Shih C H, Averbach B L, Cohen M. Trans AIME, 1955; 203: 183
[2]
Bagariatskii Y A, Nosova G I, Tagunova T V. Dok Akad Nauk SSSR, 1958; 122: 593
[3]
Jepson K S, Brown A R G, Gray J A. In: Jaffee R I, Promisel N E, eds., The Science, Technology and Application of Titanium (Proc 1st Int Conf Titanium), London: Pergamon, 1970: 677
[4]
Williams J C. In: Jaffee R I, Burte H M, eds., Titanium Science and Technology (Proc 2nd Int Conf Titanium), New York: Plenum, 1973: 1433
[5]
Flower H M, Davis R,West D R F. In: Williams J C, Belov A F, eds., Titanium and Titanium Alloys: Scientific and Technological Aspects (Proc 3rd Int Conf Titanium), New York: Plenum, 1982: 1703
[6]
Banerjee D, Gogia A K, Nandy T K, Joshi V A. Acta Metall, 1988; 36: 871
[7]
Hao Y L, Li S J, Sun S Y, Zheng C Y, Hu Q M, Yang R. Appl Phys Lett, 2005; 87: 091906
[8]
Hao Y L, Li S J, Sun B B, Sui M L, Yang R. Phys Rev Lett, 2007; 98: 216405
[9]
Cui J P, Hao Y L, Li S J, Sui M L, Li D X, Yang R. Phys Rev Lett, 2009; 102: 045503
[10]
Li S J, Cui T C, Hao Y L, Yang R. Acta Biomater, 2008; 4: 305
[11]
Bendersky L A, Roytburd A, Boettinger W J. Acta Metall Mater, 1994; 42: 2323
[12]
Obbard E G, Hao Y L, Akahori T, Talling R J, Niinomi M, Dye D, Yang R. Acta Mater, 2010; 58: 3557
[13]
Obbard E G. PhD Thesis, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 2010
[14]
Obbard E G, Hao Y L, Talling R J, Li S J, Zhang Y W, Dye D, Yang R. Acta Mater, in press
[15]
Gao X, Huang M, Brinson L C. Int J Plast, 2000; 16: 1345
[16]
Heinen R, Hackl K, Windl W, Wagner M F. Acta Mater, 2009; 57: 3856
[17]
Afonso C R, Ferrandini P L, Ramirez A J, Caram R. Acta Biomater, 2010; 6: 1625
[18]
Hao Y L, Li S J, Sun S Y, Yang R. Mater Sci Eng, 2006; A441: 112
[19]
Petry W, Heiming A, Trampenau J. Alba M, Herzig C, Schober H R, Vogl G. Phys Rev, 1991; 43B: 10933
[20]
Li S J, Yang R, Niinomi M, Hao Y L, Cui Y Y, Guo Z X. Mater Sci Technol, 2005; 21: 678
[21]
Hu Q M, Yang R, Xu D S, Hao Y L, Li D. Phys Rev, 2003; 68B: 054102