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LabVIEW 2010 Computer Vision Platform Based Virtual Instrument and Its Application for Pitting Corrosion Study

机译:基于LabVIEW 2010计算机视觉平台的虚拟仪器及其在点蚀研究中的应用

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摘要

A virtual instrumentation (VI) system called VI localized corrosion image analyzer (LCIA) based on LabVIEW 2010 was developed allowing rapid automatic and subjective error-free determination of the pits number on large sized corroded specimens. The VI LCIA controls synchronously the digital microscope image taking and its analysis, finally resulting in a map file containing the coordinates of the detected probable pits containing zones on the investigated specimen. The pits area, traverse length, and density are also determined by the VI using binary large objects (blobs) analysis. The resulting map file can be used further by a scanning vibrating electrode technique (SVET) system for rapid (one pass) “true/false” SVET check of the probable zones only passing through the pit's centers avoiding thus the entire specimen scan. A complete SVET scan over the already proved “true” zones could determine the corrosion rate in any of the zones.
机译:开发了基于LabVIEW 2010的称为VI局部腐蚀图像分析仪(LCIA)的虚拟仪器(VI)系统,可以快速自动且无主观地确定大型腐蚀试样上的凹坑数。 VI LCIA同步控制数字显微镜图像的拍摄和分析,最终生成一个地图文件,其中包含检测到的可能凹坑的坐标,这些凹坑包含被调查标本上的区域。 VI还使用二进制大对象(气泡)分析来确定凹坑的面积,导线的长度和密度。生成的地图文件可以进一步通过扫描振动电极技术(SVET)系统使用,以对仅通过凹坑中心的可能区域进行快速(一次通过)“真/假” SVET检查,从而避免整个样本扫描。对已经证明的“真实”区域进行完整的SVET扫描可以确定任何区域的腐蚀速率。

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