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Modeling of phase transformation and carbon behaviors after holding at γ/α region and controlled cooling in low carbon steels

机译:低碳钢中保持在γ/α区并控制冷却后的相变和碳行为建模

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It is very important to understand interstitial carbon behaviors in cold rolled steel to get the good formability as well as the high strength. In low carbon steel, most of carbons are consumed by the formation of grain boundary cementite during cooling. During heating and holding between A_(e1) and A_(e3), cementite is dissolved and consequently carbon enriched austenite is formed. By controlled cooling, retained austenite as well as bainite and martensite are formed. In this study, the effect of silicon, intercritical annealing, isothermal bainite transformation on the formation of ferritic bainite, cementite and retained austenite are modeled by nucleation and growth, diffusion and dissolution. In addition, the formation of retained austenite and their carbon contents are modeled and compared with experimental data.
机译:了解冷轧钢中的间隙碳行为对于获得良好的可成形性以及高强度非常重要。在低碳钢中,大部分碳在冷却过程中由于晶界渗碳体的形成而消耗掉。在加热并保持在A_(e1)和A_(e3)之间的过程中,渗碳体溶解并因此形成富碳的奥氏体。通过控制冷却,形成残留的奥氏体以及贝氏体和马氏体。在这项研究中,通过成核,生长,扩散和溶解来模拟硅,临界退火,等温贝氏体转变对铁素体贝氏体,渗碳体和残余奥氏体形成的影响。此外,对残余奥氏体的形成及其碳含量进行了建模,并与实验数据进行了比较。

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