首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microstructure and mechanical behavior of superelastic Ti-24Nb-0.5O and Ti-24Nb-0.5N biomedical alloys.
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Microstructure and mechanical behavior of superelastic Ti-24Nb-0.5O and Ti-24Nb-0.5N biomedical alloys.

机译:Ti-24Nb-0.5O和Ti-24Nb-0.5N生物医学合金的微结构和力学行为。

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摘要

In this study, the microstructure and the mechanical properties of two new biocompatible superelastic alloys, Ti-24Nb-0.5O and Ti-24Nb-0.5N (at.%), were investigated. Special attention was focused on the role of O and N addition on α(″) formation, supereleastic recovery and mechanical strength by comparison with the Ti-24Nb and Ti-26Nb (at.%) alloy compositions taken as references. Microstructures were characterized by optical microscopy, X-ray diffraction and transmission electron microscopy before and after deformation. The mechanical properties and the superelastic behavior were evaluated by conventional and cyclic tensile tests. High tensile strength, low Young's modulus, rather high superelastic recovery and excellent ductility were observed for both superelastic Ti-24Nb-0.5O and Ti-24Nb-0.5N alloys. Deformation twinning was shown to accommodate the plastic deformation in these alloys and only the {332}<113> twinning system was observed to be activated by electron backscattered diffraction analyses.
机译:在这项研究中,研究了两种新的生物相容性超弹性合金Ti-24Nb-0.5O和Ti-24Nb-0.5N(原子%)的组织和力学性能。与作为参考的Ti-24Nb和Ti-26Nb(at。%)合金成分相比,O和N的添加对α('')的形成,超弹性回复率和机械强度的作用特别集中。变形前后通过光学显微镜,X射线衍射和透射电子显微镜对显微组织进行表征。通过常规和循环拉伸试验评估了机械性能和超弹性行为。 Ti-24Nb-0.5O和Ti-24Nb-0.5N合金均具有高拉伸强度,低杨氏模量,较高的超弹性回复率和出色的延展性。变形孪晶被显示为适应这些合金中的塑性变形,并且仅观察到{332} <113>孪晶系统被电子背散射衍射分析激活。

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