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中錳鋼的研究進展與前景

Research progress and prospect of medium manganese steel

  • 摘要: 總結了國內外中錳鋼研究現狀, 對文獻中中錳鋼的成分設計、成型工藝、熱處理工藝、組織性能調控等進行匯總分析, 得到了合金元素、成型工藝、微觀組織結構和熱處理對力學性能的影響規律, 并對中錳鋼的性能例如lüders帶和PLC帶對加工硬化率的影響、氫致延遲開裂性能給予了重點關注和討論; 同時提出借鑒第二代先進高強鋼(純奧氏體相)"層錯能"這一控制形變模式的概念, 對中錳鋼中奧氏體相的形變模式提出預測; 最后對目前中錳鋼研究的爭議問題、發展前景及未來可能面對的問題進行闡述.

     

    Abstract: Medium manganese steels with the 3%-12% manganese content have outstanding tensile strength and elongation and low production cost. Thus, they are considered as third-generation advanced high-strength steels for automobiles. The research and development prospects and application potential of medium manganese steel in automotive parts have attracted wide attention both in China and overseas. After the medium manganese is deformed by forging or rolling, heat treatments such as quenching, tempering, and intercritical annealing is performed to obtain metastable austenite and ultra-fine ferrite/martensite microstructures. Metastable austenite transforms to martensite under flow stress, resulting in transformation-induced plasticity (TRIP) effect, which may be accompanied by twinning-induced plasticity (TWIP); the steel consequently exhibits good plasticity without sacrificing strength and thus meets the processing requirement of automobile parts with complex structures. The product of tensile strength and elongation of hot-rolled medium manganese steel, with chemical composition of Fe-0.2C-10Mn-4Al, under quenching and tempering can be larger than 70 GPa·%, which is higher than the current literature value. This paper summarized the current research status of medium manganese steel in China and abroad and analyzed the mechanical properties data of medium manganese steel with different chemical compositions, deformation process, and heat treatment process in the literature. The influence of the chemical composition, deformation process, and heat treatment process on the microstructure and mechanical properties was discussed. The influences of special properties of medium manganese steels, such as lüders band and PLC band, on work hardening rate and hydrogen-induced delayed cracking properties were comprehensively discussed. Moreover, based on deformation control and prediction via the stacking fault energy of the second-generation advanced high-strength steel with pure austenite microstructure, the paper presented a deformation prediction model of the austenite phase in the medium manganese steel. Finally, the paper discussed the problems and prospects of the medium manganese steel.

     

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