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Effect of phase-lag on thermoelastic vibration of Timoshenko beam

机译:相滞对Timoshenko梁热弹性振动的影响

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摘要

An explicit formula of coupled three-phase-lag (TPL) thermoelasticity theory under the Timoshenko beam is constructed for microbeam resonators. The constructed mathematical model is based on the modified couple stress theory which implies a prediction of size-dependent effects in microbeam resonators. By using Hamilton's principle, governing equations for motion and boundary conditions are derived. The thermal moment and thermal deflection of microbeam resonators are studied analytically and numerically. A comparison of the results between modified coupled stress theory and classical theory is executed for TPL, GN-II, and Lord-Shulman (LS) models. Also, a comparison of the results between TPL, GN-II, and LS models for modified coupled stress theory is done. Besides, the result is presented for silicon microbeam for different aspect ratios and phase-lags. It demonstrated the result corresponding to the behavior of thermoelastic frequencies of microbeam resonators.
机译:在Timoshko梁下的耦合三相滞后(TPL)热弹性理论的明确公式被构造为微观谐振器。构建的数学模型基于修改的耦合应力理论,这意味着在微观谐振器中预测大小依赖效果。通过使用汉密尔顿的原理,推导出用于运动和边界条件的控制方程。微观谐振器的热矩和热偏转在数字上和数值上进行了研究。为TPL,GN-II和Lord-Shulman(LS)模型执行了改进的耦合应力理论与经典理论的结果的比较。此外,完成了TPL,GN-II和LS模型之间的结果的比较,已经完成了修改的耦合应力理论。此外,对于不同纵横比和相位滞后,将结果呈现用于硅片微观。它证明了与MicroBeam谐振器的热弹性频率的行为相对应的结果。

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