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Particle-stimulated nucleation of ferrite in heavy steel sections

机译:重钢截面中铁素体的颗粒激发形核

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In heavy steel sections, strength and toughness are improved remarkably by refining and homogenizing the final ferrite microstructure. The production of heavy sections by universal-type rolling mills takes place at elevated temperature followed by slow cooling rates. Therefore, refinement of the ferrite microstructure through modern thermomechanical, TMP, techniques is not feasible. This paper explores and presents the use of particle-stimulated nucleation of ferrite, the PSN (particle-stimulated nucleation) mechanism, to refine the ferrite grain size and eliminate the high-carbon, low transformation products otherwise found in transformed coarse-grained austenite. In this study, MnS and Ti-oxide particles were used to promote intragranu-lar ferrite, or IGF, in a typical ASTM A572 grade 50 Steel. This work included the study of the decomposition behavior of coarse grained austenite as a function of very slow cooling rate. In addition, the nucleation of ferrite grains taking place at gamma/gamma, gamma/alpha and gamma/inclusion interfaces was identified and quantified.
机译:通过精炼和均质最终的铁素体显微组织,在重型钢截面中,强度和韧性得到了显着提高。通用型轧机生产厚壁型材的过程是在升高的温度下进行的,然后是缓慢的冷却速度。因此,通过现代热机械TMP技术细化铁素体显微组织是不可行的。本文探讨并提出了利用颗粒刺激的铁素体成核,PSN(颗粒刺激的成核)机制来细化铁素体晶粒尺寸并消除高碳,低相变产物(否则会在相变粗晶粒奥氏体中发现)。在这项研究中,在典型的ASTM A572等级50钢中,MnS和Ti-氧化物颗粒用于促进晶内铁素体或IGF。这项工作包括研究粗晶粒奥氏体的分解行为与非常慢的冷却速度的关系。另外,鉴定并定量了在γ/γ,γ/α和γ/夹杂物界面处发生的铁素体晶粒的形核。

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