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公开(公告)号:US20200377681A1
公开(公告)日:2020-12-03
申请号:US16994984
申请日:2020-08-17
Applicant: Mitsubishi Chemical Corporation
Inventor: Takahiro HAYASHI , Takeshi ISHIKAWA , Kouichiro TANIGUCHI , Kazuya TANAKA , Masayasu HASUIKE
Abstract: Provided is a fiber-reinforced thermoplastic resin prepreg which exhibits high interfacial adhesion between reinforcement fibers and a matrix resin, while having excellent interlaminar fracture resistance. The fiber-reinforced thermoplastic resin prepreg of the present invention comprises: a matrix resin comprising a polyarylketone resin and a polyetherimide resin; and a carbon fiber, wherein the polyetherimide resin in the matrix resin comprises a polyetherimide resin having a structural unit represented by Formula (1), an amount of the polyetherimide resin in the matrix resin (100% by mass) is 3% by mass to 25% by mass, and an amount of the polyarylketone resin in the matrix resin (100% by mass) is 75% by mass or more.
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公开(公告)号:US20240009526A1
公开(公告)日:2024-01-11
申请号:US18472406
申请日:2023-09-22
Applicant: Mitsubishi Chemical Corporation
Inventor: Kae MATSUBARA , Takahiro HAYASHI
CPC classification number: A63B53/10 , B29C53/56 , A63B2209/02 , B29L2031/5227
Abstract: A shaft (10) comprises a plurality of layers A (11), and at least one layer B (12), wherein the layer A (11) comprises a cured product of a thermosetting resin, and the layer B (12) comprises a thermoplastic resin and a continuous fiber substrate, and the at least one layer B (12) is disposed between two layers A (11).
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公开(公告)号:US20210108042A1
公开(公告)日:2021-04-15
申请号:US17131967
申请日:2020-12-23
Applicant: Mitsubishi Chemical Corporation
Inventor: Takahiro HAYASHI , Naoki SUGIURA , Masayasu HASUIKE
Abstract: A fiber-reinforced resin prepreg and a molded article obtained by molding a molding material including the fiber-reinforced resin prepreg are described. The fiber-reinforced resin prepreg contains a carbon fiber bundle and a matrix resin composition. The ipa value of the carbon fiber bundle measured by an electrochemical measurement method is 0.14 μA/cm2 or more. The impact strength of a film obtained by solidifying the matrix resin composition under particular molding conditions is 12.0 kJ/m or more.
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