Bruinsma A J, Vogel J A
Appl Opt. 1988 Nov 15;27(22):4690-5. doi: 10.1364/AO.27.004690.
In inspection of materials, noncontact generation and detection of ultrasound using laser techniques has a growing interest. Before using these techniques in practical inspection tasks, some problems have to be overcome. To obtain maximum sensitivity for the detection of defects, control of beam direction and focusing of the generated ultrasound is of major importance. For this purpose a fiber-optic phase array technique was developed. Some optical techniques for ultrasound detection are compared, especially for detection at diffusely reflecting surfaces. A system based on the use of a confocal Fabry-Perot interferometer is best suited for this detection task. With the addition of a multimode fiber to this system as a flexible sensing lead, inspection can be carried out from a remote location and scanned detection is facilitated.
在材料检测中,利用激光技术进行超声的非接触式产生和检测越来越受到关注。在将这些技术应用于实际检测任务之前,必须克服一些问题。为了获得检测缺陷的最大灵敏度,控制光束方向和所产生超声的聚焦至关重要。为此开发了一种光纤相控阵技术。对一些超声检测的光学技术进行了比较,特别是对于在漫反射表面的检测。基于共焦法布里-珀罗干涉仪的系统最适合这项检测任务。通过在该系统中添加多模光纤作为灵活的传感引线,可以从远程位置进行检测并便于进行扫描检测。