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连续SiC纤维是制备耐高温陶瓷基复合材料的基础和关键,目前应用最多的SiC纤维主要是通过先驱体转化法制得.它具有耐高温、抗氧化、高比强度和高比模量等特性,广泛的应用于航空、航天及军事等领域.由于连续SiC纤维的战略重要地位,国内外都呈现出研究和开发连续SiC纤维的热潮,新品种纤维不断出现,纤维性能不断提升,尤其是纤维耐高温性能和抗氧化性能得到了深入的研究和大幅度的提高,耐1 900℃的烧结含铝碳化硅纤维抗拉强度达到2.5 GPa,有着广阔的前景.

参考文献

[1] Luthra K L .Chemical interactions in high-temperature ceramic composites[J].Journal of the American Ceramic Society,1988,71(12):1114-1120.
[2] Karnitz M A;Craig D F;Richlen S L .Continuous fiber ceramic composite program[J].Ceramic Bulletin,1991,70(03):430-435.
[3] A. Herzog;M. Thunemann;U. Vogt .Novel application of ceramic precursors for the fabrication of composites[J].Journal of the European Ceramic Society,2005(2/3):187-192.
[4] R. Naslain .Design, preparation and properties of non-oxide CMCs for application in engines and nuclear reactors: an overview[J].Composites science and technology,2004(2):155-170.
[5] 徐永东,成来飞,张立同,尹洪峰.连续纤维增韧碳化硅陶瓷基复合材料研究[J].硅酸盐学报,2002(02):184-188.
[6] 冯春祥,宋永才.高性能陶瓷纤维的研究进展[C].'96中国材料研讨会论文集(材料设计与加工),1996:395~400.
[7] 楚增勇,冯春祥,宋永才,李效东,肖加余,王应德.先驱体转化法连续SiC纤维国内外研究与开发现状[J].无机材料学报,2002(02):193-201.
[8] Okamura K .Ceramic fibers from polymer precursors[J].Composites,1987,18(02):107-120.
[9] Lipowitz J .Polymer-derived ceramic fibers[J].Ceramic Bulletin,1991,70(12):1888-1894.
[10] Laine R M;Babonneau F.Preceramic polymer routes to SiC[J].Chemistry of Materials,1993(05):260-279.
[11] Legrow G E;Lim T F;Lipowitz J et al.Ceramics from hydridopolysilazane[J].American Ceramic Society Bulletin,1987,66(02):363-367.
[12] Lipowitz J;Rabe J A;Zank G A .Polycrystalline SiC fibers from organosilicon polymers[J].Ceramic Engineering and Science Proceedings,1991,12(10):1819-1831.
[13] Riedel R.;Dressler W.;Ruwisch L.;Bill J.;Aldinger F.;Kienzle A. .A SILICOBORON CARBONITRIDE CERAMIC STABLE TO 2,000-DEGREES-C[J].Nature,1996(6594):796-798.
[14] Baldus P;Jansen M;Sporn D .Ceramic fibers for matrix composites in high-temperature engine applications[J].Science,1999,285:699-703.
[15] Ishikawa T .Recent developments of the SiC fiber Nicalon and its composites,including properties of the SiC fiber HiNicalon for ultra-high temperature[J].Journal of Computer Science and Technology,1994,51(02):135-144.
[16] Yang D X;Song Y C;Mao X H.The composition,structure and properties of low oxygen content SiC fibres[A].四川成都,2005
[17] Kumagawa K;Yamaoka H;Shibuya M et al.Fabrication and mechanical properties of new improved Si-M-C-(O)Tyranno fiber[J].Ceramic Engineering and Science Proceedings,1998,19(01):65-72.
[18] Ishikawa T;Kohtoku Y;Kumagawa K et al.High-strength alkali-resistant sintered SiC fiber stable to 2 200 ℃[J].Nature,1998,391(19):773-775.
[19] Ishikawa T;Sato M;Kajii S et al.A thermally conductive SiC-polycrystalline fiber and its fiber-bonded ceramic[J].Ceramic Engineering and Science Proceedings,2001,22(03):471-480.
[20] 宋永才;冯春祥 .低电阻率SiC纤维的制备方法[P].CN 01100917.9,2001-10-09.
[21] 王军 .含过渡金属的碳化硅纤维的制备及其电磁性能[D].国防科学技术大学,1997.
[22] 陈江溪,何国梅,何旭敏,夏海平.SiC陶瓷纤维高聚物先驱体的研究进展[J].功能材料,2004(06):679-682.
[23] 赵稼祥.航天先进复合材料的现况与展望[J].飞航导弹,2000(01):58-63.
[24] 何新波,杨辉,张长瑞,周新贵.连续纤维增强陶瓷基复合材料概述[J].材料科学与工程,2002(02):273-278,262.
[25] Harry E;Gary D;Ellen Y.EBC protection of SiC/SiC composites in the gas turbine combustion environment.continuing evaluation and refurbishment considerations[A].New Orleans,2001
[26] Christin F.Design,fabrication and application of C/C,C/SiC and SiC/SiC composites[A].Weinheim (FRG):Wiley VCH,2001:731-743.
[27] Josh K;Narendernath M;Jeffrey P.Evaluation of CFCC liners with EBC after field testing in a gas turbine[J].Journal of the European Ceramic Society,2002(22):2769-2775.
[28] Shigeto N .The application of SiC fiber reinforced composites to aero-engines[J].Ceramic Japan,1999,34(04):58-62.
[29] S. Schmidt;S. Beyer;H. Knabe;H. Immich;R. Meistring;A. Gessler .Advanced ceramic matrix composite materials for current and future propulsion technology applications[J].Acta astronautica,2004(3/9):409-420.
[30] 邹世钦,张长瑞,周新贵,曹英斌.连续纤维增强SiCf/SiC陶瓷复合材料的发展[J].材料导报,2003(08):61-64.
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