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Online droplet monitoring in inkjet 3D printing using catadioptric stereo system

机译:使用折反射立体系统进行喷墨3D打印中的在线液滴监控

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Inkjet 3D printing is becoming one of the most disruptive additive manufacturing technologies, due to its unique capability of precisely depositing micro-droplets of multi-functional materials. It has found widespread industrial applications in aerospace, energy and health areas by processing multi-functional metal-materials, nano-materials, and bio-materials. However, the current inkjet 3D printing system still suffers from a low production quality issue, due to low process reliability caused by the complex and dynamic droplet dispensing behavior. Due to the challenges in terms of efficiency, accuracy, and versatility, robust droplet monitoring and process inspection tools are still largely unavailable. To this end, a novel catadioptric stereo system is proposed for online droplet monitoring in an inkjet 3D printing process. In this system, a regular industrial CCD camera is coupled with a flat mirror and magnification lens system to capture the tiny droplet images to detect the droplet location in 3D space. A mathematical model is formulated to calculate the droplet location in 3D world space from 2D image space. A holistic hardware and software framework is constructed to evaluate the performance of the proposed system in terms of resolution, accuracy, efficiency, and versatility, both theoretically and experimentally. The results show that the proposed catadioptric stereo system can achieve single micron resolution and accuracy, which is one-order-of-magnitude higher than the 3D printing system itself. The proposed droplet location detection algorithm has low time complexity, and the detection efficiency can meet the online monitoring requirement. Multi-facet features including the droplet location and speed can be effectively detected by the presented technique. The proposed catadioptric stereo system is a promising online droplet monitoring tool and has tremendous potential to enable trustworthy quality assurance in inkjet 3D printing.
机译:喷墨3D打印凭借其精确沉积多功能材料的微滴的独特能力,正成为最具破坏性的增材制造技术之一。通过加工多功能金属材料,纳米材料和生物材料,它已在航空航天,能源和健康领域获得了广泛的工业应用。然而,由于复杂和动态的液滴分配行为引起的低工艺可靠性,当前的喷墨3D打印系统仍然遭受低生产质量问题。由于效率,准确性和多功能性方面的挑战,健壮的液滴监控和过程检查工具仍然非常不可用。为此,提出了一种新颖的折反射立体系统,用于喷墨3D打印过程中的在线液滴监控。在该系统中,常规的工业CCD相机与平面镜和放大透镜系统耦合,以捕获微小的液滴图像,以检测液滴在3D空间中的位置。建立了数学模型以从2D图像空间计算3D世界空间中的液滴位置。构建了一个整体的硬件和软件框架,以从理论上和实验上评估分辨率,准确性,效率和多功能性方面所提出系统的性能。结果表明,提出的折反射立体系统可以实现单微米分辨率和精度,比3D打印系统本身高一个数量级。提出的液滴位置检测算法时间复杂度低,检测效率可以满足在线监测要求。通过所提出的技术可以有效地检测包括液滴位置和速度在内的多面特征。拟议的折反射立体系统是一种有前途的在线液滴监控工具,具有巨大的潜力,可以在喷墨3D打印中实现值得信赖的质量保证。

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