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首页> 外文期刊>Metals and Materials International >Combination of TEM and 3D Atom Probe Study of Microstructure and Alloy Carbide in a Nb-V Micro-Alloyed Steel Tempered at 650 °C
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Combination of TEM and 3D Atom Probe Study of Microstructure and Alloy Carbide in a Nb-V Micro-Alloyed Steel Tempered at 650 °C

机译:TEM和3D原子探针相结合在650°C回火的Nb-V微合金钢中组织和合金碳化物的研究

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摘要

3D atom probe (3DAP) combined with TEM is applied to characterize the nanostructure and composition of coarsening carbides that precipitate in a Nb-V micro-alloyed steel tempered at 650 °C for 4 h. The results indicate that high temperature tempering of the as-quenched lath-like martensitic structures leads to the coarsening of alloyed carbide in the recovered ferritic matrix. TEM characterization and EDS analysis show that the alloy carbides are typically spherical or ellipsoidal and are enriched with V, Nb and Mo. Crystallographic lattice overlap and distortion create a distinct optical Moire pattern at the carbide/matrix boundary, as observed by HRTEM. 3DAP gives the compositional distribution at atomic scale in the coarsening carbide and the surrounding matrix. Non-carbide-forming elements such as Si and Al are depleted in the carbide and are enriched at the carbide/matrix heterophase interface. Carbide-forming elements such as Mn, V, Mo and Nb distribute heterogeneously in the whole carbide, leading to the formation of a Mn-, V- and Mo-enriched core and Mo-enriched external shell.
机译:将3D原子探针(3DAP)与TEM结合使用,以表征在650°C回火4 h的Nb-V微合金钢中析出的粗化碳化物的纳米结构和组成。结果表明,淬火后的板条状马氏体组织的高温回火导致回收的铁素体基体中合金碳化物的粗化。 TEM表征和EDS分析表明,合金碳化物通常为球形或椭圆形,并富含V,Nb和Mo。晶体学晶格重叠和变形在HRTEM观察到的碳化物/基体边界处形成了独特的光学莫尔图案。 3DAP给出了粗化碳化物和周围基质中原子级的成分分布。非碳化物形成元素(例如Si和Al)在碳化物中贫化,并在碳化物/基质异相界面富集。碳化物形成元素(例如Mn,V,Mo和Nb)在整个碳化物中异质分布,从而导致形成了富含Mn,V和Mo的核和富含Mo的外壳。

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