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Design and experimental investigation of a superelastic SMA damper

机译:一种超弹性SMA阻尼器的设计与实验研究

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摘要

Based on shape memory alloy (SMA) superelastic properties, a new SMA damper is designed and manufactured. Experiments were taken to investigate the influence of frequency and displacement amplitude on the damper's mechanical behavior. The results show that, in the range of experimental frequencies, the frequencies have slight effects on SMA damper's mechanical parameters such as the stiffness and dissipated energy; displacement amplitude is the major factor that affects SMA damper's mechanical behavior, that is, under small displacement, the damper's stiffness does not change, and dissipated energy increases linearly with displacement. On the other hand, under large displacement, its secant stiffness decreases; however, its dissipated energy increases greatly. It can be concluded that the SMA damper is a displacement-correlated and variable-stiffness damper.
机译:基于形状记忆合金(SMA)的超弹性,设计并制造了一种新型SMA阻尼器。通过实验研究了频率和位移幅度对减震器机械性能的影响。结果表明,在实验频率范围内,这些频率对SMA阻尼器的机械参数(如刚度和耗散能量)影响不大。位移振幅是影响SMA阻尼器机械性能的主要因素,也就是说,在较小的位移下,阻尼器的刚度不会改变,耗能随位移线性增加。另一方面,在大位移下,其割线刚度降低;但是,它的耗散能量大大增加。可以得出结论,SMA阻尼器是与位移相关的可变刚度阻尼器。

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