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      스펙클 포토그라피와 畵像處理에 依한 面內?位 計測 = Measurement of In-plane Displacement by Speckle Photography and Image Processing

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      https://www.riss.kr/link?id=A1989584

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      Speckle photography is a very useful method for measuring in-plane surface displacement. In its basic form,the object to be studied is illuminated with a divergent laser beam, and a double exposure photograph of the object is recorded, on a fine-grain film or plate,before and after the object is deformed, The magnitude and the direction of the displacement can then be obtained by measuring the spacing and the direction of the Young's fringe, which is produced by probing the developed negative with an unexpaned laser beam, and consists of a pattern of parallel equi-spaced dark bands. In this paper, a hybrid optical and electronic image processing is described. Young's fringe on the viewing screen is observed by a TV-camera and the 2-D video signal is converted from analog to digital and transfered to the computer where the spacing and direction of the fringes are calculated.
      Several examples of application show that the displacement magnitude and direction can be determined with an accuracy of 0.1μm and 0.1˚, respectively.
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      Speckle photography is a very useful method for measuring in-plane surface displacement. In its basic form,the object to be studied is illuminated with a divergent laser beam, and a double exposure photograph of the object is recorded, on a fine-grain...

      Speckle photography is a very useful method for measuring in-plane surface displacement. In its basic form,the object to be studied is illuminated with a divergent laser beam, and a double exposure photograph of the object is recorded, on a fine-grain film or plate,before and after the object is deformed, The magnitude and the direction of the displacement can then be obtained by measuring the spacing and the direction of the Young's fringe, which is produced by probing the developed negative with an unexpaned laser beam, and consists of a pattern of parallel equi-spaced dark bands. In this paper, a hybrid optical and electronic image processing is described. Young's fringe on the viewing screen is observed by a TV-camera and the 2-D video signal is converted from analog to digital and transfered to the computer where the spacing and direction of the fringes are calculated.
      Several examples of application show that the displacement magnitude and direction can be determined with an accuracy of 0.1μm and 0.1˚, respectively.

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