陶瓷纤维

  • 网络ceramic fiber;CERAMIC FIBRES;RCF;Nextel;Al-RCF
陶瓷纤维陶瓷纤维
  1. 辐射技术在SiC陶瓷纤维材料研制中的应用

    Application of radiation technology in the synthesis of SiC ceramic fiber

  2. SiC陶瓷纤维高聚物先驱体的研究进展

    Development of polymer precursors to SiC ceramic fiber

  3. SiC陶瓷纤维先驱体设计原则及合成研究进展

    Principle of design and advance in synthesis of SiC ceramic fibers precursor

  4. 先驱体法制备SiC陶瓷纤维过程中聚碳硅烷纤维的交联方式

    PCS Fiber Curing Method of Precursor to SiC Ceramic Fibers

  5. XRD分析表明:此温度下烧结的陶瓷纤维呈单一的钙钛矿结构。

    The X-ray diffraction patterns showed that the ceramic fibers were pure perovskite structure .

  6. 本文主要综述了国内外SiC陶瓷纤维高聚物先驱体分子设计方面的研究动态及最近的发展趋势。

    This article reviews the recent develpment of molecule structure design of polymer precursors .

  7. 对国内外SiC系列陶瓷纤维先驱体的主要合成方法及工艺进行了总结。

    The synthesis and technology of the precursors of SiC ceramic fibers is summarized .

  8. 先驱体交联处理是SiC陶瓷纤维制备过程中的主要步骤。

    Curing treatment is the main procedure in the course of precursor to SiC ceramic fibers .

  9. γ-Al2O3纳米粉对氧化铝、碳化硅陶瓷纤维烧结特性的影响

    Influence of nano-sized γ - al_2o_3 powder on sintering characteristics of alumina and silicon carbide fibers

  10. Bi掺杂PLZT陶瓷纤维/环氧树脂1-3复合材料的制备

    Fabrication of Bismuth Doped PLZT Ceramic Fiber / Polymer 1-3 Composites

  11. 陶瓷纤维在包钢CSP加热炉上的应用

    Application of the ceramic fiber for roller hearth furnace of CSP Plant of Baogang

  12. 由于SiC陶瓷纤维具有高强度,高比刚度,耐腐蚀性等特点而广泛应用于高技术领域。

    SiC fiber has been used in different high technology domain for its high strength , high modulus and refractory properties .

  13. 熔融纺丝实验证明,产物具有较好的可纺性,可作为优良的SiC陶瓷纤维先驱体。

    The melting spinning experiment showed that PPCS could be used as an excellent SiC ceramic fiber precursor with good spinnability .

  14. PZT压电陶瓷纤维连续纺丝及其在1-3型压电纤维复合材料的应用

    Continuous Spinning of Piezoelectric PZT Ceramic Fibers and Their Application on 1-3 Type Fiber / Polymer Composites

  15. 聚碳硅烷(PCS)先驱体热解转化法,是合成SiC陶瓷纤维材料的一种重要途径。

    Pyrolysis of polycarbosilane ( PCS ) ceramic precursor is an important way to fabricate silicone carbide ( SiC ) ceramic fibbers .

  16. SEM显示钛掺杂硅胶粒子较好地分散在陶瓷纤维表面及其空隙中;

    SEM image reveals that the particles of Ti-doped silica gel are well scattered on the surface and in the aper - tures of the ceramic fiber paper .

  17. 将陶瓷纤维纸经水玻璃、铝盐溶液等浸渍及调节溶液pH值,得到了新型高吸附性能Al3+掺杂硅胶吸附材料。

    A novel Al 3 + - doped silica gel adsorptive material with excellent adsorption property was prepared by treating ceramic fiber matrix with the aqueous solution of sodium silicate ( Na_2SiO_3 ) and aluminum salt etc.

  18. FRM用先进陶瓷纤维及其拉伸强度

    Advanced ceramic fiber and its tensile strength

  19. 先驱体转换法是迄今为止高性能SiC陶瓷纤维最为成功的一种工业化方法,而高聚物先驱体的结构与性能则是该法的关键。

    The most successful route up-to-date to prepare SiC ceramic fiber in industry is the polymer precursor route ; whereas the performance and the molecule structure of polymer precursors play a key role in this method .

  20. 在SiC陶瓷纤维整个制备工艺过程中,影响因素繁多而且交叉作用,每个因素的变化都对SiC纤维的力学性能产生很大影响。

    In the process of SiC ceramic fiber preparation , there are many important factors that affect the final fiber properties . Little variation of each factor may greatly affect the SiC ceramic fiber mechanical properties .

  21. 连续Si-Fe-C-O功能陶瓷纤维的制备及其表面分析

    Preparation and Surface Depth Analysis of Continuous Si-Fe-C-O Functional Ceramic Fibers

  22. 本研究进行了氧化物溶胶的制备及陶瓷纤维的连续纺制,稳定纺丝时间超过10h。

    Present work shows the production of oxide solution and the spin - ning of the continuous mullite fiber , The stable spinning Iasted over 10 hours .

  23. Si-C-Fe-O功能陶瓷纤维的制备

    Preparation of Si-C-Fe-O Functional Ceramic Fiber

  24. 由于我国目前没有能力制造Nextel陶瓷纤维,因此探索出具有类似性质且防护性能优良的填充材料是我们目前的重要任务。

    Because we do not have the ability to create Nextel ceramic fibers , the most important mission is explore new stuffed material with good performance at present .

  25. PZT5陶瓷纤维结构致密,晶粒大小均匀,约2~5μm。

    The fiber structure was dense , and the crystal size was uniform , about 2-5 μ m.

  26. 应用复合材料热性能理论,采用有限元分析软件adina分析具有不同参数的材料梯度方程的陶瓷纤维梯度增强活塞的温度分布和应力分布。

    The paper uses the theory of thermal performance of composites and finite element analysis software called ADINA to analyze the temperature field and stress field of functional gradient material pistons which have different material gradient equations .

  27. 研究证明当采用优质硅酸铝陶瓷纤维保温时,保温层厚度不低于180mm时可满足φ530mm×20mm长距离供汽管道保温优化的要求。

    The research result shows that when high quality aluminum silicate ceramic fiber was used as the insulation material and its thickness reached 180 mm , optimal insulation requirement of 530 mm x 20 mm long distance steam pipeline has been met .

  28. 运用功率超声将平均粒径30nm的超细金属铁粉均匀分散到聚碳硅烷中,通过熔融纺丝、不熔化处理、烧结,制备出具有良好力学性能、电阻率连续可调的掺混型碳化硅陶瓷纤维。

    Nano ferrum particle , average 30 um in diameter , was dispersed into polycarbosilane ( PC ) homogeneously by ultra-sonic method and subsequently mixed silicon carbide ceramic fiber , with good mechanic properties and continuous controllable resistivity , was prepared by melt spinning , curing treatment and sintering .

  29. 以蚕丝纤维为前驱体的生物活性陶瓷纤维的制备

    Preparation of Bioactive Ceramic Fiber by Using Silk Fiber as Usher

  30. 溶胶-凝胶法制备功能陶瓷纤维材料研究进展

    The Research Progress of Functional Ceramic Fibers Derived by Solgel Method