Alleyne D N, Cawley P
Dept. of Mech. Eng., Imperial Coll., London.
IEEE Trans Ultrason Ferroelectr Freq Control. 1992;39(3):381-97. doi: 10.1109/58.143172.
The interaction of individual Lamb waves with a variety of defects simulated by notches is investigated using finite-element analysis, and the results are checked experimentally. Excellent agreement is obtained. It is shown that a 2-D Fourier transform method may be used to quantify Lamb wave interactions with defects. The sensitivity of individual Lamb waves to particular notches is dependent on the frequency-thickness product, the mode type and order, and the geometry of the notch. The sensitivity of the Lamb modes a(1), alpha(0), and s(0) to simulated defects in different frequency-thickness regions is predicted as a function of the defect depth to plate thickness ratio and the results indicate that Lamb waves may be used to find notches when the wavelength to notch depth ratio is on the order of 40. Transmission ratios of Lamb waves across defects are highly frequency dependent.
利用有限元分析研究了单个兰姆波与由切口模拟的各种缺陷之间的相互作用,并通过实验对结果进行了验证。得到了很好的一致性。结果表明,二维傅里叶变换方法可用于量化兰姆波与缺陷的相互作用。单个兰姆波对特定切口的灵敏度取决于频率-厚度乘积、模式类型和阶数以及切口的几何形状。预测了兰姆模式a(1)、α(0)和s(0)在不同频率-厚度区域对模拟缺陷的灵敏度,作为缺陷深度与板厚比的函数,结果表明,当波长与切口深度之比约为40时,兰姆波可用于检测切口。兰姆波穿过缺陷的传输比高度依赖于频率。