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Analysis of SMA Hybrid Composite Structures in MSC.Nastran and ABAQUS

机译:MSC.Nastran和ABAQUS中SMA杂化复合结构的分析。

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摘要

A thermoelastic constitutive model for shape memory alloy (SMA) actuators and SMA hybrid composite (SMAHC) structures was recently implemented in the commercial finite element codes MSC.Nastran and ABAQUS. The model may be easily implemented in any code that has the capability for analysis of laminated composite structures with temperature dependent material properties. The model is also relatively easy to use and requires input of only fundamental engineering properties. A brief description of the model is presented, followed by discussion of implementation and usage in the commercial codes. Results are presented from static and dynamic analysis of SMAHC beams of two types; a beam clamped at each end and a cantilever beam. Nonlinear static (post-buckling) and random response analyses are demonstrated for the first specimen. Static deflection (shape) control is demonstrated for the cantilever beam. Approaches for modeling SMAHC material systems with embedded SMA in ribbon and small round wire product forms are demonstrated and compared. The results from the commercial codes are compared to those from a research code as validation of the commercial implementations; excellent correlation is achieved in all cases.
机译:最近在商业有限元代码MSC.Nastran和ABAQUS中实现了用于形状记忆合金(SMA)致动器和SMA混合复合材料(SMAHC)结构的热弹性本构模型。该模型可以容易地以任何具有分析与温度相关的材料特性的层压复合结构的能力的代码来实施。该模型也相对易于使用,只需要输入基本工程属性即可。简要介绍了该模型,然后讨论了商业法规中的实现和用法。结果来自两种类型的SMAHC梁的静态和动态分析。两端夹紧的梁和悬臂梁。对第一个样本进行了非线性静态(屈曲后)和随机响应分析。演示了悬臂梁的静态挠度(形状)控制。演示并比较了用于以带状和小圆线产品形式嵌入SMA的SMAHC材料系统的建模方法。商业代码的结果与研究代码的结果进行比较,以验证商业实现;在所有情况下都可以实现出色的相关性。

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