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首页> 外文期刊>International journal of structural stability and dynamics >Effects of Phase Lags on Thermoelastic Damping in Micro-Beam Resonators
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Effects of Phase Lags on Thermoelastic Damping in Micro-Beam Resonators

机译:相滞滞后对微束谐振器热弹性阻尼的影响

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摘要

The aim of the present paper is to study the thermoelastic damping of a micro-beam resonator in the context of the generalized thermoelasticity theory with three-phase-lag (TPL). The thermoelastic damping of the micro-beam resonator is obtained by the Laplace transform procedure as well as by the finite-sine Fourier transformation. The vibration responses of deflection and thermal moment are obtained for the micro-beams with simply supported and isothermal ends. Initially, the analytic solution is obtained for the amplitudes of deflection and thermal moment. It was observed that both amplitudes are attenuated and the vibration frequency is increased with the three-phase-lag. The effects of phase-lags on the deflection and thermal moment are obtained and evaluated by comparing the present numerical results with the corresponding results based on the theory of thermoelasticity of type GN-III. It was observed that higher values of deflection and thermal moment of the resonator are obtained for the TPL when compared with those of the GN-III model. It was also found that these properties are size-dependent.
机译:本文的目的是在具有三相滞后(TPL)的广义热弹性理论的上下文中研究微束谐振器的热弹性阻尼。通过拉普拉斯变换过程以及由有限的正弦傅里叶变换获得微束谐振器的热弹性阻尼。用于具有简单支撑和等温端部的微束获得偏转和热矩的振动响应。最初,获得分析解决方案用于偏转和热矩的幅度。观察到,两个幅度被衰减,并且用三相滞后增加了振动频率。通过基于GN-III型热弹性理论比较本数值结果,获得并评估相位滞后对偏转和热矩的影响。观察到与GN-III模型相比,为TPL获得谐振器的偏转和谐振器的热矩值。还发现这些属性依赖于尺寸。

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