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Beyond the Toolpath: Site-Specific Melt Pool Size Control Enables Printing of Extra-Toolpath Geometry in Laser Wire-Based Directed Energy Deposition

机译:超越工具路径:特定于站点的熔池尺寸控制可以在激光线的定向能量沉积中打印替代工具路径几何形状

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摘要

A variety of techniques have been utilized in metal additive manufacturing (AM) for melt pool size management, including modeling and feed-forward approaches. In a few cases, closed-loop control has been demonstrated. In this research, closed-loop melt pool size control for large-scale, laser wire-based directed energy deposition is demonstrated with a novel modification, i.e., site-specific changes to the controller setpoint were commanded at trigger points, the locations of which were generated by the projection of a secondary geometry onto the primary three-dimensional (3D) printed component geometry. The present work shows that, through this technique, it is possible to print a specific geometry that occurs beyond the actual toolpath of the print head. This is denoted as extra-toolpath geometry and is fundamentally different from other methods of generating component features in metal AM. A proof-of-principle experiment is presented in which a complex oak leaf geometry was embossed on an otherwise ordinary double-bead wall made from Ti-6Al-4V. The process is introduced and characterized primarily from a controls perspective with reports on the performance of the control system, the melt pool size response, and the resulting geometry. The implications of this capability, which extend beyond localized control of bead geometry to the potential mitigations of defects and functional grading of component properties, are discussed.
机译:用于熔融池大小管理的金属添加剂制造(AM)中使用了各种技术,包括建模和前馈方法。在一些情况下,已经证明了闭环控制。在本研究中,用新的修改来说明闭环熔池尺寸控制,用于大规模的基于激光线的定向能量沉积,即在触发点命令对控制器设定点的现场特定变化,其位置由次要几何形状的投影产生在初级三维(3D)印刷部件几何形状上。本工作表明,通过这种技术,可以打印出发生在打印头的实际刀具路径之外的特定几何体。这表示为替代刀具路径几何体,与在Metal AM中生成组件特征的其他方法根本上不同。提出了一种原则上的实验,其中复合橡木叶几何形状压印在由Ti-6Al-4V制成的普通双珠壁上。该过程主要来自对控制系统的性能的报告,熔融池尺寸响应和所得几何形状的报告来引入和特征。讨论了这种能力的影响,其延伸到珠子几何形状的局部控制到缺陷和组分性质的功能分级的潜在缓解。

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