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Refinement of Ferrite Grain Size through Particle Stimulated Nucleation (PSN) Mechanism in Heavy Steel Sections

机译:通过粒子刺激成核(PSN)机理的铁氧体晶粒尺寸的改进

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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, PSN, mechanism to refine the ferrite grain size and eliminate the high-carbon low transformation products. In this study, Ti-oxide particles were used to promote the intergranular ferrite, IGF, nucleation mechanism in a typical ASTM A572 grade 50 steel. This work included the study of the decomposition behavior of coarse grained austenite at very slow cooling rate. In addition the nucleation of ferrite grains taking place at γ/γ, γ/α and γ/inclusion interfaces was identified and quantified.
机译:在重型钢部分中,通过精炼和均化最终铁氧体微观结构显着提高强度和韧性。通过通用式轧机的重型部分在升高的温度下进行,然后进行缓慢的冷却速率。因此,通过现代热机械,TMP技术改进铁氧体微观结构是不可行的。本文探讨并呈现使用粒子刺激的成核,PSN,改进铁氧体晶粒尺寸的机制,消除高碳低转化产物。在该研究中,在典型的ASTM A572级钢中,使用Ti氧化物颗粒促进晶间铁氧体,IGF,成核机制。这项工作包括在非常缓慢缓慢的冷却速率下进行粗粒粒子的分解行为的研究。此外,鉴定并量化了在γ/γ,γ/α和γ/包涵体接口处发生的铁氧体晶体的成核。

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