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Effect of Zr Addition on Mechanical Properties of Ti-Nb-Zr Alloys for Biomedical Applications

机译:Zr添加对生物医学应用Ti-Nb-Zr合金力学性能的影响

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Artificial bone implant is concerned to improve their substantial features such as biocompatibility and mechanical properties. Ti-Nb alloys were considered to be one of the competitive materials because of their good biocompatibility and pseudoelasticity. In a present work, the effect of Zr addition as a third element on mechanical properties and pseudoelasticity of Ti-Nb alloys with Nb-content of 22-23at% were investigated by using cycling tests. The alloy ingots were fabricated by an arc melting method. The ingots were homogenization treated at 1273 K for 3.6ks followed by cold-rolled to a reduction ratio of 90% in thickness. All specimens were heat-treated at 873 K and some of them were aging treated at temperature ranging from 573 to 673 K after heat-treatment. Pseudoelasticity and mechanical behavior were evaluated by cycling test at room temperature. The results suggested that psuedoelasticity was confirmed in specimens without aging treatment irrespective of alloy compositions. Maximum recovery strain recovery increases with increasing Zr content. From all information acquired, it can be concluded that Ti-22Nb-(3-4)Zr(at.%) and Ti-23Nb-(2-3)Zr(at.%) alloys are the most optimum for artificial bone.
机译:人造骨植入物涉及改善其实质性特征,例如生物相容性和机械性能。由于其良好的生物相容性和假性弹性,Ti-Nb合金被认为是竞争材料之一。在本作工作中,通过使用循环试验研究了作为第三个元素的第三个元素作为第三个元素的Zr的作用,并通过使用循环试验研究了22-23At%的Ti-Nb合金的第三个元件。通过电弧熔化法制造合金锭。将锭料在1273K处理3.6k,然后冷轧到厚度为90%的减少率。将所有样品在873 k下热处理,其中一些样品在热处理后在573至673k的温度下处理老化。通过在室温下循环试验评估假痉挛和机械行为。结果表明,无论合金组合物如何,在试样中确认了Psuedo弹性。随着Zr含量的增加,最大恢复应变恢复增加。从所获得的所有信息中,可以得出结论,Ti-22NB-(3-4)Zr(at。%)和Ti-23nB-(2-3)Zr(at。%)合金是人造骨最佳的。

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