Weaver Jordan S, Whiting Justin, Tondare Vipin, Beauchamp Carlos, Peltz Max, Tarr Jared, Phan Thien Q, Donmez M Alkan
Engineering Laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, MD 20899.
Department of Physics, Georgetown University, Washington, DC 20057, USA.
Addit Manuf. 2021;39. doi: 10.1016/j.addma.2021.101851.
It is well known that changes in the starting powder can have a significant impact on the laser powder bed fusion process and subsequent part performance. Relationships between the powder particle size distribution and powder performance such as flowability and spreadability are generally known; however, links to part performance are not fully established. This study attempts to more precisely isolate the effect of particle size by using three customized batches of 17-4 PH stainless steel powders with small shifts in particle size distributions having non-intersecting cumulative size distributions, designated as Fine, Medium, and Coarse. It is found that the Fine powder has the worst overall powder performance with poor flow and raking during spreading while the Coarse powder has the best overall flow. Despite these differences in powder performance, the microstructures (i.e., porosity, grain size, phase, and crystallographic texture) of the built parts using the same process parameters are largely the same. Furthermore, the Medium powder produced parts with the highest mechanical properties (i.e., hardness and tensile strength) while the Fine and Coarse powders produced parts with effectively identical mechanical properties. Parts with good static mechanical properties can be produced from powders with a wide range of powder performance.
众所周知,起始粉末的变化会对激光粉末床熔融工艺及后续零件性能产生重大影响。粉末粒度分布与诸如流动性和铺展性等粉末性能之间的关系通常是已知的;然而,与零件性能的联系尚未完全确立。本研究试图通过使用三批定制的17-4PH不锈钢粉末更精确地分离粒度的影响,这三批粉末的粒度分布有微小变化且累积尺寸分布不相交,分别命名为细粉、中粉和粗粉。研究发现,细粉的整体粉末性能最差,铺展过程中的流动性和耙动性不佳,而粗粉的整体流动性最佳。尽管粉末性能存在这些差异,但使用相同工艺参数制造的零件的微观结构(即孔隙率、晶粒尺寸、相和晶体织构)基本相同。此外,中粉制造的零件具有最高的机械性能(即硬度和拉伸强度),而细粉和粗粉制造的零件具有基本相同的机械性能。具有良好静态机械性能的零件可以由具有广泛粉末性能的粉末制造。