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ANALYTICAL MODEL FOR A SUPERELASTIC SMA BEAM

机译:超弹SMA梁的解析模型。

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摘要

We propose an analytical model for a superelastic shape memory alloy (SMA) beam. The model considers reversible phase transformation between austenite and a single martensite variant driven by mechanical loading/unloading. In particular, we consider a cantilever beam subjected to a concentrated transverse force acting at the tip. The force is gradually increased from zero to a maximum value sufficient to cause complete transformation of the initially austenitic phase into martensite away from the beam core. The force is then gradually removed, resulting in complete strain recovery. In each stage of the loading/unloading process, an analytical relation is established between bending moment and curvature in terms of position along the axis of the beam. The model is compared to a uniaxial numerical beam model and to finite element analysis (FEA) results for the same beam in 3D, with very good agreement in each case. The moment-curvature relation is then integrated to obtain a nonlinear expression for the deflection and stress distribution in terms of position along the length of the beam. The expression is validated against 3D simulation results.
机译:我们提出了一种超弹性形状记忆合金(SMA)梁的分析模型。该模型考虑了奥氏体和由机械加载/卸载驱动的单个马氏体变体之间的可逆相变。特别地,我们考虑作用在尖端的集中横向力作用的悬臂梁。力从零逐渐增加到足以引起初始奥氏体相从梁芯完全转变成马氏体的最大值。然后逐渐消除作用力,从而完全恢复应变。在装载/卸载过程的每个阶段,在弯矩和曲率之间沿着梁轴线的位置建立了解析关系。将该模型与单轴数值梁模型进行比较,并与3D中相同梁的有限元分析(FEA)结果进行比较,在每种情况下都具有很好的一致性。然后,积分弯矩-曲率关系以获得沿梁的长度在位置方面的挠度和应力分布的非线性表达式。该表达式已针对3D仿真结果进行了验证。

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