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    Home > Chemicals Industry > Rubber Plastic News > Shanghai Petrochemical has made a breakthrough in the development of carbon fiber composite materials

    Shanghai Petrochemical has made a breakthrough in the development of carbon fiber composite materials

    • Last Update: 2022-09-13
    • Source: Internet
    • Author: User
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    Recently, Shanghai Petrochemical completed the research project of "Development of PDCPD (Polydicyclopentadiene)-based Carbon Fiber Composite Materials", and formed a key technology for the preparation of PDCPD-based carbon fiber composite materials with independent intellectual property rights


    PDCPD-based carbon fiber composite materials have high temperature resistance, corrosion resistance, high modulus and other properties, and are compatible with carbon fiber materials with high strength and high model properties, and can be widely used in automotive, construction, medicine, aerospace and other fields


    PDCPD-based carbon fiber composite materials have high temperature resistance, corrosion resistance, high modulus and other properties, and are compatible with carbon fiber materials with high strength and high model properties, and can be widely used in automotive, construction, medicine, aerospace and other fields
    .
    Since this year, the Institute of Fine Chemicals of the Ministry of Chemical Industry of Shanghai has cooperated with the Shanghai Institute of Carbon Fiber Composite Materials Innovation, aiming at the downstream high-end materials of fine chemicals and jointly developing carbon fiber reinforced composite materials

    .
    In this study, the carbon fiber continuous fabric is used as the reinforcement phase, and the appropriate molding process is selected to prepare composite materials with superior performance and low cost

    .
    They optimized the PDCPD catalyzed polymerization system and polymerization process to make it suitable for PDCPD-based carbon fiber composite system, forming a key technology for composite material preparation

    .
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