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Texture Evolution in Ferritic Rolled Ti-IF Steel During Cold Rolling
by
ZHANG Peng GUO Yan-hui WANG Zhao-dong WANG Guo-dong LIU Xiang-hua
in
Applied and Technical Physics
/ average plastic strain ratio
/ Cold rolling
/ Engineering
/ Evolution
/ ferritic hot rolling
/ Fibre
/ IF钢
/ Iron and steel industry
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Reduction
/ Steels
/ Surface layer
/ Texture
/ Ti-IF steel
/ 冷轧过程
/ 强度降低
/ 演变
/ 纤维织构
/ 轧制织构
/ 铁素体
2010
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Texture Evolution in Ferritic Rolled Ti-IF Steel During Cold Rolling
by
ZHANG Peng GUO Yan-hui WANG Zhao-dong WANG Guo-dong LIU Xiang-hua
in
Applied and Technical Physics
/ average plastic strain ratio
/ Cold rolling
/ Engineering
/ Evolution
/ ferritic hot rolling
/ Fibre
/ IF钢
/ Iron and steel industry
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Reduction
/ Steels
/ Surface layer
/ Texture
/ Ti-IF steel
/ 冷轧过程
/ 强度降低
/ 演变
/ 纤维织构
/ 轧制织构
/ 铁素体
2010
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Texture Evolution in Ferritic Rolled Ti-IF Steel During Cold Rolling
by
ZHANG Peng GUO Yan-hui WANG Zhao-dong WANG Guo-dong LIU Xiang-hua
in
Applied and Technical Physics
/ average plastic strain ratio
/ Cold rolling
/ Engineering
/ Evolution
/ ferritic hot rolling
/ Fibre
/ IF钢
/ Iron and steel industry
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Reduction
/ Steels
/ Surface layer
/ Texture
/ Ti-IF steel
/ 冷轧过程
/ 强度降低
/ 演变
/ 纤维织构
/ 轧制织构
/ 铁素体
2010
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Texture Evolution in Ferritic Rolled Ti-IF Steel During Cold Rolling
Journal Article
Texture Evolution in Ferritic Rolled Ti-IF Steel During Cold Rolling
2010
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Overview
The texture evolution of ferritic hot rolled Ti-IF steel during cold rolling was investigated in which the reduction was from 15% to 85 %. It was found that α fibre texture was monotonously intensified with the increase in the cold rolling reduction, while y fibre texture changed in a different way. When the cold rolling reduction was in the range of 15 % -- 35 % or 45 % -- 75 %, γ fibre texture was strengthened ; however, when the cold rolling reduction was 35 %- 45 % or 75 %- 85%, the intensity of 7 fibre was reduced. The 7 fibre displayed a maximum intensity for the reduction of 75%, and the highest average plastic strain ratio was simultaneously obtained owing to the favorable recrystallization texture.
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