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Microstructural characterization and comparison of Ti-6Al-4V manufactured with different additive manufacturing processes

机译:用不同添加剂制造工艺制造Ti-6Al-4V的微观结构特征及比较

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摘要

In this work, the microstructures of Ti-6Al-4V manufactured by different additive manufacturing (AM) processes have been characterized and compared. The microstructural features that were characterized are the alpha lath thickness, grain boundary alpha (GB-alpha) thickness, prior beta grain size and alpha colony size. In addition, the micro-hardnesses were also measured and compared. The microstructure of shaped metal deposited (SMD) Ti-6Al-4V material showed the smallest variations in alpha lath size, whereas the material manufactured with laser metal wire deposition-0 (LMwD-0) showed the largest variation. The prior beta grain size was found to be smaller in material manufactured with powder bed fusion (PBF) as compared with corresponding material manufactured with the directed energy deposition (DED) processes. Parallel bands were only observed in materials manufactured with DED processes while being non-present in material manufactured with PBF processes.
机译:在这项工作中,已经表征并比较了通过不同添加剂制造(AM)工艺制造的Ti-6Al-4V的微观结构。 表征的微观结构特征是α板块厚度,晶界α(GB-α)厚度,先前的β晶粒尺寸和α菌落尺寸。 此外,还测量并比较了微硬度。 成形金属沉积(SMD)Ti-6AL-4V材料的微观结构显示了α板尺寸的最小变化,而用激光金属线沉积-0(LMWD-0)制造的材料显示出最大的变化。 发现先前的β晶粒尺寸在用粉末融合(PBF)制造的材料中较小,与用指向的能量沉积(DED)工艺制造的相应材料相比。 仅在用PBF工艺制造的材料中不存在的材料制造的材料中仅观察到平行带。

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