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Microstructure, Solidification Texture, and Thermal Stability of 316 L Stainless Steel Manufactured by Laser Powder Bed Fusion

机译:通过激光粉床融合制造的316 L不锈钢的微观结构,凝固纹理和热稳定性

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摘要

This article overviews the scientific results of the microstructural features observed in 316 L stainless steel manufactured by the laser powder bed fusion (LPBF) method obtained by the authors, and discusses the results with respect to the recently published literature. Microscopic features of the LPBF microstructure, i.e., epitaxial nucleation, cellular structure, microsegregation, porosity, competitive colony growth, and solidification texture, were experimentally studied by scanning and transmission electron microscopy, diffraction methods, and atom probe tomography. The influence of laser power and laser scanning speed on the microstructure was discussed in the perspective of governing the microstructure by controlling the process parameters. It was shown that the three-dimensional (3D) zig-zag solidification texture observed in the LPBF 316 L was related to the laser scanning strategy. The thermal stability of the microstructure was investigated under isothermal annealing conditions. It was shown that the cells formed at solidification started to disappear at about 800 °C, and that this process leads to a substantial decrease in hardness. Colony boundaries, nevertheless, were quite stable, and no significant grain growth was observed after heat treatment at 1050 °C. The observed experimental results are discussed with respect to the fundamental knowledge of the solidification processes, and compared with the existing literature data.
机译:本文概述的微观结构的科学结果在由激光粉末床融合由作者获得(LPBF)方法制造316升的不锈钢制观察到的特征,并且相对于最近发表的文献讨论的结果。的微观结构LPBF,即,外延成核,细胞结构,显微偏析,孔隙率,有竞争力的集落生长,并且凝固纹理的微观特征,进行了实验通过扫描和透射电子显微镜,衍射方法和原子探针断层摄影术研究。激光功率和激光扫描速度的上微结构的影响在通过控制工艺参数管理微结构的角度讨论。结果表明,该三维(3D)锯齿形凝固纹理在LPBF的316L观察被与激光扫描策略。显微组织的热稳定性等温退火的条件下调查。结果表明,在凝固而形成的细胞开始在约800℃至消失,且该方法导致的硬度显着降低。菌落边界,不过,是相当稳定的,并且热处理后,观察到在1050没有显著晶粒生长℃。所观察到的实验结果相对于讨论的凝固过程的基本知识,并与现有的文献数据进行比较。

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