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EXACT SOLUTION FOR BENDING OF SHAPE MEMORY ALLOY SUPERELASTIC BEAMS

机译:形状记忆合金超弹性梁弯曲的精确解

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Bending is a common mode of application and operation of shape memory alloys (SMA). So far the coupled thermomechan-ical behavior of these alloys have been modeled with numerical methods such as finite element. The issue in developing exact solutions for a SMA beam in bending is because of the distributed and hysteric stress-strain profile. In this paper an analytical approach is developed to find the exact solution for the displacement due to the applied force on the SMA superelastic beam. The approach is based on the assumption of linear distribution of strain along the height of a cross section in the beam. The solution is validated by experimental data and the results of the solution for a superelastic beams for different cases are illustrated.
机译:弯曲是形状记忆合金(SMA)的常见应用和操作方式。到目前为止,这些合金的耦合热机械行为已通过数值方法(例如有限元)进行了建模。开发SMA弯曲梁精确解决方案的问题是由于分布和滞后应力应变曲线。在本文中,开发了一种分析方法来找到由于在SMA超弹性梁上施加力而引起的位移的精确解。该方法基于沿梁横截面高度的应变线性分布的假设。通过实验数据验证了该解决方案,并说明了不同情况下超弹性梁的解决方案结果。

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