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Numerical model for an epoxy beam reinforced with superelastic shape memory alloy wires

机译:用超弹性形状记忆合金线加固环氧树脂梁的数值模型

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We present a numerical solution for a smart composite beam consisting of an epoxy matrix reinforced with unidirectional superelastic shape memory alloy (SMA) fibers with uniform circular cross section. The beam is loaded by a tip load, which is then removed resulting in shape recovery due to superelasticity of the SMA wires. The analysis is carried out considering a representative volume element (RVE) of the beam consisting of one SMA wire embedded in epoxy. The analytical model is developed for a superelastic SMA/epoxy composite beam subjected to a complete loading cycle in bending. Using the proposed model, the moment-curvature profile, martensite volume fraction variation, and axial stress are determined. The results are validated against three-dimensional finite element analysis (3D FEA) for the same conditions. The proposed work is a contribution toward better understanding of the bending behavior of superelastic SMA-reinforced composites.
机译:我们为智能复合梁提供了一种数值解决方案,该智能复合光束由具有均匀圆形横截面的单向超弹性形状记忆合金(SMA)纤维增强的环氧基质组成。该光束由尖端载荷装载,然后除去由于SMA线的超弹性而导致形状恢复。考虑由嵌入环氧树脂中的一个SMA线组成的光束的代表性体积元素(RVE)进行分析。分析模型是开发用于在弯曲中进行完全装载循环的超弹性SMA /环氧复合梁。使用所提出的模型,确定片段曲率曲线,马氏体体积分数和轴向应力。在相同的条件下,该结果针对三维有限元分析(3D FEA)验证。拟议的工作是对更好地理解超弹性SMA加强复合材料的弯曲行为的贡献。

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