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Photo-Thermal-Elastic Interaction in a Functionally Graded Material (FGM) and Magnetic Field

机译:在功能梯度材料(FGM)和磁场中的光 - 热弹性相互作用

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In this work, we aim to investigate the photo-thermal-elastic waves interaction in a nano-composite semiconductor, elastic and functionally graded material (FGM). The governing equations are taken in one dimension during the influence of initial magnetic field when the elastic medium is isotropic and the material properties are non-homogeneity. In the domain of Laplace transform the basic equations in non- dimensional forms are formulated in a vector matrix differential equation and are solved by the eigenvalue and eigenvector approach. The physical quantities are obtained by applying the numerical inversion method of the transforms. The numerical results of the physical quantities (carrier density, displacement, temperature, stresses and strains) are discussed and illustrated graphically.
机译:在这项工作中,我们的目的是研究纳米复合半导体,弹性和功能梯度材料(FGM)中的光热弹性波相互作用。 当弹性介质是各向同性时,在初始磁场的影响期间,在一个尺寸中拍摄控制方程,并且材料特性是非均匀性的。 在拉普拉斯变换的域中,非尺寸形式的基本方程在载体矩阵微分方程中配制,并通过特征值和特征向量方法解决。 通过施加变换的数值反演方法来获得物理量。 图示和示出了物理量(载流子密度,置换,温度,应力和菌株)的数值结果。

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