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Deformation Behavior of a Shape Memory Alloy, Nitinol

机译:形状记忆合金镍钛诺的变形行为

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摘要

Nickel-Titanium, commonly referred to as Nitinol, is a shape-memory alloy with numerous applications due to its superelastic nature and its ability to revert to a previously defined shape when deformed and then heated past a set transformation temperature. While the crystallography and the overall phenomenology are reasonably well understood, much remains unknown about the deformation and failure mechanisms of these materials. These latter issues are becoming critically important as Nitinol is being increasingly used in medical devices and space applications. The talk will describe the investigation of the deformation and failure of Nitinol using an in-situ optical technique called Digital Image Correlation (DIC). With this technique, full-field quantitative maps of strain localization are obtained for the first time in thin sheets of Nitinol under tension. These experiments provide new information connecting previous observations on the micro- and macro- scale. They show that martensitic transformation initiates before the formation of localized bands, and that the strain inside the bands does not saturate when the bands nucleate. The effect of rolling texture, the validity of the widely used resolved stress transformation criterion, and the role of geometric defects are examined.
机译:镍钛合金(通常称为镍钛诺)是一种形状记忆合金,由于其超弹性的性质以及在变形后加热到设定的转变温度后能够恢复为先前定义的形状的能力,因此具有多种用途。虽然对晶体学和整体现象学有很好的理解,但对于这些材料的变形和破坏机理仍然知之甚少。随着镍钛诺越来越多地用于医疗设备和太空应用中,后一问题变得尤为重要。演讲将描述使用称为数字图像相关(DIC)的原位光学技术对镍钛诺的变形和破坏进行的研究。利用这种技术,首次在张力下的镍钛诺薄片中获得了应变局部化的全场定量图。这些实验提供了新的信息,可以将先前的微观和宏观观察结果联系起来。他们表明,马氏体转变是在局部带形成之前开始的,并且当带形核时,带内部的应变不会饱和。研究了轧制织构的影响,广泛使用的解析应力转换准则的有效性以及几何缺陷的作用。

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