Prediction of the Initial Crack Tip Microstructure in a Single Crystal of CuAlNi

G. M. Vasko, P. Leo, T. Shield
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Abstract

The austenite to martensite pseudoelastic transformation induced by the anisotropic elastic crack tip stress field in a single crystal of shape memory alloy is considered. It is proposed that the orientation of the initial austenite-martensite interface that forms can be predicted based on knowledge of the stress field, the crystallography of the transformation and one of two selection criteria. These criteria are based on the work of formation of the martensite in stress field and the crack opening displacement the martensite causes at the crack. Predictions of the criteria are compared to experiments on three single edge notched CuAlNi single crystal specimens. Results indicate that the maximum work criterion accurately predicts the orientation of the austenite-martensite interfaces that initially form near a crack.
CuAlNi单晶初始裂纹尖端组织的预测
研究了形状记忆合金单晶中各向异性弹性裂纹尖端应力场诱导的奥氏体向马氏体伪弹性转变。提出了基于应力场知识、相变的结晶学和两种选择准则中的一种,可以预测形成的初始奥氏体-马氏体界面的取向。这些准则是基于应力场中马氏体的形成功和马氏体在裂纹处引起的裂纹张开位移。并与三个单棱缺口CuAlNi单晶试样的实验结果进行了比较。结果表明,最大工作准则能准确地预测裂纹附近最初形成的奥氏体-马氏体界面的取向。
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