论文标题

裂缝和疲劳形状记忆合金的相位场建模

Phase field modelling of fracture and fatigue in Shape Memory Alloys

论文作者

Simoes, Marlini, Martínez-Pañeda, Emilio

论文摘要

我们提出了一个新的相位场框架,用于对形状内存合金(SMA)中的断裂和疲劳进行建模。本构模型捕获了SMA的超弹性行为,并由弹性和转化应变能密度驱动。我们考虑恒定断裂能的假设和骨折能量的情况取决于马塞西氏菌体积分数。该框架是在隐式时间集成方案中实施的,具有整体和交错的解决方案策略。通过对许多范式问题进行建模来展示该公式的潜力。首先,边界层模型用于检查裂纹尖端场并计算裂纹生长电阻曲线(R-Curves)。我们表明该模型能够捕获与SMA相关的主要断裂特征,包括与应力诱导的相变相关的韧性。洞察力涉及温度,材料强度,裂纹密度功能和断裂能均匀化的作用。其次,解决了几个2D和3D边界值问题,证明了该模型在SMA中捕获复杂裂纹现象的能力,例如不稳定的裂纹生长,混合模式骨折或几种裂纹之间的相互作用。最后,该模型扩展到疲劳,并用于捕获生物医学支架中的裂纹成核和繁殖,这是Nitinol Smas的范式应用。

We present a new phase field framework for modelling fracture and fatigue in Shape Memory Alloys (SMAs). The constitutive model captures the superelastic behaviour of SMAs and damage is driven by the elastic and transformation strain energy densities. We consider both the assumption of a constant fracture energy and the case of a fracture energy dependent on the martensitic volume fraction. The framework is implemented in an implicit time integration scheme, with both monolithic and staggered solution strategies. The potential of this formulation is showcased by modelling a number of paradigmatic problems. First, a boundary layer model is used to examine crack tip fields and compute crack growth resistance curves (R-curves). We show that the model is able to capture the main fracture features associated with SMAs, including the toughening effect associated with stress-induced phase transformation. Insight is gained into the role of temperature, material strength, crack density function and fracture energy homogenisation. Secondly, several 2D and 3D boundary value problems are addressed, demonstrating the capabilities of the model in capturing complex cracking phenomena in SMAs, such as unstable crack growth, mixed-mode fracture or the interaction between several cracks. Finally, the model is extended to fatigue and used to capture crack nucleation and propagation in biomedical stents, a paradigmatic application of nitinol SMAs.

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