Lee Joo Kyung, Kim Hoe Woong, Kim Yoon Young
IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Sep;60(9):1928-34. doi: 10.1109/TUFFC.2013.2777.
This work presents the generation of omnidirectional Lamb waves by a new magnetostrictive patch transducer (MPT) and investigates its generation mechanism. Although MPTs have been widely used for wave transduction in plates and pipes, no investigation reports the generation of omnidirectional Lamb waves in a plate by an MPT. For the generation, we propose an axisymmetrically-configured MPT that installs multiple axisymmetric turns of coil outside of a permanent cylindrical magnet located above the center of a circular magnetostrictive patch. After confirming the omnidirectivity of the proposed MPT experimentally, the mechanism of the Lamb wave generation and its frequency characteristics are investigated. It is also shown that the Lamb wave is most efficiently generated in a test plate when its wavelength is equal to two-thirds of the magnetostrictive patch diameter. If this wavelength¿patch diameter relation holds, the second radial extensional vibration mode of the patch of the proposed MPT is shown to be the mode responsible for generating the Lamb wave in a plate.
本文介绍了一种新型磁致伸缩贴片换能器(MPT)产生全向兰姆波的方法,并研究了其产生机理。尽管MPT已广泛应用于板材和管道中的波转换,但尚无研究报告MPT在板材中产生全向兰姆波的情况。为了实现这种产生方式,我们提出了一种轴对称配置的MPT,它在位于圆形磁致伸缩贴片中心上方的永久圆柱形磁体外部安装了多个轴对称线圈匝数。在通过实验确认了所提出的MPT的全向性之后,研究了兰姆波的产生机理及其频率特性。研究还表明,当测试板中兰姆波的波长等于磁致伸缩贴片直径的三分之二时,兰姆波的产生效率最高。如果这种波长与贴片直径的关系成立,则所提出的MPT贴片的第二径向拉伸振动模式被证明是在板材中产生兰姆波的模式。