首页> 外文会议>10th IMEKO symposium : Laser metrology for precision measurement and inspection in industry (LMPMI) 2011 >Comparison between 3D Digital and Optical Microscopes for the Surface Measurement using Image Processing Techniques
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Comparison between 3D Digital and Optical Microscopes for the Surface Measurement using Image Processing Techniques

机译:使用图像处理技术进行表面测量的3D数字显微镜和光学显微镜的比较

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Surface Engineering has been a scientific discipline studying various procedures for the improvement of surface properties since 1980. The surface roughness of manufactured parts is commonly measured by the tactile methods. The stylus profilometer is one of the standard techniques assessing surfaces. This is a worthy method for looking at small areas but the major disadvantage of using a stylus profilometer is that it requires direct physical contact limiting the measuring speed. In contrast to contact measurement systems, optical technique, which is a non-destructive and non-contact method, appears to be a proper alternative for performing measurement of surface quality including surface roughness. The optical measurement instruments were used for the experiments. One of them was based on the "Focus Variation" technology and the other one was the confocal laser scanning microscope. In this study, 3D digital microscope in addition to the optical microscopes was used. The aim of this study is to compare each technique with others. In this study, the surface roughness were evaluated by employing the image processing methods such as line scanning, speckle and fast fourier transform (FFT) with three different samples machined via different manufacturing processes. The surface roughness results from processed images were obtained using flexible image analysis techniques such as Dark-light technique developed by the authors. The values calculated with the proposed method were compared with the roughness values obtained from 3D digital and optical microscopes.
机译:自1980年以来,表面工程一直是一门研究各种提高表面性能的程序的科学学科。制造零件的表面粗糙度通常通过触觉方法进行测量。测针轮廓仪是评估表面的标准技术之一。这是查看小区域的一种有价值的方法,但是使用测针轮廓仪的主要缺点是它需要直接的物理接触,从而限制了测量速度。与接触式测量系统相比,光学技术是一种非破坏性的非接触式方法,似乎是进行包括表面粗糙度在内的表面质量测量的合适替代方法。光学测量仪器用于实验。其中一种是基于“焦点变化”技术的,另一种是共聚焦激光扫描显微镜。在这项研究中,除了光学显微镜外,还使用了3D数字显微镜。这项研究的目的是将每种技术与其他技术进行比较。在这项研究中,通过采用图像处理方法(例如线扫描,斑点和快速傅立叶变换(FFT))对三种粗糙度进行了评估,这些图像处理方法是通过三个不同的制造工艺加工而成的。使用柔性图像分析技术(例如由作者开发的Dark-light技术)获得了来自处理过的图像的表面粗糙度结果。将用建议的方法计算的值与从3D数字和光学显微镜获得的粗糙度值进行比较。

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