CN219238795U - Full-automatic ten-axis stationery slitting machine - Google Patents

Full-automatic ten-axis stationery slitting machine Download PDF

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Publication number
CN219238795U
CN219238795U CN202320197813.9U CN202320197813U CN219238795U CN 219238795 U CN219238795 U CN 219238795U CN 202320197813 U CN202320197813 U CN 202320197813U CN 219238795 U CN219238795 U CN 219238795U
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shaft
discharging
winding
stationery
pull
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熊志均
宋威威
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Dongguan Hongtu Packaging Machinery Co ltd
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Dongguan Hongtu Packaging Machinery Co ltd
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Abstract

The utility model discloses a full-automatic ten-axis stationery slitting machine, which comprises the following components: comprising the following steps: the device comprises a frame, a discharging mechanism, a winding mechanism and a guiding roller group, wherein the discharging mechanism, the winding mechanism and the guiding roller group are arranged on the frame; the winding mechanism is provided with two turntables which are arranged up and down, and the two turntables are provided with four winding shafts; the glue core discharging mechanism comprises a discharging pull shaft conveyer belt assembly, a glue core discharging assembly and a connecting shaft conveyer belt assembly, wherein two standby rolling shafts penetrating through stationery glue cores are arranged on the connecting shaft conveyer belt assembly, and the glue core discharging mechanism further comprises a manipulator; one end of the rubber core discharging assembly, which is far away from the discharging pull shaft conveyer belt assembly, is provided with a servo pull shaft mechanism; the frame is provided with an automatic cutting mechanism at the rear side of the turntable in a swinging way. According to the utility model, the ten winding shafts are arranged to load the shaft in a non-stop state, and simultaneously, the winding can be carried out in the non-stop state, so that the working efficiency is improved.

Description

Full-automatic ten-axis stationery slitting machine
Technical Field
The utility model relates to the field of adhesive tape processing and manufacturing, in particular to a full-automatic ten-shaft stationery slitting machine.
Background
Adhesive tapes are often used in life, such as stationery adhesive tapes, various processing equipment is needed in the production and processing of the adhesive tapes, and an adhesive tape separator is one of the adhesive tapes.
However, most of the adhesive tape slitting machines on the market at present have the working principle that an adhesive tape to be slit is erected on a discharging mechanism, the adhesive tape is guided and conveyed to a winding mechanism through a guiding mechanism, and then the adhesive tape is wound on an adhesive tape roll through a winding shaft of the winding mechanism; the tape to be striped is slit at equal intervals by the slitting knife, and then the slit tape is wound on winding shafts of winding mechanisms above and below at intervals. In the existing equipment, two groups of winding mechanisms are arranged, but each group of winding mechanisms is provided with two winding shafts, one winding shaft is not in operation while the other winding shaft is in operation, and the adhesive tape is cut off by manually taking a cutter and waiting for manually unloading the wound adhesive tape. The manual feeding and discharging needs more time, the feeding and discharging work cannot be completed after the winding shaft is wound, the winding can be continued after the feeding and discharging work is completed, and the winding efficiency is very low. In addition, after the adhesive tape of finished products is manually detached from the winding shaft, the adhesive tape cores are also required to be sleeved on the winding shaft one by one manually, so that the labor force is high, and the cutting work efficiency is low.
Disclosure of Invention
Aiming at the defects existing in the prior art, the main purpose of the utility model is to overcome the defects of the prior art and provide a full-automatic ten-shaft stationery slitting machine, which comprises: the device comprises a frame, a discharging mechanism, a winding mechanism and a guiding roller group, wherein the discharging mechanism is arranged on the frame and used for placing a rubber belt parent roll, the winding mechanism is provided with a winding shaft and used for winding the rubber belt, the guiding roller group is used for transmitting the rubber belt of the rubber belt parent roll to the winding mechanism, a rubber discharging core mechanism is arranged on the side of the frame and used for automatically discharging and replacing the winding shaft, and a servo pull shaft mechanism is arranged on the side of the rubber discharging core mechanism; the winding mechanism is provided with two turntables which are arranged up and down, and the two turntables are provided with four winding shafts; the adhesive core discharging mechanism comprises an unloading pull shaft conveying belt component for pushing the adhesive tape roll with the adhesive tape wound on the winding shaft out of the winding shaft, an adhesive core discharging component which is intersected with the tail end of the unloading pull shaft conveying belt component and used for discharging stationery adhesive cores, and a shaft connecting conveying belt component which is intersected with the tail end of the unloading pull shaft conveying belt component and used for receiving the winding shaft of the stationery adhesive cores which are penetrated on the adhesive core discharging component, wherein two standby winding shafts penetrating the stationery adhesive cores are placed on the shaft connecting conveying belt component, and the adhesive core discharging mechanism further comprises a standby winding shaft placing turntable on the shaft connecting conveying belt component and a manipulator for taking down the winding shaft on the turntable and placing the unloading pull shaft conveying belt component; one end of the rubber core discharging assembly, which is far away from the discharging pull shaft conveyer belt assembly, is provided with a servo pull shaft mechanism for pulling a winding shaft on the discharging pull shaft conveyer belt assembly to the rubber core discharging assembly; the machine frame is provided with an automatic cutting mechanism which is arranged on the lower side of the winding mechanism in a swinging way and is used for cutting off the adhesive tape.
According to the utility model, by arranging the two turntables and arranging the four winding shafts on the turntables respectively, and arranging the two standby winding shafts on the glue discharging core mechanism, the material can be wound in a non-stop state, so that the working efficiency is improved; meanwhile, the discharging rubber core mechanism is respectively provided with a discharging pull shaft conveyer belt assembly, a rubber core discharging assembly, a connecting shaft conveyer belt group, a servo pull shaft mechanism and a mechanical arm, so that the discharging, sleeving of stationery rubber cores and the assembling of a rolling shaft on a turntable are automatically completed mechanically, the manual participation in discharging and assembling is avoided, the labor intensity is effectively reduced, and meanwhile, the labor cost is reduced; an automatic cutting mechanism is arranged, the cutting function is mechanically finished, the production efficiency is improved, and the labor intensity is also reduced.
Further, the device also comprises a silencing roller mechanism, wherein the silencing roller mechanism comprises a connecting rod, rocker arms arranged at two ends of the connecting rod, a silencing roller arranged on the rocker arms and a driving motor for driving the connecting rod to rotate, and the silencing roller is pressed with one guiding roller of the guiding roller group; the sound when the guide roller group draws the material can be reduced through the noise elimination roller, noise pollution is reduced, and the human health is effectively protected.
Further, the silencing roller mechanism further comprises two edge-collecting waste air-expanding shafts for rolling the leftover waste, and the two edge-collecting waste air-expanding shafts are respectively arranged on the rocker arms and are pressed with the guide roller so as to drive the edge-collecting leftover material to be rolled; the setting receives limit waste material air expansion axle and can receive limit leftover bits, avoids the leftover bits winding to be on winding mechanism and guide roller group, influences the normal operating of equipment.
Further, the rubber discharging core mechanism further comprises an upper shaft conveyer belt assembly which is positioned at the outer side of the discharging pull shaft conveyer belt assembly and is intersected with the connecting shaft conveyer belt assembly, the upper shaft conveyer belt assembly comprises an upper shaft bracket, first synchronous belt wheel groups connected with conveyer belts are arranged at two ends of the upper shaft bracket, the upper shaft bracket is provided with a first motor for driving the first synchronous belt wheel groups to operate, an induction piece is arranged on the upper shaft bracket far away from one end of the connecting shaft conveyer belt assembly, and the induction piece is connected with the first motor and a mechanical torch; the connecting shaft conveying belt assembly comprises a connecting shaft bracket, a third synchronous belt wheel set which is arranged at two ends of the connecting shaft bracket and connected with a conveying belt, and a third motor which is arranged on the connecting shaft bracket and used for driving the third synchronous belt wheel to operate, and the connecting shaft bracket is provided with an inductor which is electrically connected with the third motor; after the inductor senses that the winding shaft of the sheathed stationery rubber core falls into the conveying belt, the third motor is started to enable the third synchronous belt pulley to drive the conveying belt to convey the winding shaft to the upper shaft support, and then the conveying belt on the upper shaft support conveys the winding shaft forwards.
Further, the conveyer belt subassembly of drawing of unloading includes the chassis and locates the lift at chassis both ends and locates the support frame of lift output, the support frame both ends are equipped with the second hold-in gear group that is connected with the conveyer belt, the support frame is equipped with the second motor that drives second hold-in gear group operation, be close to and glue the support frame both sides of core emission component one end and be equipped with the support of unloading, after the take-up shaft of mechanical arm with the adhesive tape of rolling up is unloaded on the chassis, servo drawing mechanism pulling take-up shaft is toward the core emission component removal, the adhesive tape roll on the take-up shaft is blocked by two support of unloading, at the in-process that the take-up shaft removed, the adhesive tape roll drops one by one from the take-up shaft, the adhesive tape roll is carried by the conveyer belt, in order to realize the function of automatic discharge, need not manual discharge, submit work efficiency.
Further, the rubber core discharging assembly consists of a base, a hopper, a plurality of baffle plates and a baffle plate, wherein the hopper and the baffle plates are arranged on the base, the baffle plates are arranged at intervals to form a conveying channel for stationery rubber core to flow, the baffle plates are arranged at the discharge end of the hopper, the baffle plates are used for blocking the stationery rubber core to flow, and a rotary cylinder for driving the baffle plates to turn over and baffle materials is arranged at the side edge of the hopper; the servo pull shaft mechanism comprises a pull tube bracket, a horizontal guide sliding rod group, a pull rod seat and a fourth motor, wherein the horizontal guide sliding rod group is arranged on the pull tube bracket, the pull rod seat is arranged on the horizontal guide sliding rod group in a sliding manner, the fourth motor is arranged on the pull tube bracket and is provided with a screw rod connected with the pull rod seat, the pull rod seat is provided with a pull shaft rod, the tail end of the pull shaft rod is provided with a pneumatic chuck for clamping a winding shaft, the pull shaft rod seat is driven by the fourth motor to drive the pull shaft rod to extend to the unloading pull shaft conveyer belt assembly to clamp the winding shaft through the rubber core discharging assembly, and the winding shaft is pulled back to the rubber core discharging assembly; when needs suit stationery gum core to the winding shaft, the revolving cylinder drives the baffle to remove, make the stationery gum core stay on the conveyer path, at this moment, fourth motor start drive pull rod seat removes, make the pull rod pole pass every stationery gum core and remove to unloading pull shaft conveyer belt subassembly, make the last winding shaft of pneumatic chuck clamp chassis, press from both sides tightly the back, fourth motor drive pull rod seat resets, make the winding shaft on the chassis pull under the pull rod pole, because chassis two are unloaded the support and block, make the adhesive tape roll break away from the winding shaft, and the winding shaft passes every stationery gum core, make stationery gum core suit in the winding shaft, because the baffle separates each other, and then can not lead to the sign that the stationery gum core takes place the skew, in order to realize automatic suit stationery gum core function, do not need artifical suit one by one, manual labor has been reduced in the time when improving work efficiency.
Further, the automatic cutting mechanism comprises a cloth cutting swing arm group which is arranged on a rack at the rear side of the turntable in a swinging way, a sliding seat and a film pressing and smoothing roller group for pressing films and smoothing adhesive tapes are arranged on the cloth cutting swing arm group, a knife clamping plate is movably hinged on the sliding seat, the cloth cutting swing arm group is arranged on a pushing cylinder which drives the sliding seat to move, a telescopic cylinder which drives the knife clamping plate to cut off the adhesive tapes is arranged on the sliding seat, and a driving cylinder which drives the cloth cutting swing arm group to swing is arranged on the rack; the telescopic cylinder drives the knife clamping plate to cut off the adhesive tape, so that the cutting-off function is mechanically finished, the production efficiency is improved, and the labor intensity is also reduced; meanwhile, the film pressing smoothing roller set is arranged, so that the problem of foaming and wrinkling of the adhesive tape can be avoided when the adhesive tape is wound by the winding shaft.
Further, still including being located the below of winding mechanism and being used for attaching the label and being used for attaching the automatic labeling mechanism of the arrow of the port department that indicates the sticky tape to dial, the label facilitates the user to look for the cut-off of sticky tape, automatic labeling mechanism is including pasting the label platform and locating the label of placing the label roll of label platform one end and locating the arrow of placing the label platform other end and unreel the subassembly and be used for pulling the tape roll and the tape pulling subassembly that the arrow paper attached to the sticky tape and locate the tape shearing subassembly of label platform both sides, by tape pulling subassembly round trip movement, in order to realize driving label and arrow tape to attach to the sticky tape, and cut off label and arrow paper through the tape shearing subassembly, automatic completion labeling, effectively improve the efficiency of work, and automatic cutting mechanism is located the rear side of automatic labeling mechanism, after having pasted the label, cut off the sticky tape through automatic cutting mechanism, the cut-off is located the label certain distance, remain the remainders, make things convenient for the remainders to stick up on the sticky tape surface, avoid the label to stick up, and transport is convenient.
Drawings
FIG. 1 is a schematic view of a view angle structure of the present utility model;
FIG. 2 is a front view of the present utility model;
FIG. 3 is a right side view of the present utility model;
FIG. 4 is a schematic view of the structure of the present utility model with the rubber core removing mechanism removed;
FIG. 5 is a schematic view of a view of the rubber core discharging mechanism according to the present utility model;
FIG. 6 is a schematic view of a rubber core discharging mechanism according to another embodiment of the present utility model;
FIG. 7 is a schematic view of an automatic shut-off mechanism according to the present utility model;
fig. 8 is a schematic structural view of an automatic labeling mechanism in the present utility model.
Detailed Description
Most of the adhesive tape slitting machines on the market at present have the working principle that an adhesive tape to be slit is erected on a discharging mechanism, the adhesive tape is guided and conveyed to a winding mechanism through a guiding mechanism, and then the adhesive tape is wound on an adhesive tape roll through a winding shaft of the winding mechanism; the tape to be striped is slit at equal intervals by the slitting knife, and then the slit tape is wound on winding shafts of winding mechanisms above and below at intervals. In the existing equipment, two groups of winding mechanisms are arranged, but each group of winding mechanisms is provided with two winding shafts, one winding shaft is not in operation while the other winding shaft is in operation, and the adhesive tape is cut off by manually taking a cutter and waiting for manually unloading the wound adhesive tape. The manual feeding and discharging needs more time, the feeding and discharging work cannot be completed after the winding shaft is wound, the winding can be continued after the feeding and discharging work is completed, and the winding efficiency is very low. In addition, after the adhesive tape of finished products is manually detached from the winding shaft, the adhesive tape cores are also required to be sleeved on the winding shaft one by one manually, so that the labor force is high, and the cutting work efficiency is low.
Aiming at the defects existing in the prior art, the utility model aims to overcome the defects of the prior art, provides a full-automatic ten-shaft stationery slitting machine, and aims to make the purposes, the characteristics and the advantages of the utility model more obvious and more understandable, and the detailed description of the specific embodiments of the utility model is provided below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model. The present utility model may be embodied in many other forms than described herein and similarly modified by those skilled in the art without departing from the spirit of the utility model, whereby the utility model is not limited to the specific embodiments disclosed below.
Referring to fig. 1, 2, 3 and 4, the present embodiment provides a full-automatic ten-axis stationery strip separator, which includes: the automatic feeding and discharging machine comprises a frame 1, a discharging mechanism 2, a winding mechanism 3 and a guiding roller group 4, wherein the discharging mechanism 2 is arranged on the frame 1 and is used for placing a rubber belt parent roll, the winding mechanism 3 is provided with a winding shaft 30 and is used for winding the rubber belt, the guiding roller group 4 is used for transmitting the rubber belt of the rubber belt parent roll to the winding mechanism 3, a rubber discharging core mechanism 5 is arranged on the side of the frame 1 and is used for automatically discharging and automatically replacing the winding shaft 30, and a servo pull shaft mechanism 6 is arranged on the side of the rubber discharging core mechanism 5; the winding mechanism 3 is provided with two turntables 31 which are arranged up and down, the two turntables 31 are provided with four winding shafts 30, and the frame 1 is provided with a motor and a gear set for driving the turntables 31 and the winding shafts 30 to operate; the adhesive core discharging mechanism 5 comprises an unloading pull shaft conveying belt assembly 51 for pushing the adhesive tape roll with the adhesive tape wound on the winding shaft 30 out of the winding shaft 30, an adhesive core discharging assembly 52 which is intersected with the tail end of the unloading pull shaft conveying belt assembly 51 and is used for discharging stationery adhesive cores, and an axle connecting conveying belt assembly 53 which is intersected with the tail end of the unloading pull shaft conveying belt assembly 51 and is used for receiving the winding shaft 30 with the stationery adhesive cores on the adhesive core discharging assembly 52, two standby winding shafts 30 with the stationery adhesive cores on the standby winding shafts are placed on the axle connecting conveying belt assembly 53, and the adhesive core discharging mechanism 5 further comprises a rotating disc 31 for placing the standby winding shafts 30 on the axle connecting conveying belt assembly 53 and a manipulator 54 for taking down the winding shafts 30 on the rotating disc 31 and placing the unloading pull shaft conveying belt assembly 51; one end of the rubber core discharging assembly 52, which is far away from the discharging pull shaft conveyer belt assembly 51, is provided with a servo pull shaft mechanism 6 for pulling the winding shaft 30 on the discharging pull shaft conveyer belt assembly 51 to the rubber core discharging assembly 52; the frame 1 is provided with an automatic cutting mechanism 7 which is arranged at the lower side of the winding mechanism 3 in a swinging way and is used for cutting off the adhesive tape; the rack 1 is provided with a PLC control system for controlling the operation of the mechanism on the device, and the device can be automatically operated by the PLC control system.
In summary, the fully automatic ten-shaft stationery slitter is based on the principle that a parent roll of adhesive tape is placed on a discharging mechanism 2, the free end of the adhesive tape of the parent roll of adhesive tape sequentially passes through two winding shafts 30 on a guiding roller group 4, an automatic labeling mechanism 9, an automatic cutting mechanism 7 and a winding mechanism 3, after equipment is started, the guiding roller group 4 and the winding mechanism 3 pull the adhesive tape, so that the adhesive tape is wound on a stationery core on the winding shaft 30, after the winding of the adhesive tape is completed, a mechanical arm 54 dismantles the winding shaft 30 from a turntable 31, and a discharging pull shaft conveying belt component 51 placed on a rubber core discharging mechanism 5 is started, so that the winding shaft 30 on the discharging pull shaft conveying belt component 51 is pulled by a servo pull shaft mechanism 6 to move towards the rubber core discharging component 52, when the winding shaft 30 on the discharging pull shaft conveying belt component 51 is pulled by the servo pull shaft mechanism 6, the adhesive tape on the winding shaft 30 is blocked by a discharging support, when the winding shaft 30 moves to the rubber core discharging component 52, the rubber core on the winding shaft discharging component 52 is sleeved on the winding shaft 30, the rubber core discharging pull shaft 30 is wound on the turntable 30, the winding shaft is wound on the servo shaft 30 after the servo pull shaft component 53, and the rubber core is assembled on the winding shaft 30 is assembled by the servo pull shaft component 53.
According to the utility model, by arranging the two turntables 31, arranging four winding shafts 30 on the turntables 31 respectively, arranging two standby winding shafts 30 on the glue discharging core mechanism 5, and arranging ten winding shafts 30, wherein the two standby winding shafts 30 are arranged, the shafts are arranged in a non-stop state, and simultaneously, the winding can be carried out in the non-stop state, so that the working efficiency is improved; meanwhile, the discharging pull shaft conveyer belt assembly 51, the rubber core discharging assembly 52, the connecting shaft conveyer belt group 53, the servo pull shaft mechanism 6 and the mechanical arm 54 are respectively arranged on the rubber core discharging mechanism 5, so that the discharging, sleeving of stationery rubber cores and the assembly of the winding shaft 30 on the turntable 31 are automatically completed mechanically, the manual participation in discharging and assembling is avoided, the labor intensity is effectively reduced, and meanwhile, the labor cost is reduced; an automatic cutting mechanism 7 is arranged, the cutting function is mechanically finished, the production efficiency is improved, and the labor intensity is also reduced.
Further, the device also comprises a silencing roller mechanism 8, wherein the silencing roller mechanism 8 comprises a connecting rod, rocker arms arranged at two ends of the connecting rod, a silencing roller arranged on the rocker arms and a driving motor for driving the connecting rod to rotate, and the silencing roller is pressed with one guiding roller of the guiding roller group 4; the sound of the guiding roller group during material pulling can be reduced through the silencing rollers, noise pollution is reduced, and the human health is effectively protected; the silencing roller mechanism 8 also comprises two edge-collecting waste air-expanding shafts for rolling the leftover waste, and the two edge-collecting waste air-expanding shafts are respectively arranged on the rocker arms and are pressed with the guide roller so as to drive the edge-collecting leftover material to be rolled; the setting receives limit waste material air expansion axle and can receive limit leftover material, avoids the leftover material winding on winding mechanism 3 and guide roller group 4, influences the normal operation of equipment.
Further, referring to fig. 5 and 6, the rubber core discharging mechanism 5 further includes an upper shaft conveyer belt assembly 55 located outside the discharging pull shaft conveyer belt assembly 51 and intersecting the connecting shaft conveyer belt assembly 53, the upper shaft conveyer belt assembly 55 includes an upper shaft bracket 550, first synchronous belt wheel sets connected with a conveyer belt are installed at two ends of the upper shaft bracket 550, the upper shaft bracket 550 is provided with a first motor 551 for driving the first synchronous belt wheel sets to operate, an induction plate is arranged on the upper shaft bracket 550 far away from one end of the connecting shaft conveyer belt assembly 53, and the induction plate is electrically connected with the first motor 551 and the manipulator 54; the spindle conveyor belt assembly 53 comprises a spindle bracket 530, a third synchronous belt wheel set arranged at two ends of the spindle bracket 530 and connected with a conveyor belt, and a third motor 531 arranged on the spindle bracket 530 and used for driving the third synchronous belt wheel to operate, wherein an inductor electrically connected with the third motor 531 is arranged on the spindle bracket 530;
the unloading pull shaft conveyer belt assembly 51 comprises a bottom frame 510, lifters 511 arranged at two ends of the bottom frame 510 and a support frame 512 arranged at the output end of the lifters 511, second synchronous belt wheel sets connected with a conveyer belt are arranged at two ends of the support frame 512, a second motor 513 for driving the second synchronous belt wheel sets to operate is arranged at the support frame 512, and unloading supports are arranged at two sides of the support frame 512 close to one end of the rubber core discharging assembly 52;
the glue core discharging component 52 is composed of a base 520, a hopper 521, a plurality of baffle plates 522 and a baffle plate 523, wherein the hopper 521 and the baffle plates 522 are arranged on the base 520, the baffle plates 522 are arranged at intervals to form a conveying channel for stationery glue core flowing, the baffle plates 522 are arranged at the discharge end of the hopper 521, the baffle plate 523 is used for blocking the stationery glue core flowing, and a rotary cylinder for driving the baffle plate 523 to turn over and block materials is arranged at the side edge of the hopper 521; the servo pull shaft mechanism 6 comprises a pull tube bracket 60, a horizontal guide slide bar set 61 arranged on the pull tube bracket 60, a pull rod seat 62 arranged on the horizontal guide slide bar set 61 in a sliding manner, and a fourth motor arranged on the pull tube bracket 60 and provided with a screw rod connected with the pull rod seat 62, wherein the pull rod seat 62 is provided with a pull shaft lever 63, the tail end of the pull shaft lever 63 is provided with a pneumatic chuck for clamping the take-up shaft 30, the pull shaft lever 63 is driven by the fourth motor to drive the pull rod seat 62 to extend to the discharge pull shaft conveyer belt assembly 51 through the rubber core discharge assembly 52 so as to clamp the take-up shaft 30, and the take-up shaft 30 is pulled back to the rubber core discharge assembly 52;
further, a sliding plate 524 with a certain inclination angle is arranged between the base 520 and the spindle bracket 530; effectively enabling the winding shaft 30 sleeved with the stationery glue core to fall onto the conveying belt of the spindle bracket 530;
in summary, when the stationery glue cores need to be unloaded and sleeved and the winding shaft 30 is assembled, the rotary cylinder drives the baffle 523 to move away, so that the stationery glue cores are left on the conveying way, at this time, the fourth motor is started to drive the pull rod seat 62 to move, so that the pull rod 63 passes through each stationery glue core to move to the unloading pull shaft conveying belt assembly 51, so that the pneumatic chuck clamps the winding shaft 30 on the underframe 510, after clamping, the fourth motor drives the pull rod seat 62 to reset, so that the winding shaft 30 on the underframe 510 is pulled by the pull rod 63, the adhesive tape rolls are separated from the winding shaft 30 due to the blocking of the two unloading supports of the underframe 510, and the winding shaft 30 passes through each stationery glue core, so that the stationery glue cores are sleeved on the winding shaft 30, and further, due to the separation of the baffle 522, no sign of the stationery glue cores occurs, and after the winding shaft 30 is pulled in place by the pull rod 63, the pneumatic chuck releases the winding shaft 30, so that the winding shaft 524 falls onto the conveying belt of the connecting shaft bracket 530 from the slide plate; when the inductor senses that the winding shaft 30 with the packaged stationery glue core falls onto the conveying belt, the third motor 531 is started to enable the conveying belt to drive the conveying belt to convey the winding shaft 30 to the upper shaft support 550, the conveying belt on the upper shaft support 550 is conveyed forwards, after one end of the winding shaft 30 touches the induction piece, the first motor 551 stops operating, at the moment, the manipulator 54 is started, the manipulator 54 grabs the winding shaft 30, the winding shaft 30 on the conveying belt is assembled on the turntable 31, the automatic assembly function is mechanically completed, and the manual labor intensity is reduced.
Further, referring to fig. 7, the automatic cutting mechanism 7 includes a cloth cutting swing arm set 70 that is swing-mounted on the frame 1 at the lower side of the winding mechanism 3, a slide seat 72 is mounted on the cloth cutting swing arm set 70, and a film pressing and leveling roller set 71 for pressing film and leveling adhesive tape is mounted on the cloth cutting swing arm set, a knife clamping plate 73 is movably hinged on the slide seat 72, a pushing cylinder 74 for driving the slide seat 72 to move is mounted on the cloth cutting swing arm set 70, a telescopic cylinder 75 for driving the knife clamping plate 73 to cut adhesive tape is mounted on the slide seat 72, and a driving cylinder 76 for driving the cloth cutting swing arm set 70 to swing is mounted on the frame 1; the telescopic cylinder 75 drives the knife clamping plate 73 to cut off the adhesive tape, so that the cutting function is mechanically finished, the production efficiency is improved, and the labor intensity is also reduced; the roller group 71 is arranged to smooth the film, so that the problem of foaming and wrinkling of the adhesive tape can be avoided when the winding shaft 30 winds the adhesive tape.
Further, please refer to fig. 8, still include the automatic labeling mechanism that is located the below of winding mechanism and is used for attaching the label and is used for attaching the arrow of the port department that instructs the sticky tape to dial, the label is convenient for the user to look for the cutout 9 of sticky tape, automatic labeling mechanism 9 is including labeling platform 92 and locate the label of placing the label roll of labeling platform 92 one end and locate the label platform other end be used for placing arrow paper the arrow of arrow roll assembly 94 and be used for pulling label roll and arrow paper to paste the stretching strap subassembly 91 on the sticky tape and locate the scissors strip subassembly 93 of labeling platform both sides, by the back and forth movement of stretching strap subassembly 92, in order to realize driving label and arrow tape to paste on the sticky tape, and cut off label and arrow paper through scissors strap subassembly 93, automatic completion is marked, effectively improve the efficiency of work, and automatic cutout mechanism 9 is located the rear side of automatic labeling mechanism 7, after the label is pasted, cut off the sticky tape through automatic cutout mechanism 7, the cutout is located the label a certain distance, the surplus material is kept, make things convenient for the surplus material to stick up on the surface, the sticky tape is convenient for, and transportation is convenient for.
The technical features of the above-described embodiments may be arbitrarily combined, and all possible combinations of the technical features in the above-described embodiments are not described for brevity of description, however, as long as there is no contradiction between the combinations of the technical features, they should be considered as the scope of the description.

Claims (10)

1. A fully automatic ten-axis stationery slitter comprising: the automatic feeding and winding machine is characterized in that a rubber discharging core mechanism for automatically discharging and automatically replacing the winding shaft is arranged on the side of the machine frame;
the winding mechanism is provided with two turntables which are arranged up and down, and the two turntables are provided with four winding shafts;
the adhesive core discharging mechanism comprises an unloading pull shaft conveying belt component for pushing the adhesive tape roll with the adhesive tape wound on the winding shaft out of the winding shaft, an adhesive core discharging component which is intersected with the tail end of the unloading pull shaft conveying belt component and used for discharging stationery adhesive cores, and a shaft connecting conveying belt component which is intersected with the tail end of the unloading pull shaft conveying belt component and used for receiving the winding shaft of the stationery adhesive cores which are penetrated on the adhesive core discharging component, wherein two standby winding shafts penetrating the stationery adhesive cores are placed on the shaft connecting conveying belt component, and the adhesive core discharging mechanism further comprises a standby winding shaft placing turntable on the shaft connecting conveying belt component and a manipulator for taking down the winding shaft on the turntable and placing the unloading pull shaft conveying belt component;
one end of the rubber core discharging assembly, which is far away from the discharging pull shaft conveyer belt assembly, is provided with a servo pull shaft mechanism for pulling a winding shaft on the discharging pull shaft conveyer belt assembly to the rubber core discharging assembly;
the frame is provided with an automatic cutting mechanism which is arranged on the upper side of the winding mechanism in a swinging way and is used for cutting off the adhesive tape.
2. The full-automatic ten-shaft stationery slitter according to claim 1, further comprising a silencing roller mechanism, wherein the silencing roller mechanism comprises a connecting rod, rocker arms arranged at two ends of the connecting rod, silencing rollers arranged on the rocker arms, and a driving motor for driving the connecting rod to rotate, and the silencing rollers are pressed with one guiding roller of the guiding roller group.
3. The full-automatic ten-shaft stationery slitter according to claim 2, wherein the silencing roller mechanism further comprises two edge-folding waste air-expanding shafts for folding the corner waste, the two edge-folding waste air-expanding shafts are respectively arranged on the rocker arms and are pressed with the guiding roller to realize the rotation of the edge-folding waste.
4. The fully automatic ten-shaft stationery slitter according to claim 1, wherein the rubber discharging core mechanism further comprises an upper shaft conveyer belt assembly which is positioned outside the discharging pull shaft conveyer belt assembly and is intersected with the connecting shaft conveyer belt assembly, the upper shaft conveyer belt assembly comprises an upper shaft bracket, first synchronous belt wheel groups connected with a conveyer belt are installed at two ends of the upper shaft bracket, the upper shaft bracket is provided with a first motor for driving the first synchronous belt wheel groups to operate, and an induction sheet is arranged on the upper shaft bracket far away from one end of the connecting shaft conveyer belt assembly and is connected with the first motor and the mechanical torch.
5. The full-automatic ten-shaft stationery slitter according to claim 1, wherein the discharging pull shaft conveyor belt assembly comprises a bottom frame, lifters arranged at two ends of the bottom frame and a support frame arranged at an output end of the lifters, second synchronous belt wheel sets connected with conveyor belts are arranged at two ends of the support frame, a second motor for driving the second synchronous belt wheel sets to operate is arranged on the support frame, discharging supports are arranged at two sides of the support frame close to one end of the rubber core discharging assembly, and when the servo pull shaft mechanism pulls the winding shaft to move to the rubber core discharging assembly, the rubber belt rolls on the winding shaft are blocked by the two discharging supports to realize discharging, and the rubber belt rolls are conveyed by the conveyor belts.
6. The full-automatic ten-shaft stationery strip separating machine according to claim 1, wherein the rubber core discharging assembly comprises a base, a hopper, a plurality of partition boards and a baffle, the hopper and the plurality of partition boards are arranged on the base, the plurality of partition boards are arranged at intervals to form a stationery rubber core flowing conveying channel, the plurality of partition boards are arranged at the discharging end of the hopper, the baffle is used for blocking the stationery rubber core from flowing, and a rotary cylinder for driving the baffle to turn over and stop materials is arranged on the side edge of the hopper.
7. The full-automatic ten-shaft stationery strip separator according to claim 4, wherein the shaft-connecting conveyer belt assembly comprises a shaft-connecting support, a third synchronous belt wheel set arranged at two ends of the shaft-connecting support and connected with a conveyer belt, and a third motor arranged on the shaft-connecting support and used for driving the third synchronous belt wheel to operate, and the shaft-connecting support is provided with an inductor electrically connected with the third motor.
8. The fully automatic ten-shaft stationery slitter according to claim 1, wherein the servo pull shaft mechanism comprises a pull tube support, a horizontal guide sliding rod group arranged on the pull tube support, a pull rod seat arranged on the horizontal guide sliding rod group in a sliding manner, and a fourth motor arranged on the pull tube support and provided with a screw rod connected with the pull rod seat, a pull rod is arranged on the pull rod seat, the tail end of the pull rod is provided with a pneumatic chuck for clamping a winding shaft, and the pull rod is driven by the fourth motor to drive the pull rod seat to extend to the unloading pull shaft conveyer belt assembly to clamp the winding shaft through the rubber core discharging assembly, so that the winding shaft is pulled back to the rubber core discharging assembly.
9. The full-automatic ten-shaft stationery slitting machine according to claim 1, wherein the automatic cutting mechanism comprises a cloth cutting swing arm group which is arranged on a rack at the rear side of the turntable in a swinging way, a sliding seat and a film pressing and flattening roller group for pressing films and flattening adhesive tapes are arranged on the cloth cutting swing arm group, a knife clamping plate is movably hinged on the sliding seat, the cloth cutting swing arm group is arranged on a pushing cylinder for driving the sliding seat to move, a telescopic cylinder for driving the knife clamping plate to cut the adhesive tapes is arranged on the sliding seat, and a driving cylinder for driving the cloth cutting swing arm group to swing is arranged on the rack.
10. The full-automatic ten-shaft stationery slitting machine according to claim 1, further comprising an automatic labeling mechanism which is positioned below the winding mechanism and is used for attaching labels, wherein the automatic cutting mechanism is positioned at the rear side of the automatic labeling mechanism, and the automatic labeling mechanism comprises a labeling platform, a label unreeling component which is arranged at one end of the labeling platform and is used for placing label rolls, an arrow unreeling component which is arranged at the other end of the labeling platform and is used for placing arrow paper, a drawstring component which is used for pulling the label rolls and the arrow paper to be attached to the adhesive tape, and a tape shearing component which is arranged at two sides of the labeling platform.
CN202320197813.9U 2023-02-13 2023-02-13 Full-automatic ten-axis stationery slitting machine Active CN219238795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320197813.9U CN219238795U (en) 2023-02-13 2023-02-13 Full-automatic ten-axis stationery slitting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320197813.9U CN219238795U (en) 2023-02-13 2023-02-13 Full-automatic ten-axis stationery slitting machine

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CN219238795U true CN219238795U (en) 2023-06-23

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Application Number Title Priority Date Filing Date
CN202320197813.9U Active CN219238795U (en) 2023-02-13 2023-02-13 Full-automatic ten-axis stationery slitting machine

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117842745A (en) * 2023-12-29 2024-04-09 东莞市大道精密智能装备有限公司 One-to-many split semi-automatic slitting machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117842745A (en) * 2023-12-29 2024-04-09 东莞市大道精密智能装备有限公司 One-to-many split semi-automatic slitting machine

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