An indenting device for garment labels

CN224725991UActive Publication Date: 2026-09-08YAOYI INTERNATIONAL PACKAGING (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202521831206.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-09-08
Estimated Expiration
2035-08-27

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于:针对现有技术的不足,提供一种用于服装标签的压痕装置,通过优化压痕装置,解决人工操作自动化程度低的问题,有助于提高生产效率

Benefits of technology

[0013] This invention optimizes the creasing device by adding a limiting edge and a vertically movable limiting protrusion to the inclined support plate. This ensures that the label, under the influence of gravity, stays at a preset position on the inclined support plate. Simultaneously, the limiting edge and protrusion limit the label, preventing it from slipping off the side of the inclined support plate during creasing. A cylinder drives the creasing blade on the pressure plate to move up and down. When the label reaches the preset position on the inclined support plate under the action of the limiting edge and protrusion, the cylinder drives the creasing blade downwards to creasing the label. Since the inclined support plate is sloped, when the creasing blade contacts the label, a portion of the pressure plate also contacts the label on the inclined support plate, pressing it down and improving the stability of the label during creasing, preventing displacement or shaking.

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Abstract

The utility model discloses a kind of indentation devices for clothing label, oblique support plate is provided with positioning hole, positioning hole is along its thickness direction and is penetrated oblique support plate, the lower portion of positioning hole is provided with lifting motor, the output end of lifting motor is installed with limit protrusion, lifting motor drives limit protrusion to move up and down along positioning hole, for the label on oblique support plate is positioned;The width direction both sides of oblique support plate are vertically provided with limit baffle, limit baffle is along the length direction of oblique support plate and is arranged, the cross-sectional shape of limit baffle is inverted L type structure;The upper portion of oblique support plate is provided with pressing plate, the side of pressing plate towards oblique support plate is provided with indentation cutter, the top of processing box is provided with cylinder for driving pressing plate to move up and down, the output end of cylinder is fixedly connected with pressing plate.The utility model is through optimization indentation device, solve the problem of low degree of automation of manual operation, help to improve production efficiency.
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Description

Technical Field

[0001] This utility model belongs to the technical field of clothing label manufacturing, specifically relating to an embossing device for clothing labels. Background Technology

[0002] Label embossing devices are used to emboss labels. In clothing labels, in order to highlight the brand of the clothing or the aesthetics of the label, it is necessary to emboss a specific shape or outline on the clothing label.

[0003] In the process of realizing this utility model, the inventors discovered that the prior art has at least the following problems:

[0004] The existing label creasing process requires manual feeding and creasing by staff, which has a low degree of automation and introduces certain errors due to manual operation. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies by providing an embossing device for clothing labels. By optimizing the embossing device, the problem of low automation in manual operation is solved, thereby helping to improve production efficiency.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] An embossing device for garment labels includes a processing box. Inside the processing box, a first conveyor belt, an inclined support plate, and a second conveyor belt are arranged sequentially along the label conveying direction. The top end of the inclined support plate is close to the first conveyor belt, and the bottom end of the inclined support plate is close to the second conveyor belt. The inclined support plate is provided with a positioning hole that penetrates the inclined support plate along its thickness direction. A lifting motor is provided below the positioning hole, and a limit protrusion is installed at the output end of the lifting motor. The lifting motor drives the limit protrusion to move up and down along the positioning hole to limit the label on the inclined support plate. Limiting edges are vertically provided on both sides of the inclined support plate in the width direction. The limiting edges are provided along the length direction of the inclined support plate, and the cross-sectional shape of the limiting edges is an inverted L-shaped structure. A pressure plate is provided above the inclined support plate, and an embossing knife is provided on the side of the pressure plate facing the inclined support plate. A cylinder is provided on the top of the processing box to drive the pressure plate to move up and down, and the output end of the cylinder is fixedly connected to the pressure plate.

[0008] In some possible implementations, a controller is also included, to which the first conveyor belt, the second conveyor belt, the lifting motor, and the cylinder are all connected.

[0009] In some possible implementations, a pressure sensor is provided on the side of the limiting protrusion facing the top of the inclined support plate, and the pressure sensor is connected to the controller.

[0010] In some possible implementations, both the first conveyor belt and the second conveyor belt are arranged in a horizontal direction, and the height of the second conveyor belt is less than that of the first conveyor belt.

[0011] In some possible implementations, the top and bottom ends of the inclined support plate are provided with arc-shaped transition surfaces.

[0012] One of the above technical solutions has the following beneficial effects:

[0013] This invention optimizes the creasing device by adding a limiting edge and a vertically movable limiting protrusion to the inclined support plate. This ensures that the label, under the influence of gravity, stays at a preset position on the inclined support plate. Simultaneously, the limiting edge and protrusion limit the label, preventing it from slipping off the side of the inclined support plate during creasing. A cylinder drives the creasing blade on the pressure plate to move up and down. When the label reaches the preset position on the inclined support plate under the action of the limiting edge and protrusion, the cylinder drives the creasing blade downwards to creasing the label. Since the inclined support plate is sloped, when the creasing blade contacts the label, a portion of the pressure plate also contacts the label on the inclined support plate, pressing it down and improving the stability of the label during creasing, preventing displacement or shaking. Attached Figure Description

[0014] The features, advantages and technical effects of exemplary embodiments of the present invention will now be described with reference to the accompanying drawings.

[0015] Figure 1 This is a schematic diagram of the processing box of this utility model.

[0016] Figure 2 This is a schematic diagram of the inclined support plate of this utility model.

[0017] The reference numerals in the attached figures are explained as follows:

[0018] 1-First conveyor belt;

[0019] 2- Inclined support plate; 21- Positioning hole; 22- Limiting stop;

[0020] 3-Second conveyor belt;

[0021] 4- Lifting motor;

[0022] 5-Limiting protrusion;

[0023] 6-Pressure plate;

[0024] 7-Indentation tool;

[0025] 8-cylinder;

[0026] 10-Processing box;

[0027] X - Length direction;

[0028] Y-width direction;

[0029] A - Conveying direction. Detailed Implementation

[0030] If certain terms are used in the specification and claims to refer to specific components, those skilled in the art will understand that hardware manufacturers may use different names to refer to the same component. This specification and claims do not distinguish components based on differences in name, but rather on differences in function. The term "comprising" as used throughout the specification and claims is an open-ended term and should be interpreted as "comprising but not limited to." "Approximately" means that within an acceptable margin of error, those skilled in the art can solve the technical problem and substantially achieve the technical effect within a certain margin of error.

[0031] Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be interpreted as indicating or implying relative importance.

[0032] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0033] The present invention will be further described in detail below with reference to the accompanying drawings, but this is not intended to limit the present invention.

[0034] Example 1

[0035] The existing label creasing requires manual feeding and creasing by staff, resulting in low automation and some errors due to manual operation.

[0036] like Figures 1-2As shown, the embossing device for clothing labels of this utility model includes a processing box 10. Inside the processing box 10, a first conveyor belt 1, an inclined support plate 2, and a second conveyor belt 3 are arranged sequentially along the label conveying direction A. The top of the inclined support plate 2 is close to the first conveyor belt 1, and the bottom of the inclined support plate 2 is close to the second conveyor belt 3. In this embodiment, the higher side of the inclined support plate 2 is close to the first conveyor belt 1, ensuring that the label is conveyed from the first conveyor belt 1 to the top of the inclined support plate 2 and slides along the surface of the inclined support plate 2 to the bottom of the inclined support plate 2. The lower side of the inclined support plate 2 is close to the second conveyor belt 3, so that the label can slide from the bottom of the inclined support plate 2 to the second conveyor belt 3, eliminating the need for manual conveying and helping to improve work efficiency.

[0037] In this embodiment, the inclined support plate 2 is provided with a positioning hole 21, which penetrates the inclined support plate 2 along its thickness direction. A lifting motor 4 is provided below the positioning hole 21, and a limiting protrusion 5 is installed at the output end of the lifting motor 4. The lifting motor 4 drives the limiting protrusion 5 to move up and down along the positioning hole 21 to limit the label on the inclined support plate 2. Limiting guards 22 are provided vertically on both sides of the width direction Y of the inclined support plate 2. The limiting guards 22 are provided along the length direction X of the inclined support plate, and the cross-sectional shape of the limiting guards 22 is an inverted L-shaped structure. This invention optimizes the indentation device by adding limiting guards 22 and vertically movable limiting protrusions 5 to the inclined support plate 2, ensuring that the label can move along the preset position of the inclined support plate 2 under the action of gravity. At the same time, the limiting guards 22 and the limiting protrusions 5 limit the label and prevent the label from slipping off the side of the inclined support plate 2 during the indentation process.

[0038] In this embodiment, a pressure plate 6 is provided above the inclined support plate 2, and an indentation knife 7 is provided on the side of the pressure plate 6 facing the inclined support plate 2. A cylinder 8 is provided on the top of the processing box 10 to drive the pressure plate 6 to move up and down, and the output end of the cylinder 8 is fixedly connected to the pressure plate 6. The cylinder 8 drives the indentation knife 7 of the pressure plate 6 to move up and down. When the label reaches the preset position of the inclined support plate 2 under the action of the limiting stop 22 and the limiting protrusion 5, the cylinder 8 drives the indentation knife 7 to indent the label downward. At the same time, since the inclined support plate 2 is inclined, when the indentation knife 7 contacts the label, the pressure plate 6 adopts an inverted T-shaped structure, and a part of the pressure plate 6 will also contact the label on the inclined support plate 2 and press the label down, which helps to improve the stability of the label during indentation and prevents the label from shifting or shaking during indentation.

[0039] It should be noted that: the positioning hole 21 is a through hole along the width direction Y of the inclined support plate 2. This is to prevent the positioning hole 21 from being too large and affecting the label's sliding down the surface of the inclined support plate 2. The shape of the limiting protrusion 5 matches the positioning hole 21, and the size of the limiting protrusion 5 is slightly smaller than the size of the positioning hole 21. When the lifting motor 4 drives the limiting protrusion 5 to move upward along the positioning hole 21, the limiting protrusion 5 can prevent the label from continuing to slide down. At the same time, with the limiting effect of the limiting edges 22 on both sides, it prevents the label from shifting or shaking during the creasing process. After the creasing is completed, when the lifting motor 4 drives the limiting protrusion 5 to move downward along the positioning hole 21, the label can continue to slide down along the inclined support plate 2 to the second conveyor belt 3, eliminating the need for manual conveying and helping to reduce the intensity of manual labor. Furthermore, the inclined support plate 2 is fixed to the side wall of the processing box 10 with screws. Both the first conveyor belt 1 and the second conveyor belt 3 are equipped with drive motors, which are fixed to the side wall of the processing box 10. The output end of the drive motor passes through the processing box 10 and connects to the drive wheels of the first conveyor belt 1 and the second conveyor belt 3, causing the drive wheels to move the conveyor belts. The output end of the lifting motor 4 is connected to a lead screw. The lifting motor 4 drives the lead screw to rotate, which is converted into the up-and-down movement of the lead screw, thus driving the limiting protrusion 5 to move up and down. The distance between the limiting guard edges 22 on both sides of the width direction Y of the inclined support plate 2 matches the size of the label, and the height of the limiting guard edges 22 matches the thickness of the label, which can prevent the label from shifting or shaking during indentation.

[0040] The embossing device for clothing labels according to this utility model also includes a controller. The first conveyor belt 1, the second conveyor belt 3, the lifting motor 4, and the cylinder 8 are all connected to the controller. By adding a controller, the operation of each component can be controlled, and continuous embossing can be performed through the cooperation of these components, which helps to improve the automation level of the device and thus increase work efficiency. The controller is a PLC controller or an embedded controller. The PLC controller uses a programmable memory to store programs internally, execute user-oriented instructions such as logic operations, sequential control, timing, counting, and arithmetic operations, and control various types of machinery or production processes through digital or analog input / output. The embedded controller includes electronic devices or devices controlled by microprocessor chips, timers, sequence generators, or controllers, capable of performing various automated processing tasks such as monitoring and control. Both PLC controllers and embedded controllers are commercially available models.

[0041] In the embossing device for clothing labels according to this utility model, a pressure sensor is provided on the side of the limiting protrusion 5 facing the top of the inclined support plate 2, and the pressure sensor is connected to the controller. When the pressure sensor detects the label's movement, it transmits a signal to the controller. Upon receiving the pressing signal, the controller controls the cylinder 8 and the embossing blade 7 to emboss the label downwards. The pressure sensor is a commercially available thin-film pressure sensor. Thin-film pressure sensors typically employ a thin-film or membrane structure design, featuring small size and portability, and are suitable for acquiring tensile and pressure signals. Its core structure includes a pressure-sensitive element (such as a membrane) and a signal processing unit, converting deformation into an electrical signal to achieve pressure measurement.

[0042] The working principle of this utility model is as follows:

[0043] This invention optimizes the indentation device by adding a limiting edge 22 and a vertically movable limiting protrusion 5 to the inclined support plate 2. This ensures that the label, under the influence of gravity, moves along the preset position of the inclined support plate 2. Simultaneously, the limiting edge 22 and the limiting protrusion 5 limit the label, preventing it from slipping off the side of the inclined support plate 2 during indentation. The cylinder 8 drives the indentation blade 7 of the pressure plate 6 to move up and down. When the label reaches the preset position of the inclined support plate 2 under the action of the limiting edge 22 and the limiting protrusion 5, the cylinder 8 drives the indentation blade 7 downwards to indent the label. Since the inclined support plate 2 is sloped, when the indentation blade 7 contacts the label, a portion of the pressure plate 6 also contacts the label on the inclined support plate 2, pressing the label down. This helps improve the stability of the label during indentation, preventing displacement or shaking.

[0044] Example 2

[0045] Unlike Embodiment 1, in this embodiment, both the first conveyor belt 1 and the second conveyor belt 3 are arranged in a horizontal direction to prevent the labels from slipping off the conveyor belts. The height of the second conveyor belt 3 is less than that of the first conveyor belt 1. The height difference between the two is approximately the height difference between the top and bottom of the inclined support plate 2, which helps to automate the conveying of labels, eliminates the need for manual conveying, and helps to reduce the intensity of manual labor.

[0046] The other structures are the same as in Embodiment 1, and will not be described again here.

[0047] Example 3

[0048] Unlike Embodiment 1, the top and bottom of the inclined support plate 2 in this embodiment are provided with arc-shaped transition surfaces to prevent the top and bottom of the inclined support plate 2 from scratching the label, which helps to improve the yield rate of the label.

[0049] The other structures are the same as in Embodiment 1, and will not be described again here.

[0050] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments described above, and any obvious improvements, substitutions, or modifications made by those skilled in the art based on this utility model are within the protection scope of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.

Claims

1. An embossing device for garment labels, characterized in that, The processing box (10) includes a first conveyor belt (1), an inclined support plate (2) and a second conveyor belt (3) arranged sequentially inside the processing box (10) along the label conveying direction. The top of the inclined support plate (2) is close to the first conveyor belt (1), and the bottom of the inclined support plate (2) is close to the second conveyor belt (3). The inclined support plate (2) is provided with a positioning hole (21), which penetrates the inclined support plate (2) along its thickness direction. A lifting motor (4) is provided below the positioning hole (21). A limit protrusion (5) is installed at the output end of the lifting motor (4). The lifting motor (4) drives the limit protrusion (5) to move up and down along the positioning hole (21) to limit the label on the inclined support plate (2). The inclined support plate (2) has limit stops (22) vertically arranged on both sides in the width direction. The limit stops (22) are arranged along the length direction of the inclined support plate. The cross-sectional shape of the limit stops (22) is an inverted L-shaped structure. A pressure plate (6) is provided above the inclined support plate (2). An indentation knife (7) is provided on the side of the pressure plate (6) facing the inclined support plate (2). A cylinder (8) is provided on the top of the processing box (10) to drive the pressure plate (6) to move up and down. The output end of the cylinder (8) is fixedly connected to the pressure plate (6).

2. The embossing device for garment labels as described in claim 1, characterized in that: It also includes a controller, and the first conveyor belt (1), the second conveyor belt (3), the lifting motor (4) and the cylinder (8) are all connected to the controller.

3. The embossing device for garment labels as described in claim 2, characterized in that: A pressure sensor is provided on the side of the limiting protrusion (5) facing the top of the inclined support plate (2), and the pressure sensor is connected to the controller.

4. The embossing device for garment labels as described in claim 1, characterized in that: Both the first conveyor belt (1) and the second conveyor belt (3) are arranged in a horizontal direction, and the height of the second conveyor belt (3) is less than that of the first conveyor belt (1).

5. An embossing device for garment labels as described in claim 1, characterized in that: The top and bottom ends of the inclined support plate (2) are provided with arc-shaped transition surfaces.