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In Situ 3D Monitoring of Geometric Signatures in the Powder-Bed-Fusion Additive Manufacturing Process via Vision Sensing Methods

机译:通过视觉传感方法,原位监测粉床融合添加剂制造工艺的几何签名

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摘要

Lack of monitoring of the in situ process signatures is one of the challenges that has been restricting the improvement of Powder-Bed-Fusion Additive Manufacturing (PBF AM). Among various process signatures, the monitoring of the geometric signatures is of high importance. This paper presents the use of vision sensing methods as a non-destructive in situ 3D measurement technique to monitor two main categories of geometric signatures: 3D surface topography and 3D contour data of the fusion area. To increase the efficiency and accuracy, an enhanced phase measuring profilometry (EPMP) is proposed to monitor the 3D surface topography of the powder bed and the fusion area reliably and rapidly. A slice model assisted contour detection method is developed to extract the contours of fusion area. The performance of the techniques is demonstrated with some selected measurements. Experimental results indicate that the proposed method can reveal irregularities caused by various defects and inspect the contour accuracy and surface quality. It holds the potential to be a powerful in situ 3D monitoring tool for manufacturing process optimization, close-loop control, and data visualization.
机译:缺乏对原地过程签名的监测是限制粉末床融合添加剂制造(PBF AM)的改善的挑战之一。在各种过程签名中,几何签名的监测很高。本文介绍了视觉传感方法作为原位3D测量技术的非破坏性,以监测两个主要类别的几何签名:3D表面形貌和融合区域的3D轮廓数据。为了提高效率和精度,提出增强的相位测量轮廓测量法(EPMP)以可靠且迅速地监测粉末床和融合区域的3D表面形貌。开发了一片模型辅助轮廓检测方法以提取融合区域的轮廓。使用一些选择的测量来证明技术的性能。实验结果表明,该方法可以揭示由各种缺陷引起的不规则性,并检查轮廓精度和表面质量。它具有用于制造工艺优化,闭环控制和数据可视化的强大的原位3D监控工具。

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