Low Young's modulus of Ti-Nb-Ta-Zr alloys caused by softening in shear moduli c' and c44 near lower limit of body-centered cubic phase stability
暂无分享,去创建一个
K. Hagihara | T. Nakano | M. Niinomi | H. Nakajima | H. Mori | Y. Umakoshi | M. Tane | S. Akita
[1] E. Collings,et al. Physics of Solid Solution Strengthening , 2012 .
[2] M. Jackson,et al. Compositional variability in gum metal , 2009 .
[3] A. Singh,et al. Ti based biomaterials, the ultimate choice for orthopaedic implants – A review , 2009 .
[4] A. Freeman,et al. Martensitic transformation path of NiTi , 2009 .
[5] M. Jackson,et al. Determination of (C11-C12) in Ti–36Nb–2Ta–3Zr–0.3O (wt.%) (Gum metal) , 2008 .
[6] K. Hagihara,et al. Peculiar elastic behavior of Ti–Nb–Ta–Zr single crystals , 2008 .
[7] Ju Il Kim,et al. Composition dependent crystallography of α″-martensite in Ti–Nb-based β-titanium alloy , 2007 .
[8] R. Yang,et al. Elastic deformation behaviour of Ti-24Nb-4Zr-7.9Sn for biomedical applications. , 2007, Acta biomaterialia.
[9] K. Vervaeke,et al. Modulation of superconductivity by a magnetic template in Nb/BaFe12O19 hybrids , 2006 .
[10] Julian D. Maynard,et al. Implementation of a modern resonant ultrasound spectroscopy system for the measurement of the elastic moduli of small solid specimens , 2005 .
[11] Shuichi Miyazaki,et al. Shape memory characteristics of Ti–22Nb–(2–8)Zr(at.%) biomedical alloys , 2005 .
[12] H. Hosoda,et al. Anisotropy and Temperature Dependence of Young’s Modulus in Textured TiNbAl Biomedical Shape Memory Alloy , 2005 .
[13] X. Ren,et al. Physical metallurgy of Ti–Ni-based shape memory alloys , 2005 .
[14] Sadao Watanabe,et al. Beta TiNbSn Alloys with Low Young's Modulus and High Strength , 2005 .
[15] K. Miwa,et al. First-principles calculations for development of low elastic modulus Ti alloys , 2004 .
[16] K. Takashima,et al. Titanium’s high-temperature elastic constants through the hcp–bcc phase transformation , 2004 .
[17] H. Nakajima,et al. Temperature dependence of elastic constants of lotus-type porous copper , 2004 .
[18] M. Hirao,et al. Ultrasound-induced crystallization around the glass transition temperature for Pd40Ni40P20 metallic glass , 2004 .
[19] 光雄 新家,et al. 生体用Ti-XNb-10Ta-5Zr合金のミクロ組織,引張特性および弾性率に及ぼすNb添加量の影響 , 2003 .
[20] Mitsuo Niinomi,et al. Fatigue performance and cyto-toxicity of low rigidity titanium alloy, Ti-29Nb-13Ta-4.6Zr. , 2003, Biomaterials.
[21] Mitsuo Niinomi,et al. Recent research and development in titanium alloys for biomedical applications and healthcare goods , 2003 .
[22] T. Nakano,et al. Microstructure of duplex-phase NbSi2(C40)/MoSi2(C11b) crystals containing a single set of lamellae , 2002 .
[23] Hirotsugu Ogi,et al. Contactless mode-selective resonance ultrasound spectroscopy: Electromagnetic acoustic resonance , 1999 .
[24] W. Assmus,et al. Elastic properties of NiTi , 1991 .
[25] M. Peter,et al. Elastic constants in Nb-Mo alloys from zero temperature to the melting point: experiment and theory , 1981 .
[26] N. Nakanishi. Elastic constants as they relate to lattice properties and martensite formation , 1980 .
[27] E. Fisher,et al. Pressure derivatives of the elastic moduli of BCC Ti-V-Cr, Nb-Mo and Ta-W alloys , 1979 .
[28] M. Dacorogna,et al. Elastic constants in Nb-Zr alloys from zero temperature to the melting point: Experiment and theory , 1978 .
[29] O. Buck,et al. Mechanical Behavior of Titanium Alloys (Effects of Hydrogen on Anisotropic Elastic Properties of bcc Ti Alloys). , 1978 .
[30] R. Maynard,et al. Elastic constants of Ti-40 at.% Nb at 298 °K , 1973 .
[31] E. Fisher,et al. Relation of the c′ elastic modulus to stability of b.c.c. transition metals , 1970 .
[32] R. Hill. The Elastic Behaviour of a Crystalline Aggregate , 1952 .
[33] C. Zener. Contributions to the Theory of Beta-Phase Alloys , 1947 .
[34] H. Hosoda,et al. Texture and shape memory behavior of Ti–22Nb–6Ta alloy , 2006 .
[35] Dirk Schwalm,et al. Electrostatic ion beam trap for electron collision studies , 2005 .
[36] Hirotsugu Ogi,et al. EMATS for science and industry , 2003 .
[37] L. Mañosa,et al. Vibrational properties of shape-memory alloys , 2001 .
[38] E. W. Collings,et al. The physical metallurgy of titanium alloys , 1984 .