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Three-dimensional scanning of specular and diffuse metallic surfaces using an infrared technique

机译:使用红外技术对镜面和扩散金属表面进行三维扫描

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摘要

For the past two decades, the need for three-dimensional (3-D) scanning of industrial objects has increased significantly and many experimental techniques and commercial solutions have been proposed. However, difficulties remain for the acquisition of optically non-cooperative surfaces, such as transparent or specular surfaces. To address highly reflective metallic surfaces, we propose the extension of a technique that was originally dedicated to glass objects. In contrast to conventional active triangulation techniques that measure the reflection of visible radiation, we measure the thermal emission of a surface, which is locally heated by a laser source. Considering the thermophysical properties of metals, we present a simulation model of heat exchanges that are induced by the process, helping to demonstrate its feasibility on specular metallic surfaces and predicting the settings of the system. With our experimental device, we have validated the theoretical modeling and computed some 3-D point clouds from specular surfaces of various geometries. Furthermore, a comparison of our results with those of a conventional system on specular and diffuse parts will highlight that the accuracy of the measurement no longer depends on the roughness of the surface.
机译:在过去的二十年中,对工业物体进行三维(3-D)扫描的需求已大大增加,并且已经提出了许多实验技术和商业解决方案。但是,对于获取光学上不合作的表面,例如透明或镜面表面,仍然存在困难。为了解决高反射金属表面的问题,我们建议扩展最初用于玻璃物体的技术。与测量可见辐射反射的常规主动三角测量技术相比,我们测量表面的热发射,该表面被激光源局部加热。考虑到金属的热物理性质,我们提出了由该过程引起的热交换的模拟模型,有助于证明其在镜面金属表面上的可行性并预测系统的设置。使用我们的实验设备,我们验证了理论建模并从各种几何形状的镜面表面计算了一些3-D点云。此外,将我们的结果与常规系统在镜面和漫射部件上的结果进行比较,将突出显示测量的精度不再取决于表面的粗糙度。

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