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Combined Digital Speckle Shearing Interferometry and Digital Image Correlation for Analysing Vibrating Objects

机译:组合数字散斑剪切干涉测量和分析振动物体的数字图像相关性

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Digital speckle shearing interferometry is an optical method for measuring displacement derivatives directly and has gained wide acceptance for many industrial applications. Although it has a reputation for being insensitivity o vibration, an unfavorable environment may cause severe deterioration of the typical double-eye fringe pattern, making interpretation difficult. Digital image correlation has been found to be capable of detection displacement os points on images of illuminated object surface to a high degree of accuracy. This is achieved through a relatively simple set-up. This paper presents a method of compensating for any vibration of the object under study and thus alleviating the adverse effects of vibration on the quality of fringe patterns obtained by DSSI. This is achieved by incorporating DIC Into DSSI before the image subtraction phase of the technique. It is shown that good quality fringes can be obtained successfully for specimens vibrating at 25 Hz with amplitudes of up to 1mm
机译:数字斑点剪切干涉测量法是一种用于直接测量位移衍生物的光学方法,并且对许多工业应用获得了广泛的验收。虽然它具有不列限度O振动的声誉,但不利的环境可能会导致典型的双眼条纹图案的严重劣化,使解释困难。已经发现数字图像相关能够在照明物体表面的图像上检测位移OS点,以高精度。这是通过相对简单的设置实现的。本文提出了一种补偿研究所的对象的任何振动的方法,从而减轻了振动对DSSI获得的条纹图案质量的不利影响。这是通过将DIC掺入DSSI之前的技术减法阶段来实现的。结果表明,可以成功地获得良好的质量条纹,用于以25赫兹振动的标本,幅度高达1mm

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