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An exact solution on gold microbeam with thermoelastic damping via generalized Green-Naghdi and modified couple stress theories

机译:通过全广义绿色Naghdi和改进的夫妇应力理论,通过热弹性阻尼的金色微沟的精确解决方案

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摘要

The vibration of the gold microbeam resonator considering the effects of the material length scale under the temperature effect is investigated in this article. The modified couple stress theory is utilized to show the material length scale effects. The effects of temperature considering the thermoelastic damping are taken into account based on Green-Naghdi thermoelasticity theory. The Green-Naghdi coupled thermoelasticity and modified couple stress governing equations for Euler-Bernoulli beam are derived based on Hamilton?s principle. The Laplace method is utilized to solve the obtained equations. The inverse Laplace method as Talbot method is used to obtain the lateral deflection and temperature response of the microbeam in the time domain. The effects of the various parameters such as the nondimensional material length scale parameter, the thickness of the microbeam, and the initial temperature conditions, on the lateral deflection as well as temperature responses of the microbeam are studied to investigate the results. Raising the material length scale parameter and width to length ratio makes the lateral deflection of the beam decrease in the time domain. Increase in temperature shock and Poisson?s ratio makes the lateral deflection increase, and both have a direct effect on the lateral deflection in the time domain, except that this increase is linear for temperature shock. The temperature of the microbeam decreases by an increase in Poisson?s ratio and progressing in the axial direction. For the final observation, it should be noted that the couple stress has an inverse effect on the lateral deflection.
机译:考虑到在本文中研究了考虑材料长度尺度下的材料长度尺度的影响的振动。改进的耦合应力理论用于显示材料长度尺度效应。基于绿色Naghdi热弹性理论,考虑了考虑热弹性阻尼的温度的影响。基于Hamilton的原理推导出Euler-Bernoulli光束的绿色Naghdi耦合热弹性和改进的耦合条件。拉普拉斯方法用于解决所获得的方程。作为Talbot方法的逆拉普拉斯方法用于获得时域中微波的横向偏转和温度响应。研究了诸如非潜能材料长度参数,微观厚度和初始温度条件的各种参数的效果,以及微波的温度响应以研究结果。提高材料长度比参数和宽度与长度比使得光束的横向偏转在时域中的横向偏转。温度震动和泊松比的增加使得横向偏转增加,并且两者都对时域的横向偏转直接影响,除了这种增加是温度冲击的线性。微沟的温度随着泊松的比率的增加而降低,并且在轴向上进展。对于最终观察,应该注意的是,耦合应力对横向偏转具有反比作用。

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