arranged in parallel, and an output motor used for driving the upper output roller to rotate is fixedly installed on the conveying frame through a first support; two sides of the conveying frame are respectively provided with a first limiting sliding groove below two ends of the upper output roller along the vertical direction, a lower output roller is rotatably connected between the two first limiting sliding grooves, two ends of the upper output roller are respectively and fixedly provided with an upper gear, and two ends of the lower output roller are respectively and fixedly provided with a lower gear meshed with the upper gear; the two sides of the conveying frame are provided with first pressing assemblies below two ends of the lower output roller through bumps, and the first pressing assemblies are used for forcing the lower output roller to be pressed on the upper output roller;
the two sides of the conveying frame are rotatably connected with first rotating shafts arranged in parallel with the rollers, each first rotating shaft is rotatably connected with a turnover frame, and the two sides of the conveying frame are respectively hinged with a turnover cylinder for driving the turnover frames to rotate around the first rotating shafts; each roll-over stand is provided with a middle sliding chute, a compression roller arranged in parallel with the roller is arranged between the two roll-over stands, and two ends of the compression roller are respectively positioned in the middle sliding chutes; each first rotating shaft is fixedly provided with a first gear meshed with the upper gear between the roll-over stand and the conveying frame, and one end extending out of the roll-over stand is fixedly provided with a first belt wheel; guide sliding rods arranged along the length direction of the middle sliding chute are fixedly arranged on two sides of the middle sliding chute on each turnover frame, a sliding block is arranged between the two guide sliding rods, and each guide sliding rod is provided with a first spring used for forcing the sliding block to move in the direction away from the first gear; notches are formed in the two sides of the middle sliding groove of each overturning frame, and are arranged along the length direction of the middle sliding groove; the sliding block is provided with second rotating shafts extending out of the two notches, and each second rotating shaft is provided with a second belt wheel; the compression roller is fixedly provided with a third belt wheel at one end extending out of the middle sliding chute; and fourth belt wheels are rotatably connected to two sides of the first belt wheel on each roll-over stand, first tensioning transmission belts are arranged among the first belt wheel, the two second belt wheels, the third belt wheel and the two fourth belt wheels, and the first tensioning transmission belts are used for forcing the third belt wheels to move in the direction away from the first belt wheels.
Through the technical scheme, first body paper conveying mechanism and second body paper conveying mechanism during operation, the output motor drives the output roller and rotates, drives gear revolve when going up the output roller and rotates, drives the synchronous antiport of output roller down through lower gear during going up gear revolve to the cardboard output that will be located between output roller and the lower output roller sets up first pressure tight subassembly in addition and makes lower output roller upwards compress tightly on last output roller, thereby guarantees the steady output of cardboard. In addition, when the upper gear rotates, the first rotating shaft is driven to rotate through the first gear, the first belt wheel is driven to rotate when the first rotating shaft rotates, the first belt wheel drives the compression roller to rotate through the first transmission belt when rotating, and the compression roller is tightly pressed on the outer side of the reeled paper board under the action of the tensioned first belt wheel, so that the compression roller drives the paper board reeled on the roller to rotate when rotating, the first spring presses the sliding block to move in the rotating process, the sliding block drives the first transmission belt to tension through the two second belt wheels, and the compression roller is pulled to be tightly pressed on the outer side of the reeled paper board all the time. In addition, because the compression roller, the upper output roller and the lower output roller rotate synchronously, the linear speed of the paper outlet of the roller can be ensured to be the same as the outer diameter linear speed of the upper output roller and the lower output roller, so that the conditions of paper output speed change and paper breaking or paper jamming caused by the diameter change of the paper can not occur, and the condition is ensured by a mechanical structure, so that errors can not occur; after the cardboard of roll-up was used up on the roller, when the roller that new roll-up had the cardboard was put into to needs, earlier control upset cylinder stretch out and drive the roll-over stand and rotate, and drive the pressure roller when the roll-over stand rotates and leave, put the roller of new roll-up cardboard after, control upset cylinder withdrawal for the compression roller resets and compresses tightly on the cardboard of roll-up.
In a further technical scheme, the embossing mechanism comprises an embossing frame, a concave roller which is parallel to the upper output roller is rotationally connected in the embossing frame, second limiting sliding grooves are respectively formed in two sides of the embossing frame below two ends of the concave roller along the vertical direction, and a convex roller which is parallel to the concave roller is rotationally connected between the two second limiting sliding grooves; second gears are fixedly arranged at two ends of the concave surface roller, and third gears meshed with the second gears are fixedly arranged at two ends of the convex surface roller; the two sides of the convex pressing frame are provided with second pressing assemblies below the two ends of the convex roller through bumps, and the second pressing assemblies are used for forcing the convex roller to be pressed on the concave roller; one end of the convex roller is provided with a first convex shaft, the end of the lower output roller in the first base paper conveying mechanism in the same direction is provided with a second convex shaft, and a second transmission belt is arranged between the first convex shaft and the second convex shaft.
Through the technical scheme, the embossing mechanism during operation, lower delivery roll by among the first body paper conveying mechanism drives the second protruding axle and rotates, it rotates to drive first protruding axle through the second drive belt when the second protruding axle rotates, it rotates to drive the convex roller when first protruding axle rotates, the convex roller drives the synchronous antiport of concave roller through the meshing of third gear and second gear when rotating, set up the second in addition and compress tightly the subassembly and make the convex roller upwards compress tightly on the concave roller, thereby when guaranteeing the steady output of cardboard, bellied suppression on the first cardboard has been guaranteed effectively.
In a further technical scheme, the first compressing assembly and the second compressing assembly have the same structure and respectively comprise a top block, two sliding rods are arranged on the top block, and the two sliding rods are connected in the convex block in a sliding manner along the vertical direction; a spring plate is connected between the two slide rods in a sliding manner, and a compression spring for forcing the top block to move upwards is arranged between the spring plate and the top block on each slide rod; the upper end of the ejector block is provided with an arc-shaped positioning groove; an adjusting screw is connected in the lug in a rotating mode and used for controlling the spring plate to move up and down.
Through above-mentioned technical scheme, the kicking block upward movement plays the effect that compresses tightly under compression spring's effect, rotates adjusting screw and adjusts the position of spring board, and then adjusts compression spring's pretightning force to can realize the ascending packing force of kicking block.
In a further technical scheme, the gluing mechanism comprises a gluing support, a top plate of the gluing support is provided with a support frame, and the support frame is provided with a glue storage box; a roller for coating glue on the bulge pressed on the first paperboard is rotatably connected to an outlet at the lower end of the glue storage box, and a plurality of strip-shaped grooves are uniformly arranged on the side surface of the outer circumference of the roller at intervals; a gluing motor for driving the roller to rotate is fixedly arranged on two sides of the glue storage box through support plates; a third limiting sliding groove is formed in the support frame along the vertical direction, and a convex column extending into the third limiting sliding groove is arranged on the side face of the glue storage box; the two sides of the gluing support are respectively provided with a gluing cylinder, and the telescopic end of each gluing cylinder is connected with the glue storage box; when the gluing cylinder stretches out, the glue storage box moves upwards, and when the gluing cylinder contracts, the glue storage box moves downwards.
Through above-mentioned technical scheme, when carrying out the rubber coating to the arch on the first cardboard, first cardboard extends between the roof of roller and rubber coating support, and control rubber coating cylinder shrink makes the roller compress tightly in the protruding top of first cardboard, and control rubber coating motor drives the cylinder and rotates, carries out the rubber coating when the cylinder rotates on the one hand, and on the other hand drives first cardboard and moves to second body paper conveying mechanism.
In a further technical scheme, the slitting mechanism comprises a slitting support, knife rests are arranged on two sides of a top plate of the slitting support, a knife cylinder is rotatably connected between the two knife rests, and a cutter is arranged on the side surface of the outer circumference of the knife cylinder along the tangential direction; one of the knife rests is fixedly provided with a slitting motor for driving the knife cylinder to rotate.
Through above-mentioned technical scheme, cut the mechanism during operation, cut the motor drive sword section of thick bamboo and rotate, make sword section of thick bamboo pivoted linear velocity the same with the rate of motion of corrugated paper, cut off the corrugated paper through the cutter when the sword section of thick bamboo rotates.
In a further technical scheme, the stacking mechanism comprises a stacking support, a paperboard placing assembly is arranged in the stacking support and comprises a base plate and a supporting plate, and a scissor lifting mechanism is arranged between the base plate and the supporting plate; two guide plates are arranged below the supporting plate side by side, and a guide groove is formed in each guide plate; guide slide rods positioned in the guide grooves are arranged on two sides of the upper end of the scissor lifting mechanism; two guide sliding plates are arranged in the chassis side by side, one side of the lower end of the scissor lifting mechanism is hinged in the chassis through a first long shaft, and the other side of the lower end of the scissor lifting mechanism is provided with a second long shaft which is connected in the two guide sliding plates in a sliding manner; a scissor cylinder is arranged between the first long shaft and the second long shaft, when the scissor cylinder extends out, the scissor lifting mechanism drives the supporting plate to move downwards, and when the scissor cylinder contracts, the scissor lifting mechanism drives the supporting plate to move upwards; the supporting plate is used for placing the cut corrugated paper.
Through above-mentioned technical scheme, can be through the stretching out or the withdrawal of control scissors fork cylinder, and then by the up-and-down motion of scissors fork elevating system control layer board to receive the corrugated container board that cuts well.
In a further technical scheme, the top of the stacking support is rotatably connected with a rolling brush used for conveying cut corrugated paper to the supporting plate, and a first motor used for driving the rolling brush to rotate is fixedly mounted on the side face of the stacking support.
In addition, the invention also provides a novel corrugated paper processing technology, which uses the novel corrugated paper processing device and comprises the following steps:
controlling an output motor in a first base paper conveying mechanism to drive an upper output roller and a lower output roller to synchronously and reversely rotate, and conveying a first paper board wound on a roller to a embossing mechanism;
step two, a concave roller and a convex roller in the embossing mechanism synchronously rotate reversely to emboss the first paper board, and the embossed first paper board is conveyed to the gluing mechanism;
controlling the gluing cylinder to move downwards, enabling the roller to be pressed on the protrusion of the first paper board, controlling the gluing motor to drive the roller to rotate, and controlling the linear speed of the rotation of the roller to be consistent with the movement speed of the first paper board;
step four, controlling a second base paper conveying mechanism to convey a second paper board to the position above the bulge of the first paper board, synchronously conveying the second paper board to a position between an upper output roller and a lower output roller of the second base paper conveying mechanism to be pressed to form corrugated paper, and conveying the pressed corrugated paper to a splitting mechanism;
controlling a slitting motor to transfer a cutter cylinder to rotate, and driving a cutter to slit the corrugated paper when the cutter cylinder rotates;
and step six, controlling a stacking mechanism to stack the corrugated paper cut in the step five.
Advantageous effects
Compared with the prior art, the technical scheme of the invention has the following advantages:
according to the invention, a first paperboard is automatically conveyed to a convex pressing mechanism through a first raw paper mechanism, a convex part is pressed on the conveyed first paperboard by the convex pressing mechanism, then glue is automatically coated on the convex part pressed on the first paperboard and the first paperboard is conveyed to a second raw paper mechanism, the second raw paper conveying mechanism conveys a second paperboard to the upper part of the convex part of the first paperboard and compresses the second paperboard to form corrugated paper, the corrugated paper is conveyed to a cutting mechanism, the cutting mechanism cuts the corrugated paper and conveys the corrugated paper to a stacking mechanism, and the stacking mechanism stacks the cut corrugated paper; the automatic production device can realize the automatic production of novel corrugated paper, greatly saves the input of manpower, and the quality of the produced corrugated paper is uniform.
Drawings
FIGS. 1-2 are perspective views of the present invention;
FIG. 3 is a structure diagram of the first base paper conveying mechanism and the embossing mechanism;
FIGS. 4 to 8 are structural views of a base paper conveying mechanism according to the present invention;
FIG. 9 is an enlarged view of the structure at A in FIG. 8;
FIGS. 10-11 are structural views of the embossing mechanism of the present invention;
FIG. 12 is a structural view of a gluing mechanism according to the present invention;
FIG. 13 is a structural view of a slitting mechanism according to the present invention;
figures 14-17 are block diagrams of the palletising mechanism of the present invention.
Detailed Description
Please refer to fig. 1-17, which illustrate a novel corrugated paper processing apparatus, comprising an embossing mechanism 1, wherein an input end of the embossing mechanism 1 is provided with a first base paper conveying mechanism 21, an output end of the embossing mechanism 1 is provided with a glue coating mechanism 3, an output end of the glue coating mechanism 3 is provided with a second base paper conveying mechanism 22, an output end of the second base paper conveying mechanism 22 is provided with a splitting mechanism 4, and an output end of the splitting mechanism 4 is provided with a stacking mechanism 5; first body paper conveying mechanism 21 is used for carrying first cardboard to embossing mechanism 1, embossing mechanism 1 is used for suppressing the arch on first cardboard, glue spreader 3 is used for scribbling glue for the arch of suppression on the first cardboard, second body paper conveying mechanism 22 is used for delivering to the protruding top of first cardboard and compresses tightly formation corrugated paper with the second cardboard, it is used for cutting the corrugated paper to cut mechanism 4, pile up neatly mechanism 5 is used for the corrugated paper of piling up the cutting.
The first base paper conveying mechanism 21 and the second base paper conveying mechanism 22 both comprise conveying frames 2a with the same structure, rollers 2b are rotatably connected in the conveying frames 2a, paperboards are wound on the rollers 2b, an output end of each conveying frame 2a is rotatably connected with an upper output roller 2c, the upper output rollers 2c and the rollers 2b are arranged in parallel, and an output motor 2d for driving the upper output rollers 2c to rotate is fixedly mounted on each conveying frame 2a through a first support 2a 1; two sides of the conveying frame 2a are respectively provided with a first limiting sliding groove 2a2 below two ends of an upper output roller 2c along the vertical direction, a lower output roller 2e is rotatably connected between the two first limiting sliding grooves 2a2, two ends of the upper output roller 2c are respectively and fixedly provided with an upper gear 2c1, and two ends of the lower output roller 2e are respectively and fixedly provided with a lower gear 2e1 meshed with the upper gear 2c 1; two sides of the conveying frame 2a are provided with first pressing assemblies 61 below two ends of the lower output roller 2e through the bumps 7, and the first pressing assemblies 61 are used for forcing the lower output roller 2e to be pressed on the upper output roller 2 c.
Two sides of the conveying frame 2a are rotatably connected with first rotating shafts 2f which are arranged in parallel with the rollers 2b, each first rotating shaft 2f is rotatably connected with a turning frame 2g, and two sides of the conveying frame 2a are respectively hinged with a turning cylinder 2h for driving the turning frames 2g to rotate around the first rotating shafts 2 f; each roll-over stand 2g is provided with a middle sliding groove 2g1, a press roller 2i arranged in parallel with the roller 2b is arranged between the two roll-over stands 2g, and two ends of the press roller 2i are respectively positioned in the middle sliding groove 2g 1; each first rotating shaft 2f is fixedly provided with a first gear 2j meshed with the upper gear 2c1 between the roll-over stand 2g and the conveying frame 2a, and one end extending out of the roll-over stand 2g is fixedly provided with a first belt pulley 2 k; each roll-over stand 2g is fixedly provided with a guide slide bar 2m arranged along the length direction of the middle slide groove 2g1 at two sides of the middle slide groove 2g1, a slide block 2n is arranged between the two guide slide bars 2m, and each guide slide bar 2m is provided with a first spring 2p used for forcing the slide block 2n to move in the direction away from the first gear 2 j; each roll-over stand 2g is provided with notches 2g2 at two sides of the middle sliding chute 2g1, and the notches 2g2 are arranged along the length direction of the middle sliding chute 2g 1; second rotating shafts (both shown in the figures) extending out of the two notches 2g2 are arranged on the sliding block 2n, and each second rotating shaft (both shown in the figures) is provided with a second belt wheel 2 r; one end of the compression roller 2i extending out of the middle chute 2g1 is fixedly provided with a third belt wheel 2 s; fourth pulleys 2t are rotatably connected to two sides of the first pulley 2k on each roll-over stand 2g, first tensioned transmission belts 2u are arranged among the first pulley 2k, the two second pulleys 2r, the third pulley 2s and the two fourth pulleys 2t, and the first tensioned transmission belts 2u are used for forcing the third pulley 2s to move in the direction away from the first pulley 2 k.
When the first base paper conveying mechanism 21 and the second base paper conveying mechanism 22 work, the roller 2b wound with the paper boards is placed on the conveying frame 2a, and the paper boards are manually conveyed between the upper output roller 2c and the lower output roller 2 e; control output motor 2d and drive last output roller 2c and rotate, go up output roller 2c and drive gear 2c1 rotation when rotating, go up gear 2c1 and drive down synchronous antiport of output roller 2e through lower gear 2e1 when rotating, thereby will be located the cardboard output between output roller 2c and the lower output roller 2e, set up first compress tightly subassembly 61 in addition and make lower output roller 2e upwards compress tightly on last output roller 2c, thereby guarantee the steady output of cardboard. In addition, when the upper gear 2c1 rotates, the first gear 2j drives the first rotating shaft 2f to rotate, the first rotating shaft 2f drives the first belt pulley 2k to rotate when rotating, the first belt pulley drives the press roller 2i to rotate through the first transmission belt 2u when rotating, and as the press roller 2i is pressed on the outer side of the reeled paper board under the action of the tensioned first belt pulley 2k, the press roller 2i drives the paper board reeled on the roller 2b to rotate when rotating, the first spring 2p presses the sliding block 2n to move in the rotating process, the sliding block 2n drives the first transmission belt 2u to tension through the two second belt pulleys 2r, and the press roller 2i is pulled to be pressed on the outer side of the reeled paper board all the time. In addition, because the press roller 2i rotates synchronously with the upper output roller 2c and the lower output roller 2e, the linear speed of the paper outlet plate of the roller 2b can be ensured to be the same as the outer diameter linear speed of the upper output roller 2c and the lower output roller 2e, so that the condition of paper breaking or paper jamming can not occur, and the condition is ensured by a mechanical structure, and errors can not occur; after the cardboard of roll-up was used up on roller 2b, when need put into the roller 2b that new roll-up had the cardboard, earlier control upset cylinder 2h stretches out and drives roll-over stand 2g and rotate, drives pressure roller 2i when roll-over stand 2g rotates and leaves, puts the roller 2b back of new roll-up cardboard, controls upset cylinder 2h withdrawal for pressure roller 2i resets and compresses tightly on the cardboard of roll-up.
The embossing mechanism 1 comprises an embossing frame 11, a concave roller 12 which is parallel to the upper output roller 2c is rotatably connected in the embossing frame 11, second limiting sliding grooves 11a are respectively formed in two sides of the embossing frame 11 below two ends of the concave roller 12 along the vertical direction, and a convex roller 13 which is parallel to the concave roller 12 is rotatably connected between the two second limiting sliding grooves 11 a; a second gear 14 is fixedly arranged at each of two ends of the concave roller 12, and a third gear 15 meshed with the second gear 14 is fixedly arranged at each of two ends of the convex roller 13; the two sides of the convex pressing frame 11 are provided with second pressing assemblies 62 below the two ends of the convex roller 13 through the convex blocks 7, and the second pressing assemblies 62 are used for forcing the convex roller 13 to be pressed on the concave roller 12; one end of the convex roller 13 is provided with a first convex shaft 13a, the end of the lower output roller 2e in the first base paper conveying mechanism 21 in the same direction is provided with a second convex shaft 2e2, and a second transmission belt 16 is arranged between the first convex shaft 13a and the second convex shaft 2e 2.
The first pressing component 61 and the second pressing component 62 have the same structure and respectively comprise a top block 6a, two sliding rods 6b are arranged on the top block 6a, and the two sliding rods 6b are connected in the lug 7 in a sliding manner along the vertical direction; a spring plate 6c is connected between the two sliding rods 6b in a sliding manner, and a compression spring 6d for forcing the top block 6a to move upwards is arranged between the spring plate 6c and the top block 6a on each sliding rod 6 b; the upper end of the top block 6a is provided with an arc-shaped positioning groove; an adjusting screw 6e is rotatably connected in the lug 7, and the adjusting screw 6e is used for controlling the spring plate 6c to move up and down; the top block 6a moves upwards under the action of the compression spring 6d to play a role in compressing, the adjusting screw 6e is rotated to adjust the position of the spring plate 6c, and then the pretightening force of the compression spring 6d is adjusted, so that the upward pressing force of the top block 6a can be realized.
The gluing mechanism 3 comprises a gluing support 31, a support frame 32 is arranged on a top plate of the gluing support 31, and a glue storage box 33 is arranged on the support frame 32; a roller 34 for coating glue on the protrusions pressed on the first paperboard is rotatably connected to an outlet at the lower end of the glue storage box 33, and a plurality of strip-shaped grooves 341 are uniformly arranged on the side surface of the outer circumference of the roller 34 at intervals; a gluing motor 35 for driving the roller 34 to rotate is fixedly arranged on two sides of the glue storage box 33 through support plates; a third limiting sliding groove 321 is arranged in the support frame 32 along the vertical direction, and a convex column 331 extending into the third limiting sliding groove 321 is arranged on the side surface of the glue storage box 33; the two sides of the gluing bracket 31 are both provided with gluing cylinders 36, and the telescopic end of each gluing cylinder 36 is connected with the glue storage box 33; when the gluing cylinder 36 extends out, the glue storage box 33 moves upwards, and when the gluing cylinder 36 contracts, the glue storage box 33 moves downwards.
The slitting mechanism 4 comprises a slitting support 41, knife rests 42 are arranged on two sides of a top plate of the slitting support 41, a knife cylinder 43 is rotatably connected between the two knife rests 42, and a cutter 44 is arranged on the side surface of the outer circumference of the knife cylinder 43 along the tangential direction; a slitting motor 45 for driving the knife cylinder 43 to rotate is fixedly arranged on one of the knife rests 42. When the slitting mechanism 4 works, the slitting motor 45 drives the knife cylinder 43 to rotate, so that the linear speed of the rotation of the knife cylinder 43 is the same as the movement speed of the corrugated paper, and the corrugated paper is cut off by the cutter 44 when the knife cylinder 43 rotates.
The stacking mechanism 5 comprises a stacking bracket 5a, a paperboard placing assembly is arranged in the stacking bracket 5a and comprises a base plate 51 and a supporting plate 52, and a scissor lifting mechanism 53 is arranged between the base plate 51 and the supporting plate 52; two guide plates 54 are arranged below the supporting plate 52 side by side, and a guide groove 54a is formed in each guide plate 54; two sides of the upper end of the scissor lifting mechanism 53 are provided with a slide guiding rod 55 positioned in a guide groove 54 a; two guide sliding plates 56 are arranged in the chassis 51 side by side, one side of the lower end of the scissors lifting mechanism 53 is hinged in the chassis 51 through a first long shaft 58, and the other side of the lower end of the scissors lifting mechanism 53 is provided with a second long shaft 57 which is connected in the two guide sliding plates 56 in a sliding manner; a scissor cylinder 59 is arranged between the first long shaft 58 and the second long shaft 57, when the scissor cylinder 59 extends out, the scissor lifting mechanism 53 drives the supporting plate 52 to move downwards, and when the scissor cylinder 59 contracts, the scissor lifting mechanism 53 drives the supporting plate 52 to move upwards; the supporting plate is used for placing plates. This arrangement allows the pallet 52 to be controlled by the scissor lift mechanism 53 to move up and down by controlling the extension or retraction of the scissor cylinder 59 to receive cut corrugated cardboard.
The top of pile up neatly support 5a rotates and is connected with and is used for sending the corrugated paper of cutting to the round brush 5b on the layer board 52, the side fixed mounting of pile up neatly support 5a has and is used for driving round brush 5b pivoted motor 5 c.
The utility model provides a novel corrugated paper processing technology, novel corrugated paper processing technology uses foretell novel corrugated paper processing device, includes following step:
step one, controlling an output motor 2d in a first base paper conveying mechanism 21 to drive an upper output roller 2c and a lower output roller 2e to synchronously and reversely rotate, and conveying a first paper board wound on a roller 2b to a embossing mechanism 1;
step two, synchronously and reversely rotating a concave roller 12 and a convex roller 13 in the embossing mechanism 1 to emboss a first paperboard, and conveying the embossed first paperboard to the gluing mechanism 3;
controlling a gluing cylinder 36 to move downwards, so that a roller 34 is pressed on the protrusion of the first paperboard, controlling a gluing motor 35 to drive the roller 34 to rotate, and controlling the linear speed of the rotation of the roller 34 to be consistent with the movement speed of the first paperboard;
step four, controlling the second base paper conveying mechanism 22 to convey the second paper board to the position above the bulge of the first paper board, synchronously conveying the second paper board to a position between an upper output roller 2c and a lower output roller 2e of the second base paper conveying mechanism 22 to be pressed to form corrugated paper, and conveying the pressed corrugated paper to the splitting mechanism 4;
step five, controlling a slitting motor 45 to move a cutter cylinder 43 to rotate, and driving a cutter 44 to slit the corrugated paper when the cutter cylinder 43 rotates;
and step six, controlling a stacking mechanism 5 to stack the corrugated paper cut in the step five.
When the embossing mechanism 1 works in the above steps, the lower output roller 2e in the first base paper conveying mechanism 21 drives the second convex shaft 2e2 to rotate, the second convex shaft 2e2 drives the first convex shaft 13a to rotate through the second transmission belt 16 when rotating, the first convex shaft 13a drives the convex roller 13 to rotate when rotating, the convex roller 13 drives the concave roller 12 to synchronously and reversely rotate through the meshing of the third gear 15 and the second gear 14 when rotating, and in addition, the second pressing component 62 is arranged to enable the convex roller 13 to upwards press on the concave roller 12, so that the stable output of the paper boards is ensured, and the pressing of the bulges on the first paper boards is effectively ensured.
When gluing is carried out on the protrusions on the first paper board in the steps, the first paper board extends to a position between the roller 2b and the top plate of the gluing support 31, the gluing cylinder 36 is controlled to contract, so that the roller 2b is pressed above the protrusions of the first paper board, the gluing motor 35 is controlled to drive the roller 34 to rotate, when the roller 34 rotates, on one hand, gluing is carried out, and on the other hand, the first paper board is driven to move towards the second base paper conveying mechanism 22.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the technical principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.
Claims (8)
1. The novel corrugated paper processing device is characterized by comprising a bulging mechanism, wherein a first raw paper conveying mechanism is arranged at the input end of the bulging mechanism, a gluing mechanism is arranged at the output end of the bulging mechanism, a second raw paper conveying mechanism is arranged at the output end of the gluing mechanism, a splitting mechanism is arranged at the output end of the second raw paper conveying mechanism, and a stacking mechanism is arranged at the output end of the splitting mechanism; first body paper conveying mechanism is used for carrying first cardboard to the mechanism of embossing, the mechanism of embossing is used for suppressing the arch on first cardboard, glue spreader is used for scribbling glue for the arch of suppression on the first cardboard, second body paper conveying mechanism is used for delivering to the protruding top of first cardboard and compresses tightly the formation corrugated paper with the second cardboard, it is used for cutting the corrugated paper to cut the mechanism to cut, pile up neatly mechanism is used for the corrugated paper of putting the cutting in order.
2. The novel corrugated paper processing device as claimed in claim 1, wherein the first base paper conveying mechanism and the second base paper conveying mechanism are identical in structure and comprise a conveying frame, a roller is connected in the conveying frame in a rotating mode, a paper board is wound on the roller, an upper output roller is connected to the output end of the conveying frame in a rotating mode, the upper output roller and the roller are arranged in parallel, and an output motor for driving the upper output roller to rotate is fixedly mounted on the conveying frame through a first support; two sides of the conveying frame are respectively provided with a first limiting sliding groove below two ends of the upper output roller along the vertical direction, a lower output roller is rotatably connected between the two first limiting sliding grooves, two ends of the upper output roller are respectively and fixedly provided with an upper gear, and two ends of the lower output roller are respectively and fixedly provided with a lower gear meshed with the upper gear; the two sides of the conveying frame are provided with first pressing assemblies below two ends of the lower output roller through bumps, and the first pressing assemblies are used for forcing the lower output roller to be pressed on the upper output roller;
the two sides of the conveying frame are rotatably connected with first rotating shafts arranged in parallel with the rollers, each first rotating shaft is rotatably connected with a turnover frame, and the two sides of the conveying frame are respectively hinged with a turnover cylinder for driving the turnover frames to rotate around the first rotating shafts; each roll-over stand is provided with a middle sliding chute, a compression roller arranged in parallel with the roller is arranged between the two roll-over stands, and two ends of the compression roller are respectively positioned in the middle sliding chutes; each first rotating shaft is fixedly provided with a first gear meshed with the upper gear between the roll-over stand and the conveying frame, and one end extending out of the roll-over stand is fixedly provided with a first belt wheel; guide sliding rods arranged along the length direction of the middle sliding chute are fixedly arranged on two sides of the middle sliding chute on each turnover frame, a sliding block is arranged between the two guide sliding rods, and each guide sliding rod is provided with a first spring used for forcing the sliding block to move in the direction away from the first gear; notches are formed in the two sides of the middle sliding groove of each overturning frame, and are arranged along the length direction of the middle sliding groove; the sliding block is provided with second rotating shafts extending out of the two notches, and each second rotating shaft is provided with a second belt wheel; the compression roller is fixedly provided with a third belt wheel at one end extending out of the middle sliding chute; and fourth belt wheels are rotatably connected to two sides of the first belt wheel on each roll-over stand, first tensioning transmission belts are arranged among the first belt wheel, the two second belt wheels, the third belt wheel and the two fourth belt wheels, and the first tensioning transmission belts are used for forcing the third belt wheels to move in the direction away from the first belt wheels.
3. The novel corrugated paper processing device as claimed in claim 2, wherein the embossing mechanism comprises an embossing frame, a concave roller arranged in parallel with the upper output roller is rotatably connected in the embossing frame, second limiting sliding grooves are respectively formed in two sides of the embossing frame below two ends of the concave roller along the vertical direction, and a convex roller arranged in parallel with the concave roller is rotatably connected between the two second limiting sliding grooves; second gears are fixedly arranged at two ends of the concave surface roller, and third gears meshed with the second gears are fixedly arranged at two ends of the convex surface roller; the two sides of the convex pressing frame are provided with second pressing assemblies below the two ends of the convex roller through bumps, and the second pressing assemblies are used for forcing the convex roller to be pressed on the concave roller; one end of the convex roller is provided with a first convex shaft, the end of the lower output roller in the first base paper conveying mechanism in the same direction is provided with a second convex shaft, and a second transmission belt is arranged between the first convex shaft and the second convex shaft.
4. The novel corrugated paper processing device as claimed in claim 3, wherein the first and second pressing assemblies each comprise a top block having the same structure, and two sliding rods are provided on the top block and slidably connected in the convex block in the vertical direction; a spring plate is connected between the two slide rods in a sliding manner, and a compression spring for forcing the top block to move upwards is arranged between the spring plate and the top block on each slide rod; the upper end of the ejector block is provided with an arc-shaped positioning groove; an adjusting screw is connected in the lug in a rotating mode and used for controlling the spring plate to move up and down.
5. The novel corrugated paper processing device of claim 1, wherein the glue spreading mechanism comprises a glue spreading support, a support frame is arranged on a top plate of the glue spreading support, and a glue storage box is arranged on the support frame; a roller for coating glue on the bulge pressed on the first paperboard is rotatably connected to an outlet at the lower end of the glue storage box, and a plurality of strip-shaped grooves are uniformly arranged on the side surface of the outer circumference of the roller at intervals; a gluing motor for driving the roller to rotate is fixedly arranged on two sides of the glue storage box through support plates; a third limiting sliding groove is formed in the support frame along the vertical direction, and a convex column extending into the third limiting sliding groove is arranged on the side face of the glue storage box; the two sides of the gluing support are respectively provided with a gluing cylinder, and the telescopic end of each gluing cylinder is connected with the glue storage box; when the gluing cylinder stretches out, the glue storage box moves upwards, and when the gluing cylinder contracts, the glue storage box moves downwards.
6. The novel corrugated paper processing device as claimed in claim 1, wherein the slitting mechanism comprises a slitting support, knife rests are arranged on two sides of a top plate of the slitting support, a knife cylinder is rotatably connected between the two knife rests, and a cutter is arranged on the side surface of the outer circumference of the knife cylinder along the tangential direction; one of the knife rests is fixedly provided with a slitting motor for driving the knife cylinder to rotate.
7. The novel corrugated paper processing device of claim 1, wherein the stacking mechanism comprises a stacking bracket, a paper board placing assembly is arranged in the stacking bracket, the paper board placing assembly comprises a chassis and a supporting plate, and a scissor lifting mechanism is arranged between the chassis and the supporting plate; two guide plates are arranged below the supporting plate side by side, and a guide groove is formed in each guide plate; guide slide rods positioned in the guide grooves are arranged on two sides of the upper end of the scissor lifting mechanism; two guide sliding plates are arranged in the chassis side by side, one side of the lower end of the scissor lifting mechanism is hinged in the chassis through a first long shaft, and the other side of the lower end of the scissor lifting mechanism is provided with a second long shaft which is connected in the two guide sliding plates in a sliding manner; a scissor cylinder is arranged between the first long shaft and the second long shaft, when the scissor cylinder extends out, the scissor lifting mechanism drives the supporting plate to move downwards, and when the scissor cylinder contracts, the scissor lifting mechanism drives the supporting plate to move upwards; the supporting plate is used for placing the cut corrugated paper.
8. The novel corrugated paper processing device as claimed in claim 7, wherein a roller brush for conveying the cut corrugated paper to the supporting plate is rotatably connected to the upper part of the stacking bracket, and a first motor for driving the roller brush to rotate is fixedly mounted on the side surface of the stacking bracket.
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| CN202010415730.3A CN111546704A (en) | 2020-05-16 | 2020-05-16 | Novel corrugated paper processing device and novel corrugated paper processing technology |
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| CN202010415730.3A CN111546704A (en) | 2020-05-16 | 2020-05-16 | Novel corrugated paper processing device and novel corrugated paper processing technology |
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| CN111546704A true CN111546704A (en) | 2020-08-18 |
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| Application Number | Title | Priority Date | Filing Date |
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| CN202010415730.3A Withdrawn CN111546704A (en) | 2020-05-16 | 2020-05-16 | Novel corrugated paper processing device and novel corrugated paper processing technology |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN112061747A (en) * | 2020-08-31 | 2020-12-11 | 上海至亲印刷科技有限公司 | Efficient corrugated board stacking equipment |
| CN112693179A (en) * | 2021-01-20 | 2021-04-23 | 李天开 | Automatic modified starch device of paining of corrugated paper production |
| CN112936390A (en) * | 2021-01-25 | 2021-06-11 | 杨纪红 | Integrative device is cut with rubber coating to corrugated paper production |
| CN113042298A (en) * | 2021-03-24 | 2021-06-29 | 深圳友邦塑料印刷包装有限公司 | Food bag adhesive sticker label printing and gluing device |
| CN113954418A (en) * | 2021-10-21 | 2022-01-21 | 广东丰高印刷科技股份有限公司 | Bonding equipment is used in former paper processing of paper packing box |
| CN114082610A (en) * | 2021-11-26 | 2022-02-25 | 浦江中亿机械有限公司 | Corrugated paper gluing homogenization equipment |
| CN114619711A (en) * | 2022-03-28 | 2022-06-14 | 青州市祥力轻工设备有限公司 | Full-automatic production method of water curtain block |
| CN114654810A (en) * | 2022-04-14 | 2022-06-24 | 江西省新华丽印务包装有限公司 | Latticed strengthening rib briquetting machine of cardboard |
| CN116141747A (en) * | 2023-02-21 | 2023-05-23 | 泸州老窖股份有限公司 | Packaging box production method with hidden electronic label and electronic label adding equipment |
| CN121043214A (en) * | 2025-11-03 | 2025-12-02 | 浙江瑞大机械有限公司 | A multi-functional punching and cutting machine |
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| CN112693179A (en) * | 2021-01-20 | 2021-04-23 | 李天开 | Automatic modified starch device of paining of corrugated paper production |
| CN112936390A (en) * | 2021-01-25 | 2021-06-11 | 杨纪红 | Integrative device is cut with rubber coating to corrugated paper production |
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| CN121043214B (en) * | 2025-11-03 | 2026-03-17 | 浙江瑞大机械有限公司 | Multifunctional punching all-in-one machine |
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