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首页> 外文期刊>Archive of Applied Mechanics >Study of transversely isotropic nonlocal thermoelastic thin nano-beam resonators with multi-dual-phase-lag theory
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Study of transversely isotropic nonlocal thermoelastic thin nano-beam resonators with multi-dual-phase-lag theory

机译:多双相滞后理论横向各向同性非局部热弹性薄纳米梁谐振器的研究

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摘要

This study deals with a novel model of forced vibrational analysis of nonlocal transversely isotropic thermoelastic nanobeam resonators due to ramp-type heating and due to time varying exponentially decaying load with multi-dual-phase-lag theory of thermoelasticity. The mathematical model is prepared for the nanobeam in a closed form with the application of Euler-Bernoulli (E-B) beam theory using nonlocal generalized thermoelasticity with multi-dual phase lags. The nonlocal nanobeam theory has a nonlocal parameter to depict small-scale effect. The Laplace Transform technique has been used to find the expressions for lateral deflection, conductive temperature, thermal moment, nonlocal axial stress and thermodynamic temperature for (i) clamped-clamped, (ii) simply supported-simply supported, (iii) clamped-simply supported, (iv) clamped-free, and (v) free-free nanobeam in the transformed domain. The general algorithm of the inverse Laplace Transform is developed to compute the results numerically in physical domain. The results exhibit that the amplitude of deflection and thermal moment is attenuated and depends upon the schematic design of the nanobeam being considered. Also, it can be found from both the numerical calculations and the analytic results that nonlocal multi-dual-phase-lag theory of thermoelasticity with two temperatures due to time varying exponentially decaying load has significant effect on deflection and thermal moment. The effect of different theories of nonlocal thermoelasticity, due to time varying exponentially decaying load, has been depicted on the various quantities. Some particular cases have also been deduced.
机译:本研究涉及由于斜坡型加热引起的非局部横向各向同性热弹性纳米阳离子谐振器的新型模型,并且由于热弹性多双相滞后性的时间变化衰减负荷。利用多腔广义热弹性使用具有多双相滞后的非局部通用热弹性,以封闭形式为纳米射进行纳米射的数学模型。非本体纳米束理论具有非本体参数,以描述小规模效果。 Laplace变换技术已被用于寻找用于横向偏转,导电温度,热矩,非函数轴向应力和热力学温度的表达式(i)夹紧夹紧的,(ii)简单地支持(iii)简单地支持(iii)简单地支持(iii)支持(iv)无夹住,(V)在转化的结构域中的无游离纳米束。开发了逆拉普拉斯变换的一般算法以在物理域中数值计算结果。结果表明,偏转和热矩的幅度衰减并取决于所考虑的纳米辐射的示意性设计。而且,可以从数值计算和分析结果中发现,由于时间变化的指数腐烂负载的两个温度的热弹性的非局部多双相滞后理论对偏转和热刻具有显着影响。由于时间变化了指数衰减负载,因此已经描绘了不同的非局部热弹性理论的影响。一些特定的病例也被推导出来。

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