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Process Monitoring and Inspection Systems in Metal Additive Manufacturing: Status and Applications

机译:金属增材制造过程监控系统:现状与应用

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摘要

One of the most significant barriers to the broad adoption of additive manufacturing (AM) is the qualification of AM produced parts. With the high market competition, quality has become the market differentiator for products and services. To maintain or enhance the quality of the products, manufacturers use two techniques, quality assurance and control. In fact, many researchers characterize the quality assurance and control as the biggest challenge to widespread adoption of AM technologies for metals parts in aerospace industries. One approach to overcome this challenge is to implement in-situ process monitoring and inspection systems to enhance the quality of the printed parts and AM-processes. This has been highlighted by numerous research efforts for the past decade and continues to be identified as a high priority research in the AM-processes. In this paper, we review current process monitoring and control systems for metal AM in Powder Bed Fusion and Directed Energy Deposition systems. And then, possible inspection system configurations for improving the quality of AM printed parts are discussed based on the proposed framework and requirement. A comprehensive real-time inspection method and a closed loop monitoring system are proposed to address the quality control for metal-based AM processes
机译:增材制造(AM)广泛采用的最大障碍之一是AM生产零件的合格性。在激烈的市场竞争中,质量已成为产品和服务的市场差异化因素。为了维持或提高产品质量,制造商使用两种技术,即质量保证和控制。实际上,许多研究人员将质量保证和控制特征描述为将AM技术应用于航空航天金属零件的最大挑战。克服这一挑战的一种方法是实施现场过程监控和检查系统,以提高印刷零件和增材制造过程的质量。在过去的十年中,许多研究工作突显了这一点,并且继续被认为是AM过程中的一项高度优先研究。在本文中,我们回顾了粉末床聚变和定向能量沉积系统中金属增材制造的当前过程监控系统。然后,根据提出的框架和要求,讨论了可能的用于提高AM印刷件质量的检查系统配置。针对金属基增材制造工艺的质量控制问题,提出了一种全面的实时检测方法和闭环监控系统。

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