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Guided Wave Propagation in a Layered Half-Space Structure of Anisotropic Materials

机译:各向异性材料分层半空间结构中的导波传播

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Layered half-spaces are widely used in engineering particularly for structures working under extreme conditions or having specific surface requirements. The thin layer helps improve engineering properties for the substrate material and prevent external damages caused by weather condition, friction, or chemical corrosion. Ultrasonic guided waves have been shown the advantages in material characterization and nondestructive evaluation of layered media that have a large dimension, include hard-to-reach areas, or are buried. In this paper, the motion of Rayleigh surface waves in layered half-spaces modeled as an orthotropic layer overlying an orthotropic half-space is investigated. The explicit expressions of free Rayleigh waves in both the layer and the half-space are first presented. Using the boundary conditions on the free surface and at the interface, the dispersive relations of Rayleigh waves are derived resulting in the dispersion curves. Reciprocity theorems are then applied to acquire the exact solutions of Rayleigh waves in coated structures of anisotropic materials under time-harmonic loads. The closed-form amplitudes of surface waves are found by using reciprocity theorems between two states, the Rayleigh wave that is generated by the time-harmonic forces and a free Rayleigh wave traveling in the layered structures.
机译:分层的半空间广泛用于工程中,特别是对于在极端条件下工作或具有特定表面要求的结构。薄层有助于改善基板材料的工程性能,并防止天气状况,摩擦或化学腐蚀引起的外部损坏。超声波引导波已经示出了材料表征的优点和具有大尺寸的层状介质的非破坏性评估,包括难以到达的区域,或被掩埋。在本文中,研究了作为覆盖正交半空间覆盖的正交层建模的层状半空间中的瑞利表面波的运动。首先呈现层和半空间中的自由瑞利波的明确表达。使用自由表面和界面上的边界条件,导出瑞利波的分散关系导致分散曲线。然后应用往复性定理以在时间 - 谐波载荷下获取在各向异性材料的涂层结构中的瑞利波的精确解。通过在两个状态之间使用往复波的倾斜定理,通过时间谐波产生的瑞利波和在层状结构中行进的自由瑞利波的瑞利波来发现闭合的表面波幅度。

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