CN203357980U - Glass fiber enhanced resin-based panel/foam composite material - Google Patents

Glass fiber enhanced resin-based panel/foam composite material Download PDF

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Publication number
CN203357980U
CN203357980U CN 201320284779 CN201320284779U CN203357980U CN 203357980 U CN203357980 U CN 203357980U CN 201320284779 CN201320284779 CN 201320284779 CN 201320284779 U CN201320284779 U CN 201320284779U CN 203357980 U CN203357980 U CN 203357980U
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China
Prior art keywords
glass
fibre reinforced
reinforced resin
fiber
base plane
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Expired - Lifetime
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CN 201320284779
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Chinese (zh)
Inventor
李露
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Sichuan Jingwen Material Technology Co ltd
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SICHUAN GUONENG WEIYE TECHNOLOGY Co Ltd
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Abstract

The utility model discloses a glass fiber enhanced resin-based panel/foam composite material which comprises a glass fiber enhanced resin-based panel layer 1 and a foam layer 2. The composite material is good in mechanical property and obvious in heat insulation fireproof performance, and can widely meet application requirements of fields such as spaceflight, transportation, construction and the like.

Description

A kind of glass-fibre reinforced resin base plane/foamed composite
Technical field
The utility model belongs to field of compound material, relates to a kind of glass-fibre reinforced resin base plane composite foam material.
Background technology
Traditional foam Sandwich materials be take natural or artificial stone, color steel, aluminium foil etc. as surface material and foam compound.The characteristics such as that these materials have is heat insulation, insulation.There is the bonding problem of stone material and foam in the compound foamed material of stone material, and preponderance, increased difficulty of construction simultaneously.The compound foamed material of color steel and aluminium foil due to its intensity and cutting performance poor, application also is confined to the fields such as ventilation shaft.Because the insulation fire protecting performance of phenol formaldehyde foam is remarkable, application is extensive.Be badly in need of the material of a kind of high-strength, light weight of exploitation so existing, can extensively meet the application of the every field such as space flight, traffic, building.
The utility model content
The purpose of this utility model is to provide a kind of good mechanical properties, insulation fire protecting performance significantly and can be at the lightweight composite foam material of a plurality of fields extensive use.
The purpose of this utility model realizes by following technical proposals:
A kind of glass-fibre reinforced resin base plane/foamed composite, comprise glass-fibre reinforced resin basal plane flaggy 1 and froth bed 2, and glass-fibre reinforced resin basal plane flaggy 1 and froth bed 2 bond together, and described glass-fibre reinforced resin base plane consists of resin and glass.
As optimal way, described composite comprises at least two glass-fibre reinforced resin basal plane flaggies 1 and at least one froth bed 2, and described glass-fibre reinforced resin basal plane flaggy 1 is arranged alternately with described froth bed 2, forms " sandwich " structure.Adopt described " sandwich " structure, by being arranged alternately glass-fibre reinforced resin basal plane flaggy and froth bed, be conducive to improve the mechanical property distribution inhomogeneities, can when controlling composite density, improve its comprehensive mechanical performance.
As optimal way, " shell " that described composite consists of glass-fibre reinforced resin basal plane flaggy 1 coats " kernel " that froth bed 2 forms, and forms " nucleocapsid " structure.Adopt " nucleocapsid " structure to improve on the one hand the composite outward appearance, make on the other hand composite all make moderate progress at the mechanical strength of multiple directions.
As optimal way, described resin is phenolic resins or epoxy resin.Adopt phenolic resins or epoxy resin raw material to be easy to get, be easy to processing.
As optimal way, described foam is phenol formaldehyde foam, adopts phenol formaldehyde foam to be conducive to improve the insulation fire protecting performance of material.
As optimal way, described glass is covered by resin matrix.Fiber plays and strengthens and toughness reinforcing effect in resin matrix.
As optimal way, described glass is random orientation in resin matrix.Random orientation is distributed in resin matrix glass in a jumble, is conducive to guarantee the uniformity of material; Be conducive to improve the intensity of material on all directions, increase the isotropism of material.
As optimal way, described glass layer distributed in resin matrix.Glass in same layer can be random orientation.As preferably, also can make in same layer the orientation of glass identical.Adopt identical fiber orientation to be conducive to, according to the application needs, improve the mechanical strength of specific direction.As preferably, can also make the glass orientation between the adjacent fiber layer different, thereby in multiple directions, resin matrix be strengthened simultaneously.
As optimal way, the glass-fiber-fabric that described glass is knitting forming, the number of plies of described glass-fiber-fabric is at least one deck, by selecting the glass-fiber-fabric of knitting forming, make to strengthen more remarkable effect, and it is easier directly glass-fiber-fabric to be immersed in resin to the curing molding operation in production process.The weight of every square metre as preferred described glass-fiber-fabric is at least 600g.Guarantee that resin material obtains enough enhancings.
As optimal way, contain the multilayer glass-fiber-fabric in described resin, the fiber orientation in the adjacent two layers glass-fiber-fabric is different.Be conducive in multiple directions, resin matrix be strengthened.
As optimal way, described glass-fiber-fabric is at least three axle weaving fiberglass cloth, is conducive in multiple directions, resin matrix be strengthened, and the number of plies of described glass-fiber-fabric is at least one deck.By being set, the multilayer glass-fiber-fabric makes the better effects if strengthened.
The beneficial effects of the utility model:
The utility model is by compound by glass-fibre reinforced resin base plane and foam, obtained a kind of good mechanical properties, insulation fire protecting performance significantly and can be at the lightweight composite foam material of a plurality of fields extensive use.Material therefor is light material, guaranteed the lightweight characteristic of composite, adopt the glass-fibre reinforced resin base plane, intensity and the cutting performance of material have been improved, by adjusting the wherein orientation of glass, the intensity of material all directions is all increased, improve the mechanical performance of material, be convenient to the application in every field such as space flight, traffic, buildings.
The accompanying drawing explanation
Fig. 1 is the schematic diagram of the described glass-fibre reinforced resin base plane/foamed composite of embodiment 1;
Fig. 2 is the schematic diagram of the described glass-fibre reinforced resin base plane/foamed composite of embodiment 2;
Fig. 3 is the schematic diagram of the described glass-fibre reinforced resin base plane/foamed composite of embodiment 3;
Fig. 4 is the profile of the described glass-fibre reinforced resin base plane/foamed composite of embodiment 4;
Fig. 5 is the structural representation of a kind of glass-fibre reinforced resin base plane described in the utility model;
Fig. 6 is the structural representation of the another kind of glass-fibre reinforced resin base plane described in the utility model.
Reference numeral: in figure, 1 is glass-fibre reinforced resin basal plane flaggy, and 2 is froth bed, and 11 is resin matrix, and 12 is glass.
The specific embodiment
Below in conjunction with specific embodiments and the drawings, the utility model is further described.
embodiment 1
As shown in Figure 1, a kind of glass-fibre reinforced resin base plane/foamed composite, comprise glass-fibre reinforced resin basal plane flaggy 1 and froth bed 2, and glass-fibre reinforced resin basal plane flaggy 1 and froth bed 2 bond together, and forms layer structure.
As optimal way, described resin is phenolic resins or epoxy resin.Described foam is phenol formaldehyde foam, adopts phenol formaldehyde foam to be conducive to improve the insulation fire protecting performance of material.
As optimal way, described glass-fibre reinforced resin base plane consists of resin matrix 11 and glass 12, and described glass 12 is covered by resin matrix 11, as shown in Figure 5.
As optimal way, described glass is random orientation in resin matrix.
As optimal way, described glass layer distributed in resin matrix, as shown in Figure 6.Glass in same layer can be random orientation, also can align.
As preferably, can also make the glass between the adjacent fiber layer align along different directions.
As optimal way, the glass-fiber-fabric that described glass is knitting forming.
As optimal way, contain the multilayer glass-fiber-fabric in described resin, the fiber orientation in the adjacent two layers glass-fiber-fabric is different.
As optimal way, the glass-fiber-fabric that described glass-fiber-fabric is at least three axle braidings, the number of plies of described glass-fiber-fabric is at least one deck.
embodiment 2
As shown in Figure 2, a kind of glass-fibre reinforced resin base plane/foamed composite, comprise two glass-fibre reinforced resin basal plane flaggies 1 and a froth bed 2, and described froth bed 2, between two glass-fibre reinforced resin basal plane flaggies 1, forms " sandwich " structure.
As optimal way, described resin is phenolic resins or epoxy resin.Described foam is phenol formaldehyde foam, adopts phenol formaldehyde foam to be conducive to improve the insulation fire protecting performance of material.
As optimal way, described glass-fibre reinforced resin base plane consists of resin matrix 11 and glass 12, and described glass 12 is covered by resin matrix 11, as shown in Figure 5.
As optimal way, described glass is random orientation in resin matrix.
As optimal way, described glass layer distributed in resin matrix, as shown in Figure 6.Glass in same layer can be random orientation, also can align.
As preferably, can also make the glass between the adjacent fiber layer align along different directions.
As optimal way, the glass-fiber-fabric that described glass is knitting forming.
As optimal way, contain the multilayer glass-fiber-fabric in described resin, the fiber orientation in the adjacent two layers glass-fiber-fabric is different.
As optimal way, the glass-fiber-fabric that described glass-fiber-fabric is at least three axle braidings, the number of plies of described glass-fiber-fabric is at least one deck.
embodiment 3
As shown in Figure 3, a kind of glass-fibre reinforced resin base plane/foamed composite, comprise four glass-fibre reinforced resin basal plane flaggies 1 and three froth beds 2, and described glass-fibre reinforced resin basal plane flaggy 1 is arranged alternately with described froth bed 2, forms " sandwich " structure.
As optimal way, described resin is phenolic resins or epoxy resin.Described foam is phenol formaldehyde foam, adopts phenol formaldehyde foam to be conducive to improve the insulation fire protecting performance of material.
As optimal way, described glass-fibre reinforced resin base plane consists of resin matrix 11 and glass 12, and described glass 12 is covered by resin matrix 11, as shown in Figure 5.
As optimal way, described glass is random orientation in resin matrix.
As optimal way, described glass layer distributed in resin matrix, as shown in Figure 6.Glass in same layer can be random orientation, also can align.
As preferably, can also make the glass between the adjacent fiber layer align along different directions.
As optimal way, the glass-fiber-fabric that described glass is knitting forming.
As optimal way, contain the multilayer glass-fiber-fabric in described resin, the fiber orientation in the adjacent two layers glass-fiber-fabric is different.
As optimal way, described glass-fiber-fabric is at least three axle weaving fiberglass cloth, and the number of plies of described glass-fiber-fabric is at least one deck.
embodiment 4
As shown in Figure 4, a kind of glass-fibre reinforced resin base plane/foamed composite, " shell " that described composite consists of glass-fibre reinforced resin basal plane flaggy 1 coats " kernel " that froth bed 2 forms, and forms " nucleocapsid " structure.
As optimal way, described resin is phenolic resins or epoxy resin.Described foam is phenol formaldehyde foam, adopts phenol formaldehyde foam to be conducive to improve the insulation fire protecting performance of material.
As optimal way, described glass-fibre reinforced resin base plane consists of resin matrix 11 and glass 12, and described glass 12 is covered by resin matrix 11, as shown in Figure 5.
As optimal way, described glass is random orientation in resin matrix.
As optimal way, described glass layer distributed in resin matrix, as shown in Figure 6.Glass in same layer can be random orientation, also can align.
As preferably, can also make the glass between the adjacent fiber layer align along different directions.
As optimal way, the glass-fiber-fabric that described glass is knitting forming.
As optimal way, contain the multilayer glass-fiber-fabric in described resin, the fiber orientation in the adjacent two layers glass-fiber-fabric is different.
As optimal way, the glass-fiber-fabric that described glass-fiber-fabric is at least three axle braidings, the number of plies of described glass-fiber-fabric is at least one deck.
The foregoing is only preferred embodiment of the present utility model; not in order to limit the utility model; all any modifications of doing within spirit of the present utility model and principle, be equal to and replace and improvement etc., within all should being included in protection domain of the present utility model.

Claims (10)

1. a glass-fibre reinforced resin base plane/foamed composite, it is characterized in that: described material comprises glass-fibre reinforced resin basal plane flaggy (1) and froth bed (2), and described glass-fibre reinforced resin base plane (1) consists of resin and glass.
2. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 1, it is characterized in that: described material comprises at least two glass-fibre reinforced resin basal plane flaggies (1) and at least one froth bed (2), described glass-fibre reinforced resin basal plane flaggy (1) is arranged alternately with described froth bed (2), forms " sandwich " structure.
3. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 1, it is characterized in that: " shell " that described material consists of glass-fibre reinforced resin basal plane flaggy (1) coats " kernel " that froth bed (2) forms, and forms " nucleocapsid " structure.
4. as claim 1 or 2 or 3 described glass-fibre reinforced resin base plane/foamed composites, it is characterized in that: described resin is phenolic resins or epoxy resin, and described foam is phenol formaldehyde foam.
5. as claim 1 or 2 or 3 described glass-fibre reinforced resin base plane/foamed composites, it is characterized in that: described glass is covered by resin matrix.
6. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 5, it is characterized in that: described glass is random orientation in resin matrix.
7. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 5, it is characterized in that: described glass layer distributed in resin matrix, in same layer, the orientation of glass is identical.
8. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 5, is characterized in that: the glass-fiber-fabric that described glass is knitting forming.
9. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 8, is characterized in that: contain the multilayer glass-fiber-fabric in described resin, the fiber orientation difference in the adjacent two layers glass-fiber-fabric.
10. glass-fibre reinforced resin base plane/foamed composite as claimed in claim 8 is characterized in that: described glass-fiber-fabric is the glass-fiber-fabric of at least three axles braidings, and the number of plies of described glass-fiber-fabric is at least one deck.
CN 201320284779 2013-05-23 2013-05-23 Glass fiber enhanced resin-based panel/foam composite material Expired - Lifetime CN203357980U (en)

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Application Number Priority Date Filing Date Title
CN 201320284779 CN203357980U (en) 2013-05-23 2013-05-23 Glass fiber enhanced resin-based panel/foam composite material

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Application Number Priority Date Filing Date Title
CN 201320284779 CN203357980U (en) 2013-05-23 2013-05-23 Glass fiber enhanced resin-based panel/foam composite material

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107989213A (en) * 2017-12-29 2018-05-04 糜玥崎 Using the heat insulating thermal preserving board of foam cement, production method and the metope using the plate
CN113211928A (en) * 2021-05-11 2021-08-06 中机精密成形产业技术研究院(安徽)股份有限公司 Integral forming process of foamed aluminum and fiber reinforced resin matrix composite sandwich board

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107989213A (en) * 2017-12-29 2018-05-04 糜玥崎 Using the heat insulating thermal preserving board of foam cement, production method and the metope using the plate
CN113211928A (en) * 2021-05-11 2021-08-06 中机精密成形产业技术研究院(安徽)股份有限公司 Integral forming process of foamed aluminum and fiber reinforced resin matrix composite sandwich board

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C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20160923

Address after: 620000 Meishan city of Sichuan Province East Logistics Meishan Economic Development Zone north of the main channel of MJDA-037.

Patentee after: SICHUAN GAONENG HI-TECH BIOLOGICAL RESIN Co.,Ltd.

Address before: 620010 Meishan City, Sichuan Province Economic Development Zone East Dongpo District

Patentee before: SICHUAN GUONENG WEIYE TECHNOLOGY Co.,Ltd.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20200610

Address after: 618500 northwest side of national highway 108, Jinshan Industrial Park, Luojiang County, Deyang City, Sichuan Province

Patentee after: Sichuan Jingwen Material Technology Co.,Ltd.

Address before: 620000 Meishan city of Sichuan Province East Logistics Meishan Economic Development Zone north of the main channel of MJDA-037.

Patentee before: SICHUAN GAONENG HI-TECH BIOLOGICAL RESIN Co.,Ltd.

CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20131225