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三元层状陶瓷Ti3AlC2由于兼具金属与陶瓷的优异性能,吸引了材料工作者的广泛关注.Ti3AlC2具有较低的维氏硬度,高熔点,高弯曲强度、杨氏模量和剪切模量,优良的导电导热性,自润滑性及良好的抗氧化、耐腐蚀性.综述了近年来三元层状陶瓷Ti3AlC2的制备技术及性能的研究进展,分析了Ti3AlC2的反应机理,并展望了Ti3AlC2材料的应用前景.

参考文献

[1] 李美娟,张联盟,沈强.可加工陶瓷的弱界面结构特征及其研究进展[J].江苏陶瓷,2005(05):9-13.
[2] Bai, YL;He, XD;Li, YB;Zhu, CC;Li, MW .An ab initio study of the electronic structure and elastic properties of the newly discovered ternary carbide Ti4GaC3[J].Solid State Communications,2009(47/48):2156-2159.
[3] Wang X H;Zhou Y C .Layered machinable and electrically conductive Ti2AlC and Ti3AlC4 ceramics:A review[J].Journal of Materials Science and Technology,2010,26(05):385.
[4] Huang Zhenying;Zhai Hongxiang;Zhou Wei et al.Tribological behaviors and mechanisms of Ti3AlC2[J].Chem Mater Sci,2007,27:129.
[5] 刘新 .Ti<,3>SiC<,2>、Ti<,3>AlC<,2>陶瓷的非载流和载流摩擦学行为研究[D].北京交通大学,2006.
[6] Prikhna T A;Dub S N;Starostina A V et al.Mechanical properties of materials based on MAX phases of the Ti-Al-C system[J].J Superhard Mater,2012,34:102.
[7] N.V.Tzenov;M.W.Barsoum .Synthesis and characterization of Ti_3AlC_2[J].Journal of the American Ceramic Society,2000(4):825-832.
[8] Yeh C L;Shen Y G .Effects of using Al4C4 as a reactant on formation of Ti3AlC2 by combustion synthesis in SHS mode[J].Journal of Alloys and Compounds,2009,473(1-2):408.
[9] Yeh C L;Shen Y G .Combustion synthesis of Ti3AlC2 from Ti/Al/C/TiC powder compacts[J].Journal of Alloys and Compounds,2008,466:308.
[10] 封小鹏,陈秀娟,高恒蛟,史鉴,张树纲.TiC对自蔓延高温合成Ti3AlC2相的影响[J].粉末冶金技术,2011(02):98-101.
[11] 李翀 .Ti<,3>AlC<,2>陶瓷材料的SHS/PHIP制备工艺及其性能与应用研究[D].哈尔滨工程大学,2007.
[12] Yang Chen;Jin Songzhe;Liang Baoyan et al.Synthesis of Ti3AlC2 by spark plasma sintering of mechanically milled 3Ti/xAl/2C powder mixtures[J].Journal of Alloys and Compounds,2009,472:79.
[13] Yong Zou;ZhengMing Sun;Hitoshi Hashimoto .Synthesis of high-purity polycrystalline Ti_3AlC_2 through pulse discharge sintering Ti/Al/TiC powders[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2008(1/2):456-460.
[14] 郭俊明,陈克新,刘光华,周和平,宁晓山.放电等离子(SPS)快速烧结可加工陶瓷Ti3AlC2[J].稀有金属材料与工程,2005(01):132-134.
[15] Zhou Weibing;Mei Bingchu;Zhu Jiaoqun .Effect of tin on the reaction synthesis of ternary carbide Ti3 AlC4[J].J Wuhan University of Technology:Mater,2009,24:283.
[16] 梅炳初,徐学文,朱教群,刘俊.热压烧结Ti3AlC2材料的制备、结构与性能研究[J].稀有金属材料与工程,2005(05):684-687.
[17] 陈艳林,严海标,应继儒.Ti3AlC2的合成及热性能研究[J].湖北工学院学报,2004(01):20-22.
[18] Jae-Ho Han;Sung-Sic Hwang;Dongyun Lee .Synthesis and mechanical properties of Ti_3 AlC_2 by hot pressing TiC_x/Al powder mixture[J].Journal of the European Ceramic Society,2008(5):979-988.
[19] Xinpo Lu;Yanchun Zhou .Pressureless Sintering and Properties of Ti3AlC2[J].International journal of applied ceramic technology,2010(6):744-751.
[20] C. Yang;S.Z. Jin;B.Y. Liang .Low-temperature synthesis of high-purity Ti_3AlC_2 by MA-SPS technique[J].Journal of the European Ceramic Society,2009(1):181-185.
[21] Liang Baoyan;Wang Mingzhi;Sun Jinfeng et al.Preparation of Ti3AlC2 by mechanically activated sintering with Sn aids[J].J Refractory Metals Hard Mater,2009,27(05):927.
[22] 卜蕾,林同伟,熊宁,陈飞雄,周武平.无压合成制备高纯度Ti3AlC2粉末材料[J].粉末冶金工业,2011(04):33-36.
[23] Bharat Bhooshan Panigrahi;Jose J. Gracio;Min-Cheol Chu .Powder Synthesis, Sintering Kinetics, and Nickel-Activated Pressureless Sintering of Ti3AlC2[J].International journal of applied ceramic technology,2010(6):752-759.
[24] 赵卓玲,冯小明,艾桃桃.Ti3AlC2材料的制备及其高温抗氧化性能研究[J].硅酸盐通报,2011(01):65-68.
[25] XU Xue-wen,LI Yang-xian,ZHU Jiao-qun,MEI Bing-chu.High-temperature oxidation behavior of Ti3AlC2 in air[J].中国有色金属学会会刊(英文版),2006(z1):869-873.
[26] Dan Li;Ying Liang;Xiaoxia Liu;Yanchun Zhou .Corrosion behavior of Ti_3AlC_2 in NaOH and H_2SO_4[J].Journal of the European Ceramic Society,2010(15):3227-3234.
[27] Pang W K;Low I M;O'Connor B H et al.Comparison of thermal stability in MAX 211 and 312 phases[J].J Phys:Conf Ser,2010,251:12.
[28] Dong Bok Lee;Sang Whan Park .Corrosion of Ti_3AlC_2 at 800-1100 ℃ in Ar-0.2% SO_2 gas atmosphere[J].Corrosion Science: The Journal on Environmental Degradation of Materials and its Control,2011(8):2645-2650.
[29] 王明智,梁宝岩,韩欣.机械诱发自蔓延反应合成Ti3AIC2的机理研究[J].燕山大学学报,2009(01):1-3,14.
[30] Michiyuki Yoshida;Yasuhiro Hoshiyama;Junji Ommyoji .Microstructural evolution during the formation of Ti_3AlC_2[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2010(1/3):126-129.
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