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Temperature dependent fracture properties of shape memory alloys: novel findings and a comprehensive model

机译:形状记忆合金的温度依赖性断裂性能:新发现和综合模型

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摘要

Temperature dependent fracture properties of NiTi-based Shape Memory Alloys (SMAs), within the pseudoelastic regime, were analyzed. In particular, the effective Stress Intensity Factor (SIF) was estimated, at different values of the testing temperature, by a fitting of the William’s expansion series, based on Digital Image Correlation (DIC) measurements. It was found that temperature plays an important role on SIF and on critical fast fracture conditions. As a consequence, Linear Elastic Fracture Mechanics (LEFM) approaches are not suitable to predict fracture properties of SMAs, as they do not consider the effects of temperature. On the contrary, good agreements between DIC results and the predictions of an ad-hoc analytical model were observed. In fact, the model takes into account the whole thermo mechanical loading condition, including both mechanical load and temperature. Results revealed that crack tip stress-induced transformations do not represent a toughening effect and this is a completely novel result within the SMA community. Furthremore, it was demonstrated that the analytical model can be actually used to define a temperature independent fracture toughness parameter. Therefore, a new approach is proposed, based on the analytical model, where both mechanical load and temperature are considered as loading parameters in SIF computation.
机译:在伪弹性范围内,分析了基于温度的NiTi基形状记忆合金(SMA)的断裂性能。特别是,根据数字图像相关性(DIC)测量结果,通过对William的膨胀数列进行拟合,可以在不同的测试温度值下估算有效应力强度因子(SIF)。已发现温度在SIF和关键的快速断裂条件中起着重要作用。结果,线性弹性断裂力学(LEFM)方法不适合预测SMA的断裂特性,因为它们没有考虑温度的影响。相反,观察到DIC结果与即席分析模型的预测之间的良好一致性。实际上,该模型考虑了整个热机械负载条件,包括机械负载和温度。结果表明,裂纹尖端应力引起的相变并不代表增韧效果,这在SMA社区内是一个全新的结果。此外,证明了该分析模型可以实际用于定义与温度无关的断裂韧性参数。因此,在分析模型的基础上,提出了一种新的方法,即在SIF计算中将机械载荷和温度都视为载荷参数。

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