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A Virtual Instrument based on Lightwave Scattering by Surfaces for Real-time mapping of Atmospheric Corrosion of Metals

机译:基于表面光波散射的虚拟仪器,用于金属大气腐蚀的实时映射

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The present work reports the design and implementation of an optical-sensor based virtual instrument for visualizing and estimating the degree of corrosion of metal surfaces exposed to atmosphere. A platform carrying the specimen plates was driven by a stepper motor assembly horizontally in XY directions. An opto-electronic transmitter-receiver unit was fixed vertically very close to the platform so that the sample surfaces may be scanned by a light beam. The reflected and scattered optical signals from each point in the scanned area were acquired by the sensor module. A parameter incorporating the relative values of these signals proved to be a fairly reliable measure of the surface texture, which in turn consistently represented the degree of corrosion. These signals interfaced with a personal computer enabled 3D visualization of the magnitude of the corrosion level of the surface and 2D mapping of the surface corrosion.
机译:本工作报告了基于光学传感器的虚拟仪器的设计和实现,该虚拟仪器用于可视化和估计暴露于大气的金属表面的腐蚀程度。装有样品板的平台由步进电机组件在XY方向上水平驱动。光电发射器-接收器单元垂直非常靠近平台固定,因此可以用光束扫描样品表面。来自扫描区域中每个点的反射和散射光信号由传感器模块获取。结合这些信号的相对值的参数被证明是表面纹理的相当可靠的量度,其反过来始终代表腐蚀的程度。这些信号与个人计算机接口,可实现表面腐蚀程度的3D可视化以及表面腐蚀的2D映射。

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