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Chin J Mater Res  2005, Vol. 19 Issue (3): 225-229    DOI:
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. . Chin J Mater Res, 2005, 19(3): 225-229.

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Received:  01 January 1900     
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1 H.J.Rack,J.I.Qazi,Titanium alloys for biomedical ap- plications,Materials Science and Engineering C,26(8), 1269(2006)
2 D.Kuroda,M.Niinomi,M.Morinaga,Y.Kato,T.Yashiro, Design and mechanical properties of newβtype titanium alloys for implant materials,Materials Science and Engi- neering A,243(1-2),244(1998)
3 Y.L.Hao,M.Niinomi,D.Kuroda,K.Fukunaga,Y.L.Zhou, A.Suzuki,Young's modulus and mechanical Properities of Ti-29Nb-13Ta-4.6Zr in relation toα″marteusite,Metal- lurgical and Materials Transactions A,33A,477(2002)
4 Y.L.Hao,S.J.Li,S.Y.Sun,C.Y.Zheng,Q.M.Hu,R.Yang, Super-elastic titanium alloy with unstable plastic defor- mation,Applied Physics Letters,87,091906(2005)
5 Y.L.Hao,S.J.Li,S.Y.Sun,C.Y.Zheng,R.Yang,Elastic de- formation behaviour of Ti-24Nb-4Zr-7.9Sn for biomedical applications,Acta Biomaterialia,3(2),277(2007)
6 Y.L.Hao,S.J.Li,S.Y.Sun,R.Yang,Effect of Zr and Sn on Young's modulus and superelasticity of Ti-Nb-based alloys,Materials Science and Engineering A,441(1-2), 112(2006)
7 O.M.Ivaslshin,P.E.Markovsky,S.L.Semiatin,C.H.Ward, Aging response of coarse-and fine-gainedβtitanium alloys,Materials Science and Engineering A,405(1-2), 296(2005)
8 Y.G.Li,M.H.Loretto,D.Rugg,W.Voice,Effect of heat treatment and exposure on microstructure and mechanical properties of Ti-25V-15Cr-2Al-0.2C(wt.%),Acta Materi- alia,49(15),3011(2001)
9 J.I.Qazi,B.Marquardt,L.F.Allard,H.J.Rack,Phase transformations in Ti-35Nb-7Zr-5Ta-(0.06-0.68)O alloys, Materials Science and Engineering C,25(3),389(2005)
10 M.Ikeda,S.Y.Komatsu,I.Sowa,M.Niinomi,Aging behav- ior of the Ti-20Nb-13Ta-4.6Zr new beta alloy for med- ical implants,Metallurgical and Materials Transactions A, 33A,487(2002)
11 T.W.Duerig,G.T.Terlinde,J.C.Williams,Phase transfor- mations and tensile properties of Ti-10V-2Fe-3Al,Metal- lurgical Transactions,11A,1987(1980)
12 Y.L.Hao,Niinomi M,Kuroda D,Fukunaga K,Zhou YL, Yang R,Suzuki A,Aging response of the Young's modulus and mechanical properties of Ti-29Nb-13Ta-4.6Zr for bio- medical applications,Metallurgical and Materials Trans- actions A,34A(4),1007(2003)
13 Z.Fan,On the Young's moduli of Ti-6Al-4V alloys,Scripta Metallurigica et Materialia,29,1427(1993)
14 H.Ledbetter,S.Datta,Cast-Iron elastic constants:Effect of graphite aspect patio,Zeitschrift Fur Metallkunde,83, 195(1992)
15 Z.Fan,P.Tsakiropoulos,A.P.Miodownik,Yield strength of two ductile phase alloys,Materials Science and Technol- ogy,9,863(1993)
16 Z.Fan,A.P.Miodownik,P.Tsakiropoulos,Microstructural characterization of two phases materials,Materials Science and Technology,9,1094(1993)
17 R.Boccaccini,Young's modulus of cast-iron as a function of volume content,shape and orientation of graphite in- clusions,Zeitschrift Fur Metallkunde,88,23(1997)
18 L.J.Broutman,R.H.Krock,Modern Composite Materials (Addison-Wesley,Reading,MA)1963
19 M.Long,H.J.Rack,Titanium alloys in total joint replacement-materials science perspective,Biomaterials, 19,1621(1998)w
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