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Three-Dimensional Generalized Thermoelasticity with Variable Thermal Conductivity

机译:可变导热系数的三维广义热弹性

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In this paper, a three-dimensional model of the generalized thermoelasticity with one relaxation time and variable thermal conductivity has been constructed. The resulting non-dimensional governing equations together with the Laplace and double Fourier transforms techniques have been applied to a three-dimensional half-space subjected to thermal loading with rectangular pulse and traction free in the directions of the principle co-ordinates. The inverses of double Fourier transforms, and Laplace transforms have been obtained numerically. Numerical results for the temperature increment, the invariant stress, the invariant strain, and the displacement are represented graphically. The variability of the thermal conductivity has significant effects on the thermal and the mechanical waves.
机译:本文建立了具有一个弛豫时间和可变热导率的广义热弹性三维模型。所得的无量纲控制方程与拉普拉斯和双重傅里叶变换技术一起已应用于经受了具有矩形脉冲的热载荷且在主坐标方向上没有牵引力的三维半空间。已通过数值获得了双重傅里叶变换和拉普拉斯变换的逆。用图形表示温度增量,不变应力,不变应变和位移的数值结果。导热系数的变化对热波和机械波具有重要影响。

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