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首页> 外文期刊>International journal of applied mechanics >Effects of the Length Scale Parameter on the Thermoelastic Damping of a Microbeam Considering the Couple Stress Theory
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Effects of the Length Scale Parameter on the Thermoelastic Damping of a Microbeam Considering the Couple Stress Theory

机译:考虑耦合应力理论的长度尺度参数对微梁热弹性阻尼的影响

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摘要

This paper studies the thermoelastic damping in microbeams considering the couple stress theory with microstructure. This theory includes the microinertia effects, coming from the kinetic energy due to the velocity gradient through the differential macroelements. A Galerkin-based reduced order model and complex frequency approach have been used to determine the quality factor. For a gold microbeam as a case study, the obtained results for different ambient temperatures, beam lengths and thicknesses are compared to those obtained using the classic theory of elasticity. The comparison has been made for different values of the length scale parameter. The effects of the microinertia term on the magnitude of the thermoelastic damping have also been investigated and shown that for which conditions these effects are significant.
机译:本文结合微结构耦合应力理论研究了微梁中的热弹性阻尼。该理论包括微惯性效应,该微惯性效应来自动能,这些动能归因于通过微分宏观元素的速度梯度。基于Galerkin的降阶模型和复频方法已​​用于确定品质因数。以金微束为例,将在不同环境温度,光束长度和厚度下获得的结果与使用经典弹性理论获得的结果进行比较。已针对长度比例参数的不同值进行了比较。还已经研究了微惯性项对热弹性阻尼大小的影响,并表明这些条件在哪些条件下是显着的。

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