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Finite-Element Simulation of the Anti-Buckling-Effect of a Shape Memory Alloy Bar

机译:形状记忆合金棒抗屈曲作用的有限元模拟

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Shape memory alloys (SMA) are characterized by an intricate stress-strain curve modified by temperature, posing thermomechanically coupled problems. A model able to address this feature is the Müller-Achenbach-Seelecke (MAS) model which had been ported into the user material interface in the finite-element (FEM) simulation software ABAQUS. The literature on this model mainly focuses on pseudo-elasticity of SMA at elevated temperature. We address a numerical investigation in the low-temperature pseudo-plastic regime. The present publication deals with the little-known anti-buckling effect which occurs in de-twinned and pre-bent martensitic bars under axial compression. It was experimentally demonstrated by Urushiyama et al. (JSME (The Japan Society of Mechanical Engineers) Int. J. Ser. A, Solid Mech. Mater. Eng., 2003, 46(1), p 60-67). This study reveals that the origin of this effect roots in an interplay of inhomogeneous stress states and mechanically induced twin-twin phase transformations. The proper explanation of the anti-buckling effect can be inferred from the explicit knowledge of the martensitic phase composition of the bar during the process. We show that the MAS model is capable to resolve this matter in detail, hence addressing the reliability of this particular model also in the pseudo-plastic regime of SMA. The study thereby implies that the MAS model is an excellent modeling tool for the analysis of complex, thermomechanically coupled processes.
机译:形状记忆合金(SMA)的特征是复杂的应力-应变曲线会因温度而改变,从而引起热机械耦合问题。能够解决此问题的模型是Müller-Achenbach-Seelecke(MAS)模型,该模型已在有限元(FEM)模拟软件ABAQUS中移植到用户材料界面中。关于该模型的文献主要集中于高温下的SMA的拟弹性。我们着眼于低温拟塑性过程中的数值研究。本出版物涉及鲜为人知的抗屈曲效果,该抗屈曲效果发生在轴向压缩的未缠绕和预弯曲的马氏体棒中。 Urushiyama等人通过实验证明了这一点。 (JSME(日本机械工程师协会)国际J.Ser.A,Solid Mech.Mater.Eng。,2003,46(1),第60-67页)。这项研究表明,这种作用的根源在于不均匀应力状态和机械诱导的双孪晶相变的相互作用。可以从对钢筋在加工过程中的马氏体相组成的明确了解中得出抗屈曲效果的正确解释。我们表明,MAS模型能够详细解决此问题,因此也可以在SMA的伪塑性区中解决该特定模型的可靠性。因此,该研究表明,MAS模型是用于分析复杂的热机械耦合过程的出色建模工具。

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