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Comparative Study of Two Multiscale Thermomechanical Models of Polycrystalline Shape Memory alloys: Application to a Representative volUme Element of Titanium-Niobium

机译:多晶体形状记忆合金两种多尺度热机械模型的比较研究:钛 - 铌代表性体积元素的应用

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This paper presents a comparative study between two micro-macro modeling approaches to simulate stress-induced martensitic transformation in shape memory alloys(SMA). One model is a crystal plasticity-based model and the other describes the evolution of the microstructure with a Boltzmann-type statistical approach. Both models consider a self-consistent scheme to perform the scale transition from the local thermomechanical behavior to the global one. The way the two modeling approaches describe the local behavior is analyzed. Similarities and differences are pointed out. Numerical simulations of the thermomechanical behavior of an isotropic titanium-niobium SMA are performed. These alloys have known a growing interest of scientific community given their high potential for application in the biomedical field. Stress-strain curves obtained from the two simulations are compared with experimental results. Evolutions of volume fractions of martensite variants predicted by the two approaches are compared for <100>, <110>, and <111> tensile directions. Due to the absence of comparative studies between multiscale models dedicated for SMA, this paper fills a gap in the state of the art in this field and provides a significant step toward the definition of an efficient numerical tool for the analysis of SMA behavior under multiaxial loadings.
机译:本文介绍了两种微型宏观建模方法模拟形状记忆合金(SMA)中的应力诱导的马氏体变换的比较研究。一种模型是基于晶体塑性的模型,另一个模型描述了用玻璃螺栓型统计方法的微观结构的演变。这两种模型都考虑了一个自我一致的方案,以从本地热机械行为到全局一个方案。分析了两个建模方法描述了本地行为的方式。指出了相似之处和差异。进行各向同性钛 - 铌SMA的热机械行为的数值模拟。这些合金已经知道科学界的越来越感兴趣,因为它们在生物医学领域的应用很高。将从两种模拟获得的应力 - 应变曲线与实验结果进行比较。将两种方法预测的马氏体变体的体积分数的演变进行了比较<100,<110>和<111>拉伸方向。由于缺乏专用于SMA的多尺度模型之间的比较研究,本文填补了该领域的现有技术的差距,并为多轴载荷下分析了SMA行为的有效数值工具的定义提供了重要的一步。

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