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Analytical solution of a two-dimensional thermoelastic problem subjected to laser pulse

机译:激光脉冲作用下的二维热弹性问题的解析解

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In this article, the problem of a two-dimensional thermoelastic half-space are studied using mathematical methods under the purview of the generalized thermoelastic theory with one relaxation time is studied. The surface of the half-space is taken to be thermally insulated and traction free. Accordingly, the variations of physical quantities due to by laser pulse given by the heat input. The nonhomogeneous governing equations have been written in the form of a vector-matrix differential equation, which is then solved by the eigenvalue approach. The analytical solutions are obtained for the temperature, the components of displacement and stresses. The resulting quantities are depicted graphically for different values of thermal relaxation time. The result provides a motivation to investigate the effect of the thermal relaxation time on the physical quantities.
机译:本文在广义热弹性理论的指导下,利用数学方法研究了二维热弹性半空间问题,其中一个松弛时间。半空间的表面被认为是绝热且无牵引力的。因此,由于热量输入而产生的激光脉冲引起的物理量的变化。非均匀控制方程以矢量-矩阵微分方程的形式编写,然后通过特征值方法求解。获得了温度,位移分量和应力的解析解。对于不同的热弛豫时间值,以图形方式描绘了所得的量。结果为研究热弛豫时间对物理量的影响提供了动力。

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