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Strain-Induced Precipitation Behavior of a Nb-Ti-V Steel in the Austenite Phase Field

机译:Nb-Ti-V钢在奥氏体相场中的应变诱导析出行为

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摘要

The precipitation behavior of a Nb (0.041 wt%), V (0.11 wt%), and Ti (0.018 wt%) micro-alloyed steel influenced by a deformation process in the austenite region has been investigated by transmission electron microscopy and atom probe. After solution annealing at 1250°C, nearly the entire Nb and V amount is in solid solution. Ti does not go into in solid solution and stays stable as TiN precipitates. During the cooling process to deformation temperature, these TiN precipitates act as nucleation sites for Nb and V. Precipitates with a TiN rich core and a V-rich shell are formed. Nb is homogenously distributed over the precipitate. After deformation, strain induced precipitates occur, which consist mainly of Nb, V, and only a little Ti. Smaller strain induced precipitates have a higher N-content than C, with growth the C-content increases.
机译:通过透射电子显微镜和原子探针研究了奥氏体区域中变形过程对Nb(0.041 wt%),V(0.11 wt%)和Ti(0.018 wt%)微合金钢的析出行为的影响。在1250°C固溶退火后,几乎所有的Nb和V都固溶。 Ti不会以固溶形式进入,并随着TiN沉淀而保持稳定。在冷却至变形温度的过程中,这些TiN沉淀物充当Nb和V的成核位点。形成了富含TiN核和富V壳的沉淀物。 Nb在沉淀物上均匀分布。变形后,会发生由应变引起的沉淀,该沉淀主要由Nb,V和仅少量的Ti组成。较小的应变诱导的沉淀物具有比C高的N含量,随着生长C含量增加。

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