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首页> 外文期刊>Journal of computational and theoretical nanoscience >Effect of Initial Stress, Rotation and Gravity on Propagation of the Surface Waves in Fibre-Reinforced Anisotropic Solid Elastic Media
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Effect of Initial Stress, Rotation and Gravity on Propagation of the Surface Waves in Fibre-Reinforced Anisotropic Solid Elastic Media

机译:初始应力,旋转和重力对纤维增强各向异性固体弹性介质中表面波传播的影响

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This paper investigates the surface waves of fibre-reinforced elastic media in an initially stressed, homogeneous, anisotropic, half-space subjected to rotation and gravity field have been investigated. The theory of generalized surface waves developed and then it employed to investigate particular cases of waves, viz., Rayleigh waves, Love waves and Stoneley waves. The analytical solution for the components of displacement and stresses are obtained in the physical domain by using the harmonic vibrations. The frequency equations have been obtained in the different cases. The numerical results are given and iulastrated graphically. Comparison was made with the results obtained in the presence and absence of initial stress, rotation, gravity and parameters for fibrere-inforced of the material media. The results indicate that the effect of initial stress, rotation, gravity and parameters of fibre-reinforced of the material media are very pronounced.
机译:本文研究了纤维增强弹性介质在受到旋转和重力场作用的初始应力,均质,各向异性,半空间中的表面波。广义面波理论得以发展,然后被用于研究特定情况的波,即瑞利波,洛夫波和斯通利波。利用谐波振动,可以在物理领域获得位移和应力分量的解析解。在不同情况下已经获得了频率方程。给出了数值结果并以图形形式对其进行了修正。将在存在和不存在初始应力,旋转,重力和纤维增强材料介质参数的情况下获得的结果进行比较。结果表明,材料介质的初始应力,旋转,重力和纤维增强参数的影响非常明显。

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