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Microstructural evolution during spheroidization annealing of eutectoid steel: effect of interlamellar spacing and cold working

机译:共析钢球形退火过程中的微观结构演化:室外间距和冷工作的影响

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Eutectoid steels present a wide range of interesting mechanical properties (high strength, wear resistance, ductility and toughness) and could be a cheaper alternative to high strength low alloyed steels (HSLA) in applications where weldability is not a critical requirement. The mechanical properties of pearlite are mainly dictated by the interlamellar spacing and the spheroidization of cementite. In this work, the spheroidization kinetics during annealing of a fully pearlitic steel produced in an electric arc furnace (EAF) is investigated. More specifically, the influence of a prior cold deformation and of the interlamellar spacing is studied using image analysis and hardness tests. It is shown that spheroidization is faster in fine pearlite than in coarse pearlite. Prior cold deformation strongly accelerates the spheroidization kinetics in fine and coarse pearlite. The tensile properties corresponding to different pearlite microstructure were measured and are compared to the hardness evolution during annealing.
机译:eutectoid钢呈现出广泛的有趣机械性能(高强度,耐磨性,延展性和韧性),并且可以是焊接性不是关键要求的应用中的高强度低合金钢(HSLA)的更便宜的替代品。珠光体的机械性能主要由晶状体间距和渗碳石球化的决定。在这项工作中,研究了在电弧炉(EAF)中产生的全珠光体退火期间的球化动力学。更具体地,使用图像分析和硬度测试研究了现有的冷变形和室间间距的影响。结果表明,精细珠光体比在粗珠光体上更快。先前的冷变形强烈加速了精细和粗珠光体的球化动力学。测量对应于不同珠光体微观结构的拉伸性能,并与退火期间的硬度换档进行比较。

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