CN216584859U - High elasticity antistatic foam convenient to assemble - Google Patents

High elasticity antistatic foam convenient to assemble Download PDF

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Publication number
CN216584859U
CN216584859U CN202123428012.9U CN202123428012U CN216584859U CN 216584859 U CN216584859 U CN 216584859U CN 202123428012 U CN202123428012 U CN 202123428012U CN 216584859 U CN216584859 U CN 216584859U
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layer
antistatic
main body
structures
bump
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CN202123428012.9U
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Chinese (zh)
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王俊君
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Shenzhen China Photoelectric Co ltd
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Shenzhen China Photoelectric Co ltd
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Abstract

The utility model discloses a high elasticity antistatic bubble cotton convenient to assemble relates to the cotton field of bubble, and it is poor to the antistatic effect that current bubble cotton exists, has the potential safety hazard, poor stability's problem, the scheme as follows is now proposed, and it includes the major structure, the major structure lateral wall is provided with the lug structure, one side that the major structure is close to the lug structure is provided with groove structure, major structure and lug structure bottom are provided with the silica gel adhesive linkage, one side that major structure and lug structure were kept away from to the silica gel adhesive linkage is provided with from type ply, major structure and lug structure all include scientific and technological cloth, flame retardant coating, antistatic layer, the cotton layer of bubble, supporting layer, bleeder vent and compound bonding glue film. The utility model discloses novel structure, and the controllability that uses is strong, and application scope is wide, and wearability and coefficient of friction are high, prevent that static is effectual, and stability and elasticity are high, are convenient for assemble, can carry out used repeatedly, avoid the wasting of resources.

Description

High elasticity antistatic foam convenient to assemble
Technical Field
The utility model relates to a bubble cotton field especially relates to a static bubble is prevented to high elasticity convenient to assemble.
Background
The foam is a common sealing product in electronic products, the traditional foam still has certain defects in the using process, such as poor antistatic effect, potential safety hazard, difficulty in repeated use, inconvenience in flexible splicing and use according to actual needs, resource waste and poor stability, and therefore, in order to solve the problems, the high-elasticity antistatic foam convenient to assemble is provided.
SUMMERY OF THE UTILITY MODEL
The utility model provides a pair of static bubble is prevented to high elasticity convenient to assemble is cotton, and it is poor to have solved the static effect of preventing that current bubble cotton exists, has the potential safety hazard, the poor problem of stability.
In order to realize the purpose, the utility model adopts the following technical scheme:
the utility model provides a high elasticity antistatic bubble is cotton convenient to assemble, includes the major structure, the major structure lateral wall is provided with the lug structure, one side that the major structure is close to the lug structure is provided with groove structure, major structure and lug structure bottom are provided with the silica gel adhesive linkage, one side that major structure and lug structure were kept away from to the silica gel adhesive linkage is provided with from type paper layer, major structure and lug structure all include scientific and technological cloth, flame retardant coating, antistatic layer, bubble cotton layer, supporting layer, bleeder vent and compound bonding glue film, two the major structure connects through the lug structure.
Preferably, the bump structure and the groove structure are arranged on the adjacent side walls of the main body structure, the bump structure and the groove structure are arranged on four sides of the main body structure, and the bump structure and the groove structure are mutually matched in a sleeved mode.
Preferably, the silica gel adhesive linkage and the release paper layer all flush with the lateral wall of major structure, lug structure and groove structure, just the level of major structure, lug structure and groove structure is all unanimous.
Preferably, the science and technology cloth inboard is provided with the flame retardant coating, the inboard that the science and technology cloth was kept away from to the flame retardant coating is provided with the antistatic layer, the inboard that the flame retardant coating was kept away from to the antistatic layer is provided with the cotton layer of bubble, one side that the antistatic layer was kept away from on the cotton layer of bubble is provided with the supporting layer, the supporting layer inboard is provided with the bleeder vent.
Preferably, all be provided with compound adhesive layer between science and technology cloth and flame retardant coating, flame retardant coating and antistatic layer, antistatic layer and the cotton layer of bubble, bubble and the supporting layer, just science and technology cloth, flame retardant coating, antistatic layer, the cotton layer of bubble and supporting layer all bond through compound adhesive layer.
Preferably, microencapsulated red phosphorus is filled in the fireproof layer and is wrapped by a nickel plating layer, the antistatic layer is formed by laminating ethoxylated alkylamine materials, and a plurality of air holes are arranged in a rectangular array.
Preferably, the bump structure and the groove structure are symmetrically arranged by taking the central axis of the main body structure as a symmetry axis, and the bump structure is matched with the groove structure of the adjacent main body structure in a sleeved mode.
Preferably, the bump structure and the groove structure are uniformly arranged on four sides of the main body structure, the bump structure is embedded in the groove structures of two adjacent main body structures, and the bump structure is matched with the groove structure in a sleeved mode.
The utility model has the advantages that:
1. through setting up lug structure and groove structure and matching, make the lug structure embedded in groove structure to assemble the connection to major structure to lug structure and groove structure, thereby assemble the use size of demand with this bubble cotton, the controllability of reinforcing use enlarges application scope.
2. Through setting up science and technology cloth and object contact, improve its wearability and coefficient of friction, play waterproof, grease proofing effect simultaneously, be convenient for clean, it prevents fires to set up the flame retardant coating, and set up antistatic layer and silica gel adhesive linkage and carry out dual antistatic, the static effect is prevented in the optimization, and the silica gel adhesive linkage is repeatability bonding material, be convenient for carry out used repeatedly to the bubble cotton, avoid extravagant, set up the supporting layer and support, guarantee the stability and the elasticity of its structure, and through range upon range of mode, reduce the cotton collapse rate of bubble, improve its elasticity of use.
In conclusion, the foam has the advantages of strong adjustability, wide application range, high wear resistance and friction coefficient, good anti-static effect, high stability and elasticity, convenience in assembly, reusability and resource waste avoidance.
Drawings
Fig. 1 is a schematic diagram of the three-dimensional structure of the present invention.
Fig. 2 is a schematic structural diagram of the present invention.
Fig. 3 is a schematic sectional view of the present invention.
Fig. 4 is a schematic cross-sectional view taken along line a-a of fig. 2 according to the present invention.
Fig. 5 is the structure schematic diagram after the splicing of the utility model.
Fig. 6 is the structure schematic diagram of the embodiment 2 of the present invention after splicing.
Fig. 7 is an exploded view of embodiment 2 of the present invention.
Reference numbers in the figures: 1. a body structure; 2. a bump structure; 3. a groove structure; 4. a silica gel adhesive layer; 5. a release paper layer; 6. a technical cloth; 7. a fire barrier layer; 8. an antistatic layer; 9. soaking a cotton layer; 10. a support layer; 11. air holes are formed; 12. and compounding the adhesive layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Example 1
Referring to fig. 1-5, a high elasticity antistatic foam convenient to assemble, including major structure 1, major structure 1 lateral wall is provided with lug structure 2, one side that major structure 1 is close to lug structure 2 is provided with groove structure 3, major structure 1 and 2 bottoms of lug structure are provided with silica gel adhesive linkage 4, one side that major structure 1 and lug structure 2 were kept away from to silica gel adhesive linkage 4 is provided with from type paper layer 5, major structure 1 and lug structure 2 all include science and technology cloth 6, flame retardant coating 7, antistatic layer 8, bubble cotton layer 9, supporting layer 10, bleeder vent 11 and compound bonding glue film 12, two major structure 1 connects through lug structure 2.
As shown in fig. 2 and fig. 3, the bump structure 2 and the groove structure 3 are disposed on the adjacent side walls of the main structure 1, the bump structure 2 and the groove structure 3 are disposed on the four sides of the main structure 1, the bump structure 2 and the groove structure 3 are mutually matched in a sleeved manner, the bump structure 2 and the groove structure 3 are symmetrically disposed by using the central axis of the main structure 1 as the symmetry axis, the bump structure 2 is matched in a sleeved manner with the groove structure 3 of the adjacent main structure 1, and the main structure 1 is assembled by the bump structure 2 and the groove structure 3, so that the foam can be assembled into required sizes, the adjustability can be enhanced, and the application range can be enlarged.
As shown in fig. 3 and 4, silica gel adhesive linkage 4 and release paper layer 5 all flush with major structure 1, lug structure 2 and groove structure 3's lateral wall, just major structure 1, lug structure 2 and groove structure 3's level is all unanimous, bonds through using silica gel adhesive linkage 4, and silica gel adhesive linkage 4 is repeatability bonding material, is convenient for carry out used repeatedly to the bubble cotton, avoids extravagant, scientific and technological cloth 6 inboard is provided with flame retardant coating 7, the inboard that scientific and technological cloth 6 was kept away from to flame retardant coating 7 is provided with antistatic layer 8, the inboard that flame retardant coating 7 was kept away from to antistatic layer 8 is provided with bubble cotton layer 9, one side that antistatic layer 8 was kept away from to bubble cotton layer 9 is provided with supporting layer 10, supporting layer 10 inboard is provided with bleeder vent 11, scientific and technological cloth 6 and flame retardant coating 7, flame retardant coating 7 and antistatic layer 8, antistatic layer 8 and bubble cotton layer 9, All be provided with compound bonding glue film 12 between bubble cotton layer 9 and the supporting layer 10, just science and technology cloth 6, flame retardant coating 7, antistatic layer 8, bubble cotton layer 9 and supporting layer 10 all bond through compound bonding glue film 12, 7 inside packings of flame retardant coating have microencapsulated red phosphorus, and by nickel coating parcel, antistatic layer 8 comprises ethoxylation alkylamine material range upon range of, bleeder vent 11 is rectangular array and is provided with a plurality ofly, sets up antistatic layer 8 and silica gel adhesive linkage 4 and carries out the dual static electricity of preventing, optimizes antistatic effect.
Example 2
As shown in fig. 6 and 7, the difference from the above embodiment 1 is: the lug structures 2 and the groove structures 3 are all evenly arranged on four sides of the main body structure 1, the lug structures 2 are embedded in the groove structures 3 of the two adjacent main body structures 1, the lug structures 2 are matched with the groove structures 3 in a sleeved mode, the lug structures 2 are embedded in the groove structures 3 of the two adjacent main body structures 1, the main body structures 1 are connected through the lug structures 2, and splicing is completed.
The working principle is as follows: when the high-elasticity antistatic foam is used, firstly, the high-elasticity antistatic foam is spliced according to the use requirement to ensure that a convex block structure 2 is matched with a groove structure 3, then the convex block structure 2 is arranged in the groove structure 3, a main body structure 1 is spliced and connected through the convex block structure 2 and the groove structure 3 to be spliced into the required use specification, the high-elasticity antistatic foam is matched with the position to be used, then a release paper layer 5 is separated from a silica gel bonding layer 4, the high-elasticity antistatic foam is bonded with the position to be used through the silica gel bonding layer 4, the high-elasticity antistatic foam can be used after bonding is finished, a technical cloth 6 is contacted with an object in the use process, fire is prevented through a fire-proof layer 7, static electricity is prevented through an antistatic layer 8, and the high-elasticity antistatic foam keeps the stability of the structure through a supporting layer 10, after the use is finished, the high-elasticity antistatic foam can be torn off for repeated use.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (8)

1. A high-elasticity antistatic foam convenient to assemble comprises a main body structure (1), it is characterized in that the side wall of the main body structure (1) is provided with a convex block structure (2), a groove structure (3) is arranged on one side of the main body structure (1) close to the bump structure (2), the bottom ends of the main body structure (1) and the lug structure (2) are provided with a silica gel adhesive layer (4), a release paper layer (5) is arranged on one side of the silica gel bonding layer (4) far away from the main body structure (1) and the bump structure (2), major structure (1) and lug structure (2) all include scientific and technological cloth (6), flame retardant coating (7), antistatic layer (8), bubble cotton layer (9), supporting layer (10), bleeder vent (11) and compound bonding glue film (12), two major structure (1) is connected through lug structure (2).
2. The high-elasticity antistatic foam convenient to assemble according to claim 1, wherein the bump structures (2) and the groove structures (3) are arranged on the adjacent side walls of the main body structure (1), the bump structures (2) and the groove structures (3) are arranged on the four sides of the main body structure (1), and the bump structures (2) and the groove structures (3) are mutually matched in a sleeved mode.
3. The high-elasticity antistatic foam convenient to assemble according to claim 1, wherein the silica gel adhesive layer (4) and the release paper layer (5) are flush with the side walls of the main body structure (1), the bump structure (2) and the groove structure (3), and the horizontal heights of the main body structure (1), the bump structure (2) and the groove structure (3) are consistent.
4. The high elasticity antistatic foam convenient to assemble according to claim 1, characterized in that, science and technology cloth (6) inboard is provided with flame retardant coating (7), the inboard that science and technology cloth (6) was kept away from in flame retardant coating (7) is provided with antistatic layer (8), the inboard that flame retardant coating (7) was kept away from in antistatic layer (8) is provided with the cotton layer of bubble (9), one side that antistatic layer (8) was kept away from in the cotton layer of bubble (9) is provided with supporting layer (10), supporting layer (10) inboard is provided with bleeder vent (11).
5. The high-elasticity antistatic foam convenient to assemble according to claim 1, characterized in that a composite adhesive layer (12) is arranged between the scientific and technological cloth (6) and the fireproof layer (7), the fireproof layer (7) and the antistatic layer (8), the antistatic layer (8) and the foam layer (9), the foam layer (9) and the supporting layer (10), and the scientific and technological cloth (6), the fireproof layer (7), the antistatic layer (8), the foam layer (9) and the supporting layer (10) are bonded through the composite adhesive layer (12).
6. The high-elasticity antistatic foam convenient to assemble as claimed in claim 1, wherein the plurality of air holes (11) are arranged in a rectangular array.
7. The high-elasticity antistatic foam convenient to assemble according to claim 1, wherein the bump structures (2) and the groove structures (3) are symmetrically arranged by taking the central axis of the main body structure (1) as a symmetry axis, and the bump structures (2) are matched with the groove structures (3) of the adjacent main body structure (1) in a sleeved mode.
8. The high-elasticity antistatic foam convenient to assemble according to claim 1, wherein the bump structures (2) and the groove structures (3) are uniformly arranged on four sides of the main body structure (1), the bump structures (2) are embedded in the groove structures (3) of two adjacent main body structures (1), and the bump structures (2) are matched with the groove structures (3) in a sleeved mode.
CN202123428012.9U 2021-12-31 2021-12-31 High elasticity antistatic foam convenient to assemble Active CN216584859U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123428012.9U CN216584859U (en) 2021-12-31 2021-12-31 High elasticity antistatic foam convenient to assemble

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123428012.9U CN216584859U (en) 2021-12-31 2021-12-31 High elasticity antistatic foam convenient to assemble

Publications (1)

Publication Number Publication Date
CN216584859U true CN216584859U (en) 2022-05-24

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Application Number Title Priority Date Filing Date
CN202123428012.9U Active CN216584859U (en) 2021-12-31 2021-12-31 High elasticity antistatic foam convenient to assemble

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116353145A (en) * 2023-02-17 2023-06-30 盐城睿赛耳新材料有限公司 Foam material capable of reducing heat conductivity coefficient through addition

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116353145A (en) * 2023-02-17 2023-06-30 盐城睿赛耳新材料有限公司 Foam material capable of reducing heat conductivity coefficient through addition
CN116353145B (en) * 2023-02-17 2024-02-02 盐城睿赛耳新材料有限公司 Foam material capable of reducing heat conductivity coefficient through addition

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