Sensor Science and Technology, CSIR Material Science and Manufacturing, Box 395, Pretoria 0001, South Africa.
Sensor Science and Technology, CSIR Material Science and Manufacturing, Box 395, Pretoria 0001, South Africa.
Ultrasonics. 2015 Mar;57:209-17. doi: 10.1016/j.ultras.2014.11.010. Epub 2014 Nov 28.
The ability to measure the individual modes of propagation is very beneficial during the development of guided wave ultrasound based rail monitoring systems. Scanning laser vibrometers can measure the displacement at a number of measurement points on the surface of the rail track. A technique for estimating the amplitude of the individual modes of propagation from these measurements is presented and applied to laboratory and field measurements. The method uses modal data from a semi-analytical finite element model of the rail and has been applied at frequencies where more than twenty propagating modes exist. It was possible to measure individual modes of propagation at a distance of 400 m from an ultrasonic transducer excited at 30 kHz on operational rail track and to identify the modes that are capable of propagating large distances.
在基于导波超声的铁轨监测系统的开发过程中,能够测量各传播模态的能力非常有益。扫描激光测振仪可以测量铁轨表面多个测量点的位移。本文提出了一种从这些测量中估计各传播模态幅度的技术,并将其应用于实验室和现场测量。该方法使用铁轨半解析有限元模型的模态数据,并已应用于存在二十多种传播模态的频率。在距离 30 kHz 超声换能器激发的 400 m 处,可以测量到传播模态,并且能够识别出能够远距离传播的模态。