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Characterization of Two Ti-Nb-Hf-Zr Alloys Under Different Cold Rolling Conditions

机译:不同冷轧条件下两种Ti-Nb-Hf-Zr合金的表征

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The objective of this study is to obtain a new biomaterial to use in the load transfer medical implants field. The influence of cold work in the thermoelastic martensitic transformation and elastic modulus was investigated for a previously developed Ti-24.8Nb-16.2Hf-1Zr alloy (A1) and a new Ti-35Nb-9Hf-1Zr alloy (A2). The nanoindentation tests with spherical tip showed a decrease of the elastic modulus when increasing the cold work percentage. The lowest value (46 GPa) was achieved after the 95% reduction in thickness for Al. By contrast, the A2 alloy exhibits its lowest elastic modulus in the uncold-worked condition (58 GPa) and did not present evidences of thermoelastic martensitic transformation.
机译:这项研究的目的是获得一种新的生物材料,用于负载转移医疗植入物领域。对于先前开发的Ti-24.8Nb-16.2Hf-1Zr合金(A1)和新型Ti-35Nb-9Hf-1Zr合金(A2),研究了冷作对热弹性马氏体相变和弹性模量的影响。球形尖端的纳米压痕测试显示,当增加冷加工百分比时,弹性模量会降低。 Al的厚度减少95%之后,达到了最低值(46 GPa)。相比之下,A2合金在未经加工的条件下(58 GPa)表现出最低的弹性模量,并且没有热马氏体相变的证据。

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