首页> 外文会议>STP 1481; Symposium on Fatigue and Fracture of Medical Metallic Materials and Devices; 200511; Dallas,TX(US) >Effects of Phase Transformations on Fatigue Endurance of a Superelastic NiTi Alloy
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Effects of Phase Transformations on Fatigue Endurance of a Superelastic NiTi Alloy

机译:相变对超弹性NiTi合金疲劳强度的影响

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It is well known that NiTi shape memory alloys exhibit superelasticity where a large elastic deformation proceeds under a constant stress due to the formation of stress-induced martensite. However, for most commercial NiTi alloys used in medical devices, the materials are processed in such a way that the H-phase transformation is apparently separated from the martensitic transformation. The B2 to R-phase change exhibits a much smaller shape change and a narrower hysteresis than does the B2 to B19' martensite transformation. Hence, the transformation temperatures as well as the thermomechanical properties associated with the R-phase are much more stable during cyclic deformation when compared to those associated with the B19'martensite. The crystallographic features for both martensitic and R-phase transformations are reviewed, and their effects on the tensile properties and rotating-beam fatigue endurance are studied in the present paper.
机译:众所周知,NiTi形状记忆合金表现出超弹性,其中由于应力诱发的马氏体的形成,在恒定的应力下发生大的弹性变形。但是,对于医疗设备中使用的大多数商用NiTi合金,材料的处理方式是使H相转变与马氏体转变明显分开。 B2到R相的变化比B2到B19'的马氏体相变具有更小的形状变化和更窄的磁滞。因此,与B19'马氏体相关联的相变温度以及与R相相关的热机械性能在循环变形期间更加稳定。综述了马氏体和R相转变的晶体学特征,并研究了它们对拉伸性能和旋转梁疲劳强度的影响。

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