A carbon fiber reinforced substrate comprising a fabric composed of carbon fiber bundles and a first resin adhering to the fabric. Each of the carbon fiber bundles comprises numerous continuous carbon filaments, has the tensile modulus of 210 GPa or more, and has the fracture strain energy of 40 MJ
A carbon fiber reinforced substrate comprising a fabric composed of carbon fiber bundles and a first resin adhering to the fabric. Each of the carbon fiber bundles comprises numerous continuous carbon filaments, has the tensile modulus of 210 GPa or more, and has the fracture strain energy of 40 MJ/m3 or more. The amount of the first resin adhering to the fabric is in a range from 1 to 20 parts by weight per 100 parts by weight of said fabric. A preform comprising a laminate composed of plural layers of the carbon fiber reinforced substrate, wherein the layers are integrated by means of the first resin. A composite comprising the preform impregnated with a matrix resin.
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The invention claimed is: 1. A carbon fiber reinforced substrate comprising a fabric composed of carbon fiber bundles and a first resin adhering to said fabric, wherein said carbon fiber bundles respectively comprise numerous continuous carbon filaments, the tensile modulus of said carbon fiber bun
The invention claimed is: 1. A carbon fiber reinforced substrate comprising a fabric composed of carbon fiber bundles and a first resin adhering to said fabric, wherein said carbon fiber bundles respectively comprise numerous continuous carbon filaments, the tensile modulus of said carbon fiber bundles is 210 GPa or more, and the fracture strain energy of said carbon fiber bundles is 40 MJ/m3 or more, and wherein a main component of said first resin is a thermoplastic resin, the amount of said first resin adhering to said fabric is in a range from 1 to 20 parts by weight per 100 parts by weight of said fabric, said first resin is adhered relatively more densely on a surface of said fabric than in the inside of said carbon fiber bundles, and said first resin is studded discontinuously on the surface of said fabric, and further wherein air permeability of said carbon fiber reinforced substrate is in a range from 10 to 200 cm3/cm2 쨌sec. 2. The carbon fiber reinforced substrate according to claim 1, wherein the amount of said first resin is in a range from 1 to 10 parts by weight per 100 parts by weight of said fabric. 3. The carbon fiber reinforced substrate according to claim 1, wherein said tensile modulus of said carbon fiber bundles is in a range from more than 280 to less than 500 GPa, and the fracture strain energy of said carbon fiber bundles is 53 MJ/m3 or more. 4. The carbon fiber reinforced substrate according to claim 1, wherein said fabric is a uni-directional woven fabric, bi-directional woven fabric or uni-directional sheet, the carbon fiber unit weight of the carbon fiber substrate is in a range from 50 to 500 g/m2, and the thickness of the carbon fiber substrate is in a range from 0.1 to 0.8 mm. 5. The carbon fiber reinforced substrate according to claim 1, wherein diameters of studded pieces of said first resin are 1 mm or less. 6. The carbon fiber reinforced substrate according to claim 1, wherein said first resin adheres on a surface of said fabric, and the average thickness of the first resin adhering on the surface is in a range from 5 to 250 μm. 7. The carbon fiber reinforced substrate according to claim 1, wherein the melting point or flow initiation temperature of said first resin is in a range from 50 to 150째 C. 8. The carbon fiber reinforced substrate according to claim 1, wherein the amount of said thermoplastic resin is in a range from 70 to 100 wt % based on the weight of said first resin. 9. The carbon fiber reinforced substrate according to claim 1, wherein the main component of said first resin is at least one selected from the group consisting of polyamide resins, polyetherimide resins, polyphenylene ether resins, polyether sulfone resins, phenoxy resins and polyimide resin. 10. The carbon fiber reinforced substrate according to claim 1, wherein a second resin higher in melting point or flow initiation temperature than said first resin and being not substantially compatible with said first resin is adhered to said fabric and the amount of said second resin is in a range from 1 to 10 parts by weight per 100 parts by weight of said fabric. 11. The carbon fiber reinforced substrate according to claim 1, wherein the amount of a second resin neither molten nor caused to flow at the melting point or flow initiation temperature of said first resin and adhering to said fabric is in a range from 1 to 10 parts by weight per 100 parts by weight of said fabric. 12. The carbon fiber reinforced substrate according to claim 10 or 11, wherein said second resin adheres on a surface of said fabric by means of said first resin. 13. The carbon fiber reinforced substrate according to claim 10 or 11, wherein said second resin comprises particles with an average particle diameter of 1 to 500 μm. 14. The carbon fiber reinforced substrate according to claim 10 or 11, wherein a main component of said second resin is a thermoplastic resin. 15. The carbon fiber reinforced substrate according to claim 14, wherein the main component of said second resin is at least one thermoplastic resin having a glass transition temperature of 30 to 280째 C. selected from the group consisting of polyamide resins, polyamideimide resins, polyetherimide resins and polyether sulfone resins. 16. A perform comprising a laminate comprising at least two or more layers of the carbon fiber reinforced substrate as set forth in any one of claims 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, and 11, wherein the layers of the carbon fiber reinforced substrate are integrally bonded to each other by means of said first resin. 17. The composite comprising at least the preform as set forth in claim 16 and a third resin, wherein said preform is impregnated with a third resin different from said first resin. 18. The composite according to claim 17, which is any one of a primary structure element, secondary structure element, exterior element, interior element and parts forming those elements in an aircraft, a motor vehicle or a ship.
Kishi Hajime,JPX ; Tokunoh Masazumi,JPX ; Kyono Tetsuyuki,JPX ; Noma Fumiaki,JPX ; Minakuchi Toyokazu,JPX ; Yamane Shoji,JPX, Epoxy resin composition for a fiber-reinforced composite material, yarn prepreg, and process and apparatus for preparing the same.
Hattori Toshihiro (Nagoya JPX) Murata Takashi (Nagoya JPX) Goto Kazuya (Nagoya JPX) Kato Takeshi (Nagoya JPX) Hayashi Shigetsugu (Nagoya JPX) Tada Hisashi (Nagoya JPX) Sugimori Masahiro (Nagoya JPX), Prepregs, process for producing the same and laminates produced with the same.
Allagnat Pierre (La Verpilliere FRX) Charles Jean-Paul (Saint Genis Laval FRX) Delehaye Michel (Caluire FRX), Textile reinforcements for composite materials and method of manufacturing thereof.
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