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首页> 外文期刊>Journal of Sound and Vibration >Passive damping augmentation of a vibrating beam using pseudoelastic shape memory alloy wires
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Passive damping augmentation of a vibrating beam using pseudoelastic shape memory alloy wires

机译:使用伪弹性形状记忆合金线的振动梁的被动阻尼增强

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This paper examines the effectiveness of pseudoelastic shape memory alloy (SMA) wires for passive damping of flexural vibrations of a clamped-free beam with a tip mass. A finite-element model of the system is developed and validated with experimental results. The SMA behavior is modelled using amplitude-dependent complex modulus. Numerical simulations indicate that the damping introduced by the SMA wires will increase for higher excitation-force amplitudes that produce higher strain levels in the SMA wires. Increasing the wire cross-section area provides more damping at low force-excitation amplitudes,. but reduced damping at higher amplitudes. The angle between the beam and the SMA wires is an influential parameter, and a value in the 10-20degrees range was found to introduce maximum damping. The underlying physical mechanisms are examined in detail. System damping depends only mildly on the SMA wire length, and is unaffected by the tip mass. (C) 2002 Academic Press. [References: 21]
机译:本文研究了伪弹性形状记忆合金(SMA)线对于带尖头质量的自由夹持梁的挠曲振动的被动阻尼的有效性。开发了系统的有限元模型,并通过实验结果进行了验证。 SMA行为使用幅度相关的复数模量进行建模。数值模拟表明,SMA导线引入的阻尼将随着较高的激振力振幅而增加,从而在SMA导线中产生较高的应变水平。导线横截面积的增加在低的力激励振幅下提供了更多的阻尼。但降低了较高振幅时的阻尼。梁和SMA线之间的角度是一个有影响的参数,发现10-20度范围内的值会引入最大阻尼。详细检查了潜在的物理机制。系统阻尼仅在很小程度上取决于SMA线的长度,并且不受尖端质量的影响。 (C)2002学术出版社。 [参考:21]

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