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Transformation Behavior of Low Carbon Steels Containing Two Different Si Contents
by
CAI Ming-hui DING Hua ZHANG Jian-su LI Long LI Xiao-bin DU Lin-xiu
in
Applied and Technical Physics
/ bainitic morphology
/ cooling rate
/ Engineering
/ low carbon steel
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Si content
/ transformation behavior
/ 低碳钢
/ 冷却速度
/ 变形条件
/ 硅含量
/ 贝氏体铁素体
/ 连续冷却转变
/ 高硅钢
2009
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Transformation Behavior of Low Carbon Steels Containing Two Different Si Contents
by
CAI Ming-hui DING Hua ZHANG Jian-su LI Long LI Xiao-bin DU Lin-xiu
in
Applied and Technical Physics
/ bainitic morphology
/ cooling rate
/ Engineering
/ low carbon steel
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Si content
/ transformation behavior
/ 低碳钢
/ 冷却速度
/ 变形条件
/ 硅含量
/ 贝氏体铁素体
/ 连续冷却转变
/ 高硅钢
2009
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Do you wish to request the book?
Transformation Behavior of Low Carbon Steels Containing Two Different Si Contents
by
CAI Ming-hui DING Hua ZHANG Jian-su LI Long LI Xiao-bin DU Lin-xiu
in
Applied and Technical Physics
/ bainitic morphology
/ cooling rate
/ Engineering
/ low carbon steel
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Si content
/ transformation behavior
/ 低碳钢
/ 冷却速度
/ 变形条件
/ 硅含量
/ 贝氏体铁素体
/ 连续冷却转变
/ 高硅钢
2009
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Transformation Behavior of Low Carbon Steels Containing Two Different Si Contents
Journal Article
Transformation Behavior of Low Carbon Steels Containing Two Different Si Contents
2009
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Overview
Continuous cooling transformation behaviors of low carbon steels with two Si contents (0. 50% and 1. 35%) were investigated under undeformed and deformed conditions. Effects of Si contents, deformation, and cooling rates on γ transformation start temperature (Ar3), phase microstructures, and hardness were studied. The results show that, in the ease of the deformation with the true strain of 0. 4, the length of bainitic ferrite laths is significantly decreased in low Si steel, whereas, the M/A constituent becomes more uniform in high Si steel. An increase in cooling rates lowers the Ar3 greatly. The steel with higher level of Si exhibits higher Ar3, and higher hardness both under undeformed and deformed conditions compared with the steel with a lower Si content. Especially, the influence of Si on At3 is dependent on deformation. Such effects are more significant under the undeformed condition. The hardness of both steels increases with the increase of cooling rates, whereas, the deformation involved in both steels reduces the hardness.
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