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Fatigue crack growth behavior of hybrid and prealloyed sintered steels Part I. Microstructure characterization

机译:混杂和预合金烧结钢的疲劳裂纹扩展行为第一部分。显微组织表征

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Powder metallurgy (P/M) steels have been widely employed due to the cost-savings associated with near-net shape manufacturing. The microstructure of P/M steels, especially the porosity, has a significant effect on the mechanical behavior. In this paper, the microstructure of hybrid and prealloy Ni-Mo P/M steels was studied. Porosity, pore size, shape, interpore spacing, as well as phase fraction of steel matrix have been quantified. The quantification of pore clustering was also investigated. The mechanical behavior of each phase in steel matrix was investigated using Vickers microhardness. Significant difference in pore morphology and steel matrix microstructure between hybrid and prealloy steels, at the similar densities, were observed. The microstructure characterization presented in this paper is linked to the companion paper on fatigue crack growth behavior of these steels.
机译:粉末冶金(P / M)钢由于与近净成形制造相关的成本节省而被广泛采用。 P / M钢的微观结构,特别是孔隙率,对机械性能有重要影响。本文研究了混合和预合金Ni-Mo P / M钢的组织。定量了孔隙率,孔径,形状,孔间距以及钢基质的相分数。还研究了孔聚集的定量。使用维氏显微硬度研究了钢基质中各相的力学行为。在相似的密度下,观察到混合和预合金钢之间的孔形态和钢基质微观结构存在显着差异。本文介绍的微观结构表征与有关这些钢的疲劳裂纹扩展行为的论文相关。

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