Cosmetic plastic sheet packagine machine
Technical Field
The invention relates to the technical field of plastic plate packaging, in particular to a cosmetic plastic plate packaging machine.
Background
The term cosmetic package includes both primary and secondary packages, the primary package (also referred to as cosmetic containers) for containing the cosmetic product in direct contact with the cosmetic product, the secondary package being the outer packaging of one or more cosmetic containers, and one important distinction between the primary and secondary packages is that any information required to clarify the safety of the product must appear on the primary package, otherwise much of the necessary information can only appear on the secondary package.
At present, the materials of cosmetic packaging mainly divide into oiled paper, thickened paper and plastic sheet, and compare in the packing material of paper, the required step of plastic sheet processing into the structure that the different cosmetics of adaptation were packed can be more loaded down with trivial details, especially to the processing of printing on the plastics panel of independent unprocessed, according to the comprehensive and half printing of plastic sheet handle, current equipment hardly appointed and suitability processing operation to it.
The invention aims at the processing of printed pictures on two sides of a plastic plate, and how to conveniently compact or selectively remove the printed pictures on two sides of the plastic plate after printing, so as to ensure that the plastic plate after printing is processed efficiently, namely the technical difficulty to be solved by the invention.
Disclosure of Invention
The present invention aims to solve one of the technical problems existing in the prior art or related technologies.
The technical scheme adopted by the invention is as follows:
the utility model provides a cosmetic plastic sheet packagine machine, includes the mechanism that bears, installs the plate delivery mechanism on the mechanism that bears and install the drawing roll-in mechanism on plate delivery mechanism, the mechanism that bears includes side compaction subassembly, install the blank holder on side compaction subassembly, install two and break away from the frame outside two side compaction subassemblies, connect the motor that breaks away from in the outside splint of frame, install outside side compaction subassembly restraint position frame, install outside restraint position frame and the support of auxiliary support of keeping away from side compaction subassembly one side, side compaction subassembly includes the roof of installing at the support top, installs the base in the support bottom, movable mounting is at the external transmission tooth axle of roof one end, movable mounting is at a plurality of compression rollers in the roof inside, the bracket of fixed mounting in roof bottom and the transmission is connected in a plurality of compression rollers and external transmission tooth axle internal help the third track on the end, the plate delivery mechanism comprises a beam plate arranged outside a bracket, a first rotating roller and a second rotating roller movably arranged in the two beam plates, a delivery assembly connected to the outside of the first rotating roller and the second rotating roller in a transmission way, a plurality of auxiliary pressing rotating rollers arranged on the inner sides of the two beam plates, a driving rotating roller movably arranged in the middle of the two beam plates, a plurality of compression-resistant shaft rods arranged between the second rotating roller and the driving rotating roller and movably arranged in the two beam plates, a second crawler belt arranged on the driving rotating roller, the second rotating roller and the plurality of compression-resistant shaft rods, and a first crawler belt connected to the first rotating roller and the second rotating roller in a transmission way, wherein the delivery assembly comprises a conveying belt arranged on the outer sides of the plurality of auxiliary pressing rotating rollers and the plurality of compression-resistant shaft rods and a plurality of positioning frames arranged on the outer sides of the conveying belt at equal intervals, and the paper rolling mechanism comprises a supporting frame fixedly arranged on the top of the beam plates, the printing and drawing paper comprises two auxiliary guide rollers movably mounted at two ends of the inner sides of the two supporting frames, a plurality of linkage guide rollers movably mounted at the middle of the inner sides of the two supporting frames, a driving guide roller movably mounted in the supporting frames, a linkage belt connected to the driving guide roller and the outer ends of the plurality of linkage guide rollers in a transmission manner, and printing and drawing paper positioned at the bottoms of the driving guide roller, the linkage guide rollers and the plurality of linkage belts.
The present invention may be further configured in a preferred example to: the edge pressing piece is formed by combining a U-shaped rod body and a rubber sleeve roller, and the rubber sleeve roller is movably arranged outside the U-shaped rod body.
Through adopting above-mentioned technical scheme, with rubber sleeve roller movable mounting in the outside of U font body of rod, after the plastic board behind the printing is printed the seal of painting behind the rubber sleeve roller, the seal painting at its top both sides position can obtain the secondary impression of rubber sleeve roller to ensure that the printing pressure of plastic board top edge position is insufficient and take place to break or the problem emergence of printing disorder.
The present invention may be further configured in a preferred example to: the top surface of the U-shaped groove plate at the top of the beam position frame is provided with evenly distributed observation windows.
Through adopting above-mentioned technical scheme, offer evenly distributed's observation window at the top of restraint position frame top U-shaped frid, when carrying out spacing guide to plastic sheet, can make things convenient for operating personnel to observe in time that the plastic sheet surface seal after the printing was drawn again.
The present invention may be further configured in a preferred example to: the inner side of the plate at the top of the roller press frame is provided with an arc groove which is adaptively clamped at the bottom of the plastic plate, and the arc groove is of a quarter arc structure.
Through adopting above-mentioned technical scheme, set up quarter convex arc groove in the inboard of roll-in frame top plate, after plastic sheet placed at two roll-in frame tops, a plurality of linkage deflector rolls just can cooperate the drive deflector roll to carry out the transmission print operation to the top surface of plastic sheet to the printing paper of unidirectional delivery.
The present invention may be further configured in a preferred example to: the roller is installed to one end that the compression roller runs through to roof inner chamber, and inwards sunken and laminating in the recess of plastics panel side is seted up to the outside of gyro wheel.
Through adopting above-mentioned technical scheme, with the gyro wheel movable mounting at the inner chamber of roof at a plurality of compression roller tops, after external kinetic energy drive external transmission gear axle bottom gear, external transmission gear axle just can cooperate the multiple compression rollers of third track transmission to carry out high frequency rotation friction to the plastics panel side of process, the compression roller alright selective removal of seal of plastics panel side under the rotatory state this moment.
The present invention may be further configured in a preferred example to: and the end heads of the driving rotating roller and the driving guide roller, which are close to the second crawler belt, are respectively provided with a gear disc meshed with each other.
Through adopting above-mentioned technical scheme, after first track transmission first roller and second roller, except can driving the conveyer belt and carry out the rotation that lasts, by a plurality of resistance to compression axostylus axostyles of second track linkage and drive roller alright drive deflector roll and carry out the transmission at the same speed to can ensure that the seal on plastics panel surface is drawn and is born the seal stably.
The present invention may be further configured in a preferred example to: the locating rack comprises L-shaped base, stainless steel cross bar and T-shaped chuck, and the sleeve at the bottom of T-shaped chuck is installed on the end of stainless steel cross bar.
Through adopting above-mentioned technical scheme, evenly install the outside at the conveyer belt with L shape base, after two L shape bases fix stainless steel horizontal pole, install the T font chuck at stainless steel horizontal pole both ends alright provide the driving force of delivery for the plastics panel of evenly placing, can guarantee finally that plastics panel can maintain stably when the printing.
By adopting the technical scheme, the beneficial effects obtained by the invention are as follows:
1. according to the invention, the top plate, the separation frame, the binding frame and the rolling frame which can directionally guide the plastic plate are arranged, when the motor is started and drives the gear outside the first rotating roller to rotate, the first caterpillar band drives the second rotating roller to rotate, finally, the delivery assembly is driven to integrally carry out directional delivery on the plastic plate which is placed at equal intervals, at the moment, the delivered plastic plate is subjected to directional delivery through the bottoms of the plurality of linkage guide rollers, the printing paper transversely guided by the plurality of linkage guide rollers is rolled on the top of the plastic plate, at the moment, the printing picture adhered to the surface of the printing paper can be tightly printed on the top of the plastic plate, and finally, the plastic plate subjected to printing picture can be selectively rolled through the plurality of pressing rollers after passing through the transverse grooves on the inner side of the top plate, when the unnecessary printing picture on the side of the plastic plate is required to be removed, the external transmission gear shaft can be driven by external kinetic energy, the plurality of pressing rollers driven by the third caterpillar band can carry out high-speed transmission on the inner cavity of the top plate, after the plastic plate subjected to printing picture passes through the transverse grooves on the inner side of the top plate, and the unnecessary plastic plate can be further processed by the high-speed packing plate after the two unnecessary printing pictures are removed, and the unnecessary plastic plate can be further processed.
2. According to the invention, the transversely arranged edge pressing pieces are arranged at one ends of the two adjacent top plates far away from the binding frame, when the plastic plates passing through the transverse grooves on the inner sides of the two top plates and being printed are delivered into the separating frame, the rubber sleeve rollers on the U-shaped rod bodies of the assembled edge pressing pieces are compacted against the two edge parts of the top surface of the plastic plates, so that the printing pictures on the two edge parts of the plastic plates are secondarily compacted by the rubber sleeve rollers, the plastic plates delivered to the inner sides of the separating frame are ensured to be convenient for manual or mechanical arms to carry out transfer operation, and the integrity of the printing pictures on the plastic plates is ensured.
Drawings
FIG. 1 is a schematic illustration of the present invention in use;
FIG. 2 is a schematic bottom view of the present invention;
FIG. 3 is a dispersion schematic of the present invention;
FIG. 4 is a schematic view of a carrying mechanism according to the present invention;
FIG. 5 is a schematic view of a carrier of the present invention;
FIG. 6 is a schematic illustration of a side compaction assembly according to the present invention;
FIG. 7 is a schematic partial cross-sectional view of a top plate of the present invention;
FIG. 8 is a schematic view of a board delivery mechanism and a picture paper roll mechanism of the present invention;
FIG. 9 is a schematic view of the bottom view of FIG. 8 in accordance with the present invention;
fig. 10 is a schematic view of a conveyor belt of the present invention.
Reference numerals:
100. a carrying mechanism; 110. a side compaction assembly; 111. a base; 112. a top plate; 113. an external transmission gear shaft; 114. a press roller; 115. a bracket; 116. a third track; 120. edge pressing pieces; 130. disengaging the frame; 140. a motor; 150. a beam position frame; 160. a roller press frame; 170. a bracket;
200. a plate delivery mechanism; 210. a beam plate; 220. a first rotating roller; 230. a second roller; 240. a delivery assembly; 241. a conveyor belt; 242. a positioning frame; 250. auxiliary pressing rotating rollers; 260. driving a rotating roller; 270. a compression-resistant shaft lever; 280. a second track; 290. a first track;
300. a drawing paper rolling mechanism; 310. a supporting frame; 320. an auxiliary guide roller; 330. a linkage guide roller; 340. driving a guide roller; 350. a linkage belt; 360. printing drawing paper.
Detailed Description
The objects, technical solutions and advantages of the present invention will become more apparent by the following detailed description of the present invention with reference to the accompanying drawings. It should be noted that, without conflict, the embodiments of the present invention and features in the embodiments may be combined with each other.
It is to be understood that this description is merely exemplary in nature and is not intended to limit the scope of the present invention.
A cosmetic plastic sheet packaging machine provided in accordance with some embodiments of the present invention is described below with reference to the accompanying drawings.
Embodiment one:
referring to fig. 1 to 10, the present invention provides a plastic sheet packaging machine for cosmetics, which comprises a carrying mechanism 100, a sheet delivery mechanism 200 mounted on the carrying mechanism 100, and a drawing paper rolling mechanism 300 mounted on the sheet delivery mechanism 200.
The carrying mechanism 100 includes a side compacting assembly 110, a binder 120, a disengaging frame 130, a motor 140, a binding frame 150, a roller frame 160, and a bracket 170, and the side compacting assembly 110 further includes a base 111, a top plate 112, an external driving gear shaft 113, a pressing roller 114, a bracket 115, and a third crawler 116, the plate delivering mechanism 200 includes a beam plate 210, a first roller 220, a second roller 230, a delivering assembly 240, an auxiliary roller 250, a driving roller 260, a pressing shaft 270, a second crawler 280, and a first crawler 290, and the drawing roller mechanism 300 includes a supporting frame 310, an auxiliary guide roller 320, a linkage guide roller 330, a driving guide roller 340, a linkage belt 350, and a drawing sheet 360.
Specifically, the edge pressing member 120 is mounted on the side compacting assembly 110, the two disengaging frames 130 are mounted outside the two side compacting assemblies 110, the motor 140 is connected in a clamping plate outside the disengaging frames 130, the binding frame 150 is mounted outside the side compacting assemblies 110, the rolling frame 160 is mounted outside the binding frame 150 at a side far away from the side compacting assemblies 110, the top plate 112 is mounted on the top of the bracket 170, the base 111 is mounted at the bottom of the bracket 170, the external transmission gear shaft 113 is movably mounted at one end of the top plate 112, the plurality of compression rollers 114 are movably mounted inside the top plate 112, the bracket 115 is fixedly mounted at the bottom of the top plate 112, the third caterpillar 116 is in transmission connection with the plurality of compression rollers 114 and the auxiliary ends inside the external transmission gear shaft 113, the beam plate 210 is mounted outside the bracket 170, the first rotary roller 220 and the second rotary roller 230 are movably mounted in the two beam plates 210, the delivery assembly 240 is in transmission connection with the outside the first rotary roller 220 and the second rotary roller 230, the plurality of auxiliary pressing rollers 250 are positioned at the inner sides of the two beam plates 210, the driving roller 260 is movably mounted at the middle parts of the two beam plates 210, the plurality of pressing shaft rods 270 movably mounted in the two beam plates 210 are positioned between the second roller 230 and the driving roller 260, the second crawler 280 is driven on the driving roller 260, the second roller 230 and the plurality of pressing shaft rods 270, the first crawler 290 is driven on the first roller 220 and the second roller 230, the conveying belt 241 is positioned at the outer parts of the plurality of auxiliary pressing rollers 250 and the plurality of pressing shaft rods 270, the plurality of positioning frames 242 are mounted at the outer parts of the conveying belt 241 at equal intervals, the supporting frame 310 is fixedly mounted at the top of the beam plates 210, the two auxiliary guide rollers 320 are movably mounted at the two ends of the inner sides of the two supporting frames 310, the plurality of linkage guide rollers 330 are movably mounted at the middle parts of the inner sides of the two supporting frames 310, the driving guide rollers 340 are movably mounted in the supporting frames 310, the linkage belt 350 is drivingly connected to the outer ends of the driving guide roller 340 and the plurality of linkage guide rollers 330, and the printing paper 360 is positioned at the bottoms of the driving guide roller 340, the linkage guide roller 330 and the plurality of linkage belts 350.
The motor 140 is started and drives the gear outside the first rotating roller 220 to rotate, the first crawler 290 drives the second rotating roller 230 to rotate, finally, the delivery assembly 240 is driven to integrally and directionally deliver plastic plates placed at equal intervals, at this time, after passing through the bottoms of the plurality of linkage guide rollers 330, the delivered plastic plates are subjected to high-frequency removal by changing the external transmission gear 113 and the plurality of compression rollers 114, the printing paper 360 transversely guided by the plurality of linkage guide rollers 330 is rolled on the top of the plastic plates, at this time, the printing adhered to the surface of the printing paper 360 can be tightly printed on the top of the plastic plates, finally, the plastic plates subjected to printing can be selectively rolled by the plurality of compression rollers 114 after passing through the transverse grooves on the inner sides of the top plates 112, after the excessive printing on the sides of the plastic plates are removed, the external transmission gear 113 can be driven by using external kinetic energy, the plastic plates 114 and the delivery assembly 240 are rotated by changing the differential speed, so that the side printing of the plastic plates passing through the plurality of the compression rollers 114 can be removed at high frequency, when passing through the transverse grooves on the inner sides of the two top plates 112 and the plastic plates subjected to be tightly printed on the top of the plastic plates, and the two sides of the plastic plates are separated from the inner sides of the assembly frame 130, and the two sides of the plastic plates can be conveniently pressed by the rubber sleeve-shaped to be pressed by the rubber sleeve, and the two sides of the plastic plates can be conveniently pressed on the two sides of the side of the plastic plates, or the plastic plate can be guaranteed, and the two conveniently pressed by the rubber sleeve plate bodies and the rubber plate can be delivered.
Embodiment two:
referring to fig. 4-9, on the basis of the first embodiment, the edge pressing member 120 is formed by combining a U-shaped rod body and a rubber sleeve roller, the rubber sleeve roller is movably mounted outside the U-shaped rod body, the top surface of a U-shaped groove plate at the top of the beam position frame 150 is provided with uniformly distributed observation windows, the inner side of a plate at the top of the roller frame 160 is provided with arc grooves which are adapted to be clamped at the bottom of the plastic plate, and the arc grooves are in a quarter arc structure.
The rubber sleeve roller is movably arranged outside the U-shaped rod body, after the plastic plate subjected to printing is passed through the rubber sleeve roller, the printing on the two edges of the top of the plastic plate can be subjected to secondary stamping of the rubber sleeve roller, so that the problem that the printing pressure on the edge of the top of the plastic plate is insufficient and breakage or printing disorder occurs is solved, as the plastic plate is placed at the top of the two roller frames 160, the plurality of linkage guide rollers 330 are matched with the driving guide rollers 340 to drive the printing paper 360 which is unidirectionally delivered to carry out transmission printing operation towards the top surface of the plastic plate, and the evenly distributed observation windows are arranged at the top of the U-shaped groove plate at the top of the beam position frame 150, so that an operator can conveniently observe the surface printing of the plastic plate after printing, once the printing paper 360 is stamped with the plastic plate, the operator can timely adjust the delivery state of the printing paper 360 and the flatness during delivery, and the plurality of linkage guide rollers 330 and the driving guide rollers 340 are convenient for stably stamping the top surface printing paper 360 on the plastic plate.
Embodiment III:
referring to fig. 6 and 7, in the first embodiment, a roller is installed at one end of the pressing roller 114 penetrating through the inner cavity of the top plate 112, and a groove is formed on the outer portion of the roller, which is concave inwards and is attached to the side edge of the plastic plate.
By movably mounting the rollers at the tops of the plurality of press rollers 114 in the inner cavity of the top plate 112, after the external kinetic energy drives the bottom end gear of the external transmission gear shaft 113, the external transmission gear shaft 113 can cooperate with the third crawler belt 116 to drive the plurality of press rollers 114 to perform high-frequency rotation friction against the side edges of the passing plastic plate, and at the moment, the press rollers 114 in the rotating state can selectively remove the printing on the side edges of the plastic plate, so that different printing can be conveniently stamped on the edge wrapping or the edge non-wrapping of the side edges of the plastic plate.
Embodiment four:
referring to fig. 8-10, on the basis of the first embodiment, the end of the driving roller 260 and the driving guide roller 340, which is close to the second crawler 280, are provided with gear plates meshed with each other, the positioning frame 242 is composed of an L-shaped base, a stainless steel cross bar and a T-shaped chuck, and the sleeve at the bottom of the T-shaped chuck is installed on the end of the stainless steel cross bar.
When the first crawler belt 290 drives the first rotating roller 220 and the second rotating roller 230, besides driving the conveying belt 241 to continuously rotate, the plurality of compression-resistant shaft rods 270 and the driving rotating roller 260 which are linked by the second crawler belt 280 can drive the driving guide roller 340 to drive at the same speed, when the two L-shaped bases fix the stainless steel cross rod, the T-shaped chucks arranged at the two ends of the stainless steel cross rod can provide the driving force for delivering the uniformly placed plastic plate, so that stable printing of the printed pictures on the surface of the plastic plate can be ensured, and further, the plastic plate can be prevented from shaking during printing and in the delivering process.
The working principle and the using flow of the invention are as follows: the plurality of positioning frames 242 are uniformly installed outside the conveying belt 241 in advance, then the first rotating roller 220 and the second rotating roller 230 are movably installed at both ends of the two beam plates 210, the plurality of auxiliary pressing rotating rollers 250 and the plurality of pressing-resistant shaft rods 270 are movably installed at the inner sides of the two beam plates 210, at this time, the combined conveying belt 241 is in transmission connection with the outer parts of the first rotating roller 220 and the second rotating roller 230, the driving rotating roller 260, the second rotating roller 230 and the plurality of pressing-resistant shaft rods 270 which are horizontally distributed are in transmission connection with the second crawler belt 280, at this time, the two supporting frames 310 are fixedly installed at the top parts of the two beam plates 210 respectively, the driving guide rollers 340 which are movably installed in the two supporting frames 310 are in transmission with the outer gear ends of the driving rotating roller 260 are engaged, at this time, the rotation direction of the conveying belt 241 will be synchronous with the delivery direction of the printing paper 360, and the plastic board with the surface of the printing paper 360 facing the top surface of the delivery assembly 240 can be laminated by the plurality of horizontally arranged and rotating linkage guide rollers 330 until the printing at the bottom of the printing paper 360 is tightly attached to the top of the plastic board, and finally the printing paper surface of the printing paper 360 is effectively separated from the plastic board, and the printed plastic board is delivered along the roller rack 160, the beam rack 150 and the transverse grooves at the inner side of the edge pressing piece 120, at this time, the printing at both sides of the plastic board can be compacted by the plurality of pressing rollers 114 inside the top plate 112, and finally the printing at both sides of the plastic board is tightly attached to the plastic board;
when the external transmission gear shaft 113 is not externally transmitted, the plurality of press rollers 114 are matched with the plastic plate in the delivery state to compact the printed picture, and finally the edge pressing pieces 120 fixed at the outer ends of the two top plates 112 can push the plastic plate of the printed picture to the inner side of the separation frame 130, so that the subsequent manual or mechanical arm can conveniently transport the transferred plastic plate, when the bottom gear of the external transmission gear shaft 113 is transmitted by an external power mechanism, the plurality of press rollers 114 transmitted by the third caterpillar 116 can carry out high-speed transmission in the inner cavity of the top plate 112, and after the plastic plate of the printed picture passes through the transverse grooves on the inner side of the top plate 112, once the two sides of the plastic plate do not need redundant printed pictures, the plurality of press rollers 114 rotating at high speed can remove the redundant printed pictures on the two sides of the plastic plate at high frequency, so that the high-efficiency printed picture on the normalized plastic plate can be packaged.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the spirit and scope of the invention as defined by the appended claims and their equivalents.