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概述了TRIP钢以及ZrO2-TRIP钢复合材料的研究现状.重点就ZrO2-TRIP钢复合材料的制备方法、显微组织、力学性能以及存在的问题进行了评述,并且指出了解决这些问题的方法.最后对ZrO2-TRIP钢复合材料的发展方向进行了预测.

参考文献

[1] Suresh S;Mortensen A;Needleman A.Fundamentals of metal matrix composites[M].Boston:ButterworthHeinemann,1993
[2] Chawla N;Chawla K K.Metal matrix composites[M].New York:Springer-Verlag,2006
[3] Kainer K U.Metal matrix composites,custom-made materials for automotive and aerospace engineering[M].Weinheim:Wiley-VCH,2006
[4] 周玉.陶瓷材料学[M].哈尔滨:哈尔滨工业大学出版社,1995:511.
[5] 郭景坤 .中国先进陶瓷研究及其展望[J].无机材料学报,1997,11(6):195.
[6] Zackay V F;Parker E R;Fahr D et al.The enhancement of ductility on high-strengh steels[J].ASM Trans Quart,1967,60(2):252.
[7] De Cooman BC .Structure-properties relationship in TRIP steels containing carbide-free bainite[J].Current opinion in solid state & materials science,2004(3/4):285-303.
[8] 李壮 等.硅、锰合金元素含量对TRIP结构钢力学性能的影响[J].东北大学学报:自然科学版,2005,26(5):455.
[9] Eberie K;Cantinieaux P;Harlet P .New thermochemical strategies for the production of high strength low alloyed multi phase steel showing a transformation induced plasticity effect[J].STEEL RESEARCH INTERNATIONAL,1999,70:233.
[10] Fukagawa T;Okada H;Maehara Y .Mechanism of redscale defect formation in Si-added hot-rolled steel sheets[J].ISIJ International,1994,34:906.
[11] Tsukatani I;Hashimoto S;Lnoue T .Effects of silicon and manganese addition on mechanical properties of highstrength hot-rolled sheet steel contained retained austenite[J].ISIJ International,1991,31(9):992.
[12] 周玉,郭英奎,李冬波,段小明.Effects of load mode on mechanical properties of ZrO2(2Y)/TRIP steel composites[J].中国有色金属学会会刊(英文版),2003(05):1086-1091.
[13] Yingkui GUO,Yu ZHOU,Dongbo LI,Xiaoming DUAN,Tingquan LEI.Microstructure and Performance of 2Y-PSZ/TRIP Steel Composites[J].材料科学技术学报(英文版),2003(02):137-140.
[14] Yingkui Guo;Yu Zhou;Xiaoming Duan;Dongbo Li;Tingquan Lei .TEM observation of dynamic distortion in 2Y-PSZ/steel composites[J].Ceramics International,2004(1):75-80.
[15] Martin U;Ehinger D;Krüger L et al.Cellular energy absorbing TRIP-Steel/Mg-PSZ composite:Honeycomb structures fabricated by a new extrusion powder technology[J].Adv Mater Sci Eng,2010,2010:1.
[16] Horst Biermann;Ulrich Martin;Christos G. Aneziris;Anja Kolbe;Angelika Muller;Wolfgang Scharfl;Mathias Herrmann .Microstructure and Compression Strength of Novel TRIP-Steel/Mg-PSZ Composites[J].Advanced Engineering Materials,2009(12):1000-1006.
[17] C. Weigelt;C. G. Aneziris;A. Yanina .Ceramic Processing for TRIP-Steel/Mg-PSZ Composite Materials for Mechanical Applications[J].Steel Research International,2011(9):1080-1086.
[18] Weidner A;Berek H;Segel C et al.In situ tensile deformation of TRIP steel/Mg-PSZ composites[J].Materials Science Forum,2013,738-739:77.
[19] Glage A;Weider M;Hasterok M et al.Mechanical properties of metal matrix composites based on TRIP steel and ZrO2 ceramic foams[J].Procedia Eng,2011,10:548.
[20] Christos G. Aneziris;Harry Berek;Manuel Hasterok;Horst Biermann;Stefan Wolf;Lutz Kruger .Novel TRIP-Steel/Mg-PSZ Composite-Open Cell Foam Structures for Energy Absorption[J].Advanced Engineering Materials,2010(3):197-204.
[21] S. Martin;S. Richter;S. Decker .Reinforcing Mechanism of Mg-PSZ Particles in Highly-Alloyed TRIP Steel[J].Steel Research International,2011(9):1133-1140.
[22] Martin S;Richter S;Poklada A et al.Orientation relationships between phases arising during compression testing in ZrO2-TRIP steel composites[J].Journal of Alloys and Compounds,2013,577(1):578.
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