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Effect of Matrix Substructures on Precipitation of the Laves Phase in Fe-Cr-Nb-Ni System

机译:Fe-Cr-Nb-Ni体系中基质亚结构对Laves相析出的影响

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In order to make clear the effect of matrix substructures on the Laves phase precipitation in Fe-Cr-Nb-Ni system, age hardening behavior was examined during isothermal aging up to 1000 h at 873 and 973 K and the precipitation morphology of the Laves phase was investigated by transmission electron microscopy (TEM). The microstructures of Fe-10Cr-1Nb and Fe-15Cr-1Nb (mol percent) alloys with ferrite matrix contain high density of rod-shaped Laves phase which precipitates within the ferrite grains during aging. On the other hand, in the Fe-10Cr-1Nb-1Ni alloy with massive ferrite matrix, most of the Laves phase precipitates in subgrain boundaries. Additionally the deformed ferrite matrix has been prepared for examining the effect of dislocation density on morphology of the Laves phase. It is found that the difference of matrix substructures between the ferrite and deformed ferrite provides the different number and distribution of nucleation sites for precipitation of the Laves phase. Mechanical properties were evaluated by tensile tests conducted at room temperature, 873 and 973 K.
机译:为了弄清楚基质亚结构对Fe-Cr-Nb-Ni系统中Laves相析出的影响,研究了在873和973 K等温时效下长达1000 h的时效硬化行为以及Laves相的析出形态用透射电子显微镜(TEM)研究。具有铁素体基体的Fe-10Cr-1Nb和Fe-15Cr-1Nb(摩尔%)合金的显微组织包含高密度的棒状Laves相,该相在时效过程中会沉淀在铁素体晶粒内。另一方面,在具有块状铁素体基体的Fe-10Cr-1Nb-1Ni合金中,大部分的拉维斯相在亚晶界析出。另外,已经准备了变形的铁素体基体,以检查位错密度对拉夫斯相形态的影响。发现铁素体和变形铁素体之间的基质亚结构的差异为拉夫斯相的析出提供了不同数量和分布的成核位置。通过在室温873和973 K下进行的拉伸试验评估机械性能。

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