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INVESTIGATIONS AND MODELLING OF THE WORK HARDENING OF AS-QUENCHED MARTENSITE

机译:淬火马氏体工作硬化的研究与建模

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Martensite is one of the constituents most widely used to harden the steel. A large amount of data are available in the literature to describe the relationship between the microstructure and the properties of the as-quenched martensite particularly in terms of hardness and yield stress as a function of the carbon content. Unfortunately the work-hardening mechanisms have received much less attention and they are poorly discussed in the literature. However the understanding of the stress-strain curve is relevant for a large number of applications in the microstructural engineering of high strength steels either fully martensitic or multiphase steels. This study proposes and validates a physically based model for the description of the hardening mechanisms, both isotropic and kinematic hardenings, in relation with the lath microstructure and its evolution with the carbon content.
机译:马氏体是最广泛用于硬化钢的成分之一。文献中有大量数据可用来描述淬火后马氏体的微观结构与性能之间的关系,尤其是硬度和屈服应力随碳含量的变化。不幸的是,工作强化机制受到的关注很少,并且文献中对此进行了很少的讨论。然而,对应力-应变曲线的理解与高强度钢(全马氏体或多相钢)的微观结构工程中的大量应用有关。这项研究提出并验证了基于物理的模型,用于描述与板条的微观结构及其随碳含量的演变有关的硬化机理,包括各向同性和运动硬化。

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