Circumferential labeling mechanism
By designing a circumferential labeling mechanism, the problems of low efficiency and unstable quality of traditional manual tape application were solved, realizing automated tape application, improving production efficiency and quality, and reducing costs.
Patent Information
- Application Number
- CN202520323482.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Traditional manual application of tape is inefficient, produces inconsistent quality, and is difficult to meet the needs of large-scale production, and cost control is also challenging.
Design a circumferential labeling mechanism, including a die roll fixing plate, a guide component, a displacement component, a cutting component, and a lifting component, to achieve automated tape application through collaborative work, adapt to different product heights, and ensure accurate tape application and cutting.
The automated tape application process improves production efficiency and application quality, adapts to different product heights, reduces labor costs, and enhances the equipment's versatility and reliability.
Smart Images

Figure CN223687009U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the packaging field, concretely relates to a circumference labelling mechanism. BACKGROUND
[0002] In many industrial fields such as steel wire, tire, pipe and cable, the circumference tape pasting operation in the product packaging link is very important. From the protection point of view, the tape can resist the damage such as abrasion and corrosion in transportation and storage, and protect the product quality. From the identification point of view, the tape can carry the key information such as product specification and brand, and is convenient for market circulation and management.
[0003] In the past, the industry has long relied on manual pasting. The disadvantages of this method are: in terms of efficiency, manual operation is slow and difficult to match the large-scale and high-intensity production rhythm. For example, in the peak season of tire production, manual pasting often leads to product backlog and delayed delivery. In terms of quality, affected by the individual skill difference, fatigue and emotional fluctuation of workers, the pasting effect is uneven.
[0004] With the intelligent wave of manufacturing industry, enterprises put forward strict requirements on production efficiency, product quality and cost control. Traditional manual pasting cannot meet the demand, and automatic pasting equipment development is imminent. SUMMARY
[0005] In view of the above, the purpose of the utility model is to provide a circumference labelling mechanism for the problems in the background art.
[0006] The circumference labelling mechanism in the scheme comprises:
[0007] A die roll fixing plate, on which a tape can be installed;
[0008] A guide assembly is arranged on the die roll fixing plate to form a guide route of the die tape to pull out and keep the tape;
[0009] A displacement assembly is connected with the die roll fixing plate to make the tape head in front of the guide assembly top on the product to complete the tape pasting;
[0010] A cutting assembly is arranged adjacent to the guide assembly to cut the tape after packaging.
[0011] Further, it further comprises a lifting assembly, the lifting assembly comprises a base, a vertical lifting slide rail is installed on the base, a lifting plate is installed on the lifting slide rail in sliding cooperation with the lifting slide rail, and a ball screw is installed on the base to drive the lifting plate to lift.
[0012] Further, the displacement assembly comprises a horizontal displacement slide rail arranged on the lifting plate, a telescopic plate is installed on the displacement slide rail in sliding cooperation with the displacement slide rail, and a telescopic cylinder is further included in the displacement assembly to drive the telescopic plate to displace relative to the displacement slide rail.
[0013] Further, the telescopic plate is provided with a bearing mounting support, at least two linear bearings are arranged on the bearing mounting support, a running guide light shaft is arranged on the linear bearings, a spring is arranged on the running guide light shaft, a mounting frame is arranged on the front end of the running guide light shaft, the spring is arranged between the bearing mounting support and the mounting frame, and the mold roll fixing plate is connected to the mounting frame.
[0014] Further, a rollback assembly is arranged between the mold roll fixing plate and the mounting frame, the rollback assembly comprises a sliding block fixedly arranged on the mounting frame and a rollback sliding rail slidingly fitted on the sliding block, the mold roll fixing plate is connected to the rollback sliding rail, and the rollback assembly further comprises a rollback air cylinder arranged on the mounting frame and connected to the mold roll fixing plate to drive the mold roll fixing plate to displace.
[0015] Further, the guide assembly is composed of a plurality of S-shaped rollers.
[0016] Further, the cutting assembly comprises a cutter and a cutting air cylinder for driving the cutter.
[0017] Beneficial effects: the circumferential labeling mechanism can realize automatic tape sticking, automatic feeding and cutting functions through the cooperative work of various components, and can complete automatic sticking work in cooperation with other equipment. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a three-dimensional structure schematic view of the utility model;
[0019] Figure 2 It is a top view structure schematic view of the utility model;
[0020] Figure 3 It is a lifting assembly structure schematic view of the utility model;
[0021] Figure 4 It is a displacement assembly structure schematic view of the utility model;
[0022] Figure 5 It is a rollback assembly structure schematic view of the utility model;
[0023] Mark: mold roll fixing plate 1, guide assembly 2, displacement assembly 3, telescopic plate 301, telescopic air cylinder 302, bearing mounting support 303, linear bearing 304, running guide light shaft 305, spring 306, mounting frame 307, lifting assembly 4, base 401, lifting sliding rail 402, lifting plate 403, ball screw 404, rollback assembly 5, rollback sliding rail 501, rollback air cylinder 502, cutting assembly 6, cutter 601, cutting air cylinder 602. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0025] Referring to Figures 1 to 5 The circumferential labeling mechanism comprises:
[0026] A die roll fixing plate 1, on which an adhesive tape can be installed;
[0027] A guide assembly 2, which is arranged on the die roll fixing plate 1 to constitute a guide route of a die tape to pull out and maintain the adhesive tape;
[0028] A displacement assembly 3, which is connected with the die roll fixing plate 1 to make the adhesive tape head in front of the guide assembly 2 top on a product to complete the adhesive tape;
[0029] An all-cutting assembly 6, which is arranged adjacent to the guide assembly 2 and is used to cut the adhesive tape after packaging.
[0030] The mechanism is usually used in the industry of steel wire, tire and the like, which needs to be circumferentially pasted with adhesive tape after packaging, to realize automatic adhesive tape, automatic feeding and cutting functions, and can complete automatic pasting work in cooperation with other devices.
[0031] In the embodiment, a lifting assembly 4 is further arranged, which comprises a base 401 bearing the whole mechanism, a lifting slide rail 402 vertically arranged on the base 401, a lifting plate 403 slidably matched with the lifting slide rail 402, and a ball screw 404 driving the lifting plate 403 to lift on the base 401. The ball screw 404 can accurately adjust the height of the adhesive tape and accurately paste it on the product. In actual production, different batches of products may have height differences, and the lifting assembly 4 can quickly adapt to such changes to ensure that the adhesive tape can be accurately pasted on the product at all times, greatly improving the universality and adaptability of the device.
[0032] In the embodiment, the displacement assembly 3 comprises a displacement slide rail horizontally arranged on the lifting plate 403, a telescopic plate 301 slidably matched with the displacement slide rail, and a telescopic cylinder 302 driving the telescopic plate 301 to displace relative to the displacement slide rail. The telescopic cylinder 302 can drive the displacement slide plate to move quickly, improving the production efficiency.
[0033] In this embodiment, the telescopic plate 301 is provided with a bearing mounting support 303, and the bearing mounting support 303 is provided with at least two linear bearings 304, and the linear bearings 304 are provided with a running guide light shaft 305, and the running guide light shaft 305 is provided with a spring 306, and the front end of the running guide light shaft 305 is provided with a mounting frame 307, and the spring 306 is between the bearing mounting support 303 and the mounting frame 307, and the die roll fixing plate 1 is connected to the mounting frame 307. When the tape head contacts the product, the running guide light shaft 305 and the spring 306 can play a buffering and self-adaptive adjusting role, ensuring that the tape head of the adhesive tape is firmly attached to the product and ensuring the adhesive effect.
[0034] In this embodiment, the die roll fixing plate 1 and the mounting frame 307 are provided with a rollback assembly 5, the rollback assembly 5 includes a sliding block fixedly arranged on the mounting frame 307 and a rollback sliding rail 501 slidingly fitted on the sliding block, and the die roll fixing plate 1 is connected to the rollback sliding rail 501, and the rollback assembly 5 further includes a rollback air cylinder 502 arranged on the mounting frame 307, and the rollback air cylinder 502 is connected to the die roll fixing plate 1 for driving the die roll fixing plate 1 to displace. After the product is packaged, the rollback air cylinder 502 can drive the die roll fixing plate 1 to retreat so that the front-end guide assembly 2 is pulled away from the product by a certain distance, creating a safe and sufficient operation space for the cutting assembly 6 to work, improving the reliability and stability of the equipment operation.
[0035] In this embodiment, the guide assembly 2 is composed of a plurality of S-shaped layout rollers, which can pull out the adhesive tape; the surface of the frontmost roller is provided with a layer of rubber, and the surface is modified to have stable static electricity, and in the labeling process, the rubber roller can closely adhere to the surface of the product, so that the adhesive tape can be adhered to the product, and the static adsorption force can reliably attract the tape head, preventing the tape head from running and edge lifting due to displacement, air flow disturbance and other factors, and avoiding the adhesive tape from not being adhered to the product.
[0036] In this embodiment, the cutting assembly 6 includes a cutter 601 and a cutting air cylinder 602 for driving the cutter 601. When the product is packaged and the adhesive tape needs to be cut, the cutting air cylinder 602 quickly acts to push the cutter 601 at a very high speed, accurately cutting the adhesive tape and preparing for the next adhesive tape operation. The whole cutting process is quick and smooth, and will not adversely affect the quality of the adhesive tape cut.
[0037] Work flow summary
[0038] Preparation stage: The adhesive tape is installed on the mold roll fixing plate 1, and is ensured to be stable through specific clamping grooves or fastening devices. At this time, the base 401 of the lifting assembly 4 bears the whole mechanism, the ball screw 404 can accurately adjust the height of the lifting plate 403 according to the height requirement of the product, so that the mechanism is in a suitable position to adapt to the height difference of different batches of products.
[0039] Taping stage: the S-shaped roller layout of the guide assembly 2 starts to work, pulls out the adhesive tape from the mold roll fixing plate 1, and adjusts the adhesive tape direction and tension through the roller. The telescopic cylinder 302 of the displacement assembly 3 drives the telescopic plate 301 to move on the displacement slide rail, so that the mold roll fixing plate 1 connected to the mounting frame 307 is pushed forward, and then the adhesive tape head in front of the guide assembly 2 is accurately pasted on the product. In this process, the running guide light axis 305 and the spring 306 on the telescopic plate 301 play the roles of buffering and self-adaptive adjustment, so as to ensure that the adhesive tape head is firmly pasted on the product, and the taping action is completed.
[0040] Packaging stage: the product is driven by other equipment to pull out the adhesive tape from the mechanism and wrap one or more turns around the product circumference; the equipment mentioned herein can be a rotary driving mechanism, when the adhesive tape head is pasted on the product, the product rotation can naturally wind the adhesive tape and paste it on the product.
[0041] Cutting stage: when the product is packaged, the return assembly 5 is started, the return cylinder 502 drives the mold roll fixing plate 1 to return along the return slide rail 501, so that the guide assembly 2 is pulled away from the product by a safe distance. Then, the cutting cylinder 602 of the cutting assembly 6 acts quickly to cut the adhesive tape, so as to prepare for the next taping operation.
[0042] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
[0043] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A circumferential labeling mechanism, comprising: a die roll fixing plate (1) on which an adhesive tape can be installed; a guide assembly (2) arranged on the die roll fixing plate (1) to form a guide path of a die tape to pull out and hold the adhesive tape; a displacement assembly (3) connected with the die roll fixing plate (1) to make the adhesive tape head in front of the guide assembly (2) top on a product to complete the adhesive tape; a cutting assembly (6) arranged adjacent to the guide assembly (2) to cut the adhesive tape after packaging.
2. A peripheral labelling mechanism according to claim 1, characterised in that Further comprising a lifting assembly (4) including a base (401) on which a vertically arranged lifting slide rail (402) is installed, a lifting plate (403) in sliding fit with the lifting slide rail (402) is installed on the lifting slide rail (402), and a ball screw (404) driving the lifting plate (403) to lift is installed on the base (401).
3. A peripheral labelling mechanism according to claim 2, wherein The displacement assembly (3) includes a displacement slide rail horizontally arranged on the lifting plate (403), a telescopic plate (301) in sliding fit with the displacement slide rail is installed on the displacement slide rail, and the displacement assembly (3) further includes a telescopic cylinder (302) driving the telescopic plate (301) to displace relative to the displacement slide rail.
4. A peripheral labelling mechanism according to claim 3, wherein The telescopic plate (301) is provided with a bearing mounting support (303), at least two linear bearings (304) are arranged on the bearing mounting support (303), a running guide light shaft (305) is installed on the linear bearings (304), a spring (306) is arranged on the running guide light shaft (305), a mounting bracket (307) is arranged at the front end of the running guide light shaft (305), the spring (306) is between the bearing mounting support (303) and the mounting bracket (307), and the die roll fixing plate (1) is connected with the mounting bracket (307).
5. A peripheral labelling mechanism according to claim 4, wherein A back-off assembly (5) is arranged between the die roll fixing plate (1) and the mounting bracket (307), the back-off assembly (5) includes a sliding block fixedly arranged on the mounting bracket (307) and a back-off slide rail (501) in sliding fit with the sliding block, the die roll fixing plate (1) is connected with the back-off slide rail (501), and the back-off assembly (5) further includes a back-off cylinder (502) arranged on the mounting bracket (307), the back-off cylinder (502) is connected with the die roll fixing plate (1) to drive the die roll fixing plate (1) to displace.
6. A peripheral labelling mechanism according to claim 1, wherein The guide assembly (2) is composed of a plurality of S-shaped layout rollers; the surface of the frontmost roller is provided with static electricity.
7. A peripheral labelling mechanism according to claim 1, wherein The cutting assembly (6) includes a cutter (601) and a cutting cylinder (602) driving the cutter (601).
Citation Information
Cited By
Circumferential labeling mechanism
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