Ho W F, Ju C P, Lin J H
Department of Materials Science and Engineering, National Cheng-Kung University, Tainan, Taiwan, ROC.
Biomaterials. 1999 Nov;20(22):2115-22. doi: 10.1016/s0142-9612(99)00114-3.
Structure and properties of a series of binary Ti-Mo alloys with molybdenum contents ranging from 6 to 20 wt% have been investigated. Experimental results indicated that crystal structure and morphology of the cast alloys were sensitive to their molybdenum contents. The hexagonal alpha' phase c.p. Ti exhibited a feather-like morphology. When Mo content was 6 wt%, a fine, acicular martensitic structure of orthorhombic alpha" phase was observed. When Mo content was 7.5 wt%, the entire alloy was dominated by the martensitic alpha" structure. When Mo content was increased to 10 wt% or higher, the retained beta phase became the only dominant phase. Among all Ti-Mo alloys, the alpha" phase Ti-7.5Mo alloy had the lowest hardness. The bending strength of Ti-7.5Mo was similar to that of Ti-15Mo and Ti-13Nb-13Zr, and higher than c.p. Ti by nearly 60%. The bending modulus of the alpha"-dominated Ti-7.5Mo alloy was lower than that of Ti-15Mo by 22%, of Ti-6A1-4V by 47%, of Ti-13Nb-13Zr by 17%, and of c.p. Ti by 40%.
对一系列钼含量在6wt%至20wt%之间的二元Ti-Mo合金的结构和性能进行了研究。实验结果表明,铸造合金的晶体结构和形态对其钼含量敏感。六方α'相的纯钛呈现出羽毛状形态。当钼含量为6wt%时,观察到正交α"相的细小针状马氏体结构。当钼含量为7.5wt%时,整个合金以马氏体α"结构为主。当钼含量增加到10wt%或更高时,残留β相成为唯一的主导相。在所有Ti-Mo合金中,α"相的Ti-7.5Mo合金硬度最低。Ti-7.5Mo的抗弯强度与Ti-15Mo和Ti-13Nb-13Zr相似,比纯钛高近60%。以α"为主的Ti-7.5Mo合金的弯曲模量比Ti-15Mo低22%,比Ti-6Al-4V低47%,比Ti-13Nb-13Zr低17%,比纯钛低40%。