耐高温纤维

  • 网络high temperature resistant fiber
耐高温纤维耐高温纤维
  1. 耐高温纤维可在较高的温度范围内使用。

    The high temperature resistant fiber is applied in the surrounding of higher temperature .

  2. 耐高温纤维是在工业领域应用广泛的高技术纤维。

    High-temperature resistant fibers are hi-tech fibers widely used in industrial fields .

  3. 耐高温纤维的加工技术及性能

    The Processing and Properties of High Temperature Resistant Fibers

  4. 它是由二种或二种以上的耐高温纤维混合及层壮复合,以实现更高、更新的物理及化学性能。

    To gain better chemical and physical performance , a compound needled filter felt comprises of2 or more kinds of fiber material .

  5. 芳砜纶纤维是我国自主研制的、拥有自主知识产权的耐高温纤维。

    Polysulfonamide ( PSA ) is a new kind of high temperature resistance fiber developed by our own country with independent intellectual property rights .

  6. 本文介绍了国外使用的几种耐高温纤维及其性能,袋式滤材的加工方法以及滤材的表面结构对除尘效率的影响。

    This article introduces the characteristics of a few types of high-temperature fibers , processing way of filtration bags and their surface structure which influence efficiency de-dusting .

  7. 耐高温SiC纤维的研究动态

    The Development of High Temperature Resistant SiC Fibers

  8. 用Sol-gel法制耐高温石英纤维

    The preparation of elevated temperature-resistant quartz fibre through Sol-gel method

  9. 先驱体转化法制备耐高温Si-Al-C-O纤维

    Preparation of High Temperature Resistance Si-Al-C-O Fibers by Polymer-derived Method

  10. TGS-600C是我公司开发的一种新型特殊耐高温玻璃纤维套管,主要用于电热器件、电子束线、灯饰、电机设备等。

    TGS-600C is special heat resistant fiberglass sleeving developed by our company , mainly used in electroheat component , electrical wire harness , illuminations , machinery , etc.

  11. 耐高温玻璃纤维增强环氧树脂基拉挤电绝缘芯棒的研制

    The Heat Resistant Glass Fiber Reinforced Epoxy Resin Matrix Pultrusion Insulant Rod

  12. 耐高温阻燃纤维是近年来高性能纤维材料中发展最为迅速的一类特种纤维材料。

    Thermo-resistant and flame-retardant fibers have got most rapidly development recently in high-property fibers .

  13. 耐高温金属纤维增强陶瓷

    Refractory metal fibre reinforced ceramic

  14. 碳纤维是一种高强、高模、耐高温特种纤维。

    Carbon fiber is a specialty fiber with high strength , high modulus and high temperature resistant properties .

  15. 概述耐高温阻燃纤维的一些制备方法、产品主要性能特点,并从多方面介绍了耐高温阻燃纤维的应用领域。

    In this paper , some manufacture methods , principal properties as well as different application fields for thermo-resistant and flame-retardant fibers were briefly introduced .

  16. 近年来,随着许多高技术新兴工业的出现,耐高温阻燃纤维的应用范围日渐扩大,几乎渗透到了每个工业领域。

    In recent years , with the emergence of many high-tech emerging industries , the application of many new high-temperature flame-retardant fibers were gradually expanded into almost every industry area .

  17. 炭纤维是一种高强、高模、耐高温特种纤维,以其优异的综合性能成为当今世界材料学研究的重点。

    Carbon fiber is a kind of special fiber which is characterized by a very good combination of overall properties with high strength , high modulus and high temperature resistance properties .

  18. 聚丙烯腈预氧化纤维(PANOF)是一种新型耐高温的有机纤维,在防火、阻燃等领域具有广泛的应用前景。

    PANOF is a new kind of high temperature resistance organic fiber , which is promising on the fields of fire-proof and flame retarding , etc.

  19. 耐超高温碳化硅纤维新型先驱体研究及纤维制备

    Study on Novel Precursors to Prepare Super-high Temperature Resistant SiC Fibers

  20. 针对工程材料上高温下大应变传感的要求,本文采用耐高温的导电纤维为原料,设计了一种纺织结构。

    The conducting fiber based on textile structure was designed for solving large strain under high temperature in this paper .

  21. 耐高温多晶SiC纤维的研制&(Ⅰ)聚碳硅烷纤维的氨化过程及其机理研究

    Preparation of high temperature resistant silicon carbide fibers (ⅰ) the study of the ammoniation mechanism for Polycarbosilane fibers

  22. 研究结果表明,采用混杂纤维作为增强纤维可大大提高NAFC材料的耐高温性能,混杂纤维构成的网状结构中纤维间的相互作用限制了两者间的相对位移,有效抑止了裂纹的传播。

    Research results indicate that the NAFC material made of hybrid fiber possesses good heat resistance , and the interaction among the mesh structure fibers in NAFC materials reinforced by hybrid fiber limits their relative motion , which restrains propagation of crack in the materials .

  23. 测试了包覆层的显微结构,分析了耐高温填料、增强纤维等对包覆层性能的影响。

    The microstructure of the material was analyzed , while the effects of the high temperature resistant filler and reinforcing fibre on the performance of the coating were investigated .

  24. 用碳纤维、超高分子量聚乙烯纤维或改进常规化纤的分子结构、形态制造高强、高模、耐高温的高性能纤维;

    Using carbon fiber , super molecule weight polythene fiber or by improving molecule structure and form of routine chemical fiber to produce high-powered fiber with properties of high strength , high modulus and resistance to high temperature .

  25. 综述了国内外先驱体法工业化制备连续碳化硅纤维的现状与产品特性,其中,国产超耐高温连续含铝碳化硅纤维关键技术已经突破,其稳定使用温度为1600~1800℃;

    The current situation and the properties of polymer-derived continuous SiC fibers are reviewed . Specially , the key technology of the domestic ultra high temperature resistant continuous SiC fibers had been mastered . They can be used at 1 600-1 800 ℃ steadily .