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Formability of Fe-Mn-C Twinning Induced Plasticity Steel
by
HUANG Yao ZHAO Ai-min MI Zhen-li JING Hai-tao LI Wen -yuan HUI Ya-jun
in
Anisotropy
/ Applied and Technical Physics
/ cone cupping
/ Crack initiation
/ Deformation mechanisms
/ Drawability
/ Ductility tests
/ Earing
/ Engineering
/ Formability
/ forming limit diagram
/ Forming limit diagrams
/ Interstitial free steels
/ Iron and steel industry
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Steel
/ Steels
/ Stretchability
/ Surface layer
/ Tensile tests
/ Texture
/ TWIP steel
/ TWIP steels
/ 塑性
/ 孪生
/ 成形性
/ 拉伸试验
/ 无间隙原子钢
/ 深冲性能
/ 纤维织构
/ 诱发
2013
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Formability of Fe-Mn-C Twinning Induced Plasticity Steel
by
HUANG Yao ZHAO Ai-min MI Zhen-li JING Hai-tao LI Wen -yuan HUI Ya-jun
in
Anisotropy
/ Applied and Technical Physics
/ cone cupping
/ Crack initiation
/ Deformation mechanisms
/ Drawability
/ Ductility tests
/ Earing
/ Engineering
/ Formability
/ forming limit diagram
/ Forming limit diagrams
/ Interstitial free steels
/ Iron and steel industry
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Steel
/ Steels
/ Stretchability
/ Surface layer
/ Tensile tests
/ Texture
/ TWIP steel
/ TWIP steels
/ 塑性
/ 孪生
/ 成形性
/ 拉伸试验
/ 无间隙原子钢
/ 深冲性能
/ 纤维织构
/ 诱发
2013
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Formability of Fe-Mn-C Twinning Induced Plasticity Steel
by
HUANG Yao ZHAO Ai-min MI Zhen-li JING Hai-tao LI Wen -yuan HUI Ya-jun
in
Anisotropy
/ Applied and Technical Physics
/ cone cupping
/ Crack initiation
/ Deformation mechanisms
/ Drawability
/ Ductility tests
/ Earing
/ Engineering
/ Formability
/ forming limit diagram
/ Forming limit diagrams
/ Interstitial free steels
/ Iron and steel industry
/ Machines
/ Manufacturing
/ Materials Engineering
/ Materials Science
/ Metallic Materials
/ Physical Chemistry
/ Processes
/ Steel
/ Steels
/ Stretchability
/ Surface layer
/ Tensile tests
/ Texture
/ TWIP steel
/ TWIP steels
/ 塑性
/ 孪生
/ 成形性
/ 拉伸试验
/ 无间隙原子钢
/ 深冲性能
/ 纤维织构
/ 诱发
2013
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Journal Article
Formability of Fe-Mn-C Twinning Induced Plasticity Steel
2013
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Overview
A comparative analysis of formability was investigated between F~Mn-C twinning induced plasticity steel with different Mn contents and interstitial free steel. Tensile test combing with the morphology of fracture reveals that element Mn is helpful for the forming of inclusion or particles with film or rod shapes inducing the crack initia- tion and propagation. During stamping process, twinning induced plasticity steel without earing shows better anisot- ropy than interstitial-free steel because a typical 〈111〉 fiber texture forms accompanied by a weaker 〈100〉 fiber texture. The difference between the two steels is not evident during Erichsen cone cupping test, but the result of cone cupping test indicates that the twinning induced plasticity steel has superior drawing ability compared with intersti tial-free steel. The different performances can be attributed to the different deformation mechanism during cupping test. FED (forming limit diagram) of tested steels further suggests twinning induced plasticity steel has slightly su- perior deep drawability but low stretchability than that of IF steel, whose FLD0 value can reach 30%.
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