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螺旋面波与无限浸没弹性圆柱导波的相关性。

Correlation between helical surface waves and guided modes of an infinite immersed elastic cylinder.

机构信息

Nondestructive Evaluation Laboratory, Faculty of Mechanical Engineering, K.N. Toosi University of Technology, P.O. Box 19395-1999, Tehran, Iran.

出版信息

Ultrasonics. 2011 Feb;51(2):238-44. doi: 10.1016/j.ultras.2010.08.008. Epub 2010 Sep 4.

Abstract

Scattering of obliquely incident plane acoustic waves from immersed infinite solid elastic cylinders is a complex phenomenon that involves generation of various types of surface waves on the body of the cylinder. Mitri [F.G. Mitri, Acoustic backscattering enhancement resulting from the interaction of an obliquely incident plane wave with an infinite cylinder, Ultrasonics 50 (2010) 675-682] recently showed that for a solid aluminum cylinder, there exist acoustic backscattering enhancements at a normalized frequency of ka⩽0.1. The incidence angle α(c) at which these enhancements are observed lies between the first (longitudinal) and second (shear) coupling angles of the cylinder. He also confirmed the observations previously reported by the authors that there exist backscattering enhancements of the dipole mode at large angles of incidence where no wave penetration into the cylinder is expected. In this paper, physical explanations are provided for the aforementioned observations by establishing a correlation between helical surface waves generated by oblique insonification of an immersed infinite solid elastic cylinder and the longitudinal and flexural guided modes that can propagate along the cylinder. In particular, it is shown that the backscattering enhancement observed at ka⩽0.1 is due to the excitation of the first longitudinal guided mode travelling at the bar velocity along the cylinder. It is also demonstrated that the dipole resonance mode observed at incidence angles larger than the Rayleigh coupling angle is associated with the first flexural guided mode of the cylinder. The correlation established between the scattering and propagation problems can be used in both numerical and experimental studies of interaction of mechanical waves with cylinders.

摘要

斜入射平面声波从浸没无限大固体弹性圆柱的散射是一种复杂的现象,涉及到圆柱体上各种类型表面波的产生。Mitri [F.G. Mitri, Acoustic backscattering enhancement resulting from the interaction of an obliquely incident plane wave with an infinite cylinder, Ultrasonics 50 (2010) 675-682] 最近表明,对于实心铝圆柱,在归一化频率 ka ⩽ 0.1 处存在声学反向散射增强。观察到这些增强的入射角 α(c) 位于圆柱的第一(纵波)和第二(切变)耦合角之间。他还证实了作者之前报道的观察结果,即在没有预期波穿透圆柱的大入射角处存在偶极子模式的反向散射增强。在本文中,通过建立倾斜入射浸没无限大固体弹性圆柱产生的螺旋表面波与可沿圆柱传播的纵向和弯曲导波之间的相关性,对上述观察结果提供了物理解释。特别是,表明在 ka ⩽ 0.1 处观察到的反向散射增强是由于沿圆柱以棒速传播的第一纵向导波的激励引起的。还证明了在大于瑞利耦合角的入射角处观察到的偶极共振模式与圆柱的第一弯曲导波有关。散射和传播问题之间建立的相关性可用于机械波与圆柱相互作用的数值和实验研究。

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