Tensile heat-conducting insulating adhesive tape

By introducing abrasion-resistant protective components and reinforced tensile and abrasion-resistant mechanisms into the insulating tape, the problems of deformation and damage during pulling and pressing are solved, resulting in better tensile and abrasion resistance and improved adhesion and fixation stability.

CN224226934UActive Publication Date: 2026-05-12HUANGSHI TIANZHI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUANGSHI TIANZHI TECH CO LTD
Filing Date
2025-03-13
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing insulating tapes are prone to surface deformation and friction damage when pulled and pressed for bonding and fixing, leading to breakage and affecting the tensile strength, wear resistance, convenience, and effectiveness of bonding and fixing.

Method used

A tensile thermally conductive insulating tape was designed, which includes abrasion-resistant protective components, a reinforced tensile abrasion-resistant mechanism, and a side protection mechanism. The tensile and abrasion-resistant properties of the adhesive are enhanced through components such as abrasion-resistant layers, connecting raised strips, and side connecting protective sheets.

Benefits of technology

It effectively prevents deformation and damage of the tape during bonding and fixing, improves tensile strength, wear resistance, ease of use, and enhances the stability and durability of bonding and fixing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tensile heat-conducting insulating adhesive tape which comprises an insulating adhesive tape main body, the insulating adhesive tape main body comprises a winding drum, a main insulating adhesive tape body is wound on the outer surface of the winding drum, a main adhesive is arranged on the lower surface of the main insulating adhesive tape body, and a reinforced tensile wear-resistant mechanism is further arranged on the insulating adhesive tape main body. By designing the reinforced tensile wear-resistant mechanism, when the main insulating tape body is pulled and pressed to be more tightly pasted, the surface in direct contact with the wear-resistant layer is subjected to wear-resistant protection during pressing; meanwhile, during pressing, under the protection of a first connecting protruding strip and a second connecting protruding strip, the interior of the main insulating rubber tape body is not prone to pressing deformation, meanwhile, tensile protection is enhanced, tensile wear-resistant pressing protection use is effectively enhanced, bonding fixing stress is not prone to deformation or damage, effective bonding fixing is achieved, and the service life of the main insulating rubber tape body is prolonged. And the tensile wear-resistant convenience and the use effect of bonding and fixing the insulating tape main body are improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of insulating tape, specifically relating to a tensile-resistant thermally conductive insulating tape. Background Technology

[0002] The existing term "insulating tape" specifically refers to the tape used by electricians to prevent leakage and provide insulation. Also known as insulating cloth or tape, insulating tape is directly fixed to the location of use with adhesive for insulation and protection. It undergoes tensile testing through a tensile layer, which also provides thermal conductivity during bonding and fixing.

[0003] Existing insulating tapes require pressing again on the surface to ensure a tighter bond when directly applied to the desired location. Furthermore, this pressing and pulling process does not allow for enhanced tensile strength, easily causing internal deformation and friction damage to the upper surface, and even severe deformation leading to breakage. This affects the tensile strength, wear resistance, ease of use, and overall performance of the insulating tape. Therefore, this invention proposes a tensile-resistant thermally conductive insulating tape. Utility Model Content

[0004] The purpose of this utility model is to provide a tensile-resistant thermally conductive insulating tape to solve the problems mentioned in the background art, such as the difficulty in strengthening the tensile strength of the insulating tape when it is pulled and pressed to bond and fix it, which easily causes the upper surface of the insulating tape to be stressed, resulting in internal deformation and friction damage to the upper surface, or even severe deformation leading to breakage, thus reducing the bonding and fixing effect.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a tensile-resistant thermally conductive insulating tape, comprising an insulating tape body, the insulating tape body including a winding drum, a main insulating tape body wound on the outer surface of the winding drum, a main adhesive disposed on the lower surface of the main insulating tape body, and the insulating tape body further comprising:

[0006] A tensile and abrasion resistant mechanism is provided, and the tensile and abrasion resistant mechanism includes an abrasion resistant protective component disposed on the surface of the main insulating tape body, wherein the inner surface of the abrasion resistant protective component is provided at the connection between the upper surface of the main insulating tape body and the tensile and abrasion resistant component.

[0007] The side protection mechanism includes side protection components disposed on both sides of the main insulating tape body, and the inner surface of the side protection components is provided with adhesive fixing components.

[0008] Preferably, a thermally conductive layer is provided inside the main insulating tape body, and a tensile-resistant layer is provided on the surface of the thermally conductive layer body.

[0009] Preferably, the wear-resistant protective component includes a wear-resistant layer disposed on the surface of the main insulating tape, and the wear-resistant layer has a rectangular structure.

[0010] Preferably, the reinforced tensile and wear-resistant component includes a second connecting protrusion formed at equal intervals on the upper surface of the main insulating tape, and a first connecting protrusion is provided on the lower surface of the wear-resistant layer, and the surface structures of the first connecting protrusion and the second connecting protrusion match.

[0011] Preferably, the first connecting protrusion and the wear-resistant layer are an integral structure, and the first connecting protrusion and the second connecting protrusion are bonded and fixed by adhesive.

[0012] Preferably, the side protection assembly includes side connecting protection pieces disposed on both sides of the main insulating tape body, and the two side connecting protection pieces are symmetrically arranged.

[0013] Preferably, the adhesive fixing assembly includes an auxiliary adhesive disposed on the inner surface of the side connecting protective sheet, and the side connecting protective sheet is bonded and fixed to the side of the main insulating tape body by the auxiliary adhesive.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] By designing a reinforced tensile and abrasion-resistant mechanism, when the main insulating tape is pulled and pressed for a tighter bond, the surface directly in contact with the abrasion-resistant layer is protected against abrasion. Simultaneously, under the protection of connecting protrusions one and two, the internal structure of the main insulating tape is less prone to deformation during pressing, while simultaneously enhancing tensile protection. This facilitates effective tensile and abrasion-resistant pressing protection, making the adhesive bonding less susceptible to deformation and damage under stress, thus improving the ease of use and overall performance of the insulating tape. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a cross-sectional structural diagram of the main insulating tape body and the wear-resistant layer of this utility model;

[0018] Figure 3 This utility model Figure 2 Enlarged structural diagram of section B;

[0019] Figure 4 This is a schematic diagram of the structure of the main insulating tape body and the wear-resistant layer of this utility model in a partially opened state;

[0020] Figure 5 This utility model Figure 1 Enlarged structural diagram of section A;

[0021] Figure 6 This utility model Figure 5 Enlarged structural diagram of section C;

[0022] In the diagram: 100, main body of insulating tape; 101, winding drum; 102, main insulating tape body; 1021, wear-resistant layer; 1022, connecting protrusion one; 1023, connecting protrusion two; 1024, side connecting protective sheet; 1025, auxiliary adhesive; 103, main adhesive; 104, thermally conductive layer; 105, tensile layer. Detailed Implementation

[0023] 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.

[0024] Please see Figures 1 to 6 This utility model provides a technical solution: a tensile-resistant thermally conductive insulating tape, comprising an insulating tape body 100, the insulating tape body 100 including a winding drum 101, a main insulating tape body 102 wound on the outer surface of the winding drum 101, a main adhesive 103 disposed on the lower surface of the main insulating tape body 102, a thermally conductive layer 104 disposed inside the main insulating tape body 102, and a tensile-resistant layer 105 disposed on the surface of the thermally conductive layer 104, facilitating the bonding and fixing of the insulating tape body 100 for insulation protection, and facilitating tensile treatment of the main insulating tape body 102 through the tensile-resistant layer 105 during bonding and fixing, facilitating effective pulling and opening of the bonded and fixed tape, and facilitating thermal conduction treatment of the tensile-resistant layer 105 during use, the insulating tape body 100 also being provided with:

[0025] The tensile and abrasion-resistant mechanism is reinforced, and this reinforced tensile and abrasion-resistant mechanism includes an abrasion-resistant protective component disposed on the surface of the main insulating tape body 102. The inner surface of the abrasion-resistant protective component is provided at the connection between it and the upper surface of the main insulating tape body 102. When the insulating tape body 100 is opened and pressed to be bonded and fixed, the reinforced tensile and abrasion-resistant mechanism directly strengthens its tensile and abrasion resistance, making the main insulating tape body 102 less prone to deformation and damage under the force of bonding and fixing, and effectively bonding, fixing and insulating protection.

[0026] In order to facilitate the contact of the wear-resistant layer 1021 with the surface during pressing and fixing, and to prevent damage during pressing, in this embodiment, preferably, the wear-resistant protective component includes a wear-resistant layer 1021 disposed on the surface of the main insulating tape 102, and the wear-resistant layer 1021 has a rectangular structure, so that the surface of the wear-resistant layer 1021 can be directly contacted to press and reinforce the main insulating tape 102 during bonding and fixing, and it is not easy to deform or cause friction damage during pressing and bonding.

[0027] To facilitate tensile and abrasion protection during the bonding and fixing of the main insulating tape 102 by strengthening the tensile and abrasion resistant components and prevent damage, in this embodiment, preferably, the strengthening tensile and abrasion resistant components include connecting protrusions 1023 formed at equal intervals on the upper surface of the main insulating tape 102, and connecting protrusions 1022 are provided on the lower surface of the abrasion-resistant layer 1021. The surface structures of connecting protrusions 1022 and connecting protrusions 1023 are matched, so that when the main insulating tape 102 is bonded and fixed, the connecting protrusions 1022 and connecting protrusions 1023 can be used to press and tighten the main insulating tape 102 with compressive strength and abrasion resistance, effectively securing and bonding the tape.

[0028] The side protection mechanism includes side protection components disposed on both sides of the main insulating tape body 102. The inner surface of the side protection components is provided with adhesive fixing components, which can protect and reinforce the side of the insulating tape body 100 during transportation or adhesive fixing.

[0029] In order to facilitate the side protection of the main insulating tape 102 during transportation and to reinforce the connection between the two main insulating tapes 102 during bonding and fixing, in this embodiment, preferably, the side protection assembly includes side connecting protection pieces 1024 disposed on both sides of the main insulating tape 102, and the two side connecting protection pieces 1024 are symmetrically arranged. This allows for easy side protection of the main insulating tape 102 during transportation and facilitates enhanced bonding and fixing of the two main insulating tapes 102 during bonding and fixing.

[0030] In order to facilitate the adhesion of the side connection protection piece 1024 to the side of the main insulating tape body 102 through the adhesive fixing assembly, and to strengthen the protection of the side connection protection piece 1024 at the connection point during adhesive fixing, in this embodiment, preferably, the adhesive fixing assembly includes an auxiliary adhesive 1025 disposed on the inner surface of the side connection protection piece 1024, and the side connection protection piece 1024 and the side of the main insulating tape body 102 are bonded and fixed by the auxiliary adhesive 1025. According to the needs of use, the side connection protection piece 1024 can be bonded to the side of the main insulating tape body 102 by the auxiliary adhesive 1025 for protection. When it is necessary to strengthen the connection point of the two main insulating tape bodies 102, the two side connection protection pieces 1024 unfolded on the side are overlapped and bonded together for reinforcement.

[0031] The working principle and usage process of this utility model are as follows: When using this type of tensile thermally conductive insulating tape, the main insulating tape body 102 is opened directly and the main adhesive 103 is used to contact and fix the main insulating tape body 102 at the bonding and fixing position for insulation protection. During bonding and fixing, the tensile layer 105 is used to treat the main insulating tape body 102 for tensile strength, which facilitates effective opening and closing of the adhesive tape body. At the same time, the tensile layer 105 is used to treat the main insulating tape body for thermal conductivity, thereby effectively bonding and fixing the insulating tape body 100 for use.

[0032] Then, during the pre-use processing of the insulating tape body 100, the connecting protrusion 1022 and connecting protrusion 2 1023 are directly closed and bonded together, thereby fixing the wear-resistant layer 1021 to the upper surface of the main insulating tape body 102. This allows the insulating tape body 100 to be bonded and fixed at the desired location after processing. When a tighter bond is required, the main insulating tape body 102 can be pulled and pressed. When pressing, the surface of the wear-resistant layer 1021 is directly pressed for wear protection. At the same time, under the protection of the connecting protrusion 1022 and connecting protrusion 2 1023, the interior of the main insulating tape body 102 is less likely to be deformed by pressing, while the tensile protection is strengthened. This facilitates effective tensile and wear-resistant pressing protection, making the bonding and fixing less prone to deformation and damage under stress. This improves the tensile and wear-resistant convenience and usage effect of the insulating tape body 100 in bonding and fixing.

[0033] Finally, when the insulating tape body 100 is transported after processing and production, it is directly bonded to the side connection protection piece 1024 on the side of the main insulating tape body 102 using the auxiliary adhesive 1025 for protection. This prevents the side of the main insulating tape body 102 from being squeezed and deformed, facilitating protection during transportation. Simultaneously, when the insulating tape body 100 is bonded and fixed, the side connection protection piece 1024 can be used as needed. When no side reinforcement is required, the main insulating tape body 102 can be directly bonded and fixed. When reinforcement is needed at the side connection of the two main insulating tape bodies 102, the side connection protection piece 1024 can be torn off, and the two side connection protection pieces 1024 can be overlapped and bonded using the auxiliary adhesive 1025. This facilitates stronger adhesion when the main insulating tape body 102 is bonded and fixed, improving the convenience and strength of side protection and adhesion of the main insulating tape body 102 during transportation.

[0034] Although embodiments of the present invention have been shown and described (see the detailed description above), 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 tensile-resistant thermally conductive insulating tape, comprising an insulating tape body (100), the insulating tape body (100) comprising a winding drum (101), a main insulating tape body (102) wound onto the outer surface of the winding drum (101), and a main adhesive (103) disposed on the lower surface of the main insulating tape body (102), characterized in that: The insulating tape body (100) is also provided with: The tensile and abrasion resistant mechanism is reinforced, and the tensile and abrasion resistant mechanism includes an abrasion resistant protective component disposed on the surface of the main insulating tape (102), wherein the inner surface of the abrasion resistant protective component is provided at the connection between the upper surface of the main insulating tape (102) and the reinforced tensile and abrasion resistant component. The side protection mechanism includes side protection components disposed on both sides of the main insulating tape body (102), and the inner surface of the side protection components is provided with adhesive fixing components.

2. The tensile-strength thermally conductive insulating tape according to claim 1, characterized in that: The main insulating tape (102) has a heat-conducting layer (104) inside, and a tensile layer (105) is provided on the surface of the heat-conducting layer (104).

3. The tensile-strength thermally conductive insulating tape according to claim 1, characterized in that: The wear-resistant protective component includes a wear-resistant layer (1021) disposed on the surface of the main insulating tape (102), and the wear-resistant layer (1021) has a rectangular structure.

4. The tensile-strength thermally conductive insulating tape according to claim 3, characterized in that: The reinforced tensile and wear-resistant component includes a second connecting protrusion (1023) equidistantly formed on the upper surface of the main insulating tape (102), and a first connecting protrusion (1022) is provided on the lower surface of the wear-resistant layer (1021), and the surface structure of the first connecting protrusion (1022) matches that of the second connecting protrusion (1023).

5. The tensile-strength thermally conductive insulating tape according to claim 4, characterized in that: The first connecting protrusion (1022) and the wear-resistant layer (1021) are an integral structure, and the first connecting protrusion (1022) and the second connecting protrusion (1023) are bonded and fixed by adhesive.

6. The tensile-strength thermally conductive insulating tape according to claim 1, characterized in that: The side protection assembly includes side connection protection pieces (1024) disposed on both sides of the main insulating tape body (102), and the two side connection protection pieces (1024) are symmetrically arranged.

7. The tensile-strength thermally conductive insulating tape according to claim 6, characterized in that: The adhesive fixing assembly includes an auxiliary adhesive (1025) disposed on the inner surface of the side connection protective sheet (1024), and the side of the side connection protective sheet (1024) and the main insulating tape body (102) are bonded and fixed by the auxiliary adhesive (1025).