Packaging assembly for heat-conducting gasket

Through the design of multi-layer packaging components, the protection problem of thermal gaskets in severe vibration and humid environments is solved, and all-round protection and convenient access are achieved.

CN223303234UActive Publication Date: 2025-09-05SHENZHEN JINGRUI ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422893976.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-09-05
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

The packaging of existing thermal gaskets cannot provide sufficient protection under severe vibration or impact, and is poorly stored in humid environments, which affects the performance of use and is prone to damage the surface when taken out and used.

Method used

It adopts a multi-layer packaging component design, including an inner packaging layer, an anti-static film, an intermediate layer and an outer packaging layer. The inner packaging layer consists of an inner film and an anti-static film. The intermediate layer consists of moisture-proof paper and a desiccant plate. The outer packaging layer consists of a buffer pad and a dust bag. A guide patch and a button switch are set to facilitate the removal of the thermal gasket.

Benefits of technology

It provides all-round protection for the thermal pad, preventing oxidation, electrostatic damage and moisture intrusion, providing double-layer buffering to ensure it is not damaged during transportation and storage, and improving the convenience of removal and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of packaging, and particularly discloses a packaging assembly for a heat-conducting gasket. The packaging assembly for the heat-conducting gasket comprises the heat-conducting gasket, inner packaging layers, a middle layer and an outer packaging layer, the heat-conducting gasket is a square soft elastic sheet with an adhesive surface, the inner packaging layers wrap and are attached to the outer sides of the upper wide face and the lower wide face of the heat-conducting gasket, and the middle layer is attached to the outer side of the inner packaging layers. The outer packaging layer is attached to the other side of the middle layer, the area of the middle layer is equal to that of the inner packaging layer, and the area of the outer packaging layer is larger than that of the middle layer; according to the packaging assembly, through the multi-layer and multifunctional structural design of the packaging assembly, comprehensive protection on the heat conduction gasket is achieved, the inner packaging layer provides basic protection and anti-oxidation and anti-static functions, the middle layer further prevents moisture and moisture from invading, and double-layer buffering protection is provided through the arrangement of the buffering cushion and the air bag column of the outer packaging layer.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, and in particular provides a packaging component for a thermally conductive pad. Background Art

[0002] Thermal pads are typically packaged using two layers of plastic film or plastic bags. This simple and low-cost packaging method is suitable for general transportation and storage. However, it doesn't provide adequate protection from severe vibration or impact, which can easily damage the pads. Furthermore, it doesn't properly preserve the pads in humid weather and environments. Furthermore, current packaging methods don't ensure the surface of the pads remains intact during removal, which can affect their performance. Utility Model Content

[0003] Based on this, it is necessary to provide a packaging assembly for a thermally conductive gasket to solve at least one technical problem in the background technology.

[0004] A packaging assembly for a thermally conductive gasket comprises a thermally conductive gasket, an inner packaging layer, an intermediate layer and an outer packaging layer. The thermally conductive gasket is a square soft elastic sheet with a sticky surface. The inner packaging layer is wrapped and laminated on the outer sides of the upper and lower wide surfaces of the thermally conductive gasket. The intermediate layer is laminated on the outer side of the inner packaging layer. The outer packaging layer is laminated on the other side of the intermediate layer. The area of ​​the intermediate layer is equal to that of the inner packaging layer, and the area of ​​the outer packaging layer is larger than that of the intermediate layer.

[0005] As a further improvement of the present invention, the inner packaging layer includes an inner film and an anti-static film. The inner film is two-piece, and the two films of the inner film are respectively adhered to and wrapped around the upper and lower surfaces of the thermal gasket. The inner side of the inner film is provided with an anti-oxidation coating. The anti-static film is a pocket-shaped film sleeve formed by two single-layer anti-static films. The anti-static films are adjacently wrapped and arranged on the outside of the two inner films. The laying area of ​​the inner film and the anti-static film is larger than the area of ​​the thermal gasket, and the area of ​​the anti-static film is larger than the area of ​​the inner film.

[0006] As a further improvement of the present invention, a guide patch is provided on one side of the anti-static film below the thermal pad. The guide patch is a long-handled soft elastic plate. The guide patch includes a fixed portion and an extended portion. The fixed portion is circular, and a cylindrical fixed strip extending vertically upward is provided at the center of the fixed portion. The fixed portion is one end portion of the guide patch, and the extended portion is a long strip handle extending from the fixed portion.

[0007] As a further improvement of the present invention, a fixing circular hole is opened in the middle of the thermal gasket, the cross-sectional diameter of the fixing strip is equal to the cross-sectional diameter of the fixing circular hole, the height of the fixing strip is less than or equal to the thickness of the thermal gasket, the fixing strip is embedded in the fixing circular hole, and the fixing portion is provided with a raised side of the fixing strip attached to the middle of the thermal gasket.

[0008] As a further improvement of the present invention, the middle layer includes moisture-proof paper and a desiccant plate. The moisture-proof paper is a pocket-shaped paper cover formed by two single layers of moisture-proof paper. The moisture-proof paper is wrapped adjacently and arranged on the outside of the anti-static film. The desiccant plate is a rectangular thin plate. The desiccant plate is fitted on the outside of the upper and lower surfaces of the moisture-proof paper.

[0009] As a further improvement of the present invention, the outer packaging layer includes a cushioning pad and a dust-proof bag. There are two cushioning pads, which are respectively attached to the two sides of the desiccant plate away from the moisture-proof paper. The dust-proof bag is a sealed pocket. The area of ​​the dust-proof bag is larger than that of the middle layer. The upper and lower sides of the dust-proof bag vacuum-seal and wrap the middle layer, inner packaging layer and thermal conductive gasket.

[0010] As a further improvement of the present invention, a thermoplastic sealing area and an opening area are provided around the dust bag that does not contact the buffer pad. The thermoplastic sealing area is concave, and the thermal conductive gasket is accommodated in the middle of the concave part of the thermoplastic sealing area. The opening area is located on the upper side of the thermoplastic sealing area and is adjacent to the thermoplastic sealing area. Four airbag columns are also provided inside the dust bag, and the four airbag columns are respectively located in the four corner areas of the thermoplastic sealing area.

[0011] As a further improvement of the present invention, a sealing opening is provided on the opening area, which includes a semicircular tear opening in the middle and two tear lines connecting the two ends of the semicircular tear opening respectively. The straight length of the sealing opening is smaller than the edge length of the opening area and larger than the edge length of the thermal pad.

[0012] As a further improvement of the present invention, a button switch and an opening piece are also provided on the extension part. The button switch is arranged at the end of the extension part, and the opening piece is arranged below the end of the extension part and connected to the button switch. The button switch can control the extension and retraction of the opening piece. The opening piece is located inside the dust bag and resists the sealing mouth.

[0013] As a further improvement of the present invention, an anti-touch cover is further provided on the outside of the outer packaging layer, and the anti-touch cover is sleeved on the button switch with a dust-proof bag between them.

[0014] The beneficial effects of the utility model are as follows:

[0015] 1. The multi-layered, multifunctional packaging design achieves comprehensive protection for the thermal pad. The inner packaging layer provides basic protection, anti-oxidation, and anti-static properties. The middle layer further prevents moisture and humidity intrusion. The outer packaging layer's cushioning pads and airbag columns provide double-layer cushioning protection. The sealing design of the packaging assembly provides comprehensive protection for the thermal pad.

[0016] 2. By setting up the guide patch, the thermal pad can be easily taken out by manipulating the extension part. At the same time, the fixing strip supports and fixes the thermal pad on the guide patch, ensuring a firm connection between the guide patch and the thermal pad. The guide patch will not fall out or shift at will during the process of taking and operating the thermal pad. The design of the extension handle avoids directly holding the pad by hand, thereby reducing the stickiness and performance loss of the pad surface, which affects the use effect.

[0017] 3. The button switch and the opening piece on the extension part are set. By pressing the button switch, the opening piece can be driven to open the sealing mouth, so that the user can quickly and conveniently pull the opened sealing mouth to tear the package along the tear line, and can quickly take out the thermal pad for use, thereby improving the convenience and safety of user operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a three-dimensional schematic diagram of an embodiment of the present utility model.

[0019] Figure 2 This is a plan view of an embodiment of the present invention with the outer packaging removed from the side when vacuum extraction is not performed.

[0020] Figure 3 for Figure 1 Enlarged schematic diagram of point A in the middle.

[0021] Figure 4 This is a top perspective schematic diagram of an embodiment of the present invention after removing the inner packaging layer, the middle layer and the outer packaging layer above the thermal conductive pad.

[0022] Figure 5 This is a three-dimensional schematic diagram of a guide patch in one embodiment of the present invention.

[0023] In the figure: 10, thermal pad; 11, fixed circular hole; 20, inner packaging layer; 21, inner film; 22, anti-static film; 30, middle layer; 31, moisture-proof paper; 32, desiccant plate; 40, outer packaging layer; 41, cushioning pad; 42, dust bag; 43, thermoplastic sealing area; 430, airbag column; 44, opening area; 45, sealing mouth; 46, anti-touch cover; 50, guide patch; 51, fixing part; 510, fixing strip; 52, extension part; 53, button switch; 54, opening piece. DETAILED DESCRIPTION

[0024] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present invention. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure of the present invention.

[0025] In the description of the present invention, it should be noted that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used herein are for the purpose of describing specific embodiments only and are not intended to limit this invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0027] See also Figures 1 to 5 A packaging assembly for a thermally conductive gasket includes a thermally conductive gasket 10, an inner packaging layer 20, an intermediate layer 30 and an outer packaging layer 40. The thermally conductive gasket 10 is a square soft elastic sheet with a sticky surface. The inner packaging layer 20 is wrapped and laminated on the outer sides of the upper and lower wide surfaces of the thermally conductive gasket 10. The intermediate layer 30 is laminated on the outer side of the inner packaging layer 20. The outer packaging layer 40 is laminated on the other side of the intermediate layer 30. The area of ​​the intermediate layer 30 is equal to the area of ​​the inner packaging layer 20, and the area of ​​the outer packaging layer 40 is larger than that of the intermediate layer 30.

[0028] The inner packaging layer 20 includes an inner film 21 and an antistatic film 22. The inner film 21 is a two-piece type. The two films of the inner film 21 are respectively adhered to and wrapped around the upper and lower surfaces of the thermal gasket 10. The inner side of the inner film 21 is provided with an anti-oxidation coating. The antistatic film 22 is a pocket-shaped film sleeve formed by two single-layer antistatic films. The antistatic film 22 is adjacently wrapped and arranged on the outside of the two inner films 21. The laying area of ​​the inner film 21 and the antistatic film 22 is larger than the area of ​​the thermal gasket 10, and the area of ​​the antistatic film 22 is larger than the area of ​​the inner film 21.

[0029] In one embodiment, the inner film 21 has excellent flatness, stiffness, and transparency, and possesses excellent physical properties and chemical stability, capable of protecting the thermal pad 10 from mechanical damage and chemical corrosion. It also has certain release properties to prevent adhesion. Polyimide film, PET release film, or other similar films can be used.

[0030] In one embodiment, the side of the inner film 21 that adheres to the thermal pad 10 is provided with an anti-oxidation coating, which can be a thin layer of antioxidant. This coating prevents the thermal pad 10 from reacting with oxygen in the air during storage or transportation, leading to performance degradation or deterioration. Positioning the coating on the inner side of the inner film 21 ensures close contact between the thermal pad 10 and the anti-oxidation coating, thereby more effectively preventing oxidation. An anti-static film 22 is also provided on the outer side of the inner film 21 to more effectively isolate static electricity from the external environment, preventing damage to the thermal pad 10 caused by static electricity.

[0031] like Figure 5 As shown, a guide patch 50 is provided on one side of the antistatic film 22 below the thermal pad 10. The guide patch 50 is a long-handled soft elastic plate. The guide patch 50 includes a fixed portion 51 and an extended portion 52. The fixed portion 51 is circular, and a cylindrical fixed strip 510 extending vertically upward is provided at the center of the fixed portion 51. The fixed portion 51 is one end portion of the guide patch 50, and the extended portion 52 is a long handle extending from the fixed portion 51.

[0032] In one embodiment, the edge of the guide patch 50 should be smooth and free of burrs to avoid damage to the thermal pad 10 during sliding. The material of the guide patch 50 has a certain hardness and toughness, and a certain softness, so as to play a supporting and guiding role when picking up and operating the thermal pad 10, while avoiding excessive pressure or damage to the thermal pad 10 during transportation and storage. The guide patch 50 can be made of materials such as PET (polyethylene terephthalate) or PP (polypropylene).

[0033] A fixing circular hole 11 is opened in the middle of the thermal gasket 10, the cross-sectional diameter of the fixing bar 510 is equal to the cross-sectional diameter of the fixing circular hole 11, the height of the fixing bar 510 is less than or equal to the thickness of the thermal gasket 10, the fixing bar 510 is embedded in the fixing circular hole 11, and the fixing portion 51 is provided with a raised side of the fixing bar 510 attached to the middle of the thermal gasket 10.

[0034] In one embodiment, since the fixing portion 51 of the guide patch 50 is attached to the thermal gasket 10, the thermal gasket 10 can be moved by moving the extension portion 52, which can be used to facilitate the removal of the thermal gasket 10. At the same time, the fixing strip 510 supports and fixes the thermal gasket 10 on the guide patch 50, ensuring a firm connection between the guide patch 50 and the thermal gasket 10, so that the guide patch 50 will not fall out or shift at will during the process of removing the thermal gasket 10. The design of the handle of the extension portion 52 avoids directly holding the gasket by hand, thereby reducing the stickiness and performance loss of the gasket surface, affecting the use effect.

[0035] The middle layer 30 includes a moisture-proof paper 31 and a desiccant plate 32. The moisture-proof paper 31 is a pocket-shaped paper cover formed by two single layers of moisture-proof paper. The moisture-proof paper 31 is wrapped adjacently and arranged on the outside of the antistatic film 22. The desiccant plate 32 is a rectangular thin plate. The desiccant plate 32 is attached to the outside of the upper and lower surfaces of the moisture-proof paper 31.

[0036] In one embodiment, the middle layer 30 provides two layers of moisture-proof protection for the thermal gasket 10. The first layer is a moisture-proof paper 31. The moisture-proof paper 31 uses aluminum foil or a special moisture-proof film. The moisture-proof paper 31 can prevent the intrusion of moisture, and the second layer of desiccant plate 32 is used to absorb moisture inside the package. The two together maintain the stability of the thermal gasket 10 in a dry environment and prevent the performance of the thermal gasket 10 from being affected by moisture.

[0037] The outer packaging layer 40 includes a cushioning pad 41 and a dust-proof bag 42. There are two cushioning pads 41. The two cushioning pads 41 are respectively attached to the two sides of the desiccant plate 32 away from the moisture-proof paper 31. The dust-proof bag 42 is a sealed pocket. The area of ​​the dust-proof bag 42 is larger than the area of ​​the middle layer 30. The upper and lower sides of the dust-proof bag 42 vacuum-seal and wrap the middle layer 30, the inner packaging layer 20 and the thermal conductive gasket 10.

[0038] In one embodiment, the setting of the buffer pad 41 can provide a certain buffering effect to prevent the thermal gasket 10 from being damaged due to collision or extrusion during transportation. The dust bag 42 is a high-strength impact-resistant plastic, which is used to resist external shock and vibration. The dust bag 42 is the outermost layer of the packaging component and can wrap the thermal gasket 10 and various protective layers inside. The sealed pocket design of the dust bag 42 can effectively prevent dust and impurities from entering the interior of the package, thereby maintaining the cleanliness of the thermal gasket 10.

[0039] A thermoplastic sealing area 43 and an opening area 44 are provided around the dust bag 42 that is not in contact with the buffer pad 41. The thermoplastic sealing area 43 is concave, and the thermal conductive gasket 10 is accommodated in the middle of the concave part of the thermoplastic sealing area 43. The opening area 44 is located on the upper side of the thermoplastic sealing area 43 and is adjacent to the thermoplastic sealing area 43. Four airbag columns 430 are also provided inside the dust bag 42, and the four airbag columns 430 are respectively located in the four corner areas of the thermoplastic sealing area 43.

[0040] A sealing opening 45 is provided on the opening area 44. The sealing opening 45 includes a semicircular tear opening in the middle and two tear lines connecting the two ends of the semicircular tear opening respectively. The straight length of the sealing opening 45 is smaller than the edge length of the opening area 44 and larger than the edge length of the thermal pad 10.

[0041] In one embodiment, the thermoplastic sealing area 43 on the dust bag 42 ensures that the thermally conductive gasket 10 is securely contained within the dust bag 42. The sealing opening 45 provided on the opening area 44 facilitates the user to open the package and remove the thermally conductive gasket 10. Airbag columns 430 are provided in the four corners of the thermoplastic sealing area 43 to further enhance the shock resistance and stability of the overall packaging assembly.

[0042] In one embodiment, after the thermal conductive gasket 10, inner packaging layer 20, middle layer 30 and outer packaging layer 40 of the packaging component are assembled, the interior of the packaging component needs to be vacuumed to keep the interior of the packaging component dry and clean, reduce the area of ​​the packaging component, and facilitate transportation and storage.

[0043] The extension portion 52 is also provided with a button switch 53 and an opening piece 54. The button switch 53 is arranged through the end of the extension portion 52. The opening piece 54 is arranged below the end of the extension portion 52 and is connected to the button switch 53. The button switch 53 can control the extension and retraction of the opening piece 54. The opening piece 54 is located inside the dust bag 42 and abuts against the sealing opening 45.

[0044] In one embodiment, the button switch 53 is elastically connected to the opening piece 54. The opening piece 54 is made of a sharp and non-deformable material, such as stainless steel or hard plastic. A mechanical drive mechanism is provided under the button switch 53. When the button switch 53 is pressed, the opening piece 54 will extend toward the direction of the semicircular tear in the middle of the sealing opening 45 to resist and scrape the tear to form a break, so that the user can tear open the package along the tear line by pulling the break.

[0045] An anti-touch cover 46 is further provided on the outer side of the outer packaging layer 40 . The anti-touch cover 46 is sleeved on the button switch 53 with the dust-proof bag 42 between them.

[0046] In one embodiment, the anti-touch cover 46 is provided to prevent the user from accidentally touching the switch when touching the dust bag 42 but does not need to open it, thereby maintaining the integrity of the dust bag 42. The anti-touch cover 46 is glued to the surface of the dust bag 42 and can be detached by manual force.

[0047] In one embodiment, for a completely packaged thermal gasket packaging assembly, by pressing the button switch 53, the unsealing piece 54 can be extended and the sealing opening 45 can be opened. The user can tear the package along the tear line by pulling the tear to allow air to enter the packaging assembly. The user opens the dust bag 42 and takes out the thermal gasket 10 by pulling the extension part 52. First, the inner film 21 on the side of the thermal gasket 10 that does not contact the guide patch 50 is removed. The extension part 52 is operated to fit the thermal gasket 10 to the item that needs to use the thermal gasket 10. By gently pressing the inner film 21 on the other side that has not been removed, the thermal gasket 10 can be firmly fitted. Then, the inner film 21 on the pressing surface is also removed. Then, the guide patch 50 is gently rotated to achieve the separation of the guide patch 50 and the thermal gasket 10. At this time, the fitting of another item that uses the thermal gasket 10 to the thermal gasket 10 can be completed.

[0048] This packaging component can achieve:

[0049] (1) Comprehensive protection of the thermal pad 10 is achieved through a multi-layered, multifunctional structural design. The inner packaging layer 20 provides basic protection as well as anti-oxidation and anti-static functions. The middle layer 30 further prevents the intrusion of water and moisture. The cushioning pad 41 and the airbag column 430 of the outer packaging layer 40 provide double-layer cushioning protection. After the various parts of the packaging component are assembled, the interior is vacuumed to keep the interior of the packaging component dry and clean, and the area of ​​the packaging component is reduced, making it easier to transport and store.

[0050] (2) The setting of the guide patch 50 makes it easy to take the thermal pad 10 by manipulating the extension part 52. At the same time, the fixing strip 510 supports and fixes the thermal pad 10 on the guide patch 50, ensuring a firm connection between the guide patch 50 and the thermal pad 10, so that the guide patch 50 will not fall out or shift at will during the process of taking and operating the thermal pad 10. The design of the handle of the extension part 52 avoids directly holding the pad by hand, thereby reducing the stickiness and performance loss of the pad surface, which affects the use effect.

[0051] (3) The button switch 53 and the opening piece 54 on the extension portion 52 are arranged so that the opening piece 54 can be driven to open the sealing opening 45 by pressing the button switch 53, so that the user can quickly and conveniently pull the opened sealing opening 45 to tear the package along the tear line, and can quickly take out the thermal pad 10 for use, thereby improving the convenience and safety of user operation.

[0052] The above-described embodiments merely represent several embodiments of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the concept of the present invention, and these variations and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.

Claims

1. A packaging assembly for a thermally conductive gasket, characterized in that: The invention comprises a thermally conductive gasket (10), an inner packaging layer (20), an intermediate layer (30) and an outer packaging layer (40), wherein the thermally conductive gasket (10) is a square soft elastic sheet with a sticky surface, the inner packaging layer (20) is wrapped and attached to the outer sides of the upper and lower wide surfaces of the thermally conductive gasket (10), the intermediate layer (30) is attached to the outer side of the inner packaging layer (20), and the outer packaging layer (40) is attached to the other side of the intermediate layer (30), the area of ​​the intermediate layer (30) is equal to the area of ​​the inner packaging layer (20), and the area of ​​the outer packaging layer (40) is larger than the area of ​​the intermediate layer (30).

2. The packaging assembly for a thermally conductive gasket according to claim 1, wherein: The inner packaging layer (20) includes an inner film (21) and an antistatic film (22), the inner film (21) is a two-piece type, the two films of the inner film (21) are respectively attached to and wrapped around the upper and lower surfaces of the thermal pad (10), the inner side of the inner film (21) is provided with an anti-oxidation coating, the antistatic film (22) is a pocket-shaped film sleeve formed by two single-layer antistatic films, the antistatic film (22) is adjacently wrapped and arranged on the outside of the two inner films (21), the laying area of ​​the inner film (21) and the antistatic film (22) is larger than the area of ​​the thermal pad (10), and the area of ​​the antistatic film (22) is larger than the area of ​​the inner film (21).

3. The packaging assembly for a thermally conductive gasket according to claim 2, wherein: A guide patch (50) is provided on one side of the antistatic film (22) below the thermal pad (10). The guide patch (50) is a long-handled soft elastic plate. The guide patch (50) includes a fixed portion (51) and an extended portion (52). The fixed portion (51) is circular. A cylindrical fixed strip (510) extending vertically upward is provided at the center of the fixed portion (51). The fixed portion (51) is one end of the guide patch (50), and the extended portion (52) is a long strip-shaped handle extending from the fixed portion (51).

4. The packaging assembly for a thermally conductive gasket according to claim 3, wherein: A fixing circular hole (11) is provided in the middle of the thermally conductive gasket (10); the cross-sectional diameter of the fixing strip (510) is equal to the cross-sectional diameter of the fixing circular hole (11); the height of the fixing strip (510) is less than or equal to the thickness of the thermally conductive gasket (10); the fixing strip (510) is embedded in the fixing circular hole (11); and the fixing portion (51) is provided with a raised side of the fixing strip (510) attached to the middle of the thermally conductive gasket (10).

5. The packaging assembly for a thermally conductive gasket according to claim 4, characterized in that: The middle layer (30) includes a moisture-proof paper (31) and a desiccant plate (32). The moisture-proof paper (31) is a pocket-shaped paper sleeve formed by two single layers of moisture-proof paper. The moisture-proof paper (31) is adjacently wrapped and arranged on the outside of the antistatic film (22). The desiccant plate (32) is a rectangular thin plate. The desiccant plate (32) is attached to the outside of the upper and lower surfaces of the moisture-proof paper (31).

6. The packaging assembly for a thermally conductive gasket according to claim 5, characterized in that: The outer packaging layer (40) includes a cushion pad (41) and a dust-proof bag (42). There are two cushion pads (41). The two cushion pads (41) are respectively attached to the two surfaces of the desiccant plate (32) away from the moisture-proof paper (31). The dust-proof bag (42) is a sealed pocket. The area of ​​the dust-proof bag (42) is larger than the area of ​​the middle layer (30). The upper and lower sides of the dust-proof bag (42) vacuum-seal and wrap the middle layer (30), the inner packaging layer (20) and the thermal conductive gasket (10).

7. The packaging assembly for a thermally conductive gasket according to claim 6, characterized in that: The dust bag (42) is provided with a thermoplastic sealing area (43) and an opening area (44) at the periphery thereof which is not in contact with the buffer pad (41); the thermoplastic sealing area (43) is concave; the thermal conductive gasket (10) is accommodated in the middle of the concave portion of the thermoplastic sealing area (43); the opening area (44) is located on the upper side of the thermoplastic sealing area (43) and adjacent to the thermoplastic sealing area (43); four airbag columns (430) are further provided inside the dust bag (42); the four airbag columns (430) are respectively located in the four corner areas of the thermoplastic sealing area (43).

8. The packaging assembly for a thermally conductive gasket according to claim 7, characterized in that: The opening area (44) is provided with a sealing opening (45), the sealing opening (45) comprising a semicircular tear opening in the middle and two tear lines respectively connecting the two ends of the semicircular tear opening, the straight length of the sealing opening (45) being less than the edge length of the opening area (44) and greater than the edge length of the thermal pad (10).

9. The packaging assembly for a thermally conductive gasket according to claim 8, characterized in that: The extension portion (52) is further provided with a button switch (53) and an unsealing piece (54). The button switch (53) is provided through the end of the extension portion (52). The unsealing piece (54) is provided below the end of the extension portion (52) and is connected to the button switch (53). The button switch (53) can control the expansion and contraction of the unsealing piece (54). The unsealing piece (54) is located inside the dust bag (42) and abuts against the sealing opening (45).

10. The packaging assembly for a thermally conductive gasket according to claim 9, characterized in that: An anti-touch cover (46) is further provided on the outside of the outer packaging layer (40), and the anti-touch cover (46) is sleeved on the button switch (53) at a distance from the dustproof bag (42).