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Temperature effects on wave propagation in nanoplates

机译:温度对纳米板中波传播的影响

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In this paper, the thermal enects on the ultrasonic wave propagation characteristics ot a nanoplate are studied based on the nonlocal continuum theory. The nonlocal governing equations are derived for the nanoplate under thermal environment. The axial stress caused by the thermal effects is considered. The wave propagation analysis is carried out using spectral analysis. The influences of the nonlocal small scale coefficient, the room or low temperature, the high temperature and the axial half wave numbers on the wave dispersion properties of nanoplate are also discussed. Numerical results show that the small scale effects and the thermal effects are significant for larger half wavenumbers. The results are qualita tively different from those obtained based on the local plate theory and thus, are important for the devel opment of graphene-based nanodevices such as strain sensor, mass and pressure sensors, atomic dust detectors, and enhancer of surface image resolution.
机译:本文基于非局部连续理论,研究了纳米板在超声波传播特性上的热影响。推导了热环境下纳米板的非局部控制方程。考虑由热效应引起的轴向应力。波传播分析是使用频谱分析进行的。还讨论了非局部小比例系数,室温或低温,高温和轴向半波数对纳米板波色散特性的影响。数值结果表明,较小的尺度效应和热效应对于较大的半波数是显着的。该结果与基于局部板理论的结果在质量上有差异,因此对于开发基于石墨烯的纳米器件(如应变传感器,质量和压力传感器,原子粉尘检测器以及表面图像分辨率增强器)具有重要意义。

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