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首页> 外文期刊>Journal of intelligent material systems and structures >Strain rate dependent formulation of the latent heat evolution of superelastic shape memory alloy wires incorporated in multistory frame structures
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Strain rate dependent formulation of the latent heat evolution of superelastic shape memory alloy wires incorporated in multistory frame structures

机译:依赖于多层框架结构中的超弹性形状记忆合金线的潜热演化的应变率依赖性制剂

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摘要

Due to their unique hysteretic energy dissipation capacity, shape memory alloy (SMA) wires are particularly interesting for the development of new-type of intelligent vibration control systems for structures. However, in structural control, most of the vibrations occur in high strain rate regimes, which interfere the release of self-generated heat and thus influence the hysteretic dissipation. This paper proposes a strain rate dependent formulation of the latent heat evolution and aims to improve the accuracy of existing macroscopic modeling approaches developed for SMA wires particularly for the dynamic load cases. The proposed formulation is determined phenomenologically and implemented in a continuum thermomechanical framework based constitutive SMA wire model without impairing the simplicity and robustness of the solution process. The proposed formulation is validated by cyclic tensile tests conducted on SMA wires. Results show that the calculations using the formulation can predict the wire response more accurately than the strain rate independent formulation. For the simulation of multistory frame structures incorporating multiple SMA wires, the governing equations are driven. Shaking table tests are conducted on a 3-story frame structure under harmonic and seismic excitation. The responses of the structure are successfully replicated using the strain rate dependent latent heat formulation.
机译:由于它们独特的滞后能量耗散能力,形状记忆合金(SMA)线对结构的新型智能振动控制系统的开发特别有趣。然而,在结构控制中,大多数振动发生在高应变率制度中,这会干扰自生物的释放,从而影响滞后耗散。本文提出了一种潜伏的热演化的应变速率依赖性制剂,并旨在提高对SMA线开发的现有宏观建模方法的准确性,特别是对于动态负载箱。所提出的配方在基于连续的基于Continum的Themulchichical框架的基本型SMA线模型中确定,而不是损害解决方案过程的简单性和鲁棒性。所提出的配方通过在SMA线上进行的循环拉伸试验验证。结果表明,使用制剂的计算可以比应变速率独立配方更准确地预测电线响应。对于包含多个SMA线的多帧帧结构的模拟,驱动控制方程。在谐波和地震激发下的3层框架结构上进行了摇架测试。使用应变速率依赖性潜热制剂成功地复制结构的响应。

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