基于修正耦合应力理论和双相位滞后模型的基尔霍夫板谐振腔热弹性阻尼和频移

S. Devi, Rajneesh Kumar
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引用次数: 3

摘要

本文利用双相位滞后模型的广义热弹性理论研究了基尔霍夫板谐振器的热弹性阻尼和频移问题。利用Kirchhoff-Love平板理论和双相滞后模型,建立了基本的运动方程和热传导方程。得到了修正偶应力双相滞后热弹性板的热弹性阻尼和频移的解析表达式。构造了一种计算机算法来获得数值结果。研究了修正耦合应力双相滞后热弹性板、双相滞后热弹性板和少振型Lord-Shulman (L-S, 1967)热弹性板对热弹性阻尼和频移的影响。用图形表示了夹固和简支边界条件下随长度和厚度变化的热弹性阻尼和频移。结果表明,在两种振动模式和边界条件下,在长度不同的情况下,耦合应力存在时阻尼系数和频移值都有较大的变化,而在厚度不同的情况下,阻尼系数和频移值则相反。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermoelastic Damping and Frequency Shift in Kirchhoff Plate Resonators Based on Modified Couple Stress Theory With Dual-Phase-Lag Model
The present investigation deals with study of thermoelastic damping and frequency shift of Kirchhoff plate resonators by using generalized thermoelasticity theory of dual-phase-lag model. The basic equations of motion and heat conduction equation are written with the help of Kirchhoff-Love plate theory and dual phase lag model. The analytical expressions for thermoelastic damping and frequency shift of modified couple stress dual-phase-lag thermoelastic plate have been obtained. A computer algorithm has been constructed to obtain the numerical results. Influences of modified couple stress dual-phase-lag thermoelastic plate, dual- phase-lag thermoelastic plate and Lord-Shulman (L-S, 1967) thermoelastic plate with few vibration modes on the thermoelastic damping and frequency shift are examined. The thermoelastic damping and frequency shift with varying values of length and thickness are shown graphically for clamped-clamped and simply-supported boundary conditions. It is observed from the results that the  damping factor and frequency shift have noticed larger value in the presence of couple stress for varying values of length but opposite effect are shown for varying values of thickness in case of both vibration modes and boundary conditions.
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