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In-situ characterization of laser-powder interaction and cooling rates through high-speed imaging of powder bed fusion additive manufacturing

机译:通过粉末床熔融增材制造的高速成像原位表征激光与粉末的相互作用和冷却速率

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摘要

Detailed understanding of the complex melt pool physics plays a vital role in predicting optimal processing regimes in laser powder bed fusion additive manufacturing. In this work, we use high framerate video recording of Selective Laser Melting (SLM) to provide useful insight on the laser-powder interaction and melt pool evolution of 316 L powder layers, while also serving as a novel instrument to quantify cooling rates of the melt pool. The experiment was performed using two powder types - one gas- and one water-atomized - to further clarify how morphological and chemical differences between these two feedstock materials influence the laser melting process. Finally, experimentally determined cooling rates are compared with values obtained through computer simulation, and the relationship between cooling rate and grain cell size is compared with data previously published in the literature. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对复杂熔池物理的详细了解在预测激光粉末床熔融添加剂制造中的最佳加工方案方面起着至关重要的作用。在这项工作中,我们使用选择性激光熔化(SLM)的高帧率视频记录来提供有关316 L粉末层的激光-粉末相互作用和熔池演变的有用见解,同时还可以作为一种新颖的仪器来量化冷却速率熔池。实验是使用两种粉末类型(一种气体和一种水雾化的粉末)进行的,以进一步阐明这两种原料之间的形态和化学差异如何影响激光熔化过程。最后,将实验确定的冷却速率与通过计算机模拟获得的值进行比较,并将冷却速率与晶胞尺寸之间的关系与先前在文献中发表的数据进行比较。 (C)2017 Elsevier Ltd.保留所有权利。

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