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QUALITY ASSESSMENT OF ADDITIVELY MANUFACTURED FIDUCIAL MARKERS TO SUPPORT AUGMENTED REALITY-BASED PART INSPECTION

机译:瘾地制造的基于基于现实的零件检查的质量评估

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This paper proposes an augmented reality (AR) framework and tool on smartphones as an alternative to conventional inspection for AM parts. The framework attempts to introduce the rapid inspection potential of smartphone based AR within manufacturing by leveraging the manufacturing capability of additive manufacturing (AM) to integrate markers onto AM parts. The key step from this framework that is explored in this paper is the design and quality assessment of AM markers for marker registration. As part of the marker design and quality assessment objectives, this research conducts an evaluation on the effects of different AM processes on the quality of augmentation achieved from AM fiducial markers. Furthermore, it evaluates the minimum fiducial pattern size that on integration onto AM parts will be viable for augmentation. The results suggest that the AM process and the size of the fiducial pattern play a significant role in determining the quality of the AM markers. The paper concludes by stating that dual material extrusion AM markers provide the highest number of detectable features and therefore the highest quality of AM markers, and the smallest viable fiducial pattern for Cybercode/QR code marker can be sized at 19x19mm~2.
机译:本文提出了一种在智能手机上的增强现实(AR)框架和工具,作为AM部件的传统检查的替代方案。该框架通过利用添加剂制造(AM)的制造能力将标记集成到AM部件的制造能力,在制造中引入基于智能手机的快速检查潜力。本文探索此框架的关键步骤是对标记注册的AM标记的设计和质量评估。作为标记设计和质量评估目标的一部分,该研究对不同AM过程的影响进行了评估,对来自AM基准标记的增强质量的影响。此外,它评估了集成到AM部件的最小基准模式大小将是可行的增强。结果表明,AM过程和基准模式的大小在确定AM标记的质量方面发挥着重要作用。本文通过说明双重材料挤出AM标记提供了最多的可检测特征,因此,AM标记的最高质量,以及Cyber​​ Code / QR码标记的最小可变基准模式可以在19x19mm〜2中尺寸。

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