Glorieux C, Van de Rostyne K, Nelson K, Gao W, Lauriks W, Thoen J
Departement Natuurkunde, Katholieke Universiteit Leuven, Belgium.
J Acoust Soc Am. 2001 Sep;110(3 Pt 1):1299-306. doi: 10.1121/1.1396333.
Laser ultrasonics is used to optically excite and detect acoustic waves at the interface between a liquid and a solid or coated solid. Several case studies show that this technique is feasible to investigate experimentally the theoretically predicted fundamental properties of different aspects of interface waves at liquid-solid interfaces and to characterize the elastic properties of soft solids. The theoretical prediction that the leaky Rayleigh (LR)-type root of the characteristic determinant becomes forbidden when the shear velocity of the solid lies below the bulk velocity of the liquid was experimentally confirmed. The depth profiling and nondestructive testing potential of Scholte waves was experimentally illustrated and explained by the properties of the wave displacement profile.
激光超声用于在液体与固体或涂层固体的界面处光学激发和检测声波。几个案例研究表明,该技术在实验上是可行的,可用于研究液固界面处界面波不同方面的理论预测基本特性,并表征软固体的弹性特性。当固体的剪切速度低于液体的体速度时,特征行列式的泄漏瑞利(LR)型根变为禁戒的这一理论预测得到了实验证实。通过波位移剖面的特性,对肖尔特波的深度剖析和无损检测潜力进行了实验说明和解释。