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首页> 外文期刊>Structural Engineering and Mechanics >Dual-phase-lag model on microstretch thermoelastic medium with diffusion under the influence of gravity and laser pulse
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Dual-phase-lag model on microstretch thermoelastic medium with diffusion under the influence of gravity and laser pulse

机译:在重力和激光脉冲影响下的微纹热弹性介质上的双相滞后模型

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摘要

This investigation is to study the effect of gravitational field and diffusion on a microstretch thermoelastic medium heating by a non-Gaussian laser beam. The problem was studied in the context of the dual-phase-lag model. The normal mode analysis is used to solve the problem to obtain the exact expressions for the non-dimensional displacement components, the microrotation, the stresses, and the temperature distribution. The effect of time parameter, heat flux parameter and gravity response of three theories of thermoelasticity i.e. dual-phase-lag model (DPL), Lord and Shulman theory (L-S) and coupled theory (CT) on these quantities have been depicted graphically for a particular model.
机译:该研究是研究引力场和扩散对由非高斯激光束加热的微螺旋热弹性介质的影响。在双相滞后模型的背景下研究了问题。正常模式分析用于解决问题,以获得非尺寸位移分量,微机器,应力和温度分布的确切表达。在图形上描绘了三种热弹性的三种理论,即三相滞后模型(DPL),主和舒尔曼理论(LS)和耦合理论(CT)的时间参数,热通量参数和重力响应的影响已经被图示出来特定模型。

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