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Analysis of Modern Optical Inspection Systems for Parts Manufactured by Selective Laser Melting

机译:选择性激光熔化制造零件的现代光学检测系统分析

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摘要

Metal additive manufacturing (AM) allows obtaining functional parts with the possibility of optimizing them topologically without affecting system performance. This is of great interest for sectors such as aerospace, automotive, and medical–surgical. However, from a metrological point of view, the high requirements applied in these sectors constitute a challenge for inspecting these types of parts. Non-contact inspection has gained great relevance due to the rapid verification of AM parts. Optical measurement systems (OMSs) are being increasingly adopted for geometric dimensioning and tolerancing (GD&T) verification within the context of Industry 4.0. In this paper, the suitability (advantages and limitations) of five different OMSs (based on laser triangulation, conoscopic holography, and structured light techniques) for GD&T verification of parts manufactured by selective laser melting (SLM) is analyzed. For this purpose, a specific testing part was designed and SLM-manufactured in 17-4PH stainless steel. Once the part was measured by contact (obtaining the reference GD&T values), it was optically measured. The scanning results allow comparing the OMSs in terms of their inspection speed as well as dimensional and geometrical accuracy. As a result, two portable systems (handheld laser triangulation and structured blue-light scanners) were identified as the most accurate optical techniques for scanning SLM parts.
机译:金属增材制造(AM)允许获得功能部件,并在不影响系统性能的情况下对其拓扑进行优化。这对于航空航天,汽车和医疗外科等领域非常重要。但是,从计量学的角度来看,在这些部门中应用的高要求对检查这些类型的零件构成了挑战。由于对AM零件的快速验证,非接触式检查已变得越来越重要。在工业4.0的背景下,越来越多地采用光学测量系统(OMS)进行几何尺寸和公差(GD&T)验证。在本文中,分析了五种不同的OMS(基于激光三角测量,圆锥形全息术和结构光技术)(适用于优点和局限性),用于通过选择性激光熔化(SLM)制造的零件的GD&T验证。为此,设计了特定的测试部件,并以17-4PH不锈钢进行SLM制造。通过接触测量零件(获得参考GD&T值)后,进行光学测量。扫描结果允许比较OMS的检查速度以及尺寸和几何精度。结果,两个便携式系统(手持激光三角测量和结构化蓝光扫描仪)被认为是扫描SLM零件的最精确的光学技术。

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