bainite steel
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Wear ◽  
2021 ◽  
pp. 204074
Author(s):  
P. Zhang ◽  
J.X. Chen ◽  
J. Li ◽  
H.L. Yu ◽  
X.H. Tu ◽  
...  

2021 ◽  
Vol 61 (7) ◽  
pp. 2167-2175
Author(s):  
Takumi Sakamaki ◽  
Masaki Tanaka ◽  
Tatsuya Morikawa ◽  
Hidenori Nako ◽  
Shigenobu Nanba

Author(s):  
Chunhua Ren ◽  
Xiaochuan Zhang ◽  
Hongwei Ji ◽  
Huaiwen Wang ◽  
Sumit. Hazra ◽  
...  

Materials ◽  
2021 ◽  
Vol 14 (8) ◽  
pp. 1962
Author(s):  
Jaromir Dlouhy ◽  
Pavel Podany ◽  
Jan Dzugan

Bainitic steels were the focus of this study. These steels have the potential to obtain a good combination of strength, ductility, and edge stretchability, which is a very desirable characteristic in the automotive industry. Cu precipitation potential was investigated during prolonged isothermal bainitization treatment. Precipitation strengthening and ductility were measured using a tensile test, and edge stretchability was measured using a hole expansion test. The microstructure was characterized by high-resolution scanning electron microscopy and an electron backscattered diffraction. Lower bainite was obtained by austenitization treatment and subsequent immersion into a salt bath at 400 °C. Cu precipitation occurred after 120 min of holding in the bath and enhanced the yield stress of the Cu-alloyed steel by 120 MPa as compared with a reference steel without Cu. The strengthening did not affect ductility and decreased the edge stretchability by 10%. Steels with different Mn contents were examined. It was found that the enhancement of Mn content from 1 to 2 wt.% did not boost Cu strengthening ability. This result showed that the presence of Mn did not cause an Mn-Cu precipitation strengthening synergy, observed previously during martensite tempering procedure.


Materials ◽  
2021 ◽  
Vol 14 (2) ◽  
pp. 384
Author(s):  
Tomasz Dembiczak ◽  
Marcin Knapiński

Based on the research results, coefficients in constitutive equations, describing the kinetics of dynamic, meta-dynamic, and static recrystallization in high-carbon bainitic steel during hot deformation were determined. The developed mathematical model takes into account the dependence of the changing kinetics in the structural size of the preliminary austenite grains, the value of strain, strain rate, temperature, and time. Physical simulations were carried out on rectangular specimens. Compression tests with a flat state of deformation were carried out using a Gleeble 3800. Based on dilatometric studies, coefficients were determined in constitutive equations, describing the grain growth of the austenite of high-carbon bainite steel under isothermal annealing conditions. The aim of the research was to verify the developed mathematical models in semi-industrial conditions during the hot-rolling process of high-carbon bainite steel. Analysis of the semi-industrial studies of the hot-rolling and long-term annealing process confirmed the correctness of the predicted mathematical models describing the microstructure evolution.


2021 ◽  
Vol 136 ◽  
pp. 102900
Author(s):  
Siwook Park ◽  
Jinwook Jung ◽  
Woojin Cho ◽  
Byeong-Seok Jeong ◽  
Hyuntaek Na ◽  
...  

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