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退火后冷卻方式對冷軋中錳鋼微觀組織和力學性能的影響

Effect of cooling methods after annealing on the microstructure and mechanical properties of cold-rolled medium manganese steel

  • 摘要: 采用拉伸試驗、掃描電鏡、電子背散射衍射、透射電鏡、X射線衍射等手段,研究了冷軋中錳鋼(0.2C-5Mn)退火后不同冷卻方式下的微觀組織特點和拉伸性能.實驗鋼冷軋退火后為鐵素體加逆轉變奧氏體的雙相組織.退火后空冷可以獲得穩定性較高的逆轉變奧氏體,且其體積分數也明顯高于退火后爐冷.退火后空冷實驗鋼中的逆轉變奧氏體在變形過程中產生持續的TRIP效應,提高強度的同時獲得了較高的塑性,強塑積可達到26.5 GPa·%。

     

    Abstract: Cold-rolled low-carbon medium-manganese steel (0.2C-5Mn) was cooled by different methods after annealing. Its microstructure and tensile properties were investigated by means of tensile testing, scanning electron microscopy (SEM), electron back scattered diffraction (EBSD), transmission electron microscopy (TEM), and X-ray diffraction. Intercritical annealing after cold rolling results in a duplex structure of ultrafine ferrite and reverted austenite. Reverted austenite in the steel experienced annealing and air cooling is more stable and its volume fraction is significantly higher than that in the steel treated by annealing and furnace cooling. In addition, reverted austenite in the steel experienced annealing and air cooling can produce sustained TRIP effect during deformation, leading to improvements in strength and plasticity. The product of tensile strength and total elongation exceeds 26.5 GPa.%.

     

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