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Formation processes for large ejecta and interactions with melt pool formation in powder bed fusion additive manufacturing

机译:粉床融合添加剂制造中大型喷射物和熔融池地层相互作用的形成过程

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Ejecta with a size much larger than the mean particle size of feedstock powder have been observed in powder bed fusion additive manufacturing, both during post-process sieving and embedded within built components. However, their origin has not been adequately explained. Here, we test a hypothesis on the origin of large (much larger than the mass-median-diameter of feedstock powder) ejecta—that, in part, they result from stochastic, inelastic collisions of ejecta and coalescence of partially-sintered agglomerates. The hypothesis is tested using direct observation of ejecta behavior, via high-speed imaging, to identify interactions between ejecta and consequences on melt pool formation. We show that stochastic collisions occur both between particles which are nearly-simultaneously expelled from the laser interaction zone and between particles ejected from distant locations. Ejecta are also shown to perturb melt pool geometry, which is argued to be a potential cause of lack-of-fusion flaws.
机译:在粉末融合添加剂制造中观察到尺寸大于原料粉末的平均粒径的喷射物,包括在工艺后筛分和嵌入内置部件内。但是,他们的起源尚未得到充分的解释。在这里,我们在大(大于原料粉末)喷射物的原点上的假设 - 部分内,它们是由随机,内部的弹性碰撞和部分烧结的附聚物的聚结导致。通过直接观察喷射物行为,通过高速成像进行测试,测试假设,以鉴定喷射物之间的相互作用和对熔融池地层的后果。我们表明随机碰撞发生在几乎与激光相互作用区几乎同时和从远处位置喷射的颗粒之间进行几乎与激光相似的颗粒之间。 Ejecta也被证明涉及腐败熔池几何形状,这被认为是缺乏融合缺陷的潜在原因。

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