A reconstructed clamping and positioning mold for bonding wine box face paper

By using a reconstructed clamping and positioning mold for bonding wine box face paper, and with the cooperation of an alignment plate and a pushing device, rapid positioning and calibration of the gray paper is achieved, solving the problem of face paper bonding deviation caused by gray paper offset and improving wine box production efficiency.

CN117283931BActive Publication Date: 2026-03-10SHANXI RUICHENG YANGSEN PACKAGING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-17
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

During the production of wine boxes, the offset of the grey paper on the roller causes the adhesive deviation of the face paper, which affects the production efficiency. It is necessary to quickly locate the position of the grey paper to improve the production efficiency.

Method used

A reconstructed clamping and positioning mold for bonding wine box face paper is adopted, including an alignment plate, a placement plate, a pushing device and a driving device. By adjusting the cooperation of the stop bar and the pushing block, the gray paper can be quickly positioned and calibrated.

Benefits of technology

By quickly locating the gray paper, the efficiency of wine box production is improved, the need for multiple adjustments is reduced, and the accuracy of the face paper bonding is ensured.

✦ Generated by Eureka AI based on patent content.

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    Figure CN117283931B_ABST
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Abstract

This invention provides a reconstructed clamping and positioning mold for bonding wine box face paper, including an alignment plate, a placement plate, a pushing device, and a driving device. A control rod is mounted on the alignment plate, and a placement step is formed on the placement plate, corresponding to the alignment plate. The placement plate is slidably mounted on the control rod. The pushing device includes a pushing block, a pushing frame hinged to the control rod, and a stop bar slidably inserted in the pushing frame. The stop bar is adjustablely fixed in the placement plate. The end of the pushing frame away from the control rod abuts against the pushing block. The driving device drives the placement plate to slide relative to the alignment plate. The placement plate, via the stop bar, controls the rotation of the pushing frame relative to the control rod. When the pushing frame rotates, it pushes the pushing block to slide relative to the placement step. By changing the position of the stop bar on the placement plate and synchronously pushing the placement plate and the pushing block, the time for adjusting the gray board position is saved, improving the production efficiency of wine boxes.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of mold tooling, in particular to a reconfiguration clamping positioning mold for wine box surface paper bonding. BACKGROUND

[0002] In the production process of wine boxes, due to the different packaging styles and sizes of wine boxes, it is necessary to adjust the size of the positive brush mold according to the product demand in the production process of wine boxes. For example, the utility model patent for wine box forming mechanism disclosed in patent application No. CN20212161953.4 discloses a technical scheme for transporting barrel boxes by using roller shafts and transmission belts, and bonding surface paper and gray paper by means of positioning and bonding devices during transportation. The bonding process of gray paper and surface paper is formed by roller shafts. In the process of pressing, it is easy to cause the gray paper to deviate on the roller shaft, and the bonded surface paper deviates. Therefore, it is necessary to debug multiple times before batch production. Therefore, how to quickly position the position of the gray paper before entering the feeding station has become a technical problem to be solved in this technical field. SUMMARY

[0003] The technical problem to be solved by the present application is how to quickly position the wine box before entering the surface paper bonding station to improve the production efficiency of the wine box.

[0004] The technical scheme adopted by the present application to solve the technical problem is: a reconfiguration clamping positioning mold for wine box surface paper bonding, comprising an alignment plate, a placement card plate installed on the alignment plate, a pushing device arranged on the placement card plate, and a driving device for controlling the movement of the placement card plate relative to the pushing device. A control rod is installed on the alignment plate. A placement step is opened on the placement card plate. The placement step is arranged corresponding to the alignment plate. The placement card plate is slidably clamped on the control rod. The pushing device includes a pushing block slidably clamped on the placement card plate, a pushing frame hinged on the control rod, and a stop bar slidably inserted in the pushing frame. The stop bar is adjustably fixed in the placement card plate. The end of the pushing frame away from the control rod abuts on the pushing block. The driving device drives the placement card plate to slide relative to the alignment plate. The placement card plate can control the rotation of the pushing frame relative to the control rod through the stop bar. The pushing frame pushes the pushing block to slide relative to the placement step when rotating.

[0005] Further, a control groove is opened on the placement card plate, a sliding groove is arranged on the groove wall of the control groove, and the control plate is clamped in the control groove. The pushing block and the stop plate are slidably clamped in the sliding groove.

[0006] Further, the placing card is provided with a row hole, the row hole is arranged on the slot edge of the control slot, the pushing device further comprises a positioning screw which can be inserted into the row hole, and the end of the positioning screw can be inserted into the end of the stop lever through the row hole.

[0007] Further, the pushing block is provided with a flange, the flange of the pushing block is slidably clamped in the sliding slot, the end of the control lever extends out of the control slot, and the pushing frame is connected to the end of the control lever extending out of the control slot.

[0008] Further, the pushing frame is provided with a hinged slot, the stop lever is slidably inserted into the hinged slot, and the end of the stop lever is arranged corresponding to the row hole.

[0009] Further, the driving device comprises a fixed plate which is arranged away from the alignment plate, a telescopic cylinder which is arranged between the fixed plate and the placing card, a pushing rod which is fixedly installed on the movable shaft of the telescopic cylinder, and hinged rods which are hinged at the two ends of the pushing rod, and the hinged rods at the two ends of the pushing rod are respectively hinged to the fixed plate and the placing card.

[0010] Further, the telescopic cylinder is arranged parallel to the fixed plate, the pushing rod is vertically fixed on the movable shaft of the telescopic cylinder, and the positions of the telescopic cylinder and the fixed plate are fixed relative to the alignment plate.

[0011] Further, the pushing rod has two, the telescopic cylinder is a double-shaft cylinder with opposite telescopic directions, and the two pushing rods are symmetrically arranged about the telescopic shaft of the telescopic cylinder.

[0012] Further, the alignment plate is fixedly installed with rail rods, the rail rods are arranged on the two sides of the control lever, and the placing card is slidably clamped in the rail rods.

[0013] The beneficial effects of the present application are that according to the style and size of the wine box, the position of the stop lever on the placing card is adjusted and fixed, then the driving device is used to push the placing card to slide relative to the alignment plate, in the process of sliding of the placing card, the pushing frame is driven to rotate by the stop lever, in the process of rotating of the pushing frame, the pushing block is pushed to move on the placing card, the pushing block pushes the ash plate to move on the placing steps, until the position of the ash plate is adjusted to the specified position, the position of the ash plate can be conveniently adjusted on the placing card, the position of the ash plate is adjusted twice by the placing card and the pushing block, the ash plate is quickly positioned, and the production efficiency of the wine box is improved. BRIEF DESCRIPTION OF DRAWINGS

[0014] The present application will be further described in conjunction with the drawings and embodiments.

[0015] Figure 1 is a perspective view of the restructured clamping and positioning mold for wine box surface paper bonding of the present application;

[0016] Figure 2 is Figure 1 a perspective view of the restructured clamping and positioning mold for wine box surface paper bonding of the present application without driving device;

[0017] Figure 3 is Figure 2 a partial enlarged view of A in FIG. 1;

[0018] Figure 4 is Figure 2 a perspective view of the alignment plate, the pushing rod, the hinged rod and the pushing device in FIG. 1;

[0019] In the figure: the restructured clamping and positioning mold for wine box surface paper bonding 100, the alignment plate 10, the placement card plate 20, the pushing device 30, the driving device 40, the rail rod 110, the control rod 120, the placement step 210, the control groove 220, the sliding groove 230, the row of holes 240, the pushing block 310, the pushing frame 320, the stop rod 330, the positioning screw 340, the hinged groove 321, the fixed plate 410, the telescopic cylinder 420, the pushing rod 430, the hinged rod 440. DETAILED DESCRIPTION

[0020] The embodiments of the present application are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application. On the contrary, the embodiments of the present application include all changes, modifications and equivalents falling within the spirit and scope of the appended claims.

[0021] As Figures 1 to 4 shown, the present application provides a restructured clamping and positioning mold 100 for wine box surface paper bonding, comprising an alignment plate 10, a placement card plate 20 mounted on the alignment plate 10, a pushing device 30 arranged on the placement card plate 20, and a driving device 40 for controlling the movement of the placement card plate 20 relative to the pushing device 30.

[0022] As Figure 1 and Figure 4As shown, the alignment plate 10 is provided with track rods 110 and a control rod 120, the track rods 110 are preferably two symmetrical ones, the control rod 120 is arranged at the middle position of the alignment plate 10, the placing card 20 is slidably clamped on the track rods 110, the placing card 20 is provided with a placing step 210, the control rod 120 penetrates the upper and lower sides of the placing card 20 and the step surface of the placing step 210, the ash board can be transported to the step surface of the placing step 210, the pushing device 30 is arranged between the placing card 20 and the control rod 120, the driving device 40 is connected to the placing card 20, the driving device 40 can drive the placing card 20 to move on the track rods 110, when the placing card 20 moves along the track rods 110 relative to the alignment plate 10, the pushing device 30 can push the ash board to align and abut against the alignment plate 10, so that the position of the ash board can be adjusted in place.

[0023] Preferably, as shown in Figure 2 and Figure 3 the placing card 20 is provided with a control groove 220, the control rod 120 penetrates the placing card 20 through the control groove 220, the groove wall of the control groove 220 is provided with a sliding groove 230, and the placing card 20 is provided with a row hole 240 on the groove edge of the control groove 220.

[0024] Preferably, as shown in Figures 2 to 4 the pushing device 30 includes a pushing block 310 slidably clamped in the control groove 220 and the sliding groove 230, a pushing frame 320 hinged to the control rod 120, a stop rod 330 slidably inserted in the pushing frame 320, and a positioning screw 340 detachably mounted and inserted in the row hole 240 and the end of the stop rod 330.

[0025] The pushing block 310 is provided with a flange, the flange of the pushing block 310 is slidably clamped in the sliding groove 230, the main rod part of the pushing block 310 is slidably clamped in the control groove 220, one end of the pushing frame 320 is hinged to the control rod 120, the pushing frame 320 is connected to the end of the control rod 120 extending out of the control groove 220, the other end of the pushing frame 320 abuts against the pushing block 310, the pushing frame 320 is provided with a hinge groove 321, the stop rod 330 is slidably inserted in the hinge groove 321, the end of the stop rod 330 is inserted into the sliding groove 230, the end of the stop rod 330 corresponds to the row hole 240, and the end of the positioning screw 340 is inserted into the end of the stop rod 330 through the row hole 240.

[0026] When positioning of the gray board is required, the gray board is transported to the placement step 210 via rollers. One of the holes 240 is selected according to the size of the gray board. The stop bar 330 is inserted into the hinge groove 321 of the pusher frame 320, and the end of the stop bar 330 is inserted into the sliding groove 230. The stop bar 330 is pushed along the sliding groove 230 until it moves below the corresponding hole 240. The end of the positioning screw 340 is then inserted into the end of the stop bar 330. Through the threaded fastening action of the positioning screw 340, the stop bar 330 is positioned in the control groove 22. The position of the plate 20 is fixed. When the plate 20 moves along the track bar 110 to the alignment plate 10, the pusher 320 on the control bar 120 rotates under the push of the stop bar 330 until the end of the pusher 320 pushes the pusher block 310 to slide along the control groove 220. Under the push of the pusher block 310 and the step surface of the plate 210, the gray plate can be aligned and pressed against the alignment plate 10, so that the position of the gray plate on the plate 210 can be calibrated. After the gray plate is calibrated, the gray plate can be removed from the plate 20 by the roller and enter the next station.

[0027] Preferably, such as Figure 3 As shown, the sliding groove 230 and the outlet hole 240 are symmetrically distributed on the groove side of the control groove 220. The push block 310 has a T-shaped structure. The edge of the push block 310 and both ends of the stop bar 330 can be slidably inserted into the sliding groove 230. There are two positioning screws 340, which are respectively located at both ends of the stop bar 330.

[0028] Preferred, such as Figure 1 As shown, the drive device 40 includes a fixed plate 410 disposed away from the alignment plate 10, a telescopic cylinder 420 disposed between the fixed plate 410 and the placement plate 20, a push rod 430 fixedly mounted on the movable shaft of the telescopic cylinder 420, and hinge rods 440 hinged to both ends of the push rod 430. The hinge rods 440 at both ends of the push rod 430 are respectively hinged to the fixed plate 410 and the placement plate 20. The telescopic cylinder 420 is disposed parallel to the fixed plate 410, and the push rod 430 is vertically fixed on the movable shaft of the telescopic cylinder 420. The positions of the telescopic cylinder 420 and the fixed plate 410 are both fixed relative to the alignment plate 10. When the telescopic cylinder 420 extends or retracts, the push rod 430 can drive the hinge rods 440 to move. Under the push of the hinge rods 440, the placement plate 20 can slide along the track rod 110.

[0029] Preferably, there are two push rods 430, and the telescopic cylinder 420 is a dual-axis cylinder with opposite telescopic directions. The push rods 430 are respectively located at both ends of the telescopic cylinder 420. The two push rods 430 are symmetrically arranged about the telescopic axis of the telescopic cylinder 420. The hinge rods 440 are also symmetrically arranged at the hinge positions on the fixed plate 410 and the placement plate 20.

[0030] The preferred embodiment described above is used as follows: When the position of the gray board needs to be positioned, select one of the holes 240 according to the size of the wine box, and insert the positioning screw 340 into the hole. Move the stop bar 330 in the pusher 320 along the sliding groove 230 to the position abutting the positioning screw 340, and use the positioning screw 340 to fix the position of the stop bar 330 in the sliding groove 230. After the gray board is transported to the placement step 210, activate the telescopic cylinder 420. When the telescopic cylinder 420 tightens, it drives the push rod 430 to move, pushing... When rod 430 moves, it pushes the placement plate 20 towards the alignment plate 10 via hinge rod 440. The alignment plate 10 drives the pusher frame 320 to rotate relative to the control rod 120 via stop rod 330. Under the push of the pusher frame 320, the pusher block 310 can move along the sliding groove 230. Under the push of the pusher block 310, the pusher block 310 pushes the gray board towards the alignment plate 10 for close alignment. Then, the telescopic cylinder 420 is extended, which can drive the placement plate 20 towards the fixed plate 410, thereby resetting the gray board to the position of the roller conveyor. By adjusting the position of stop rod 330 in the sliding groove 230, the stroke of the pusher block 310 can be changed according to the size of the gray board, thereby achieving rapid positioning of the gray board on the roller.

[0031] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A reconfigurable clamping positioning mold for wine box face paper bonding, characterized by: The utility model provides a kind of placing card plate and push device, including alignment plate, the placing card plate installed on the alignment plate, the push device being arranged on the placing card plate and the drive device for controlling the placing card plate relative to the push device movement, control lever is installed on the alignment plate, placing step is opened on the placing card plate, the placing step is arranged corresponding to the alignment plate, the placing card plate is slidably clamped on track bar, control slot is opened on the placing card plate, the control lever is clamped in the control slot, the push device includes the push block that can be slidably clamped on the placing card plate, the push frame being hinged on the control lever and the stop bar being slidably inserted in the push frame, the stop bar is adjustably fixed in the placing card plate, the end of the push frame away from the control lever is resisted to the push block, the groove wall of the control slot is provided with sliding groove, the stop bar is slidably clamped in the sliding groove, the end of the control lever is arranged outside the control slot, the push frame is connected to the end of the control lever outside the control slot, the push frame is opened with hinged slot, the stop bar is slidably inserted in the hinged slot, the end of the stop bar is arranged corresponding to the row hole, the row hole is opened on the placing card plate, the row hole is opened on the groove side of the control slot, the push device further includes locating screw that can be inserted in the row hole, the end of the locating screw can be inserted into the end of the stop bar through the row hole, the drive device drives the placing card plate to slide relative to the alignment plate, the placing card plate can control the push frame to rotate relative to the control lever by the stop bar, the push frame pushes the push block to slide relative to the placing step when rotating, the push block is provided with flange, the flange of the push block is slidably clamped in the sliding groove, the drive device includes fixed plate being arranged away from the alignment plate, telescopic cylinder being arranged between the fixed plate and the placing card plate, push rod being fixedly installed on the movable shaft of the telescopic cylinder and hinged rod being hinged on both ends of the push rod, the hinged rod of both ends of the push rod is respectively hinged to the fixed plate and the placing card plate.

2. A reconfigurable clamping positioning mold for wine box face paper bonding according to claim 1, characterized in that: The telescopic cylinder is arranged parallel to the fixed plate, and the push rod is vertically fixed on the movable shaft of the telescopic cylinder.

3. A reconfigurable clamping positioning mold for wine box face paper bonding according to claim 1, characterized in that: The push rod has two, and the telescopic cylinder is a double-shaft cylinder with opposite telescopic directions.

4. The reconfigurable clamping positioning mold for wine box face paper bonding according to claim 1, characterized in that: The track bar is fixedly installed on the alignment plate, and the track bar is arranged on both sides of the control lever. The placing card plate is slidably clamped on the track bar.

Citation Information

Patent Citations

  • Paper box production system

    CN112172244A