Continuous explosive snow velvet label coating structure

By introducing a winding and adjusting component into the printing and dyeing equipment, combined with negative pressure suction, the problem of difficult burr removal during the label material winding process was solved, achieving efficient label material winding and improved processing efficiency.

CN224212072UActive Publication Date: 2026-05-08CYMMETRIK (JIANGSU) PRINTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CYMMETRIK (JIANGSU) PRINTING CO LTD
Filing Date
2025-07-16
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

When using a continuous printing and dyeing structure to produce explosive velvet labels, the label material at the tail end cannot be quickly separated and the burrs cannot be removed during the winding process, resulting in a decrease in processing efficiency.

Method used

A continuous explosive velvet label coating structure was designed, including a printing and dyeing equipment, a winding assembly, an adjustment assembly, and a collection assembly. The efficient winding of the label material and removal of burrs are achieved by adjusting the tension and negative pressure suction.

Benefits of technology

It improves the winding efficiency of label material, ensures that the label material is wrapped flat, effectively removes burrs, and improves the overall processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a continuous explosive snow velvet label coating structure, and relates to the technical field of printing and dyeing equipment. A conveying roller is installed on the printing and dyeing equipment, a label material is wound and conveyed on the conveying roller, the printing and dyeing equipment can conduct coating printing and dyeing on the passing label material, the tail portion of the printing and dyeing equipment can roll the separated label material, a rolling assembly of the label material can be matched with an adjusting assembly, tension is formed on the label material in an abutting mode, and better rolling is achieved; the collecting assembly sucks and bears the burrs, the external assembly at the bottom of the collecting assembly can be externally connected with equipment, negative pressure on the collecting assembly is completed, the burrs are collected through the collecting assembly, the machining efficiency is improved, and the problems that in the tail end winding process, separation and collection cannot be rapidly conducted, and after the burrs are cut off, the burrs cannot be rapidly collected are solved. And after being used for a long time, the raw materials are accumulated, so that the overall processing efficiency is influenced.
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Description

Technical Field

[0001] This utility model relates to the field of printing and dyeing equipment technology, and in particular to a continuous explosive velvet label coating structure. Background Technology

[0002] The essence of the "explosive snowflake label" is to give the label a "snowflake-like" microstructure through a special process, making it different from ordinary labels in terms of appearance, touch, and function. Its core value lies in enhancing product texture and functionality, making it particularly suitable for scenarios with high requirements for quality and anti-counterfeiting. Previously, special textures on labels were achieved primarily through special inks and ink layer thickness, which were highly dependent on ink and ink layer thickness and carried the risk of ink fading. This "explosive snowflake label" process can be completed in a single step and effectively avoids these risks.

[0003] When producing labels, using a continuous printing and dyeing structure can increase production efficiency. However, when using a continuous structure, the tail end cannot be quickly separated and collected during the winding process. After the rough edges are cut off, they will accumulate after long-term use, which will affect the overall processing efficiency. Utility Model Content

[0004] This utility model relates to a continuous explosive velvet label coating structure. The printing and dyeing equipment can coat and dye the label material, while the tail end can rewind the separated label material. The label material rewinding component can work with the adjustment component to create tension on the label material for better rewinding. The collecting component can pick up and support the rough edges, and the external component at the bottom of the collecting component can be connected to external equipment to create negative pressure on the collecting component, allowing the collecting component to collect the rough edges and increase processing efficiency.

[0005] This utility model provides a continuous explosive velvet label coating structure, specifically including: a printing and dyeing equipment; a conveying roller is installed on the printing and dyeing equipment, and label material is wound and conveyed on the conveying roller; a winding component is installed at the tail position of the label material conveyed by the printing and dyeing equipment; an adjusting component is slidably installed on the winding component; a collecting component is provided at the tail of the printing and dyeing equipment near the outer end of the winding component; the bottom of the collecting component is set as an external component, and the external component is connected to an external negative pressure device.

[0006] The dyeing and printing equipment is equipped with a conveying roller on its frame. A vertical structural support plate is installed at the entrance of the frame. A dyeing and printing roller is located at the outer end of the support plate. Label material is conveyed between the support plate and the dyeing and printing roller.

[0007] The winding frame of the winding assembly is installed at the tail end of the printing and dyeing equipment. Label material is wound on the winding frame. A swing frame is oscillatingly installed on the outside of the winding frame. A top pressure roller is rotatably installed at the end of the swing frame and presses directly onto the label material.

[0008] The sliding block of the adjustment component is slidably mounted on the winding component. An adjustment column is installed at the outer end of the sliding block, and an inner block is installed inside the sliding block. The adjustment column is screwed onto the inner block, and a counterweight is snapped onto the outer end of the adjustment column.

[0009] The collection box of the collection component is configured as a vertical cylindrical shape, and a top cover is fitted onto the top of the collection box. A collection pipe is provided on one side of the top of the top cover, and the collection pipe is positioned at an angle to one side.

[0010] The external connector of the external component is sleeved on the bottom of the collecting component. An external pipe is provided on the outer edge of the outer wall of the external connector. The external pipe and the external connector are connected to each other. The outer end of the external pipe is inclined. A support frame is installed at the lower end of the inner side of the external connector. The bottom of the support frame is provided with support legs arranged in a circular array. A baffle plate is provided on the top of the support frame. The baffle plate adopts a grid structure.

[0011] This invention provides a continuous explosive velvet label coating structure, which has the following beneficial effects:

[0012] In this invention, the label material is divided into two directions. The label material is coated and dyed through the support plate of the printing and dyeing equipment, and then pressed together to complete the processing of the explosive snowflake label. The conveying rollers at the printing and dyeing equipment transport the label material. Finally, the label material is divided into multiple groups at the tail end of the equipment. The winding assembly can wind up the label material and simultaneously provide tension. The adjusting component of the winding assembly can adjust the tension. The burrs removed from the end of the label material are directly fed into the collecting assembly. The collecting assembly collects the burrs. An external component is installed at the bottom of the collecting assembly, which can be connected to external equipment to create a negative pressure state, allowing the collecting assembly to better pick up the burrs and achieve a faster subsequent label processing.

[0013] In addition, when using the device, in order to keep the label material flat while it is wound on the take-up frame, the label material is directly wound into the front pressure roller of the take-up frame, and the swing frame is set to be hinged, so that the pressure roller of the swing frame can press better on the label material, thereby achieving a better take-up effect on the label material.

[0014] In addition, in order to control the tension adjustment of the label material by the winding assembly, the sliding block is directly slidably installed on the winding assembly. An inner block is set at the sliding block, and the adjusting column is screwed on the inner block while adjusting the sliding block. This allows the sliding block to fix the position of the adjusting assembly by rotating the adjusting column, and a counterweight can be installed on the adjusting column to realize the tension adjustment function of the adjusting assembly on the winding assembly.

[0015] Furthermore, when the label material reaches the end of the conveyor, defects in the label material are removed. To collect long, rough edges, an external component is installed at the bottom of the collection box, followed by a top cover. The collection tube on the top cover is aligned with the rough edges, allowing the collection component to better collect them. The collection tube is tilted to one side, causing the sucked-in rough edges to form a spiral within the collection box. This allows for better winding and support of the rough edges within the collection box.

[0016] Furthermore, the external receiving plate is directly installed at the bottom of the collecting component, and an external connecting pipe is installed on the outer wall of the receiving plate. After the negative pressure device is connected to the external connecting pipe, the external connecting pipe is connected to the collecting component, so that the collecting component forms a negative pressure to collect the burrs. The external connecting pipe is designed to be inclined, making the external connection process more convenient. In order to prevent the burrs inside the collecting component from being discharged from the external connecting pipe, a support frame is directly installed at the bottom of the receiving plate. The support frame has a circumferential array of support legs, so that the support frame will not affect the external connecting pipe's suction of the collecting component. A baffle plate is directly installed on the top of the support frame. The mesh structure of the baffle plate achieves the separation of the burrs inside the external receiving component and the collecting component. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings of the embodiments will be briefly described below.

[0018] The accompanying drawings described below are only related to some embodiments of the present invention and are not intended to limit the scope of the present invention.

[0019] In the attached diagram:

[0020] Figure 1 A schematic diagram of the overall structure of this application is shown;

[0021] Figure 2 A schematic diagram of the dyeing and printing equipment structure of this application is shown;

[0022] Figure 3 A schematic diagram of the winding assembly structure of this application is shown;

[0023] Figure 4 A schematic diagram of the adjustment component structure of this application is shown;

[0024] Figure 5 A schematic diagram of the collection component structure of this application is shown;

[0025] Figure 6 A schematic diagram of the external component structure of this application is shown;

[0026] List of reference numerals

[0027] 1. Printing and dyeing equipment; 101. Equipment frame; 102. Support plate;

[0028] 2. Rewinding assembly; 201. Rewinding frame; 202. Swinging frame; 203. Top pressure roller;

[0029] 3. Adjustment components; 301. Sliding block; 302. Adjustment column; 303. Inner block; 304. Counterweight block;

[0030] 4. Collection components; 401. Collection box; 402. Top cover; 403. Collection tube;

[0031] 5. External components; 501. External panel; 502. External pipe; 503. Barrier plate; 504. Support frame;

[0032] 6. Label material;

[0033] 7. Conveyor rollers. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the described embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0035] Example 1: Please refer to Figures 1 to 6 :

[0036] This utility model proposes a continuous explosive velvet label coating structure, including: a printing and dyeing equipment 1; a conveying roller 7 is installed on the printing and dyeing equipment 1, and label material 6 is wound and conveyed on the conveying roller 7; a winding assembly 2 is installed at the tail position of the label material 6 conveyed by the printing and dyeing equipment 1; an adjusting assembly 3 is slidably installed on the winding assembly 2; a collecting assembly 4 is provided at the tail of the printing and dyeing equipment 1 near the outer end of the winding assembly 2; the bottom of the collecting assembly 4 is provided as an external connecting assembly 5; and the external connecting assembly 5 is connected to an external negative pressure device.

[0037] Among them, such as Figure 1 Figure 2As shown, a conveying roller 7 is installed on the equipment frame 101 of the dyeing and printing equipment 1. A vertical structural support plate 102 is installed at the entrance of the equipment frame 101. A dyeing and printing roller is provided at the outer end of the support plate 102. Label material 6 is conveyed between the support plate 102 and the dyeing and printing roller.

[0038] Among them, such as Figure 3 Figure 4 As shown, the winding frame 201 of the winding assembly 2 is installed at the tail end of the printing and dyeing equipment 1. Label material 6 is wound on the winding frame 201. A swing frame 202 is oscillatingly installed on the outside of the winding frame 201. A top pressure roller 203 is rotatably installed at the end of the swing frame 202. The top pressure roller 203 directly presses on the label material 6. In order to keep the label material 6 flat when the device is in use, the label material 6 is directly wound into the top pressure roller 203 before the winding frame 201. The swing frame 202 is set to be hinged, so that the top pressure roller 203 of the swing frame 202 can press better on the label material 6, thereby achieving a better winding effect on the label material 6.

[0039] Among them, such as Figure 2 Figure 4 As shown, the sliding block 301 of the adjusting component 3 is slidably mounted on the winding component 2. An adjusting column 302 is installed at the outer end of the sliding block 301, and an inner block 303 is installed inside the sliding block 301. The adjusting column 302 is screwed onto the inner block 303, and a counterweight 304 is snapped onto the outer end of the adjusting column 302. In order to control the tension adjustment of the label material 6 by the winding component 2, the sliding block 301 is directly slidably mounted on the winding component 2. The inner block 303 is set at the sliding block 301. The adjusting column 302 is adjusted on the sliding block 301 and screwed onto the inner block 303. This allows the sliding block 301 to fix the position of the adjusting component 3 by rotating the adjusting column 302. The counterweight 304 can be installed on the adjusting column 302 to realize the tension adjustment function of the adjusting component 3 on the winding component 2.

[0040] Among them, such as Figure 5 Figure 6 As shown, the collection box 401 of the collection component 4 is configured as a vertical cylindrical shape. A top cover 402 is fitted onto the top of the collection box 401. A collection pipe 403 is provided on one side of the top of the top cover 402. The collection pipe 403 is positioned at an angle to one side. When the label material 6 is conveyed to the end, the defects of the label material 6 will be cut off. In order to collect long strips of rough edges, an external component 5 is directly installed at the bottom of the collection box 401, and then the top cover 402 is installed on the top of the collection box 401. The collection pipe 403 of the top cover 402 is aligned with the rough edges, so that the collection component 4 can better collect the rough edges. The collection pipe 403 is inclined to one side, so that the sucked-in rough edges form a spiral inside the collection box 401. This allows the rough edges to be better wound and supported inside the collection box 401.

[0041] Among them, such as Figure 3 Figure 6 As shown, the external connector 501 of the external component 5 is fitted onto the bottom of the collecting component 4. An external connecting pipe 502 is provided along the outer edge of the outer wall of the external connector 501, and the external connecting pipe 502 is connected to the external connector 501. The outer end of the external connecting pipe 502 is angled. The external connector 501 is directly installed at the bottom of the collecting component 4, and the external connecting pipe 502 is also provided on the outer wall of the external connector 501. After connecting a negative pressure device to the external connecting pipe 502, the external connecting pipe 502 is connected to the collecting component 4, causing the collecting component 4 to form a negative pressure for collecting burrs. The angled shape of the external connecting pipe 502 makes the external connection process more convenient. The external connector 501... A support frame 504 is installed at the lower end of the device. The bottom of the support frame 504 is configured with support legs arranged in a circular array. A baffle plate 503 is installed on the top of the support frame 504. The baffle plate 503 adopts a mesh structure. In order to prevent the burrs inside the collection component 4 from being discharged from the outer pipe 502, the support frame 504 is directly installed at the bottom of the outer pipe 501. The support frame 504 has a circular array of support legs, so that the support frame 504 will not affect the outer pipe 502's suction of the collection component 4. The baffle plate 503 is directly installed on the top of the support frame 504. The mesh structure of the baffle plate 503 achieves the separation function between the outer pipe 5 and the burrs inside the collection component 4.

[0042] The working principle of this embodiment is as follows: During use, the conveying roller 7 of the printing and dyeing equipment 1 can convey the label material 6, and the label material 6 will simultaneously contact the support plate 102 of the printing and dyeing equipment 1, so that the support plate 102 can coat and dye the label material 6. The label material 6 will be cut at the end of the discharge point. The winding component 2 is in different positions. The winding component 2 can wind up the label material 6 and press it on the label material 6 to provide tension. At this time, by adjusting the position of the adjusting component 3 of the winding component 2, the adjusting component 3 can control the tension of the winding component 2 on the label material 6.

[0043] The rough edges at the dividing point of the label material 6 will also be cut off. The cut rough edges are directly fed into the collecting component 4. The external component 5 at the bottom of the collecting component 4 is directly connected to a negative pressure device, so that the external component 5 connects to the collecting component 4 to form a negative pressure, which makes the collecting component 4 continuously suck up the rough edges, thereby achieving the collection of rough edges.

[0044] The following points should be noted in this article:

[0045] 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in a general design.

[0046] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0047] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.

Claims

1. A continuous explosive velvet label coating structure, comprising: A printing and dyeing equipment (1); the printing and dyeing equipment (1) is equipped with a conveying roller (7), and label material (6) is wound and conveyed at the conveying roller (7). The characteristic is that a winding assembly (2) is installed at the tail position of the label material (6) conveyed by the printing and dyeing equipment (1), an adjusting assembly (3) is slidably installed on the winding assembly (2), and a collecting assembly (4) is provided at the tail of the printing and dyeing equipment (1) near the outer end of the winding assembly (2). The bottom of the collecting assembly (4) is set as an external assembly (5), and the external assembly (5) is connected to an external negative pressure device.

2. The continuous explosive velvet label coating structure according to claim 1, characterized in that, The dyeing and printing equipment (1) has a conveying roller (7) installed on the equipment frame (101), a vertical structural support plate (102) installed at the entrance of the equipment frame (101), a dyeing and printing roller is provided at the outer end of the support plate (102), and label material (6) is conveyed between the support plate (102) and the dyeing and printing roller.

3. The continuous explosive velvet label coating structure according to claim 1, characterized in that, The winding frame (201) of the winding assembly (2) is installed at the tail end of the printing and dyeing equipment (1). Label material (6) is wound on the winding frame (201). A swing frame (202) is oscillatingly installed on the outside of the winding frame (201). A top pressure roller (203) is rotatably installed at the end of the swing frame (202). The top pressure roller (203) presses directly on the label material (6).

4. The continuous explosive velvet label coating structure according to claim 1, characterized in that, The sliding block (301) of the adjustment component (3) is slidably mounted on the winding component (2). An adjustment column (302) is installed at the outer end of the sliding block (301). An inner block (303) is installed inside the sliding block (301). The adjustment column (302) is screwed onto the inner block (303). A counterweight (304) is snapped onto the outer end of the adjustment column (302).

5. The continuous explosive velvet label coating structure according to claim 1, characterized in that, The collection box (401) of the collection component (4) is configured as a vertical cylindrical shape, and a top cover (402) is fitted onto the top of the collection box (401). A collection pipe (403) is provided on one side of the top of the top cover (402), and the collection pipe (403) is configured to be inclined to one side.

6. The continuous explosive velvet label coating structure according to claim 1, characterized in that, The outer plate (501) of the external component (5) is sleeved at the bottom of the collecting component (4). An outer pipe (502) is provided at the outer edge of the outer wall of the outer plate (501). The outer pipe (502) is connected to the outer plate (501). The outer end of the outer pipe (502) is set in an inclined shape.

7. The continuous explosive velvet label coating structure according to claim 6, characterized in that, A support frame (504) is installed at the lower end of the inner side of the outer plate (501). The bottom of the support frame (504) is configured with support legs arranged in a circular array. A barrier plate (503) is provided on the top of the support frame (504). The barrier plate (503) adopts a grid structure.