首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Heterogeneous Creep Deformations and Correlation to Microstructures in Fe-30Cr-3Al Alloys Strengthened by an Fe2Nb Laves Phase
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Heterogeneous Creep Deformations and Correlation to Microstructures in Fe-30Cr-3Al Alloys Strengthened by an Fe2Nb Laves Phase

机译:非均相蠕变变形和与Fe2NB Laves阶段加强Fe-30cr-3Al合金中微结构的相关性

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A new Fe-Cr-Al (FCA) alloy system has been developed with good oxidation resistance and creep strength at high temperature. The alloy system is a candidate for use in future fossil-fueled power plants. The creep strength of these alloys at 973 K (700 A degrees C) was found to be comparable with traditional 9 pct Cr ferritic-martensitic steels. A few FCA alloys with general composition of Fe-30Cr-3Al-.2Si-xNb (x = 0, 1, or 2) with a ferrite matrix and Fe2Nb-type Laves precipitates were prepared. The detailed microstructural characterization of samples, before and after creep rupture testing, indicated precipitation of the Laves phase within the matrix, Laves phase at the grain boundaries, and a 0.5 to 1.5 mu m wide precipitate-free zone (PFZ) parallel to all the grain boundaries. In these alloys, the areal fraction of grain boundary Laves phase and the width of the PFZ controlled the cavitation nucleation and eventual grain boundary ductile failure. A phenomenological model was used to compare the creep strain rates controlled by the effects of the particles on the dislocations within the grain and at grain boundaries. (The research sponsored by US-DOE, Office of Fossil Energy, the Crosscutting Research Program).
机译:新的Fe-Cr-Al(FCA)合金系统已经在高温下具有良好的抗氧化性和蠕变强度而开发。合金系统是未来化石燃料发电厂使用的候选者。发现这些合金的蠕变强度为973k(700℃)与传统的9 PCT Cr铁素体 - 马氏体钢相当。制备少数具有铁氧体基质和Fe2NB型熔融沉淀物的Fe-30cr-3Al-.2Si-XNB(X = 0,1或2)的一般组成的FCA合金。样品的详细微观结构表征在蠕变破裂试验之前和之后,表明基质内的疏浚液相,晶界在谷物边界的疏水阶段,与所有的0.5-1.5μm宽沉淀区(PFZ)平行于所有谷物边界。在这些合金中,晶界闸瓦阶段的面值和PFZ的宽度控制了空化核和最终晶界延性失效。使用现象学模型将通过颗粒对晶粒和晶界的脱位对脱臼进行控制的蠕变应变率进行比较。 (由US-DOE,化石能源办公室赞助的研究,横切研究计划)。

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