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首页> 外文期刊>Structural Engineering and Mechanics >AGN-based modified model for size-dependent coupled thermoelasticity analysis in nano scale, considering nonlocality in heat conduction and elasticity: An analytical solution for a nano beam with energy dissipation
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AGN-based modified model for size-dependent coupled thermoelasticity analysis in nano scale, considering nonlocality in heat conduction and elasticity: An analytical solution for a nano beam with energy dissipation

机译:基于AGN的修正模型,用于纳米尺度尺寸依赖性耦合热弹性分析,考虑了导热和弹性中的非植物:纳米梁具有耗能的分析解决方法

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摘要

This investigation deals with a size-dependent coupled thermoelasticity analysis based on Green-Naghdi (GN) theory in nano scale using a new modified nonlocal model of heat conduction, which is based on the GN theory and nonlocal Eringen theory of elasticity. In the analysis based on the proposed model, the nonlocality is taken into account in both heat conduction and elasticity. The governing equations including the equations of motion and the energy balance equation are derived using the proposed model in a nano beam resonator. An analytical solution is proposed for the problem using the Laplace transform technique and Talbot technique for inversion to time domain. It is assumed that the nano beam is subjected to sinusoidal thermal shock loading, which is applied on the one of beam ends. The transient behaviors of fields' quantities such as lateral deflection and temperature are studied in detail. Also, the effects of small scale parameter on the dynamic behaviors of lateral deflection and temperature are obtained and assessed for the problem. The proposed GN-based model, analytical solution and data are verified and also compared with reported data obtained from GN coupled thermoelasticity analysis without considering the nonlocality in heat conduction in a nano beam.
机译:本研究涉及基于绿色纳格迪(GN)理论的尺寸依赖性耦合热弹性分析,以纳米规模的热传导模型,其基于GN理论和非本体eringen弹性理论。在基于所提出的模型的分析中,在导热和弹性中考虑非竞争性。包括运动方程和能量平衡方程的控制方程使用纳米梁谐振器中的所提出的模型来得出。建议使用Laplace变换技术和Talbot技术进行问题的分析解决方案,以反转时域。假设纳米光束经受正弦热冲击载荷,其施加在光束端部上。详细研究了诸如横向偏转和温度之类的田间数量的瞬态行为。此外,获得并评估了小规模参数对横向偏转和温度的动态行为的影响。验证了所提出的基于GN的模型,分析解决方案和数据,并且还与从GN耦合的热弹性分析获得的报告的数据进行了比较,而不考虑在纳米梁中的导热中的导热中的非植物。

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