Influence of Cu on Microstructure and Mechanical Properties for an Extremely Low Carbon Steel During Isothermal Process
Author:
Affiliation:
1. The State Key Laboratory of Rolling and Automation; Northeastern University; P. O. Box 105, No. 11, Lane 3, Wenhua Road, Heping District Shenyang 110819 People's Republic of China
Funder
Joint Fund of Iron and Steel Research of China
Publisher
Wiley
Subject
Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics
Reference42 articles.
1. Microstructure-properties correlation in fiber laser welding of dual-phase and HSLA steels
2. Evolution of weld metal microstructure in shielded metal arc welding of X70 HSLA steel with cellulosic electrodes: A case study
3. Development of high strength hot rolled low carbon copper-bearing steel containing nanometer sized carbides
4. Effect of tempering temperatures on the mechanical properties and microstructures of HSLA-100 type copper-bearing steels
5. Effect of cooling rate on structure and properties of an ultra-low carbon HSLA-100 grade steel
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1. Austenite reversion and nano-precipitation during a compact two-step heat treatment of medium-Mn steel containing Cu and Ni;Journal of Materials Research and Technology;2022-03
2. An Enhanced Fe–28Mn–9Al–0.8C Lightweight Steel by Coprecipitation of Nanoscale Cu‐Rich and κ‐Carbide Particles;steel research international;2020-03-11
3. Effect of Intercritical Austenitizing Temperature during Quenching–Intercritical Quenching–Tempering Process on Toughness of 25Mn2Si2Cr Bainitic Steel;steel research international;2019-02-27
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