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The Application of Globular Water-Atomized Iron Powders for Additive Manufacturing by a LENS Technique

机译:球状水雾化铁粉在LENS技术增材制造中的应用

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摘要

The water-atomized ATOMET 28, 1001, 4701, and 4801 powders, manufactured by Rio Tinto Metal Powders, were used for additive manufacturing by a laser engineered net shaping (LENS) technique. Their overall morphology was globular and rounded with a size distribution from about 20 to 200 µm. Only the ATOMET 28 powder was characterized by a strong inhomogeneity of particle size and irregular polyhedral shape of powder particles with sharp edges. The powders were pre-sieved to a size distribution from 40 to 150 µm before LENS processing. One particular sample—LENS-fabricated from the ATOMET 28 powder—was characterized by the largest cross-sectional (2D) porosity of 4.2% and bulk porosity of 3.9%, the latter determined by microtomography measurements. In contrast, the cross-sectional porosities of bulk, solid, nearly cubic LENS-fabricated samples from the other ATOMET powders exhibited very low porosities within the range 0.03–0.1%. Unexpectedly, the solid sample—LENS-fabricated from the reference, a purely spherical Fe 99.8 powder—exhibited a porosity of 1.1%, the second largest after that of the pre-sieved, nonspherical ATOMET 28 powder. Vibrations incorporated mechanically into the LENS powder feeding system substantially improved the flow rate vs. feeding rate dependence, making it completely linear with an excellent coefficient of fit, R2 = 0.99. In comparison, the reference powder Fe 99.8 always exhibited a linear dependence of the powder flow rate vs. feeding rate, regardless of vibrations.
机译:由Rio Tinto Metal Powders制造的水雾化ATOMET 28、1001、4701和4801粉末用于通过激光工程网成形(LENS)技术进行增材制造。它们的整体形态呈球形,并呈圆形,尺寸分布在20至200 µm之间。仅ATOMET 28粉末的特征是粒径强烈不均匀,且具有锋利边缘的粉末颗粒具有不规则的多面体形状。在LENS加工之前,将粉末预筛分至40至150μm的尺寸分布。一种特殊的样品-由ATOMET 28粉末制成的LENS-具有最大的横截面(2D)孔隙率为4.2%和本体孔隙率为3.9%,后者由显微断层扫描测量确定。相反,来自其他ATOMET粉末的块状,固态,近立方LENS制成的样品的横截面孔隙率却显示出非常低的孔隙率,范围为0.03-0.1%。出乎意料的是,由参考文献制造的LENS纯球形Fe 99.8粉末状固体样品的孔隙度为1.1%,仅次于预先筛分的非球形ATOMET 28粉末。机械结合到LENS粉末进料系统中的振动大大改善了流速与进料速度之间的关系,使其完全线性,并具有出色的拟合系数,R 2 = 0.99。相比之下,参考粉末Fe 99.8始终显示出粉末流速与进料速度之间的线性关系,而与振动无关。

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