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Simplified Shape Memory Alloy (SMA) Material Model for Vibration Isolation

机译:用于振动隔离的简化形状记忆合金(SMA)材料模型

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摘要

Advances in smart materials and structures technology, especially in applications of Shape Memory Alloys (SMA) as actuators and vibration isolation devices require understanding of the nonlinear hysteretic response found in SMAs. SMA hysteresis can be modeled either through constitutive models based on physical material parameters or through models based on system identification. In this work, a simplified material model for the pseudoelastic response of SMAs is presented, suitable for vibration isolation applications. Response obtained from the simplified model is compared with the response obtained from an existing thermodynamic constitutive SMA model and the results from the two models are found to match well. The computation time required by the simplified model was approximately seven times faster compared with the thermodynamic constitutive model. The simplified model is utilized to simulate a single degree of freedom mass-SMA system where the SMA acts as a passive vibration isolation device, showing a substantial reduction in displacement transmissibility.
机译:智能材料和结构技术的进步,特别是在形状记忆合金(SMA)作为致动器和隔振设备的应用中,需要了解SMA中的非线性滞后响应。 SMA滞后可以通过基于物理材料参数的本构模型或基于系统标识的模型进行建模。在这项工作中,提出了用于SMA拟弹性响应的简化材料模型,适用于隔振应用。将简化模型获得的响应与现有热力学本构SMA模型获得的响应进行比较,发现两个模型的结果非常吻合。简化模型所需的计算时间比热力学本构模型快约七倍。简化的模型用于模拟单自由度质量SMA系统,其中SMA用作被动隔振装置,从而显示位移传递率大大降低。

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