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Comparison of microstructure and mechanical properties of 316 L austenitic steel processed by selective laser melting with hot-isostatic pressed and cast material

机译:热等静压铸件选择性激光熔融加工316 L奥氏体钢的组织和力学性能比较

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摘要

Besides the chemical composition, the manufacturing route primarily determines a material's properties. In this work, the influence of the manufacturing process of the 316 L grade austenitic steel on the microstructure and the resulting material properties were investigated. Thus, the microstructure and mechanical properties of cast and solution annealed, as well as steel powder densified by hot-isostatic pressing (HIP), selective laser melting (SLM) and SLM+HIP, were compared. A SLM parameter study illustrates that the porosity of SLM-densified specimens can be reduced with direction of a higher exposure time and a smaller point distance. With an additional treatment by HIP, the porosity scarcely changes, while cracks are reduced. The mechanical properties were investigated depending on the manufacturing process, and the influence of the sample build up by SLM was examined. High mechanical values have been obtained; in particular, the yield strength in the SLM-densified condition is much higher than in cast or HIP condition, as a result of the smaller grain size.
机译:除了化学成分外,制造路线还主要决定材料的性能。在这项工作中,研究了316 L级奥氏体钢的制造工艺对显微组织和所得材料性能的影响。因此,比较了铸造和固溶退火的组织和力学性能,以及通过热等静压(HIP),选择性激光熔化(SLM)和SLM + HIP致密化的钢粉。 SLM参数研究表明,随着暴露时间的增加和点距离的减小,可以降低SLM致密化样品的孔隙率。通过HIP的附加处理,孔隙率几乎没有变化,而裂缝则减少了。根据制造工艺对机械性能进行了研究,并研究了SLM对样品堆积的影响。获得了很高的机械价值;特别是,由于晶粒尺寸较小,在SLM致密化条件下的屈服强度比铸造或HIP条件下的屈服强度高得多。

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