Deformed microstructure characteristics of Fe-28Mn-3Si-3Al TWIP steel
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摘要: 采用掃描電鏡、透射電鏡和電子背散射衍射技術對TWIP鋼拉伸變形后的組織進行了觀察和分析.研究結果表明,熱處理后的TWIP鋼中存在60%的退火孿晶,變形后孿晶量減少為32%.在拉伸過程中,具有退火孿晶的晶粒內部首先發生變形,產生的變形孿晶遺傳了退火孿晶的取向.變形過程中孿晶和位錯相互作用、孿晶和孿晶相互作用以及孿晶取向改變引發滑移的綜合結果使TWIP鋼同時獲得高塑性和高強度,因此變形過程中孿生變形是TWIP鋼的主要變形機制.Abstract: The microstructure of twinning induced plasticity (TWIP) steel after tensile deformation was investigated by scanning electron microscopy (SEM), transmission electron microscopy (TEM) and electron backscatter diffraction (EBSD) analysis. The results show that there are 60% annealing twins in TWIP steel before deformation and 32% deformed twins after deformation. The grains with annealing twins deform firstly during tensile deformation. This deformation mechanism of twinning induced plasticity provides specimens' excellent elongation with no-necking phenomenon. The orientation of the first deformed twin originates from the annealing twin's. The interactions between twin and twin, twin and dislocation, and twin and sliding play an important role during deformation. Therefore the effect of twinning induced plasticity is the main deformation mechanism.
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Key words:
- TWIP steel /
- tensile deformation /
- microstructure /
- deformed twin
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