Fitting equipment for split type carton parchment paper

By designing a device that includes a feeding assembly, a feeding and bonding assembly, and a feeding correction assembly, precise positioning and bonding of split-type strip boxes and tracing paper were achieved, solving the problem of strip box position offset in traditional bonding methods and improving production efficiency and accuracy.

CN224075124UActive Publication Date: 2026-04-03CHANGSHA JIASHA IND
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The traditional method of bonding split-type strip boxes with tracing paper lacks an effective correction mechanism, which leads to strip box misalignment, affecting bonding accuracy and increasing production costs and time.

Method used

A device comprising a feeding assembly, a feeding and bonding assembly, and a feeding correction assembly was designed. The device achieves the correction and precise positioning of the tracing paper through a suction cup frame and a cylinder system, and completes the bonding operation in conjunction with the feeding and bonding assembly to prevent the strip box from shifting during the conveying process.

Benefits of technology

It effectively prevents the carton from shifting during transportation, improves the bonding accuracy and consistency between the tracing paper and the carton, and reduces the production failure rate and cost.

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Abstract

The utility model relates to the technical field of cigarette case production, in particular to split type carton parchment paper laminating equipment which comprises an operation table, and a feeding assembly, a feeding laminating assembly and a feeding correcting assembly are sequentially installed on the table top of the operation table from left to right. The feeding correction assembly comprises an upper conveying table, a lower conveying table, a pre-placing correction part and a second linear module, wherein the upper conveying table and the lower conveying table are arranged on the operation table, and the pre-placing correction part is located between the upper conveying table and the lower conveying table. According to the laminating equipment for the split-type carton parchment paper, through cooperation of the feeding assembly and the feeding laminating assembly, the parchment paper can be corrected, rubberizing operation on the parchment paper is completed through external equipment, then the parchment paper is transferred to the position above the feeding correcting assembly, and the upper conveying table and the lower conveying table convey the carton to a designated position; and the strip box is transferred into the pre-placing correction part through the suction cup frame to be corrected, so that the influence of deviation in the conveying process of the strip box on the subsequent laminating process can be effectively prevented, and then the strip box is matched with the feeding laminating assembly to complete the laminating work.
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Description

Technical Field

[0001] This utility model relates to the field of cigarette box production technology, specifically to a laminating device for sulfuric acid paper in a split-type carton. Background Technology

[0002] In the modern packaging industry, split-opening cartons are widely used in the packaging of various commodities due to their convenience and protection, especially in industries such as tobacco, pharmaceuticals, and high-end consumer goods, where the quality requirements for packaging are extremely high. Not only must the appearance be exquisite, but the safety of the contents must also be ensured. Traditional bonding methods have obvious limitations in dealing with the bonding between split-opening cartons and tracing paper, mainly due to the lack of an effective correction mechanism.

[0003] Traditional bonding methods typically rely on conveyor belts to transport the strips to a designated location for bonding the tracing paper. However, since the strips may shift during placement or movement, the relative position between the tracing paper and the strip may change. If the position of the strip deviates, even if the tracing paper has been properly glued, it may not be able to bond accurately with the strip, resulting in bonding failure or requiring manual intervention to correct the error, which increases production costs and time. Utility Model Content

[0004] To achieve the above objectives, this utility model provides the following technical solution: a laminating device for split-type strip box sulfuric acid paper, including an operating table, on which a feeding component, a feeding laminating component, and a feeding correction component are installed sequentially from left to right;

[0005] The feeding correction assembly includes an upper and lower conveyor platform set on the operating table, a pre-positioning correction part installed between the upper and lower conveyor platforms, and a linear module two installed. The moving end of the linear module two is fixed with a moving frame, and a long top cylinder and a short top cylinder are installed on the moving frame. The ejection ends of the long top cylinder and the short top cylinder are both equipped with suction cup frames.

[0006] Furthermore, the pre-layout correction unit includes a pre-layout platform. Side blocks and side plates are fixed to both sides of the platform surface. A push cylinder and a push cylinder are also installed at the bottom of the platform surface. The piston rod of the push cylinder is fixed with a push plate opposite to the side plate. The piston rod of the push cylinder is fixed with a push plate. Two opposing push cylinders are installed on the surface of the push plate. The piston rod of the opposing push cylinder is fixed with a opposing push plate.

[0007] Furthermore, a lifting rod is also installed on the operating platform between the upper and lower conveyor platforms;

[0008] The lifting rod section includes a lifting rod plate, on which a pushing cylinder is mounted. The top end of the pushing cylinder is fixed with a rod extending between the upper and lower conveyor platforms.

[0009] Furthermore, the feeding assembly includes a feeding section and a storage section;

[0010] The loading section includes a side frame fixed to the operating table. A side push cylinder is installed on the side of the side frame. The piston rod of the side push cylinder is fixed with a side push block that slides with the side frame. A downward push cylinder is installed on the side push block. A suction cup plate is fixed to the top end of the downward push cylinder.

[0011] Furthermore, the storage section includes a frame fixed to the operating table. A screw jack is installed at the bottom of the frame and two guide rods are inserted through it. An upward plate located in the frame and above the screw of the screw jack is fixed between the tops of the two guide rods, and a connecting plate that can be inserted through the screw of the screw jack is fixed between the bottoms of the two guide rods.

[0012] Furthermore, a photoelectric sensor is installed at the opening of the frame, and two slotted photoelectric sensors are also installed on the side. A trigger plate that can pass through the two slotted photoelectric sensors is installed on one side of the upper moving plate.

[0013] Furthermore, the feeding and bonding assembly includes a frame and a stand fixed on the operating table. Two sets of suction tables are installed on the frame, and an upper lifting cylinder is installed opposite to one of the suction tables. A linear module is installed on the stand. A moving plate is fixed to the moving end of the linear module. Two sets of side plates are installed on the moving plate. An ejection cylinder is installed on the side plate. The piston rod of the ejection cylinder is fixed to an adsorption frame that slides with the side plate. A bonding part is installed on one of the adsorption frames.

[0014] Furthermore, the bonding part includes a lower top cylinder mounted on one of the adsorption frames, and a side push cylinder is installed at the top end of the lower top cylinder.

[0015] Furthermore, the top of the platform is fixed with a baffle located on one side of one of the suction tables, and a calibration cylinder is installed at both the top and bottom. The piston rods of the two sets of calibration cylinders are respectively fixed with calibration plates opposite to the baffle and opposite to the upper cylinder.

[0016] Compared with the prior art, the technical solution of this application has the following beneficial effects:

[0017] This double-opening tracing paper laminating equipment, through the cooperation of the feeding component and the feeding laminating component, can align the tracing paper and complete the adhesive application operation of the tracing paper through external equipment. Then, it is moved to the top of the feeding alignment component, and the upper and lower conveyor tables transport the tracing paper to the designated position. It is then moved to the pre-positioning alignment section for alignment by the suction cup frame. This can effectively prevent the tracing paper from shifting during the transport process and affecting the subsequent laminating process. Finally, it works with the feeding laminating component to complete the laminating work. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a three-dimensional schematic diagram of the feeding correction component in this utility model;

[0020] Figure 3 This is a three-dimensional schematic diagram of the pre-calibration section in this utility model;

[0021] Figure 4 This utility model Figure 3 A diagram showing the view from below;

[0022] Figure 5 This is a three-dimensional schematic diagram of the lifting rod part in this utility model;

[0023] Figure 6 This is a three-dimensional schematic diagram of the feeding component in this utility model;

[0024] Figure 7 This is a three-dimensional schematic diagram of the feeding and bonding component in this utility model;

[0025] Figure 8 This is a schematic diagram of the bonding of the carton and the sulfuric acid paper in this utility model.

[0026] In the diagram: 1. Control panel; 2. Feeding assembly; 21. Enclosure frame; 22. Screw jack; 23. Guide rod; 24. Connecting plate; 25. Photoelectric sensor; 26. Slotted photoelectric sensor; 27. Trigger plate; 28. Side frame; 29. ​​Side push cylinder; 210. Side push block; 211. Downward push cylinder; 212. Suction cup plate; 3. Feeding and bonding assembly; 31. Platform; 32. Suction table; 33. Top-mounted cylinder; 34. Calibration cylinder; 35. Calibration plate; 36. Baffle; 37. Stand; 38. Linear module one; 39. Moving plate; 310. Side plate; 311. Ejection cylinder 312. Adsorption rack; 313. Lower top cylinder; 314. Side push cylinder; 4. Feeding correction assembly; 41. Upper and lower conveyor tables; 42. Linear module two; 43. Moving frame; 44. Long top cylinder; 45. Short top cylinder; 46. Suction cup frame; 47. Pre-placement correction section; 471. Pre-placement table; 472. Side stop; 473. Push cylinder; 474. Push plate; 475. Push cylinder; 476. Push plate; 477. Counter-push cylinder; 478. Counter-push plate; 479. Side block; 48. Lifting rod section; 481. Lifting rod plate; 482. Push-lifting cylinder; 483. Rod body. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] Please see Figure 1-8 The laminating device for split-type strip box sulfuric acid paper in this embodiment includes an operating table 1, on which a feeding component 2, a feeding laminating component 3 and a feeding correction component 4 are installed from left to right.

[0029] The feeding assembly 2 includes a feeding section and a storage section installed on the operating table 1;

[0030] The feeding and bonding assembly 3 includes a feeding and bonding section and a pre-applying adhesive table installed on operation 1;

[0031] The feeding correction assembly 4 includes an upper and lower conveyor platform 41, a material transfer part, a prevention and correction part 47, and a lifting rod part 48 installed on the operating table 1. The upper and lower conveyor platforms 41 are an upper conveyor platform and a lower conveyor platform. The height of the upper conveyor platform is lower than that of the lower conveyor platform, and a tail plate is provided at the tail end of the upper conveyor platform.

[0032] In the above structure, stacked tracing paper is placed in the storage section and then transferred to the pre-placement adhesive application table via the feeding section. The position is corrected on the pre-placement adhesive application table, and then double-sided tape is applied to the tracing paper with the assistance of the external adhesive application device. Then, the feeding and bonding section moves the tracing paper on the pre-placement adhesive application table, and the double-sided tape is peeled off with the assistance of the external adhesive peeling device. At the same time, there are two sets of upper and lower conveyor tables. The strip box is moved to the end of the first set of conveyor tables, where it is blocked and limited by the tail plate of the first set of conveyor tables. Then, it is moved to the pre-placement correction section by the material transfer section for correction. Finally, the tracing paper is applied to the strip box with the assistance of the feeding and bonding section, thereby ensuring that the tracing paper and the strip box are aligned in the same position, thus preventing bonding failure and reducing production efficiency.

[0033] like Figure 6The storage section includes a frame 21 fixed to the operating table 1. The inner side of the frame 21 forms a rectangular storage area. A screw jack 22 is installed at the bottom of the frame 21, with the screw of the screw jack 22 passing through the bottom of the frame 21. Two guide rods 23 are also inserted through the bottom of the frame 21. An upward-moving plate located within the frame 21 and above the screw end is fixed between the top ends of the two guide rods 23. A connecting plate 24, which can pass through the screw end, is fixed between the bottom ends of the two guide rods 23. Stacked tracing paper is prevented from entering the storage area within the frame. Supported by the upward-moving plate, the upward-moving plate can be moved upward by the operation of the screw jack. The guide rods guide the upward-moving plate, and the connecting plate limits the lifting motion.

[0034] Further explanation: A groove is provided at the top of the front of the frame plate 21, and a photoelectric sensor 25 is installed in the groove. Two slotted photoelectric sensors 26 are installed vertically on the left edge of the frame plate 21. A trigger piece 27 is fixed on the left side of the upper moving plate, which can pass through the two slotted photoelectric sensors 26. By monitoring the top with the photoelectric sensors, the topmost sulfuric acid paper can always be kept in the optimal feeding position. At the same time, when the trigger piece passes through the two slotted photoelectric sensors, when the trigger piece is located at the bottom slotted photoelectric sensor, it indicates that the upper moving plate has descended to the appropriate position. When the trigger piece is located at the top slotted photoelectric sensor, it indicates that the sulfuric acid paper on the upper moving plate has been used up.

[0035] The feeding section includes a side frame 28 fixed to the operating table 1. A side-push cylinder 29 is installed on the top left side of the side frame 28. The piston rod of the side-push cylinder 29 is fixed with a side-push block 210 that slides with the side frame 28. A downward-push cylinder 211 is installed on the side-push block 210. A suction cup plate 212 located above the frame 21 is fixed to the top end of the downward-push cylinder 211. The downward-push cylinder drives the suction cup plate to move downward, thereby bringing the suction cup plate close to and adsorbing the tracing paper. Then, the downward-push cylinder retracts, and the side-push cylinder drives the side-push block to push out, thereby moving the tracing paper to the pre-applying adhesive table, completing the tracing paper feeding operation.

[0036] like Figure 7 The pre-applied adhesive table includes a frame 31 fixed on the operating table 1. Two suction cups 32 are mounted on the surface of the frame 31, and a baffle 36 is fixed near the right side of the left suction cup 32. Calibration cylinders 34 are mounted on both the top and bottom. The piston rods of the two calibration cylinders 34 are respectively fixed to calibration plates 35 located on the left side and back of the left suction cup 32. When the suction cups move the tracing paper onto the left suction cup, the two calibration cylinders, in conjunction with the baffle, drive the calibration plates to move, thus moving the tracing paper to complete the calibration process.

[0037] The feeding and bonding part includes a stand 37 fixed on the operating table 1. A linear module 38 is installed on the front of the stand 37. A moving plate 39 is fixed to the moving end of the linear module 38. Two side plates 310 are fixed on the surface of the moving plate 39. An ejector cylinder 311 is installed on each side plate 310. An adsorption frame 312 that slides on the side plate 310 is fixed to the piston rod of the ejector cylinder 311. An upper ejector cylinder 33 is installed on the front of the stand 31, close to the left adsorption platform 32. An adsorption block is installed on the piston rod of the upper ejector cylinder 33. A lower ejector cylinder 313 is installed on the top of the right adsorption frame 312. A side pusher cylinder 314 is fixed to the ejector end of the lower ejector cylinder 313. After the tracing paper is aligned on the left suction platform, the external adhesive applicator moves the double-sided adhesive onto the suction block. Then, the left ejector cylinder pushes the suction frame downwards to press the tracing paper firmly. The upper ejector cylinder then pushes the suction block upwards, causing the double-sided adhesive to adhere to the tracing paper. The linear module moves the moving plate, allowing the left suction frame to move the tracing paper to the right suction platform for adsorption and fixation. The external peeling device peels the adhesive paper off the double-sided adhesive. The right ejector cylinder then moves the suction frame downwards to adsorb and move the tracing paper above the correction section, ready for adhesion.

[0038] like Figure 2-5 The material transfer unit includes a second linear module 42 mounted on the operating table 1. A moving frame 43 is fixed to the moving end of the second linear module 42. A long-top cylinder 44 and a short-top cylinder 45 are mounted on the front of the moving frame 43. Suction cup frames 46 are mounted on the piston rods of both the long-top cylinder 44 and the short-top cylinder 45. The second linear module drives the moving frame to move left and right, causing the suction cup frames on the long-top cylinder to move to the upper conveyor platform. The long-top cylinder then drives the corresponding suction cup frames to descend onto the upper conveyor platform, adsorbing and fixing the strip boxes onto the pre-positioning and correction section. Simultaneously, the short-top cylinder also drives the corresponding suction cup frames to move, transferring the corrected and fitted strip boxes from the pre-positioning and correction section to the lower conveyor platform to complete the material transfer operation.

[0039] The prevention and correction unit 47 includes a pre-placement platform 471 fixed on the operating table 1 and located between the upper and lower conveyor tables 41. Side rails 472 and side blocks 479 are fixed to the back and right side of the pre-placement platform 471. A pushing cylinder 475 and a pushing cylinder 473 are installed at the bottom of the pre-placement platform 471. The piston rod of the pushing cylinder 473 is fixed with a pushing plate 474 distributed opposite to the side block 479. The piston rod of the pushing cylinder 475 is fixed with a pushing plate 476. Two opposing pushing cylinders 477 are installed on the surface of the pushing plate 476. The piston rod is fixed with a push plate 478 that can extend above the pre-laying platform 471. When the strip box is moved to the pre-laying platform, the push cylinder first drives the push plate to clamp the two push plates together, so that the shift plate is located in the gap between the strip boxes. Then the shift cylinder pushes forward, and with the limit of the side block, it can drive the strip box to move closer to the side block. Then the push cylinder drives the push plate to move. Therefore, with the cooperation of the side block, the strip box can be moved closer to the side block to complete the correction process of the strip box and prevent the offset when the tracing paper is pasted in the later stage, thereby improving the accuracy and consistency of the pasting.

[0040] Combined with the aforementioned feeding and bonding section, when the linear module moves the right-side adsorption frame to the top of the strip box, the ejector cylinder pushes down, bringing the tracing paper close to the strip box until it is moved to the appropriate position. At this time, the ejector cylinder drives the side-push cylinder to push down, and the ejector end of the side-push cylinder causes the adhesive part of the tracing paper to bend to the inside of the strip box. Then, through the ejection of the side-push cylinder, the tracing paper can be bonded to the inner wall of the strip box to complete the bonding operation.

[0041] Further explanation, such as Figure 5 The lifting lever section 48 includes a lifting lever plate 481 fixed on the operating table 1. A lifting cylinder 482 is installed on the front of the lifting lever plate 481, and a rod body 483 is fixed to the top end of the lifting cylinder 482. After the tracing paper is attached to the strip box, the tracing paper is located below the rod body. After the attachment is completed, the lifting cylinder drives the rod body to lift up, making the rod body higher than the strip box. Therefore, when the material transfer section moves the strip box to the lower conveyor table, the strip box passes under the rod body, thus allowing the tracing paper to be pushed into the box for placement.

[0042] The entire workflow is now complete, and anything not described in detail in this specification is existing technology known to those skilled in the art.

[0043] It should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0044] 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 to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A splicing apparatus for split-web carton sulphite paper, characterized by: Including operation platform (1), the table top of operation platform (1) is sequentially installed with feeding assembly (2), feeding and laminating assembly (3) and feeding correction assembly (4) from left to right; The feeding correction assembly (4) includes an upper and lower conveying table (41) disposed on the operation platform (1), a pre-dispensing correction portion (47) disposed between the upper and lower conveying table (41), and a linear module two (42) disposed thereon, the moving end of the linear module two (42) is fixed with a moving frame (43), the moving frame (43) is provided with a long top cylinder (44) and a short top cylinder (45), the ejecting end of the long top cylinder (44) and the short top cylinder (45) is provided with a suction cup frame (46).

2. A matching apparatus for split-sheet sulphite paper boxes according to claim 1, characterized in that: The pre-dispensing correction portion (47) includes a pre-dispensing table (471), the two side edges of the table top of the pre-dispensing table (471) are respectively fixed with a side stop (472) and a side block (479), the bottom of the table top is respectively provided with a push cylinder (473) and a push-moving cylinder (475), the piston rod of the push cylinder (473) is fixed with a push plate (474) opposite to the side block (479), the piston rod of the push-moving cylinder (475) is fixed with a push-moving plate (476), the plate surface of the push-moving plate (476) is provided with two opposite push cylinders (477), the piston rod of the opposite push cylinder (477) is fixed with an opposite push plate (478).

3. A matching apparatus for split web sulphite paper according to claim 2, characterized in that: The operation platform (1) is further provided with a lifting rod portion (48) disposed between the upper and lower conveying table (41); The lifting rod portion (48) includes a lifting rod plate (481), the lifting rod plate (481) is provided with a push-lifting cylinder (482), the ejecting end of the push-lifting cylinder (482) is fixed with a rod body (483) extending between the upper and lower conveying table (41).

4. The apparatus for pasting of split sheet sulphuric acid paper as claimed in claim 1 wherein: The feeding assembly (2) includes a feeding portion and a storage portion; The feeding portion includes a side frame (28) fixed on the operation platform (1), the side frame (28) is provided with a side push cylinder (29), the piston rod of the side push cylinder (29) is fixed with a side push block (210) sliding with the side frame (28), the side push block (210) is provided with a downward push cylinder (211), the ejecting end of the downward push cylinder (211) is fixed with a suction cup plate (212).

5. A matching apparatus for split web sulphite paper according to claim 4, characterized in that: The storage portion includes a surrounding frame (21) fixed on the operation platform (1), the bottom of the surrounding frame (21) is provided with a screw rod elevator (22) and two guide rods (23), the top of the two guide rods (23) is fixed with an upward moving plate disposed in the surrounding frame (21) and above the screw rod of the screw rod elevator (22), and the bottom is fixed with a connecting plate (24) which can be penetrated by the screw rod of the screw rod elevator (22).

6. A matching apparatus for split web sulphite paper according to claim 5, characterized in that: The frame opening of the surrounding frame (21) is provided with a photoelectric sensor (25), and the side is further provided with two slot photoelectric sensors (26), one side of the upward moving plate is provided with a trigger piece (27) which can pass through the two slot photoelectric sensors (26).

7. A matching apparatus for split web sulphite paper according to claim 6, characterized in that: The feeding and laminating assembly (3) comprises a stand (31) and a vertical stand (37) fixed on the operation table (1), two groups of suction tables (32) are installed on the stand (31), and an upper ejecting cylinder (33) opposite to one of the groups of suction tables (32) is installed on the stand (31), a linear module (38) is installed on the vertical stand (37), a moving plate (39) is fixed on the moving end of the linear module (38), two groups of side plates (310) are installed on the moving plate (39), an ejecting cylinder (311) is installed on the side plate (310), a suction frame (312) which can slide on the side plate (310) is fixed on the piston rod of the ejecting cylinder (311), and a laminating part is installed on one of the groups of suction frames (312).

8. A matching apparatus for split web sulphite paper according to claim 7, characterized in that: The laminating part comprises a lower ejecting cylinder (313) installed on one of the suction frames (312), and an edge ejecting cylinder (314) is installed on the ejecting end of the lower ejecting cylinder (313).

9. The apparatus for splicing open sheet sulphite paper according to claim 7, wherein: The top of the stand (31) is fixed with a baffle (36) on one side of one of the suction tables (32), and the top and the bottom are both installed with correction cylinders (34), the piston rods of the two groups of correction cylinders (34) are respectively fixed with correction plates (35) opposite to the baffle (36) and the upper ejecting cylinder (33).