Effect of rolling conditions on ferrite refinement of low-carbon steel

Ahmed El-Kawas, S. Ataya, S. Ibrahim
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引用次数: 1

Abstract

Refinement of the ferrite grains provides a promising approach to simultaneously improving both the strength and the toughness of steels. Among recent techniques to obtain ultrafine ferrite, dynamic strain induced transformation (DSIT) is used. This type of treatment is sensitive to steel composition, deformation temperature, the prior austenite grain size, strain and cooling rate. This work is aiming to improve the mechanical properties of steels using ferrite grain refining through trials on industrial scale using a compact strip production plant (CSP) with hot strip mill (HSM) containing six stands F1-F6 in EZDK Steel Company. The chemical composition of the trials was C (~0.046), Si (0.073) Mn (0.50) and Ti (0.008). The effect of final deformation temperature of 750, 775, 800 and 815°C on the microstructure and mechanical properties was studied. In addition the effect of strain rate variation at the final two rolling stands was correlated with the ferrite refining mechanisms. The ferrite grain size attained after refining varies from 10 μm to be 6 μm. Yield and tensile strength increased slightly through changing deformation temperature, with the advantage of keeping almost the original high ductility. Toughness of the processed steel increased with ferrite grain refining.
轧制条件对低碳钢铁素体细化的影响
铁素体晶粒的细化为同时提高钢的强度和韧性提供了一种很有前途的方法。动态应变诱导相变(DSIT)是制备超细铁氧体的最新技术之一。这种处理对钢的成分、变形温度、奥氏体晶粒尺寸、应变和冷却速度都很敏感。这项工作的目的是通过工业规模的试验,在EZDK钢铁公司的紧凑型带钢生产工厂(CSP)和热轧带钢(HSM)上进行铁素体晶粒细化,以改善钢的机械性能,热轧带钢生产工厂(HSM)包含六个机架F1-F6。化学成分为C(~0.046)、Si(0.073)、Mn(0.50)和Ti(0.008)。研究了终变形温度750、775、800和815℃对合金组织和力学性能的影响。最后两个轧制架应变速率变化的影响与铁素体细化机制有关。细化后的铁素体晶粒尺寸从10 μm到6 μm不等。通过改变变形温度,屈服强度和抗拉强度略有提高,但基本保持了原有的高延性。随着铁素体晶粒细化,加工钢的韧性提高。
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