选区激光熔化成形316L不锈钢组织控制研究

Mining and Metallurgical Engineering(2022)

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Abstract
采用选区激光熔化技术,制备了316L不锈钢3D打印样品,研究了3D打印体能量密度、微熔池结构和拉伸性能之间的相关性.结果表明,在实验范围内(打印体能量密度从92.59 J/mm3增大到162.04 J/mm3),3D打印样品抗拉强度先增大后下降,体能量密度145.83 J/mm3时,抗拉强度达到峰值498.48 MPa.熔池的形貌和尺寸与体能量密度相关,熔池近似面积随体能量密度提高先增大后降低.3D打印样品室温拉伸性能与微熔池的形貌结构有明显相关性,在拉伸过程中会沿熔池边界发生破坏,熔池近似面积越大,熔池边界占比小,样品抗拉强度相对较高.研究结果可为调控3D打印样品微观组织、改善材料性能提供参考.
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