Tear-resistant heat transfer mark for golf club

By introducing a tensile layer and a mesh-like tensile filament structure into the heat transfer label of golf clubs, the problems of deformation and tearing of the heat transfer label under external force are solved, improving the durability and anti-pollution ability of the label.

CN224153070UActive Publication Date: 2026-04-21SUIZHOU LESHI NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUIZHOU LESHI NEW MATERIAL TECH CO LTD
Filing Date
2025-04-27
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing heat transfer labels for golf clubs are prone to deformation and tearing when subjected to external force, resulting in gaps between the base layer and the release layer, which in turn leads to dust contamination.

Method used

The heat transfer label structure consists of a base layer, an icon layer, an adhesive layer, and a release layer. The release layer is composed of two layers of release paper and a tensile layer. The tensile layer is distributed in a grid pattern of transverse and longitudinal tensile filaments to improve the strength and tensile properties of the release layer.

Benefits of technology

It enhances the overall strength and tensile strength of the heat transfer label, prevents deformation and tearing, and avoids dust contamination of the label layer.

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Abstract

The utility model discloses a tear-resistant thermal transfer mark for a golf club, which relates to the technical field of thermal transfer marks and comprises a base layer, an icon layer, an adhesion layer and a release layer which are sequentially distributed from top to bottom, the release layer consists of upper release paper, a tensile layer and lower release paper, and the tensile layer is arranged on the upper release paper. The upper layer release paper and the lower layer release paper are respectively distributed on the upper side and the lower side of the tensile layer, the tensile layer is clamped between the two layers of release paper materials in the extrusion molding process of the release paper to form an integral structure, namely the release layer, so that the release layer has good strength and tensile property, and the tensile layer is not prone to deformation. Therefore, the strength and the tensile property of the whole heat transfer printing mark are improved, the heat transfer printing mark is prevented from being deformed due to being pulled by external force, and the phenomenon that after the heat transfer printing mark is deformed, a gap is formed between the base layer and the release layer, so that the icon layer is polluted by external dust is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of heat transfer label technology, specifically a tear-resistant heat transfer label for golf clubs. Background Technology

[0002] Golf club logos are the brand identifiers of golf clubs, representing the brand's image and quality. They are also an important basis for consumers to identify and choose clubs, and can reflect the club's value and grade. Existing common logo stickers usually use heat transfer printing. After heat transfer, the logo adheres tightly to the club surface, has good wear resistance, corrosion resistance, and weather resistance, and is not easily faded, peeled off, or scratched, maintaining clarity and integrity for a long time.

[0003] However, existing heat transfer labels lack tensile strength. When subjected to external force, they are prone to deformation, leading to gaps between the base layer and release layer. This allows external dust to contaminate the label layer between the base layer and release layer. Under excessive tensile force, the heat transfer label may even tear. To address this, a tear-resistant heat transfer label for golf clubs has been proposed. Utility Model Content

[0004] The purpose of this invention is to provide a tear-resistant heat transfer label for golf clubs to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a tear-resistant heat transfer label for golf clubs, comprising a base layer, an icon layer, an adhesive layer, and a release layer, wherein the base layer, icon layer, adhesive layer, and release layer are distributed sequentially from top to bottom, and the release layer is composed of an upper release paper, a tensile layer, and a lower release paper, wherein the upper release paper and the lower release paper are respectively distributed on the upper and lower sides of the tensile layer.

[0006] As a further preferred embodiment of this technical solution, the tensile layer is composed of transverse tensile filaments and longitudinal tensile filaments, and the plurality of transverse tensile filaments and the plurality of longitudinal tensile filaments are distributed in a grid pattern.

[0007] As a further preferred embodiment of this technical solution, the base layer is made of polyester film material, and the icon layer is made of polyester ink.

[0008] As a further preferred embodiment of this technical solution, the thickness of the base layer is 0.06-0.09 mm, and the thickness of the icon layer is 10-50 μm.

[0009] As a further preferred embodiment of this technical solution, the adhesive layer is made of thermoplastic resin and has a thickness of 0.02 mm.

[0010] As a further preferred embodiment of this technical solution, the thickness of the release layer is 0.08-0.2 mm.

[0011] As a further preferred embodiment of this technical solution, the tensile layer is made of polyester fiber.

[0012] This utility model provides a tear-resistant heat transfer label for golf clubs, which has the following advantages:

[0013] In the extrusion molding process of release paper, the tensile layer of this invention is sandwiched between two layers of release paper material to form an integral structure, namely the release layer. This gives the release layer good strength and tensile properties, thereby improving the overall strength and tensile properties of the heat transfer label. It prevents the heat transfer label from deforming due to external force and avoids gaps between the base layer and the release layer after the heat transfer label is deformed, which would cause external dust to contaminate the label layer. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0015] Figure 2 This is a breakdown diagram of the overall structure of this utility model;

[0016] Figure 3 This utility model Figure 2 A schematic diagram of the structure of A in the middle;

[0017] Figure 4 This is a schematic diagram of the tensile layer in this utility model;

[0018] In the diagram: 1. Base layer; 2. Icon layer; 3. Adhesive layer; 4. Release layer; 5. Upper release paper; 6. Tensile layer; 7. Lower release paper; 8. Transverse tensile filaments; 9. Longitudinal tensile filaments. Detailed Implementation

[0019] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0020] This utility model provides a technical solution: such as Figures 1 to 4 As shown in this embodiment, a tear-resistant heat transfer label for golf clubs includes a base layer 1, an icon layer 2, an adhesive layer 3, and a release layer 4. The base layer 1, icon layer 2, adhesive layer 3, and release layer 4 are distributed from top to bottom. The release layer 4 is composed of an upper release paper 5, a tensile layer 6, and a lower release paper 7. The upper release paper 5 and the lower release paper 7 are respectively distributed on the upper and lower sides of the tensile layer 6. The tensile layer 6 is composed of transverse tensile filaments 8 and longitudinal tensile filaments 9. The multiple transverse tensile filaments 8 and multiple longitudinal tensile filaments 9 are distributed in a grid pattern.

[0021] The base layer 1 is made of polyester film, and the icon layer 2 is made of polyester ink.

[0022] This design improves the adhesion between icon layer 2 and base layer 1, ensuring that icon layer 2 adheres firmly to base layer 1 during the heat transfer process. After icon layer 2 is printed on base layer 1, it needs to be dried or cured. During production, base layer 1 and release layer 4 are charged with different electrical charges using specific equipment. These opposite charges attract each other, achieving adhesion and sealing icon layer 2 between base layer 1 and release layer 4.

[0023] The thickness of the base layer 1 is 0.06-0.09mm, and the thickness of the icon layer 2 is 10-50μm.

[0024] The adhesive layer 3 is made of thermoplastic resin and has a thickness of 0.02 mm.

[0025] Its function is to firmly attach icon layer 2 to the surface of the golf club.

[0026] The thickness of the release layer 4 is 0.08-0.2 mm.

[0027] Before the transfer, the release paper serves to protect the icon layer 2, preventing it from being contaminated and sticking. The release paper usually has a smooth surface and good release properties, making it easy to peel the transfer label off the base paper during the transfer process.

[0028] Among them, the tensile layer 6 is made of polyester fiber, which has high tensile strength and toughness. During the extrusion molding process of the release paper, it is sandwiched between two layers of release paper materials to form an integral structure, namely the release layer 4. This can improve the strength and tensile properties of the release paper, thereby improving the strength and tensile properties of the entire heat transfer label and preventing the heat transfer label from deforming due to external force.

[0029] This utility model provides a tear-resistant heat transfer label for golf clubs, and its working principle is as follows:

[0030] During the extrusion molding process of the release paper, the tensile layer 6 is sandwiched between two layers of release paper material to form an integral structure, namely the release layer 4. This gives the release layer 4 good strength and tensile properties, thereby improving the overall strength and tensile properties of the heat transfer label. It prevents the heat transfer label from deforming due to external force and avoids gaps between the base layer 1 and the release layer 4 after the heat transfer label is deformed, which would cause external dust to contaminate the label layer 2.

[0031] 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 tear-resistant heat transfer label for golf clubs, comprising a base layer (1), a graphic layer (2), a tack layer (3) and a release layer (4), characterized in that: The base layer (1), icon layer (2), adhesion layer (3) and release layer (4) are sequentially distributed from top to bottom, the release layer (4) is composed of upper release paper (5), tensile layer (6) and lower release paper (7), the upper release paper (5) and lower release paper (7) are respectively distributed on the upper and lower sides of the tensile layer (6).

2. A golf club tear-resistant heat transfer label according to claim 1, wherein: The tensile layer (6) is composed of transverse tensile wire (8) and longitudinal tensile wire (9), a plurality of transverse tensile wires (8) and a plurality of longitudinal tensile wires (9) are distributed in a grid shape.

3. A tear-resistant heat transfer label for a golf club according to claim 1, wherein: The base layer (1) adopts polyester film material, and the icon layer (2) adopts polyester ink.

4. The tear-resistant heat transfer label for a golf club of claim 1, wherein: The thickness of the base layer (1) is 0.06-0.09mm, and the thickness of the icon layer (2) is 10-50μm.

5. The tear-resistant heat transfer label for a golf club of claim 1, wherein: The adhesion layer (3) adopts thermoplastic resin material, and the thickness of the adhesion layer (3) is 0.02mm.

6. A golf club tear-resistant heat transfer label according to claim 1, wherein: The thickness of the release layer (4) is 0.08-0.2mm.

7. A golf club tear-resistant heat transfer label according to claim 1 wherein: The tensile layer (6) adopts polyester fiber material.