微观结构
材料科学
多孔性
钛合金
选择性激光熔化
合金
压痕硬度
融合
激光功率缩放
复合材料
过程(计算)
过程变量
冶金
激光器
光学
计算机科学
操作系统
语言学
哲学
物理
作者
Janusz Kluczyński,Bartłomiej Sarzyński,Tomáš Dražan,Jakub Łuszczek,Robert Kosturek,Ireneusz Szachogłuchowicz
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2024-09-05
卷期号:17 (17): 4384-4384
被引量:3
摘要
This study investigates the microstructural effects of process parameters on Ti6Al4V alloy produced via powder bed fusion (PBF) using laser beam melting (LB/M) technology. The research focuses on how variations in laser power, exposure velocity, and hatching distance influence the final material’s porosity, microhardness, and microstructure. To better understand the relationships between process parameters, energy density, and porosity, a simple mathematical model was developed. The microstructure of the alloy was analyzed in the YZ plane using a confocal microscope. The study identified optimal parameters—302.5 W laser power, 990 mm/s exposure velocity, and 0.14 mm hatching distance—yielding the lowest porosity index of 0.005%. The material’s average hardness was measured at 434 ± 18 HV0.5. These findings offer valuable insights for optimizing printing parameters to produce high-quality Ti6Al4V components using PBF-LB/M technology, shedding light on the critical relationship between process parameters and the resulting microstructure.
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