研究双相组织和多相组织的v合金C - Mn - Si钢增强卷材的组织和性能

V. Plyuta, S. Vorobey, G. Levchenko, A. Sychkov, A. Nesterenko
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引用次数: 0

摘要

在400/200节轧机的线材生产线上研究了采用双相(DP -铁素体-马氏体(贝氏体))和多相(MP -铁素体-马氏体(贝氏体)-珠光体)组织的v合金C - Mn - Si钢制造6.0 mm直径的卷状钢筋的热机械控制轧制工艺。结果表明,该6.0 - mm线圈(YS 0.2 = 530- 550mpa;TS= 785 - 885 MPa;El 5 = 15.0 - 29.0%),完全符合国家标准规范,如ASТM A 615(美国),JIS G 3112(日本)和KSD 3504(韩国)),当TMCR时间表涉及铺设头温度Т LH从1024 oС到1063 oС,以确保MP微观结构的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study Structure and Properties of Reinforcing Rolled Coils by V-Alloyed C – Mn – Si - Steel with Dual- and Multi-Phase Microstructures
Thermo-mechanical controlled rolling (TMCR) schedules have been studied on the wire line of 400/200 section rolling mill to manufacture 6.0 – mm - diameter reinforcing wire in coils by V-alloyed C – Mn – Si - steel that has dual-phase (DP - ferrite-martensite (bainite)) and multi-phase (MP - ferrite-martensite (bainite) - pearlite) microstructures. It has been established that high tensile strength and plasticity values were achieved in this 6.0 – mm wire in coils (YS 0.2 = 530-550 MPa; TS= 785 – 885 MPa; El 5  = 15.0 – 29.0 %) which were in full compliance with national standard specifications such as ASТM A 615 (USA), JIS G 3112 (Japan) and KSD 3504 (the Republic of Korea)), when the TMCR schedules involving laying head temperatures Т LH from 1024 oС to 1063 oС were employed ensuring formation of MP microstructure.
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