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为了降低医用植入物材料的弹性模量,通过选取不同含量的铌和锆,采用真空非自耗电弧炉熔炼了四种成分的Ti-Nb-Zr合金:Ti30Nb7Zr(T1)、Ti30Nb13Zr(T2)、Ti40Nb7Zr(T3)和Ti40Nb13Zr(T4);对四种合金进行了锻造处理,然后在β相区进行固溶,对其固溶后的力学性能、显微组织进行了研究.结果表明:T1和T2合金是β相+α'',相的两相组织,随着锆含量不同,α''相形貌及数量也各不相同;T3和T4合金是单-β相组织;四种合金的弹性模量均低于80 GPa,其中T2合金的弹性模量为58 GPa,与人体骨骼的弹性模量最为接近.

参考文献

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