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Small-scale thermoelastic damping in micro-beams utilizing the modified couple stress theory and the dual-phase-lag heat conduction model

机译:利用改进的耦合应力理论和双相滞后导热模型,微梁中小型热弹性阻尼

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In this article, the size-dependent behavior of micro-beams with the thermoelastic damping (TED) phenomenon is studied. The coupled thermoelasticity equations are derived on the basis of the modified couple stress theory (MCST) and dual-phase-lag (DPL) heat conduction model. By solving these coupled equations simultaneously, a closed-form expression for the TED parameter in micro-beams is presented which considers the small-scale effects incorporation. Then, the effect of various parameters on TED in micro-beams, such as micro-beam height, the type of material, boundary conditions, and aspect ratio is investigated. The results show that the influence of utilizing non-classical continuum and thermoelasticity theories on the amount of TED and the critical thickness is significant in small scales.
机译:在本文中,研究了具有热弹性阻尼(TED)现象的微梁的尺寸依赖性行为。耦合的热弹性方程是基于修改的耦合应力理论(MCST)和双相滞后(DPL)热传导模型的基础推导出来的。通过同时求解这些耦合方程,提出了微束中的TED参数的闭合表达式,其考虑了小规模效应掺入。然后,研究了各种参数在微束中的各种参数,例如微光束高度,材料的类型,边界条件和纵横比。结果表明,利用非经典连续体和热弹性理论的影响在小鳞片中具有显着的厚度和临界厚度。

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