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Vibration of Gold Nano-Beam with Variable Thermal Conductivity Subjected to Sinusoidal Heating

机译:正弦加热下具有可变导热系数的金纳米束的振动

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The non-Fourier effect in heat conduction and the coupling effect between temperature and strain rate are the two significant effects in the nano-scale beam. In the present work, the solution of vibration of gold nano- beam resonator induced by sinusoidal heating is developed in the context of generalized thermoelasticity with variable thermal conductivity. Laplace transform methods have been used. The inverse Laplace transform has been calculated numerically and the numerical results have been presented graphically with some comparisons to stand on the effects of the variability of the thermal conductivity and the angular thermal frequency parameter.
机译:导热的非傅立叶效应以及温度和应变率之间的耦合效应是纳米级光束中的两个重要效应。在目前的工作中,在具有可变导热系数的广义热弹性的背景下,开发了正弦加热引起的金纳米束谐振器振动的解决方案。已经使用了拉普拉斯变换方法。拉普拉斯逆变换已通过数值计算,数值结果已通过图形显示,并进行了一些比较,以反映热导率和角热频率参数变化的影响。

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