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Titlebook: Rayleigh-Wave Theory and Application; Proceedings of an In Eric A. Ash,Edward G. S. Paige Conference proceedings 1985 Springer-Verlag Berli

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Rayleigh Wave Propagationastic solid [1]. In reading this paper one is struck by the fact that, except for minor changes in notation, the formulation established by Rayleigh is still followed today in the theory of elastic guided wave propagation. To illustrate this point vividly, the following summary of Rayleigh’s derivat
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The Relationship Between Surface Wave Displacement and Anisotropy on Selected Crystal Structuresudinal, two quasi-transversal) can propagate in an anisotropic solid, whereas only two propagate in an isotropic solid. Moreover in an anisotropic solid, the phase velocity and the Poynting vector of each wave change with the direction of propagation. As regards the Rayleigh surface wave,the possibl
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On Rayleigh Waves and Related Propagating Acoustic Waveslebrated physicists as Newton, Poisson, Hooke, Stokes and Maxwell. Although never enjoying the significance or popularity of electromagnetic wave propagation, it received increased interest in the late eighteenth and early nineteenth centuries with the investigations of RAYLEIGH [1], LOVE [2], STONE
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Rayleigh Wave Transducersso as to give an electrical output waveform. These are clearly key requirements for electronic devices, and are usually met by using interdigital transducers on piezoelectric substrates. The flexibility of modern fabrication techniques has enabled a very wide variety of transducer types to be develo
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Excitation, Detection and Reflexion of Rayleigh and Surface Skimming Bulk Wavess is now a subject of its own. Everybody knows that the Rayleigh wave can exist at the mechanical free surface of an elastic homogeneous half space. More mysterious are the origin and characteristics of the body waves also radiated by the excitation source. This last subject is of so strange appeara
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