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具有叠加周期性的厚各向同性板不可达面上表面波激励效率的提高。

Increased efficiency of surface wave stimulation on the inaccessible side of a thick isotropic plate with superimposed periodicity.

作者信息

Declercq Nico F, Sarens Bart

机构信息

Georgia Institute of Technology, George W. Woodruff School of Mechanical Engineering, Atlanta, GA 30332-0405, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Jul;54(7):1409-22. doi: 10.1109/tuffc.2007.401.

Abstract

Because of the growing number of applications of phononic crystals and other periodic structures, there is a renewed and growing interest in understanding the interaction of ultrasound with periodically corrugated surfaces. This paper presents a theoretical investigation of the transformation of ultrasound incident from the solid side onto a solid-liquid periodically corrugated interface. It is shown that it is possible to tailor the shape of a corrugated surface with given periodicity such that there is a significant amount of energy transformed into Scholte-Stoneley waves than if pure saw-tooth or sine-shaped surfaces were used. This permits the fabrication of periodic structures that can be patched on or engraved in body parts of a construction and enables efficient generation of Scholte-Stoneley waves. The study is performed for incident homogeneous plane waves as well as for bounded beams. Incident longitudinal waves are studied as well as incident shear waves.

摘要

由于声子晶体和其他周期性结构的应用越来越多,人们对理解超声波与周期性波纹表面的相互作用重新产生了浓厚且不断增长的兴趣。本文对从固体一侧入射到固液周期性波纹界面上的超声波的转换进行了理论研究。结果表明,可以调整具有给定周期性的波纹表面的形状,使得与使用纯锯齿形或正弦形表面相比,有大量能量转换为肖尔特 - 斯托利波。这允许制造可以粘贴在建筑体部件上或雕刻在其中的周期性结构,并能够高效地产生肖尔特 - 斯托利波。该研究针对入射均匀平面波以及有界波束进行。研究了入射纵波以及入射剪切波。

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