首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural characterization and formation mechanism of abnormal segregation band of hot rolled ferrite/pearlite steel
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Microstructural characterization and formation mechanism of abnormal segregation band of hot rolled ferrite/pearlite steel

机译:热轧铁素体/珠光体钢的异常偏析带的组织特征及形成机理

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In order to further reveal the microstructural characterization and formation mechanism of abnormal segregation band of hot rolled ferrite/pearlite steel, the microstructure of this type steel was intensively studied with Scanning Auger Microprobe (SAM), etc. The results show that severe C-Mn segregation exists in the abnormal segregation band region at the center of hot rolled ferrite/pearlite steel, which results from the Mn segregation during solidification process of the continuous casting slab. The C-Mn segregation causes relative displacement of pearlite transformation curve and bainite transformation curve of C curve in the corresponding region, leading to bay-like shaped C curve. The bay-like shaped C curve creates conditions for the transformation from supercooling austenite to bainite at relatively lower cooling rate in this region. The Fe-Mn-C Atomic Segregation Zone (FASZ) caused by C-Mn segregation can powerfully retard the atomic motion, and increase the lattice reconstruction resistance of austenite transformation. These two factors provide thermodynamic and kinetic conditions for the bainite transformation, and result in the emergence of granular bainitic abnormal segregation band at the center of steel plate, which leads to lower plasticity and toughness of this region, and induces the layered fracture. (C) 2015 The Authors. Published by Elsevier B.V.
机译:为了进一步揭示热轧铁素体/珠光体钢偏析带的显微组织特征和形成机理,利用扫描俄歇微探针(SAM)等对这种钢的显微组织进行了深入研究。偏析存在于热轧铁素体/珠光体钢中心的异常偏析带区域,这是由于连铸板坯凝固过程中Mn偏析所致。 C-Mn偏析导致相应区域C曲线的珠光体相变曲线和贝氏体相变曲线发生相对位移,形成海湾状的C形曲线。海湾状的C曲线为该区域在较低的冷却速率下从过冷奥氏体转变为贝氏体创造了条件。由C-Mn偏析引起的Fe-Mn-C原子偏析区(FASZ)可以有力地阻碍原子运动,并增加奥氏体相变的晶格重构阻力。这两个因素为贝氏体转变提供了热力学和动力学条件,并导致在钢板中心出现颗粒状贝氏体异常偏析带,从而导致该区域的塑性和韧性降低,并导致分层断裂。 (C)2015作者。由Elsevier B.V.发布

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