The Hot Ductility, Microstructures, Mechanical Properties and Corrosion Resistance in an Advanced Boron-Containing Complex Phase Steel Heat-Treated Using the Quenching and Partitioning (Q&P) Process

被引:5
|
作者
Salas-Reyes, Antonio Enrique [1 ]
Altamirano-Guerrero, Gerardo [2 ]
Deaquino, Rogelio [3 ]
Salinas, Armando [3 ]
Lara-Rodriguez, Gabriel [4 ]
Figueroa, Ignacio Alejandro [4 ]
Gonzalez-Parra, Jesus Rafael [1 ,5 ]
Mintz, Barrie [6 ]
机构
[1] Univ Nacl Autonoma Mexico, Fac Quim, Dept Ingn Met, Mexico City 04510, Mexico
[2] Tecnol Nacl Mexico, Div Estudios Posgrad & Invest, IT Saltillo, Saltillo 25280, Coahuila, Mexico
[3] Inst Politecn Nacl, Unidad Saltillo, Ctr Invest & Estudios Avanzados, Ramos Arizpe 25900, Coahuila, Mexico
[4] Univ Nacl Autonoma Mexico, Inst Invest Mat, Mexico City 04510, Mexico
[5] Univ Nacl Autonoma Mexico, Fac Ingn, Ctr Ingn Superficies & Acabados, Mexico City 04510, Mexico
[6] City Univ London, Dept Mech Engn & Aeronaut, London EC1V 0HB, England
关键词
hot ductility behavior; complex phase steel; quenching and partitioning (Q&P) steel; boron content; multiphasic microstructure; mechanical properties; corrosion resistance; MEDIUM-CARBON STEEL; TRANSVERSE CRACKING; HIGH AL; BEHAVIOR; TEMPERATURE; TI; TRANSFORMATION; AUSTENITE; STRENGTH; FERRITE;
D O I
10.3390/met13020257
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The objective of this research work is to obtain the hot ductility behavior, and the structural, microstructural and mechanical characteristics of one of the latest generation of AHSS steels, a complex phase (CP) steel microalloyed with boron (0.006 wt.%), processed by hot and cold rolling operations and heat-treated using two different quenching and partitioning (Q&P) treatments, a one-step partitioning (quenching to 420 degrees C) and the other a two-step partitioning (quenching to 420 degrees C and reheated to 600 degrees C). The results show that boron has a marked effect on the solidification process of the CP steel, refining the austenitic grain size. Due to its refinement, the boron-containing steel had better ductility throughout the temperature range examined (700-900 degrees C), i.e., the hot ductility trough. Thus, the minimum percentage of reduction in area (%RA) value occurring at 800 degrees C was 43% for the boron-free steel, compared with 58% for the boron-containing steel. Hence, cracking would not be a problem when straightening the strand on continuous casting. The benefit of boron addition on the room temperature properties was found to be very marked for the higher temperature two-step partitioning treatment, giving a yield stress of 1200 MPa, a UTS (ultimate tensile strength) of 1590 MPa and a total elongation above 11%. The final Q&P microstructure, in both one- and two-step partitioning conditions, consisted of retained austenite (RA-gamma), martensite and ferrite islands in a bainitic matrix. Furthermore, the boron treated steel on quenching produced a greater amount of RA-gamma, which accounted for its better room temperature ductility and produced a martensitic matrix rather than a bainitic one, giving it greater strength. The addition of boron improved the corrosion resistance of this type of third generation AHSS steel.
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页数:24
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