Analysis of Carbon Partitioning at an Early Stage of Proeutectoid Ferrite Transformation in a Low Carbon Mn-Si Steel by High Accuracy FE-EPMA

被引:3
|
作者
Yamashita, Takako [1 ]
Enomoto, Masato [2 ]
Tanaka, Yuji [1 ]
Matsuda, Hiroshi [1 ]
Nagoshi, Masoyasu [3 ]
机构
[1] JFE Steel Corp, Steel Res Lab, Chuo Ku, 1 Kawasaki Cho, Chiba 2600835, Japan
[2] Ibaraki Univ, Mito, Ibaraki, Japan
[3] JFE Steel Corp, Steel Res Lab, Chiba, Japan
关键词
phase transformation; local equilibrium; paraequilibrium; phase diagram; thermodynamics; high tensile steel; intercritical annealing; RETAINED AUSTENITE CHARACTERISTICS; MICROSTRUCTURE; BAINITE; STRENGTH; ALLOYS; GROWTH;
D O I
10.2355/tetsutohagane.TETSU-2017-025
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Understanding of gamma ->alpha transformation during intercritical annealing is important to achieve precise control over the mechanical properties of low-carbon steels. And control of the carbon contents in the phases is the most important factor in alloy design for achieving high strength and high ductility. However, it is unusually difficult to determine the carbon contents in multiphase structures with high accuracy. So, we have developed new methods for suppressing hydrocarbon contamination during field emission (FE) EPMA measurements. Carbon enrichment at gamma/alpha interface and carbon concentration of gamma phase in Fe-0.15%C-2%Si-(1.5, 2.0)%Mn steels isothermally transformed at 750 and 800 degrees C was measured using developed FE-EPMA. The paraequilibrium (PE) model gives much better predictions for carbon enrichment in 1.5%Mn steel for 15 s. The NPLE/PLE transition model of local equilibrium gives much better predictions in 2.0%Mn steel. But the interfacial carbon concentration agrees with the composition of PLE/NPLE transition line in all alloys annealing for 1800 s. Furthermore, carbon enrichment shifted from the PE to NPLE model during annealing.
引用
收藏
页码:14 / 20
页数:7
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