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Real-time control for large scale additive manufacturing using thermal images

机译:使用热图像的大规模添加剂制造的实时控制

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Large scale additive manufacturing has process mechanisms similar to Fused Filament Fabrication (FFF) and can print parts with large sizes, such as car bodies. This capability provides large scale additive manufacturing great application potentials in a variety of industries, including aerospace, automotive manufacturing, and construction. To make large scale additive manufacturing a viable manufacturing solution, both production efficiency and product quality need to be considered. Specifically, the printing process is subject to constraints on print surface temperature to guarantee good product quality. In this paper, we propose a novel method for controlling layer time during the printing process by using thermal images. Specifically, several thin wall test components are printed by the Thermwood Large Scale Additive Manufacturing (LSAM?) machine, and the print surface temperature is monitored by a FLIR? thermal camera. A regression model based on real-time thermal imaging data is built to predict the surface temperature. Then a layer time control method is proposed based on the temperature prediction model. By comparing the proposed method to the fixed layer time policy, the experiment results suggest that the control method by using real-time data can siginificantly reduce the layer time, and subsequently the total printing time, while satisfying the quality requirement.
机译:大规模的添加剂制造具有类似于熔丝长丝制造(FFF)的工艺机制,并且可以打印具有大尺寸的零件,例如汽车体。这种能力在包括航空航天,汽车制造和施工等各种行业中提供大规模添加剂制造巨大的应用潜力。为了制造大规模添加剂制造可行的制造解决方案,需要考虑生产效率和产品质量。具体地,印刷过程受到印刷表面温度的约束,以保证良好的产品质量。在本文中,我们通过使用热图像提出一种用于控制打印过程中的层次时间的新方法。具体而言,通过Thermwood大规模添加剂制造(LSAMα)机器印刷几种薄壁测试部件,并通过FLIR监测印刷表面温度?热相机。建立基于实时热成像数据的回归模型以预测表面温度。然后基于温度预测模型提出了一种层时间控制方法。通过将所提出的方法与固定层时间策略进行比较,实验结果表明,通过使用实时数据的控制方法可以麻痹地减小图层时间,随后随后达到质量要求的总印刷时间。

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