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Thermal Vibration Characteristics Analysis of a Composite Thin-Cylindrical Shell Embedded With Shape Memory Alloy Wires

机译:具有形状记忆合金线的复合薄圆柱壳的热振动特性分析

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Thermal vibration characteristics of the composite thin-cylindrical shell embedded with shape memory alloy (SMA) fibers are investigated. The shape memory alloy material behavior is programmed in the form of an ABAQUS user subroutine code (UMAT), and this program is successfully verified by using the response of pseudoelasticity and the shape memory effect (SME) at various temperatures and stress levels. Based on the ABAQUS UMAT code, the natural frequency of the composite thin-cylindrical shell embedded with SMA wires under thermal load and mechanical load is calculated respectively. Then the effects of the SMA wire temperature and the content on the thermal vibration characteristics of the structure are discussed. Numerical simulation results show that the temperature and the volume content of the SMA wires increase the stiffness and buckling critical load of the structure.
机译:研究了嵌入具有形状记忆合金(SMA)纤维的复合薄圆柱壳的热振动特性。形状记忆合金材料行为以ABAQUS用户子程序代码(UMAT)的形式编程,并且通过在各种温度和应力水平处使用伪弹性和形状记忆效应(SME)的响应来成功验证该程序。基于ABAQUS UMAT CODE,分别计算了嵌入了热负荷和机械负荷下的SMA线的复合薄圆柱壳的固有频率。然后,讨论了SMA线温度的影响和对结构的热振动特性的含量。数值模拟结果表明,SMA线的温度和体积含量增加了结构的刚度和弯曲临界负荷。

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