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Vibrational behavior of variable section functionally graded microbeams carrying microparticles in therml environment

机译:在热环境中带有微粒的可变截面功能梯度微束的振动行为

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Based on the modified strain gradient theory (MSGT) in conjunction with the Timoshenko beam theory, the vibrational behavior under thermal environment of variable section functionally graded (FG) microbeams carrying microparticles is studied. The eigenfrequency equations are derived using the Chebyshev-Ritz method. The effects of temperature dependence of material properties and the initial thermal stresses are considered. After validating the method, the influences of the width taper ratio, the position and values of the microparticle masses, temperature rise, length scale parameters and material gradient index on the free vibration behavior of microbeams are studied. In addition, comparisons between the results of the MSGT, the modified couple stress theory (MCST), and the classical theory (CT) are performed. It is found that in addition to the microparticle masses and locations, their influences on the natural frequencies depend on the vibration mode number and the edge restraints of microbeams. Also, it is shown that the temperature rise, length scale parameters and material gradient index have considerable effects on the natural frequencies of microbeams. Moreover, the results demonstrate that the MSGT and the CT provide the largest and the smallest natural frequencies, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于改进的应变梯度理论(MSGT)和Timoshenko束理论,研究了带有微粒的可变截面功能梯度(FG)微束在热环境下的振动行为。使用Chebyshev-Ritz方法推导本征频率方程。考虑材料特性的温度依赖性和初始热应力的影响。验证了该方法的有效性,研究了宽度锥度比,微粒质量的位置和值,温度升高,长度尺度参数和材料梯度指数对微梁自由振动行为的影响。此外,对MSGT,改进的耦合应力理论(MCST)和经典理论(CT)的结果进行了比较。已经发现,除了微粒的质量和位置以外,它们对自然频率的影响还取决于振动模式数和微束的边缘约束。另外,还表明温度升高,长度比例参数和材料梯度指数对微束的固有频率有相当大的影响。此外,结果表明,MSGT和CT分别提供最大和最小的固有频率。 (C)2016 Elsevier Ltd.保留所有权利。

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