Qu Minglei, Guo Qilin, Escano Luis I, Nabaa Ali, Hojjatzadeh S Mohammad H, Young Zachary A, Chen Lianyi
Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, WI, 53706, USA.
Department of Materials Science and Engineering, University of Wisconsin-Madison, Madison, WI, 53706, USA.
Nat Commun. 2022 Feb 28;13(1):1079. doi: 10.1038/s41467-022-28649-2.
The process instabilities intrinsic to the localized laser-powder bed interaction cause the formation of various defects in laser powder bed fusion (LPBF) additive manufacturing process. Particularly, the stochastic formation of large spatters leads to unpredictable defects in the as-printed parts. Here we report the elimination of large spatters through controlling laser-powder bed interaction instabilities by using nanoparticles. The elimination of large spatters results in 3D printing of defect lean sample with good consistency and enhanced properties. We reveal that two mechanisms work synergistically to eliminate all types of large spatters: (1) nanoparticle-enabled control of molten pool fluctuation eliminates the liquid breakup induced large spatters; (2) nanoparticle-enabled control of the liquid droplet coalescence eliminates liquid droplet colliding induced large spatters. The nanoparticle-enabled simultaneous stabilization of molten pool fluctuation and prevention of liquid droplet coalescence discovered here provide a potential way to achieve defect lean metal additive manufacturing.
局部激光与粉末床相互作用所固有的工艺不稳定性会在激光粉末床熔融(LPBF)增材制造过程中导致各种缺陷的形成。特别是,大飞溅物的随机形成会在打印后的零件中产生不可预测的缺陷。在此,我们报告了通过使用纳米颗粒控制激光与粉末床相互作用的不稳定性来消除大飞溅物的方法。大飞溅物的消除使得能够3D打印出具有良好一致性和增强性能的低缺陷样品。我们揭示了两种机制协同作用以消除所有类型的大飞溅物:(1)纳米颗粒对熔池波动的控制消除了由液体破碎引起的大飞溅物;(2)纳米颗粒对液滴聚结的控制消除了由液滴碰撞引起的大飞溅物。此处发现的纳米颗粒对熔池波动的同时稳定作用以及对液滴聚结的防止作用为实现低缺陷金属增材制造提供了一条潜在途径。