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In-situ Droplet Inspection and Control System for Liquid Metal Jet 3D Printing Process

机译:用于液态金属喷射3D打印过程的原位液滴检验和控制系统

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Liquid Metal Jet Printing (LMJP) is a revolutionary 3D printing technique in fast but low-cost additive manufacturing. The driving force is produced by magneto-hydrodynamic property of liquid metal in an alternating magnetic field. Due to its integrated melting and inkjeting process, it can achieve 10x faster at 1/10th of the cost as compared to current metal 3D printing techniques. However, the jetting process may be influenced by many uncertain factors, which imposes a significant challenge to its process stability and product quality. To address this challenge, we present a closed-loop control mechanism using vision technique to inspect droplet behaviours. This system automatically tunes the drive voltage applied to compensate the uncertain influence based on vision inspection result. To realize this, we first extract multiple features and properties from both frozen and dynamic images to capture the droplet behaviour. Second, we use a voting-based decision making technique to determine how the drive voltage should be adjusted. We test this system on a piezoelectric-based inkjeting emulator, which has very similar jetting mechanism to the LMJP. Results show that significantly more stable jetting behaviour can be obtained in real-time. This system can also be applied to other droplet related applications due to its universally applicable characteristics.
机译:液态金属喷射印刷(LMJP)是一种快速但低成本的添加剂制造中革命性的3D印刷技术。驱动力是通过液态金属在交替磁场中的磁气性质产生的。由于其集成熔融和喷墨工艺,与电流金属3D打印技术相比,它可以在成本的1/10速度达到10倍。然而,喷射过程可能受到许多不确定因素的影响,这对其过程稳定性和产品质量产生了重大挑战。为了解决这一挑战,我们使用视觉技术呈现闭环控制机制来检查液滴行为。该系统自动调谐施加的驱动电压,以补偿基于视觉检测结果的不确定影响。为了实现这一点,我们首先从冻结和动态图像中提取多个特征和属性以捕获液滴行为。其次,我们使用基于投票的决策技术来确定如何调整驱动电压。我们在压电的喷墨仿真器上测试该系统,对LMJP具有非常相似的喷射机制。结果表明,实时可以获得更大的稳定喷射行为。由于其普遍适用的特性,该系统也可以应用于其他液滴相关应用。

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