发明授权
- 专利标题: Fiber-reinforced composite material and process for producing the same
- 专利标题(中): 纤维增强复合材料及其制造方法
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申请号: US11815263申请日: 2006-01-31
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公开(公告)号: US08030375B2公开(公告)日: 2011-10-04
- 发明人: Hiroyuki Yano , Masaya Nogi , Fumiaki Nakatsubo , Shinsuke Ifuku
- 申请人: Hiroyuki Yano , Masaya Nogi , Fumiaki Nakatsubo , Shinsuke Ifuku
- 申请人地址: JP Tokyo JP Tokyo JP Tokyo JP Kyoto-shi
- 专利权人: Nippon Telegraph and Telephone Corporation,Pioneer Corporation,Mitsubishi Chemical Corporation,Rohm Co., Ltd.
- 当前专利权人: Nippon Telegraph and Telephone Corporation,Pioneer Corporation,Mitsubishi Chemical Corporation,Rohm Co., Ltd.
- 当前专利权人地址: JP Tokyo JP Tokyo JP Tokyo JP Kyoto-shi
- 代理机构: Oblon, Spivak, McClelland, Maier & Neustadt, L.L.P.
- 优先权: JP2005-025382 20050201; JP2005-208150 20050719
- 国际申请: PCT/JP2006/301522 WO 20060131
- 国际公布: WO2006/082803 WO 20060810
- 主分类号: B32B27/38
- IPC分类号: B32B27/38 ; B32B27/12
摘要:
Disclosed is a highly transparent fiber-reinforced composite material including an assembly of cellulose fibers of 4 to 200 nm average fiber diameter impregnated with a matrix material so as to not only remedy the moisture absorbency attributed to cellulose fibers but also further improve transparency. There is provided a fiber-reinforced composite material including an assembly of cellulose fibers impregnated with a matrix material. In the fiber-reinforced composite material, hydroxyl groups of cellulose fibers are chemically modified through a reaction with one or more chemical modifiers selected from the group consisting of an acid, an alcohol, a halogenating reagent, an acid anhydride, and an isocyanate so that the ratio of a functional group introduced by the chemical modification is 5 to 40 percent by mole based on the hydroxyl groups of cellulose fibers before the chemical modification. The chemical modification of hydroxyl groups of cellulose fibers can reduce the hydrophilicity of cellulose fibers to thereby reduce the moisture absorbency of fiber-reinforced composite material. Further, the affinity between cellulose fibers and matrix material can be enhanced to thereby further improve transparency.
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