通过直接淬火和回火实现 GPa 级纳米沉淀钢的高强度和韧性:析出行为和变异选择性的影响

IF 6.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Zhongde Pan , Enmao Wang , Huibin Wu , Junping Wu , Jun Hong , Zhongzhu Liu , Aimin Guo , Zhen Sun , Yansen Hao
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引用次数: 0

摘要

为了满足大型抽水蓄能电站对水电钢强度和韧性的应用要求。本研究基于变形和相变的协同作用,打破了强度和韧性之间的权衡,通过直接淬火和回火制备了 GPa 级纳米沉淀钢。重点研究了 Nb-V-Ti 复合纳米沉淀行为和马氏体变异选择性对强化和韧化机理的影响。结果表明,直接淬火钢在 550 °C 回火后具有最佳的综合力学性能。综合各种强化机制的贡献,相对于离线淬火和回火,屈服强度的提高主要归因于额外的位错强化(∼33 MPa)和沉淀强化(∼174 MPa)。直接淬火增强了更细的一元析出物和二元析出物的均匀成核及其在回火过程中的稳定生长,而三元析出物由于缺乏再溶解而不会出现元素不均匀性。此外,主要密堆积平面群的高频变体倾向于形成具有不同取向和平面排列的高角度晶界,这是由于马氏体转变的自塑性调制引起的贝恩群细化,其原因是变形的几何必要位错和有限位错滑移的积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct quenching and tempering to achieve high strength and toughness of GPa-Grade nano-precipitated steel: The effect of precipitation behavior and variant selectivity

In order to satisfy the application requirements for strength and toughness of hydropower steels for large pumped storage power plants. In this study, based on the synergy of deformation and phase transition, the trade-off between strength and toughness was broken, and the GPa-grade nano-precipitated steel was prepared by direct quenching and tempering. The effects of Nb–V–Ti composite nano-precipitation behavior and martensite variant selectivity on the strengthening and toughening mechanisms were highlighted. The results show that directly quenched steel has the optimal comprehensive mechanical properties after tempering at 550 °C. Combining the contributions of various strengthening mechanisms, the increase in the yield strength relative to off-line quenching and tempering is mainly attributed to additional dislocation strengthening (∼33 MPa) and precipitation strengthening (∼174 MPa). Direct quenching enhances the homogeneous nucleation of finer mono- and binary precipitates and their stable growth during tempering, while the ternary precipitates do not suffer from elemental inhomogeneities due to lack of re-dissolution. Furthermore, the high-frequency variants of the dominant close-packed plane group tend to form high-angle grain boundaries with different orientations and planar alignments, derived from the refinement of Bain groups induced by the self-plasticity modulation of martensite transition due to the accumulation of deformed geometrically necessary dislocations and finite dislocation slip.

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来源期刊
Journal of Materials Research and Technology-Jmr&t
Journal of Materials Research and Technology-Jmr&t Materials Science-Metals and Alloys
CiteScore
8.80
自引率
9.40%
发文量
1877
审稿时长
35 days
期刊介绍: The Journal of Materials Research and Technology is a publication of ABM - Brazilian Metallurgical, Materials and Mining Association - and publishes four issues per year also with a free version online (www.jmrt.com.br). The journal provides an international medium for the publication of theoretical and experimental studies related to Metallurgy, Materials and Minerals research and technology. Appropriate submissions to the Journal of Materials Research and Technology should include scientific and/or engineering factors which affect processes and products in the Metallurgy, Materials and Mining areas.
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