首页> 外文期刊>Protection of Metals and Physical Chemistry of Surfaces >The Role of Martensitic Transformation in Corrosion Fatigue Failure of Ti-22Nh-6Ta and Ti-22Nb-6Zr (at %) Medical Alloys
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The Role of Martensitic Transformation in Corrosion Fatigue Failure of Ti-22Nh-6Ta and Ti-22Nb-6Zr (at %) Medical Alloys

机译:马氏体相变在Ti-22Nh-6Ta和Ti-22Nb-6Zr(at%)医用合金腐蚀疲劳失效中的作用

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摘要

The effect of cyclic dynamic loading on the kinetics of changes in the electrode potentials of Ti- 22Nb-6Ta and Ti-22Nb-6Zr (at %) superelastic medical alloys in a model solution simulating the bone tissue environment in a living organism is studied with the use of electrochemical chronopotentiometry. An increase in the applied load from 450 to 780 MPa is found to affect dramatically the character of changes in the electrode potentials of the alloys during exposure. Ti-22Nb-6Ta alloy exhibits higher resistance to corrosion fatigue cracking than does Ti-22Nb-6Zr alloy. It is shown that the superelasticity of the alloys is responsible for the deceleration of the corrosion fatigue cracking due to the blocking effect of martensite crystals formed in the structure during the loading half-cycle, which is confirmed by the low rate of the potential decrease after the nucleation of corrosion fatigue cracks.
机译:在模拟生物体内骨骼组织环境的模型溶液中,研究了周期性动态载荷对Ti-22Nb-6Ta和Ti-22Nb-6Zr(at%)超弹性医用合金电极电势变化动力学的影响。使用电化学计时电位法。发现施加的载荷从450 MPa增加到780 MPa,会显着影响合金在暴露过程中电极电势的变化特性。 Ti-22Nb-6Ta合金比Ti-22Nb-6Zr合金具有更高的抗腐蚀疲劳开裂能力。结果表明,由于在加载半周期内结构中形成的马氏体晶体的结块效应,合金的超弹性导致了腐蚀疲劳裂纹的减速,这可以通过以下方法证实:腐蚀疲劳裂纹的成核。

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