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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Tensile Work Hardening Modeling of Precipitation Strengthened Nb-Microalloyed Steels
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Tensile Work Hardening Modeling of Precipitation Strengthened Nb-Microalloyed Steels

机译:沉淀加强沉淀的拉伸工作强化NB微合金钢钢

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Very often Nb contributes to the strength of a microalloyed steel beyond the expected level due to the grain size strengthening resulting from thermomechanical processing. Two different mechanisms are behind this phenomenon, and both of them have to do with the amount of Nb remaining in the solution after hot rolling. The first of them is the increase of the hardenability of the steel due to Nb, and the second one is the fine precipitation of NbC in ferrite. The contribution of the precipitates to the work hardening of two thermally and thermomechanically processed microalloyed steels is addressed in this work and this contribution has been integrated into previously developed models by the authors for ferrite-pearlite microstructures. An L (eff) is considered through the effective spacing associated to the different obstacles and their interactions with the moving dislocations. The model obtained shows good agreement with the experimental tensile curves from the end of yield point elongation to the onset of necking. (C) The Minerals, Metals & Materials Society and ASM International 2017
机译:由于热机械加工导致的晶粒尺寸强化,通常,NB通常有助于超出预期水平的微合金化钢的强度。这种现象背后两种不同的机制,并且在热轧后,它们都必须与溶液中保留的Nb的量有关。其中首先是由于Nb,钢的淬透性的增加,第二个是铁氧体中Nbc的细沉淀。在这项工作中解决了沉淀物对两个热和热合金化的微合金钢的工作硬化钢的贡献,并且该贡献已经整合到先前开发的模型中,用于铁氧体 - 珠光体微观结构。通过与不同障碍物相关的有效间隔及其与移动脱位的相互作用来考虑L(EFF)。所获得的模型与从屈服点伸长率结束到颈缩开始的实验拉伸曲线的良好一致性。 (c)2017年矿物质,金属和材料协会和ASM国际

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