• 利用凝胶纺丝方法制备了丙烯腈基碳纤维原丝。

    The PAN-based carbon fiber precursor was prepared with gel spinning method.

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  • 综述聚丙烯腈基碳纤维( PAN- CF)国内外市场情况。

    The PAN-CF market at home and abroad is reviewed.

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  • 使用国产聚丙烯腈基碳纤维进行石墨实验制备高模量的碳纤维

    Graphitization experiments are carried out on PAN-based carbon fibers manufactured in China to prepare high modulus carbon fibers.

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  • 发明涉及一种反应器尤其适用高性能丙烯腈基碳纤维纺丝制备

    The invention relates to a double helical ribbon pipe type reactor, which is particularly suitable for preparing high-performance polyacrylonitrile-based carbon fiber spinning solution.

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  • 文章探讨了丙烯腈碳纤维生产技术形成机理阐明了碳纤维主要用途广阔发展前景

    The production technique and forming mechanism of polyacrylonitrile carbon fibre are discussed and the main use of carbon fibre as well as its vast development vistas are expounded.

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  • 聚丙烯腈基碳纤维一种力学性能优异材料航空航天建筑体育汽车医疗领域得到广泛的应用

    PAN-based Carbon fiber is a new material with exceptional mechanical property. It has been extensively applied in aviation, space flight, construct, sports, automobile, medical treatment, etc. fields.

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  • 根据聚丙烯腈基碳纤维生产工艺路线原丝、 预氧化、碳化工艺结构分析了聚丙烯腈基碳纤维焦油形成原因

    The reasons for tar formation from polyacrylonitrile-based carbon fiber were analyzed from the structure and the production line, from as-spun fiber, pre-oxidation to carbonization.

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  • 介绍了聚丙烯腈基活性纤维制备工艺制品开发技术措施论述了活性碳纤维医药食品工业方面的应用

    The technique of making the active carbon fiber and the technical measure of developing its product were introduced, and its application in medical and food industry were expounded in this article.

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  • 研究聚丙烯腈基活性纤维制备条件活化温度、活化时间产品收率表面积正丁硫醇吸附与脱除性能的影响

    The influence of preparation conditions such as activated temperature and time on yield, specific surface area and adsorption behavior towards n-butane thiol was studied.

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  • 分析研究了丙烯腈1k碳纤维不同热处理温度下密度力学性能变化。

    Mechanical properties and densities of 1k PAN carbon fibers with different temperature treatment are investigated in this paper.

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  • 分析研究了丙烯腈1k碳纤维不同热处理温度下密度力学性能变化。

    Mechanical properties and densities of 1k PAN carbon fibers with different temperature treatment are investigated in this paper.

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