Effect of annealing time on the microstructure and mechanical prop-erties of a cold rolled medium-manganese TRIP steel
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摘要: 采用CCT-AY-Ⅱ型鋼板連續退火機模擬分析了退火時間對中錳TRIP鋼0.1C-7Mn組織性能的影響規律.利用掃描電鏡、透射電鏡、電子背散射衍射和X射線能量色散譜等研究了不同工藝下制備的0.1C-7Mn鋼的微觀組織和成分,利用X射線衍射法測量了殘留奧氏體量,利用拉伸試驗測試了其力學性能.0.1C-7Mn鋼在650℃保溫3 min退火后獲得最佳的綜合力學性能,其強度為1329 MPa,總延伸率為21.3%,強塑積為28 GPa·%.分析認為,0.1C-7Mn鋼的高塑性是由亞穩奧氏體的TRIP效應和超細晶鐵素體共同提供的,而高強度是由退火冷卻過程中奧氏體轉變的馬氏體和拉伸變形過程中TRIP效應轉變的馬氏體的強化作用造成的.Abstract: The effects of annealing time on the microstructure and mechanical properties of a cold rolled medium-manganese TRIP steel 0.1C-7Mn were analyzed on a CCT-AY-Ⅱ heat treatment system for thin steel sheet. The microstructure and composition of the steel obtained through different annealing processes were investigated by means of scanning electron microscopy, transmission electron microscopy, electron backscatter diffraction, and energy dispersive X-ray spectroscopy. The amount of retained austenite in the steel was determined by X-ray diffraction analysis and the mechanical properties were measured by tensile testing. The steel annealed at 650℃ for 3 min has the best comprehensive mechanical properties, with the tensile strength of 1329 MPa, the total elongation of 21.3%, and the product of tensile strength and elongation of 28 GPa.%. It is believed that the high plasticity is provided by the TRIP effect of metastable austenite together with ultra-fine grained ferrite. The high strength is caused by martensite which is directly transformed from austenite in the cooling process during annealing and obtained during the tensile deformation attributed to the TRIP effect.
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Key words:
- manganese steel /
- cold rolling /
- annealing /
- microstructure /
- mechanical properties /
- automobile materials
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