Neikter Magnus, Edin Emil, Proper Sebastian, Bhaskar Phavan, Nekkalapudi Gopi Krishna, Linde Oscar, Hansson Thomas, Pederson Robert
Division of Subtractive and Additive Manufacturing, University West, 46132 Trollhättan, Sweden.
Division of Materials Science, Luleå University of Technology, 97187 Luleå, Sweden.
Materials (Basel). 2021 Jul 31;14(15):4280. doi: 10.3390/ma14154280.
Alloy 21-6-9 is an austenitic stainless steel with high strength, thermal stability at high temperatures, and retained toughness at cryogenic temperatures. This type of steel has been used for aerospace applications for decades, using traditional manufacturing processes. However, limited research has been conducted on this alloy manufactured using laser powder-bed fusion (LPBF) Therefore, in this work, a design of experiment (DOE) was performed to obtain optimized process parameters with regard to low porosity. Once the optimized parameters were established, horizontal and vertical blanks were built to investigate the mechanical properties and potential anisotropic behavior. As this alloy is exposed to elevated temperatures in industrial applications, the effect of elevated temperatures (room temperature and 750 °C) on the tensile properties was investigated. In this work, it was shown that alloy 21-6-9 could be built successfully using LPBF, with good properties and a density of 99.7%, having an ultimate tensile strength of 825 MPa, with an elongation of 41%, and without any significant anisotropic behavior.
21-6-9合金是一种奥氏体不锈钢,具有高强度、高温热稳定性以及在低温下保持韧性的特点。几十年来,这种类型的钢一直通过传统制造工艺用于航空航天应用。然而,对于使用激光粉末床熔融(LPBF)制造的这种合金的研究有限。因此,在这项工作中,进行了实验设计(DOE)以获得关于低孔隙率的优化工艺参数。一旦确定了优化参数,就制造了水平和垂直坯料来研究力学性能和潜在的各向异性行为。由于这种合金在工业应用中会暴露于高温下,因此研究了高温(室温及750°C)对拉伸性能的影响。在这项工作中,结果表明,使用LPBF可以成功制造21-6-9合金,其性能良好,密度为99.7%,极限抗拉强度为825MPa,伸长率为41%,且没有任何明显的各向异性行为。