Twip公司
晶体孪晶
材料科学
加工硬化
动态应变时效
冶金
无扩散变换
变形(气象学)
可塑性
极限抗拉强度
应变硬化指数
马氏体
硬化(计算)
变形机理
应变率
复合材料
微观结构
图层(电子)
作者
Motomichi Koyama,Takahiro Sawaguchi,Taekyung Lee,Chong Soo Lee,Kaneaki Tsuzaki
标识
DOI:10.1016/j.msea.2011.06.011
摘要
The tensile properties of carbon-containing twinning induced plasticity (TWIP) steels and their temperature dependence were investigated. Two steels with carbon concentrations of 0.6% and 0.8% (w/w) were tensile-tested at 173, 223, 273, 294, and 373 K. Three deformation modes were observed during tensile testing: ɛ-martensitic transformation, deformation twinning, and dynamic strain aging. The characteristic deformation mode that contributed to the work hardening rates changed with the deformation temperature and chemical compositions. The work hardening rate in the carbon-containing TWIP steels increased according to the deformation modes in the following order: ɛ-martensitic transformation > deformation twinning > dynamic strain aging.
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