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Comparison of the porosity and mechanical performance of 316L stainless steel manufactured on different laser powder bed fusion metal additive manufacturing machines

机译:316L不锈钢在不同激光粉融合金属添加剂制造机器上制造的孔隙率和机械性能的比较

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Despite the recent progress in additive manufacturing (AM) process and technology, challenges in the repeatability and reproducibility of AM parts still hinders the adoption of this technique in many industries. This is particularly difficult when a part is qualified on a particular part on a certain machine using optimised parameters. If a manufacturer wishes to expand production to multiple machines, the ability to translate these optimised parameters to different machines much be understood. In this study, four different metal LPBF printers were used to produce 316L tensile testing samples using the same processing parameters and metal powder supplied from a single batch from the same supplier. In addition to the analysis of the correlation between the input parameters and the output measures, this study reports that despite the same set process parameters, there is significant variations were found in the mechanical performance and properties of the AM samples produced on the different L-PBF metal additive manufacturing machines. For the range of the input processing parameters and the resulting input volumetric energy density applied of 21-37 J/mm3, values of (4-42)%, (200-716) MPa, and (52-214) GPa were obtained for the elongation, ultimate tensile strength and elastic modulus on additively manufactured 316L samples respectively.
机译:尽管最近的添加剂制造业(AM)过程和技术进展,但AM零件的重复性和再现性的挑战仍然阻碍了许多行业的这种技术的采用。当使用优化参数在某个机器上的特定部件上有资格时,这是特别困难的。如果制造商希望将生产扩展到多台机器,则能够将这些优化参数转化为不同机器的能力很大。在这项研究中,使用四种不同的金属LPBF打印机使用来自同一供应商的单批次提供的相同的处理参数和金属粉末产生316L拉伸测试样品。除了分析输入参数与输出措施之间的相关性之外,本研究报告说,尽管设置了相同的过程参数,但在不同L-在不同L-产生的AM样品的机械性能和性质中发现了显着的变化。 PBF金属添加剂制造机。对于输入处理参数的范围和所得到的输入体积能量为21-37J / mm3,获得(4-42)%,(200-716)MPa和(52-214)GPA的值伸长率,极限拉伸强度和弹性模量分别对加成制造的316L样品。

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