Marking line equipment before corrugated container board is assembled
Technical Field
The invention relates to the technical field of corrugated board processing, in particular to marking line equipment before corrugated board assembly.
Background
Newly produced single corrugated boards are generally large, and when the corrugated boards are processed into some cartons or packaging materials, the single corrugated boards need to be folded or cut and assembled to form the shape of the cartons. Before corrugated container board is folded or cut out and assemble, need beat the marking operation on corrugated container board, conveniently can go on according to the marking when folding and operating to reach the accuracy of folding and assembling. Present corrugated container board marking line operation, it is mainly that the manual work is taken dedicated marking line instrument and is drawn the marking line manually on corrugated container board, this efficiency that has just led to marking line is lower, workman's working strength is big, can't satisfy the production demand of carton, it is lower with the actually required error that marking line operation exists the marking line of drawing to carry out the marking line operation manually simultaneously, lead to the later stage to fold corrugated container board and assemble processing man-hour can't go on according to the carton production demand, can cause corrugated container board's waste.
Therefore, the need provides one kind and can carry out quick marking line operation to a large amount of corrugated container boards, and the position of marking line is accurate, can satisfy the folding and assemble of later stage corrugated container board to the demand of precision, reduces the corrugated container board of corrugated container board waste and assembles preceding marking line equipment.
Disclosure of Invention
In order to overcome the current manual work to carry out marking line operating efficiency to corrugated container board low, can't satisfy carton production demand, there is lower error during the setting-out, lead to corrugated container board to have the extravagant shortcoming of great degree, the technical problem that solves can carry out quick marking line operation to corrugated container board in the data send process for providing one kind, and the position of marking the line is accurate, the production demand of satisfying the carton that can be better, marking line equipment before corrugated container board that can reduce corrugated container board waste is assembled simultaneously.
The technical scheme of the invention is as follows: the utility model provides a marking line equipment before corrugated container board is assembled, includes bottom plate, landing leg, rack, corrugated paper thrust unit, corrugated paper marking line equipment, arc and limiting plate, a side fixed mounting of bottom plate has a plurality of landing legs, rack fixed mounting is on a plurality of landing legs, corrugated paper thrust unit sets up the side at the bottom plate, corrugated paper marking line equipment sets up the side at the bottom plate, a side at the bottom plate is installed to the arc, limiting plate fixed mounting is in a side of bottom plate.
As a preferred technical solution of the present invention, the corrugated paper pushing device includes a guide frame, a grooving rod, a rolling wheel, a guide rail, a vertical plate, a first compression spring, a sliding rod, a matching rod, a servo motor, a cam, and a first rotating shaft, the guide frame is fixedly mounted on a side surface of the base plate, the grooving rod is rotatably mounted on the guide frame, a linear hole is formed at one end of the grooving rod, the rolling wheel is rotatably mounted on the grooving rod, the guide rail is fixedly mounted on the placing frame, the vertical plate is fixedly mounted on the guide rail, the sliding rod is slidably mounted on the guide rail, the matching rod is slidably mounted in the linear hole of the grooving rod and is fixedly connected to the sliding rod, the first compression spring is connected between the grooving rod and the vertical plate, the servo motor is fixedly mounted on a side surface of the base plate, and the first rotating shaft is rotatably mounted on a side surface of the base plate and is connected to, and one end of the first rotating shaft is provided with a cam which is in contact with the rolling wheel.
As a preferred technical scheme of the invention, the corrugated paper marking equipment comprises mounting plates, conveying rollers, first driving gears, high-speed driving components, fixing sleeves, pipe bodies, opening sleeves, sliding plugs, baffles, second compression springs, liquid feeding pipes, rubber bulges and second rotating shafts, wherein two symmetrically arranged mounting plates are fixedly arranged on one side surface of a bottom plate, two second rotating shafts are rotatably arranged between the two mounting plates, the conveying rollers are arranged on the two second rotating shafts, the first driving gears are arranged at one ends of the two second rotating shafts and are mutually meshed, the high-speed driving components are arranged between one second rotating shaft and the first rotating shaft, the two fixing sleeves are fixedly arranged on supporting legs, the pipe bodies are respectively sleeved in the two fixing sleeves, the opening sleeves are arranged in the two pipe bodies, and the middle parts of the opening sleeves are provided with circular holes, two fixed mounting has the baffle respectively in the body, two second compression spring is installed to a side of baffle, two the one end of second compression spring fixedly connected with sliding plug and sliding plug slidingtype are located the circular hole of opening cover respectively, two circular port and circular port are seted up to the one end of body are provided with the liquid feeding pipe in, one of them both ends of conveying roller all are provided with a plurality of rubber archs with the sliding plug contact.
As a preferred technical scheme of the invention, the device also comprises a first support rod, a second support rod, a sliding sleeve, a sliding wedge rod, a connecting rod, a third compression spring, a long plate, a fixed plate, a fourth compression spring, a push plate, a winding roller, a second drive gear, a guide wheel, a pull rope, a constant speed drive assembly, a tooth block, a first bearing seat and a second bearing seat, wherein the first support rod is fixedly arranged on one side surface of the bottom plate, the second support rod is fixedly arranged on one side surface of the bottom plate, one ends of the first support rod and the second support rod are both fixedly provided with the sliding sleeve, the connecting rod is arranged in the sliding sleeve in a sliding way and penetrates through the bottom of the sliding sleeve, one ends of the two connecting rods are provided with the sliding wedge rod which is positioned in the sliding sleeve, one side surfaces of the two sliding wedge rods are provided with the third compression spring and penetrate through, the other ends of the two connecting rods are fixedly provided with a long plate, the fixed plate is fixedly arranged on one side surface of the bottom plate, one side surface of the fixed plate is provided with two fourth compression springs, one end of each fourth compression spring is provided with a pushing plate, one side surface of each pushing plate is contacted with the two sliding wedge-shaped rods, the first bearing seat and the second bearing seat are fixedly arranged on one side surface of the bottom plate and are close to each other, the winding roller is rotatably arranged on the second bearing seat, the second driving gear and the winding roller are coaxially arranged, the guide wheel is rotatably arranged on the second bearing block, one end of the pull rope is wound on the winding roller, the other end of the pull rope is connected with one side surface of the long plate through the guide wheel, the uniform-speed driving assembly is arranged between the first bearing seat and the first rotating shaft, and a plurality of tooth blocks meshed with the second driving gear are arranged on the uniform-speed driving assembly.
As a preferable embodiment of the present invention, the electric vehicle further includes a stop switch installed on one side surface of the base plate and connected to the servo motor through an electric wire.
The invention has the beneficial effects that: firstly, the cam and the rolling wheel work in a matched mode, and the matching rod can drive the sliding rod to move under the action of the cam and the rolling wheel, so that the function of continuously pushing a single corrugated board on the placing frame to the right is achieved, and marking line operation on each corrugated board is facilitated.
The corrugated board pushed by the sliding rod can be continuously conveyed rightwards by the two conveying rollers, and the rubber bulges can mark lines on the corrugated board in the conveying process, so that the problems of low efficiency and large error caused by manual marking of the corrugated board are solved, and the corrugated board can be folded, assembled and processed in the later period.
The seven corrugated paperboards which are marked on the arc-shaped plate can be pushed to the rear side of the bottom plate to be collected through the pushing plate, the corrugated paperboards do not need to be taken down manually, and the labor intensity of workers is reduced; the automatic shutdown operation of the servo motor by the stop switch is facilitated, and the damage to the machine caused by temporary negligence can be reduced.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic perspective view of a second embodiment of the present invention.
FIG. 3 is a schematic view of a first partial body structure according to the present invention.
FIG. 4 is a schematic view of a first partially separated perspective configuration of the present invention.
FIG. 5 is a schematic view of a second partial body structure according to the present invention.
FIG. 6 is a schematic view of a second partially separated perspective configuration of the present invention.
Reference numerals: 1 bottom plate, 2 legs, 3 placement frames, 4 corrugated paper pushing devices, 401 guide frames, 402 slotted rods, 403 rolling wheels, 404 guide rails, 405 risers, 406 first compression springs, 407 sliding rods, 408 matching rods, 409 servo motors, 4010 cams, 4011 first rotating shafts, 5 corrugated paper marking devices, 501 mounting plates, 502 conveying rollers, 503 first driving gears, 504 high-speed driving components, 505 fixing sleeves, 506 tube bodies, 507 opening sleeves, 508 sliding plugs, 509 baffles, 5010 second compression springs, 5011 liquid feeding pipes, 5012 rubber bulges, 5013 second rotating shafts, 6 arc plates, 7 limiting plates, 8 first supporting rods, 9 second supporting rods, 10 sliding sleeves, 11 sliding wedge rods, 12 connecting rods, 13 third compression springs, 14 long plates, 15 fixing plates, 16 fourth compression springs, 17 pushing plates, 18 wire winding rollers, 19 second driving gears, 20 guide wheels, 21 pull ropes, 22 constant-speed driving components, 23 toothed blocks, 24 stop switches, 25 first bearing blocks, 26 second bearing blocks.
Detailed Description
The present invention now will be described more fully hereinafter with reference to the accompanying drawings, in which presently preferred embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for completeness and fully convey the scope of the invention to the skilled person.
Example one
A marking line device before corrugated board assembly comprises a bottom board 1, supporting legs 2, a placing rack 3, a corrugated paper pushing device 4, a corrugated paper marking device 5, an arc-shaped board 6 and a limiting board 7, wherein the upper side surface of the bottom board 1 is fixedly provided with four supporting legs 2, the placing rack 3 is fixedly arranged on the four supporting legs 2, the placing rack 3 is used for placing corrugated boards needing marking line operation, the corrugated paper pushing device 4 is arranged on the upper side surface of the left part of the bottom board 1, the corrugated paper pushing device 4 is used for pushing the corrugated boards on the placing rack 3 to the right side to conduct marking line operation, the corrugated paper marking device 5 is arranged on the upper side surface of the bottom board 1 and is close to the supporting legs 2, the corrugated paper marking device 5 is used for conducting marking line operation on the corrugated boards pushed by the corrugated paper pushing device 4, the arc-shaped board 6 is arranged on the upper side surface of the, the arc 6 is used for parking the corrugated container board of having accomplished marking line operation, limiting plate 7 fixed mounting is in the last side of 1 right part of bottom plate, limiting plate 7 is used for carrying out limiting displacement to corrugated container board on the arc 6.
As shown in fig. 2-3, the corrugated paper pushing device 4 for pushing the corrugated paper board on the rack 3 to the right side for marking line operation includes a guide frame 401, a slot bar 402, a rolling wheel 403, a guide rail 404, a vertical plate 405, a first compression spring 406, a sliding bar 407, a matching bar 408, a servo motor 409, a cam 4010 and a first rotating shaft 4011, wherein the guide frame 401 is fixedly installed on the upper side of the left portion of the bottom plate 1 and located between the two legs 2, the slot bar 402 is rotatably installed on the guide frame 401 and the upper end of the slot bar 402 is opened with a straight hole, the rolling wheel 403 is rotatably installed on the slot bar 402 and close to the guide frame 401, the guide rail 404 is fixedly installed on the rack 3 and located above the bottom plate 1, the vertical plate 405 is fixedly installed on the guide rail 404, the sliding bar 407 is installed on the guide rail 404, the sliding bar 407 can slide left and right, and slide bar 407 is used for propelling movement the right side with the corrugated container board on the rack 3, cooperation pole 408 is slidingtype install in a style of calligraphy of slotting rod 402 and with slide bar 407 fixed connection, be connected with first compression spring 406 between the left surface of slotting rod 402 and riser 405, servo motor 409 passes through motor cabinet fixed mounting at the side of going up of bottom plate 1 and is located the right side of leading truck 401, first pivot 4011 rotary type is installed at the side of going up of bottom plate 1 and is connected with servo motor 409's output shaft, cam 4010 with the contact of rolling wheel 403 is installed to the rear end of first pivot 4011.
As shown in fig. 1 and 4, the corrugated paper marking device 5 for marking corrugated cardboard pushed by the sliding rod 407 includes a mounting plate 501, a feeding roller 502, a first driving gear 503, a high-speed driving assembly 504, a fixing sleeve 505, a tube body 506, an opening sleeve 507, a sliding plug 508, a baffle 509, a second compression spring 5010, a liquid feeding pipe 5011, rubber bumps 5012 and a second rotating shaft 5013, wherein two symmetrically arranged mounting plates 501 are fixedly installed on the upper side of the bottom plate 1, the two mounting plates 501 are located on the right side of the rack 3, two second rotating shafts 5013 are rotatably installed between the two mounting plates 501, the two feeding rollers 502 are installed on the two second rotating shafts 5013, the two feeding rollers 502 are used for conveying the corrugated cardboard completing the marking operation onto the arc-shaped plate 6, the first driving gear 503 is installed at the front end of the two second rotating shafts 5013, and the two first driving gears 503 are located on the front side of one of the mounting plates 501, two first driving gears 503 are meshed with each other, one of them is a high-speed driving assembly 504 installed between the second rotating shaft 5013 and the first rotating shaft 4011, two fixing sleeves 505 are fixedly installed on the right side surface of the supporting leg 2, two pipe bodies 506 are respectively sleeved with the two fixing sleeves 505, two pipe bodies 506 are internally provided with an opening sleeve 507, the middle part of the opening sleeve 507 is provided with a circular hole, two pipe bodies 506 are respectively and fixedly provided with a baffle 509, the bottom side surfaces of the two baffle 509 are provided with second compression springs 5010, the lower ends of the two second compression springs 5010 are respectively and fixedly connected with sliding plugs 508, the sliding plugs 508 are slidably positioned in the circular holes of the opening sleeve 507, the upper ends of the two pipe bodies 506 are provided with circular holes and are internally provided with liquid adding pipes 5011, the liquid adding pipes 5011 are used for placing pigments required by marking lines, wherein, two ends of one of the conveying roller 502 are provided with eight rubber protrusions 5012, the sliding plug 508 is used to contaminate the pigment in the filler tube 5011 onto the rubber bumps 5012. the rubber bumps 5012 are used for the marking operation of the corrugated cardboard sheets as they are conveyed by the two conveyor rollers 502.
In the specific use, when a large amount of corrugated boards need to be marked, a worker firstly places a large amount of corrugated boards on the placing frame 3, places liquid adding pipes 5011 for liquid pigments needed by marking lines, and then starts the servo motor 409 to rotate clockwise.
The clockwise rotation of the servo motor 409 can simultaneously drive the cam 4010 and the high-speed driving assembly 504 to rotate clockwise, the cam 4010 can drive the grooved rod 402 to move left and right through the rolling wheel 403, and the grooved rod 402 can drive the sliding rod 407 to move left and right through the matching rod 408. When the sliding rod 407 moves rightwards, the first compression spring 406 compresses rightwards, at this time, the sliding rod 407 pushes a lowest corrugated board on the placing rack 3 to move rightwards to a position between the two conveying rollers 502, the high-speed driving assembly 504 drives the other first driving gear 503 to rotate anticlockwise through one of the first driving gears 503, the two first driving gears 503 drive the two conveying rollers 502 to rotate, the two conveying rollers 502 can convey the corrugated board which is subjected to marking line operation to the arc-shaped board 6, and the limiting plate 7 can prevent the corrugated board on the arc-shaped board 6 from moving rightwards continuously; when the sliding rod 407 moves leftwards to reset, the first compression spring 406 stretches leftwards, so that the matching rod 408 and the grooving rod 402 are driven to move leftwards to reset, after the resetting is completed, the next corrugated board falls down, and when the sliding rod 407 moves rightwards, the next corrugated board can be pushed to move rightwards, so that the reciprocating operation can push a large number of corrugated boards on the placing frame 3 to be conveyed rightwards to complete the marking operation, and the effect of performing efficient marking operation on the corrugated boards is achieved.
When the two conveying rollers 502 convey the corrugated cardboard to the right, the rubber bumps 5012 of one conveying roller 502 contact with the sliding plugs 508 and press the sliding plugs 508 to move upwards, the second compression springs 5010 compress upwards, at this time, the sliding plugs 508 can suck the pigment flowing out from the liquid feeding pipe 5011, when the rubber bumps 5012 do not contact with the sliding plugs 508, the sliding plugs 508 move downwards to be reset, the second compression springs 5010 stretch downwards, when the next rubber bump 5012 contacts with the sliding plugs 508, the sliding plugs 508 can contaminate the pigment onto the rubber bumps 5012, so that all the rubber bumps 5012 are contaminated with the pigment during the rotation of the conveying rollers 502, and then the rubber bumps 5012 can contaminate the pigment onto the corrugated cardboard, thereby the rubber bumps 5012 can realize the rapid marking operation function of the corrugated cardboard during the conveying of the corrugated cardboard without manual marking operation, the error of marking is reduced, and the folding, assembling and processing operation of the corrugated board in the later period is facilitated. After the corrugated board which finishes the marking operation is conveyed to the arc-shaped plate 6 by the two conveying rollers 502, a worker can manually take the corrugated board down and place the corrugated board aside for collection.
Example two
On the basis of the first embodiment, as shown in fig. 1, 5 and 6, the first support rod 8, the second support rod 9, the sliding sleeve 10, the sliding wedge rod 11, the connecting rod 12, the third compression spring 13, the long plate 14, the fixing plate 15, the fourth compression spring 16, the pushing plate 17, the winding roller 18, the second driving gear 19, the guide wheel 20, the pulling rope 21, the constant speed driving assembly 22, the tooth block 23, the first bearing seat 25 and the second bearing seat 26 are further included, the first support rod 8 is fixedly installed on the upper side surface of the right portion of the bottom plate 1, the second support rod 9 is located on the right side of the first support rod 8, the sliding sleeve 10 is fixedly installed on the front side surfaces of the upper ends of the first support rod 8 and the second support rod 9, the connecting rod 12 capable of moving up and down is slidably installed in the sliding sleeves 10, and the connecting rod, the upper ends of the two connecting rods 12 are provided with sliding wedge rods 11 and the sliding wedge rods 11 are slidably located in the sliding sleeves 10, the bottom side faces of the two sliding wedge rods 11 are provided with third compression springs 13, the connecting rods 12 penetrate through the third compression springs 13, the lower ends of the two connecting rods 12 are fixedly provided with long plates 14, the long plates 14 are located below the two sliding sleeves 10, the fixed plate 15 is fixedly arranged on the upper side face of the right part of the bottom plate 1 through supporting rods, the fixed plate 15 is located on the front sides of the first supporting rod 8 and the second supporting rod 9, the rear side face of the fixed plate 15 is provided with two fourth compression springs 16, the rear ends of the two fourth compression springs 16 are provided with pushing plates 17, the bottom side faces of the pushing plates 17 are in contact with the two sliding wedge rods 11, and the pushing plates 17 are used for pushing the corrugated boards which have finished marking operation on the arc-shaped plates 6 aside for collection, need not artifical manual collection, first bearing frame 25 and second bearing frame 26 are all fixed mounting and are close at last side and first bearing frame 25 and second bearing frame 26 of bottom plate 1 right part, the winding roller 18 rotary type is installed on second bearing frame 26, second drive gear 19 and the coaxial setting of winding roller 18, leading wheel 20 passes through the axis of rotation and installs on second bearing frame 26 and be located the right side of winding roller 18, the left end of stay cord 21 is around on winding roller 18, and the right-hand member passes through the leading wheel 20 and is connected with the bottom flank of rectangular board 14, winding roller 18 is used for carrying out the wire winding operation to stay cord 21, install at first bearing frame 25 and first pivot 4011 at the uniform velocity drive assembly 22, be provided with four blocks and second drive gear 19 meshed's tooth piece 23 on the drive assembly 22 at the uniform velocity.
As shown in fig. 1, the automatic control device further comprises a stop switch 24, wherein the stop switch 24 is installed on the upper side surface of the right portion of the bottom plate 1 and is connected with the servo motor 409 through an electric wire, and the stop switch 24 is used for controlling the servo motor 409 to automatically stop running without manually turning off the servo motor 409.
In specific use, the servo motor 409 rotates clockwise to drive the uniform speed driving assembly 22 to rotate clockwise, the cam 4010 and the high speed driving assembly 504 rotate clockwise for seven turns, the uniform speed driving assembly 22 rotates for one turn, and at the moment, the seven corrugated cardboards complete the marking line operation and are conveyed onto the arc-shaped plate 6. When drive assembly 22 at the uniform velocity drives tooth piece 23 clockwise turning and second drive gear 19 meshing, second drive gear 19 can drive winding roller 18 anticlockwise rotation, at this moment, winding roller 18 can carry out the wire winding operation to stay cord 21, stay cord 21 can drive two slip wedge poles 11 through long board 14 and two connecting rods 12 and move down, third compression spring 13 compresses downwards, two slip wedge poles 11 and slurcam 17 separation, at this moment, under fourth compression spring 16's auxiliary action, slurcam 17 can promote seven corrugated cardboards that have accomplished the marking operation on the arc 6 and move backward, the assistance that has had slurcam 17, just need not the manual corrugated container board that will accomplish the marking and take off, workman's intensity of labour has been reduced.
When the long plate 14 moves downward and contacts the stop switch 24, the servo motor 409 can be automatically turned off by pressing the stop switch 24, so that the function of not needing workers to pay attention to the mechanical operation all the time is realized, and the condition of machine damage caused by negligence at any time can be reduced. After servo motor 409 shut down, second drive gear 19 and winding roller 18 also can shut down, winding roller 18 can stop the wire winding operation to stay cord 21, behind pushing plate 17 released corrugated container board from arc 6, the workman needs to manually promote pushing plate 17 forward and resets, two fourth compression spring 16 compress forward, at this moment, under third compression spring 13's additional action, two slip wedge bars 11 can the rebound reset and push plate 17 contact, two slip wedge bars 11 can drive long slab 14 rebound through two connecting rods 12 and reset, long slab 14 can pull out stay cord 21 from winding roller 18, make things convenient for next time to accomplish and beat the corrugated container board of marking and promote the operation.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.