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Microstructures and properties of solid and reticulated mesh components of pure iron fabricated by electron beam melting

机译:电子束熔化制备的纯铁实心和网状网状构件的组织和性能

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This research examines rapidly solidified, atomized pure iron powder and solid and reticulated mesh components fabricated by electron beam melting (EBM) from this powder precursor. Especially significant was the characterization of associated microstructures and corresponding mechanical properties. Atomized Fe powder was used to fabricate solid and reticulated mesh components by EBM. Powder and component microstructures and phase structures were examined by light (optical) metallography, scanning electron microscopy, X-ray diffractometry, and transmission electron microscopy. Corresponding Vickers microindentation hardness measurements were also made and compared to tensile data along with measurements of dynamic stiffness for mesh components having varying densities. The atomized Fe powder was observed to contain δ-Fe which was retained in the solid, EBM-fabricated components where it was observed to be homogeneously distributed in equiaxed α-Fe grains as δ-phase platelets measuring ~0.5μm to 2μm in length and ~40nm thick; coincident with the α-Fe matrix {100} or {110} planes. A log–log plot ofE/Esversusρ/ρsresulted in (E/Es)=(ρ/ρs)2.8. Novel, δ-Fe phase platelets have been observed in α-Fe components fabricated by EMB.
机译:这项研究检查了快速凝固,雾化的纯铁粉以及通过电子束熔化(EBM)从这种粉末前驱体制造的固体和网状网状组件。特别重要的是相关微结构的表征和相应的机械性能。雾化的铁粉用于通过EBM制备固体和网状筛孔组件。通过光(光学)金相,扫描电子显微镜,X射线衍射和透射电子显微镜检查了粉末和组分的微结构和相结构。还进行了相应的维氏显微压痕硬度测量,并将其与拉伸数据以及具有不同密度的筛网组件的动态刚度进行了比较。观察到雾化的铁粉中含有δ-Fe,这些δ-Fe保留在EBM制成的固体成分中,并在等轴的α-Fe晶粒中均匀分布,长度为〜0.5μm至2μm的δ相片状。 〜40nm厚;与α-Fe矩阵{100}或{110}平面重合。 E /Esversusρ/ρs的对数-对数图得出(E / Es)=(ρ/ρs)2.8。在由EMB制造的α-Fe组分中已经观察到新颖的δ-Fe相血小板。

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