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Phase diagram kinetics for shape memory alloys: a robust finite element implementation

机译:形状记忆合金的相图动力学:稳健的有限元实现

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A physically based one-dimensional shape memory alloy (SMA) model is implemented into the finite element software ABAQUS via a user interface. Linearization of the SMA constitutive law together with complete transformation kinetics is performed and tabulated for implementation. Robust rules for transformation zones of the phase diagram are implemented and a new strategy for overlapping transformation zones is developed. The iteration algorithm, switching point updates and solution strategies are developed and are presented in detail. The code is validated via baseline simulations including the shape memory effect and pseudoelasticity and then further tested with complex loading paths. A hybrid composite with self-healing function is then simulated using the developed code. The example demonstrates the usefulness of the methods for the design and simulation of materials or structures actuated by SMA wires or ribbons.
机译:通过用户界面将基于物理的一维形状记忆合金(SMA)模型实现到有限元软件ABAQUS中。进行SMA本构定律的线性化以及完整的转化动力学,并将其制成表格以供实施。实施了相图转换区的鲁棒规则,并开发了重叠转换区的新策略。开发并详细介绍了迭代算法,切换点更新和解决方案策略。该代码通过包括形状记忆效应和拟弹性的基线模拟进行了验证,然后使用复杂的加载路径进行了进一步测试。然后使用开发的代码对具有自我修复功能的混合复合材料进行仿真。该示例说明了用于设计和模拟SMA线或带驱动的材料或结构的方法的有用性。

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