Acta Metallurgica Sinica (English Letters) ›› 2022, Vol. 35 ›› Issue (2): 341-352.DOI: 10.1007/s40195-021-01261-x

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Characterization of the Trace Phosphorus Segregation and Mechanical Properties of Dual-Phase Steels

Jing Wang1, Wei Li2,3,4, Xiaodong Zhu3,4, Li You1, Laiqi Zhang1()   

  1. 1State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing 100083, China
    2School of Materials Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
    3Research Institute, Baoshan Iron & Steel Co., Ltd, Shanghai 201999, China
    4State Key Laboratory of Development and Application Technology of Automotive Steels (Baosteel), Shanghai 201999, China
  • Received:2021-03-04 Revised:2021-04-02 Accepted:2021-04-16 Online:2022-02-10 Published:2021-06-15
  • Contact: Laiqi Zhang
  • About author:Laiqi Zhang, zhanglq@ustb.edu.cn

Abstract:

The segregation behavior of trace amount of phosphorus (P) and the mechanical properties of dual-phase (DP) steels have been systematically studied. The microstructure of DP steels is mainly composed of martensite, ferrite and nanoscale carbides. For the DP steels with different trace amounts of P (≤ 0.015 wt%), P has almost no effect on the mechanical properties. Atom probe technology (APT) analyses confirm that P segregation was only found at the precipitate/matrix interface. Moreover, the precipitates of (Ti, Mo) C are widely distributed in the ferrite, martensite and ferrite/martensite interface regions. The special segregation feature of P would not concentrate at specific regions such as ferrite/martensite interface and/or martensite lath interface, which reveals that trace amounts of P (≤ 0.015wt%) have almost no effect on the mechanical properties of DP steels. It is proved for the first time that the MC-type carbides of (Ti, Mo) C can reduce or eliminate the damage effect of P on the mechanical properties of steels, which provides a new way for the design of alloys to reduce P damage. This work will promote to increase the P content control standard in DP steels from 0.01 to 0.015 wt%, which will not change the mechanical properties, but greatly reduce the scrap rate and increase the energy efficiency of the manufacturing process.

Key words: Phosphorus, Segregation, Carbide, Mechanical properties, Atom probe tomography, Dual-phase steels