Recrystallization Behavior and Mechanical Property of a Medium-Si 12%Cr Reduced Activation Ferritic/Martensitic Steel Cladding Tube During the Manufacture

IF 3.9 2区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING
Sen Ge, Ben Niu, Zhen-Hua Wang, Qian-Fu Pan, Chao-Hong Liu, Qing Wang
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Abstract

The present work investigates the microstructural evolution and mechanical properties in a novel medium-Si 12%Cr reduced activation ferritic/martensitic steel cladding tube (Fe–11.8Cr–0.2C–1.4W–0.17Ta–0.2V–0.55Si–0.5Mn, wt%) during multi-pass cold rolling and annealing. The initial hot-extruded tube exhibited a full martensitic matrix with the prior austenite grain size of ~ 32 μm. After annealing, Cr23C6 and TaC particles were precipitated, which are basically unchanged (152–183 nm and 84–113 nm, respectively) during the manufacturing process. Meanwhile, with the cold-rolling strain (ε) increasing and subsequent annealing, the martensitic lath gradually diminishes, and the recrystallization volume fraction (fr) is increased. Based on the static recrystallization kinetics model, a clear relationship between fr and ε is established, in which the newly proposed kinetic equation demonstrates a strong correlation with the experimental results. Furthermore, the yield strength (σYS = 362 MPa) of the final annealed state was much lower than that (σYS = 482 MPa) of the initial annealed state, which can be attributed to the recrystallization from the martensitic matrix to ferritic matrix. Various strengthening mechanisms are further discussed, and the calculated strengths are in good agreement with the experimental results. This work provides a guidance for the optimization of cold-rolling and annealing treatments in the manufacture of cladding tube.

中si 12%Cr还原活化铁素体/马氏体钢包层管在制造过程中的再结晶行为和力学性能
本文研究了一种新型中si 12%Cr低活化铁素体/马氏体钢包层管(Fe-11.8Cr-0.2C-1.4W-0.17Ta-0.2V-0.55Si-0.5Mn, wt%)在多道次冷轧和退火过程中的组织演变和力学性能。初始热挤压管为完整的马氏体基体,初始奥氏体晶粒尺寸为~ 32 μm。退火后析出Cr23C6和TaC颗粒,两者在制造过程中基本保持不变(分别为152-183 nm和84-113 nm)。同时,随着冷轧应变(ε)的增大和后续退火,马氏体板条逐渐减少,再结晶体积分数(fr)增大。在静态再结晶动力学模型的基础上,建立了fr和ε之间的明确关系,其中新建立的动力学方程与实验结果具有较强的相关性。最终退火态的屈服强度(σYS = 362 MPa)明显低于初始退火态的屈服强度(σYS = 482 MPa),这是由于马氏体基体向铁素体基体再结晶所致。进一步讨论了各种强化机制,计算强度与实验结果吻合较好。该工作对熔覆管冷轧和退火工艺的优化具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Metallurgica Sinica-English Letters
Acta Metallurgica Sinica-English Letters METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.60
自引率
14.30%
发文量
122
审稿时长
2 months
期刊介绍: This international journal presents compact reports of significant, original and timely research reflecting progress in metallurgy, materials science and engineering, including materials physics, physical metallurgy, and process metallurgy.
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