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An algorithm to simulate the one-dimensional superelastic cyclic behavior of NiTi strings, for civil engineering applications

机译:一种模拟NiTi弦的一维超弹性循环行为的算法,用于土木工程应用

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An algorithm to model the one-dimensional cyclic behavior of NiTi strings is addressed. The NiTi alloy belongs to the shape memory alloy class of materials, therefore it presents both shape memory effect, for thermally-induced cycling, and superelasticity, for stress-induced cycles. The superelastic property has been the basis of some devices designed to mitigate the earthquake hazard level in structures. Throughout this paper the implementation of a one-dimensional cyclic behavior algorithm to model the NiTi constitutive relation is presented, supported by the thermomechanical formulation developed by Lagoudas and co-workers. The model was set up in MatLab environment and it accounts for isothermal superelastic behavior, incorporating minor hysteretic transformation loops. The definition of the transformation hardening function allowed for a better adjustment of the numerical model weighted against experimental results. Especial emphasis was given to the process of calibration of the model, regarding the definition of material parameters. The validation process consisted of the comparison between the results achieved with this algorithm and experimental tests performed at the Pacific Earthquake Engineering Research Center at the University of California at Berkeley. Quasi-static tensile tests and shake table tests of a small-scale steel structure with NiTi cross-bracing systems were used as reference. The model was able to simulate the experimental performance. This formulation can be implemented in more robust finite element analysis software, in order to perform studies in more elaborate structures.
机译:解决了模拟NiTi弦的一维循环行为的算法。 NiTi合金属于材料的形状记忆合金类别,因此,它既显示了热诱导循环的形状记忆效应,又显示了应力诱导循环的超弹性。超弹性性能已成为某些旨在减轻结构中地震危险程度的设备的基础。在整个本文中,在Lagoudas及其同事开发的热机械公式的支持下,提出了一种用于模拟NiTi本构关系的一维循环行为算法的实现。该模型是在MatLab环境中建立的,它考虑了等温超弹性行为,并包含了较小的滞后转换回路。转换硬化函数的定义允许根据实验结果对加权数值模型进行更好的调整。关于材料参数的定义,特别强调了模型的校准过程。验证过程包括用该算法获得的结果与在加利福尼亚大学伯克利分校的太平洋地震工程研究中心进行的实验测试之间的比较。使用带有NiTi交叉支撑系统的小型钢结构的准静态拉伸试验和振动台试验作为参考。该模型能够模拟实验性能。可以在功能更强大的有限元分析软件中实施此公式,以便在更精细的结构中进行研究。

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