Hot deformation and static softening behavior of vanadium microalloyed high manganese austenitic steels

被引:36
|
作者
Llanos, L.
Pereda, B.
Lopez, B.
Rodriguez-Ibabe, J. M.
机构
[1] CEIT, San Sebastian, Basque Country, Spain
[2] Tecnun Univ Navarra, San Sebastian, Basque Country, Spain
关键词
Hot working; TWIP steel; Softening kinetics; Strain-induced precipitation; STRAIN-INDUCED PRECIPITATION; RECRYSTALLIZATION KINETICS; CARBON CONTENT; TRIP/TWIP STEELS; IMPROVED MODEL; TWIP STEELS; LOW-ALLOY; HIGH-AL; NB; STRENGTH;
D O I
10.1016/j.msea.2015.10.123
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The hot deformation and static softening behavior of various high Mn (20-30 wt%) austenitic steels microalloyed with different V (0.1, 0.2 wt%), C (0.2, 0.6, 1 wt%) and N (0.005-0.025 wt%) contents were investigated. Double-hit torsion tests at temperatures in the range 700-1100 degrees C were carried out and specimens quenched at selected conditions were examined using advanced microscopy techniques (EBSD-TEM) to characterize the recrystallization and strain-induced precipitation behavior. The results show that precipitation of vanadium at the hot working temperature range is sluggish. It mainly occurs for the combinations of 20%Mn-0.6%C-0.2%V and 30%Mn-1%C-0.1%V. When the carbon content is reduced to 0.2%C, strain-induced precipitation is suppressed at typical hot working temperatures, independently of the N level. The flow stress behavior was affected by the amount of C and by modifying the base composition from 30%Mn to 20%Mn-1.5%Al. However, the effect is complex and depends on deformation conditions. In the absence of strain-induced precipitation, the static softening kinetics was accelerated by increasing C content. However, no effect of Mn or V in solid solution was observed. In those cases where strain-induced precipitation took place, static recrystallization was severely delayed, leading to a major contribution of recovery to softening kinetics. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:358 / 369
页数:12
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