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Improvement of mechanical properties for low carbon ultra-high strength steel strengthened by Cu-rich multistructured precipitation via modification to bainite

机译:通过改性到Bainite的Cu的多系统沉淀而改善低碳超高强度钢的力学性能

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摘要

This work focused on ultra-high strength steel strengthened by Cu-rich multistructured precipitates and toughened by bainite. A Cr-Mo bearing bainitic steel was designed and contrasted with a ferritic steel to examine the effects of Cr and Mo on microstructural transformation and precipitation evolution as well as the corresponding mechanical properties. By adding Cr and Mo elements, bainitic steel was obtained by an air cooling process after hot rolling, thus omitting controlled cooling and off-line quenching. Cr and Mo decreased the γ/α transformation temperature, such that the ferritic matrix was modified to fine bainite. Cu-rich multistructured particles and (Nb, Ti)C particles were found to be the two main precipitation phases in this bainitic steel. Cu-rich multistructured particles contained B2-ordered structure and transition-state structure between B2-ordered and 9R structure. Notably, this Cr-Mo bearing bainitic steel had better strength and toughness compared with ferritic steel. Its yield strength reached 1155 MPa, owing to precipitation and grain boundary strengthening, which were estimated to be 596 and 311 MPa, respectively. The impact absorbed energy of this steel at -40 °C was ~55.3 J and its fracture mode a brittle-ductile mixed mode, compared with the cleavage fracture mode of ferritic steel. The small grain size of this steel compensated for toughness deterioration caused by precipitation and contributed to high impact toughness.
机译:这项工作集中在富含Cu的多电库沉淀物和贝氏体增韧的超高强度钢。与铁素体钢设计并形成了CR-Mo轴承贝氏体钢,以检查Cr和Mo对微观结构转化和沉淀演化以及相应的机械性能的影响。通过添加Cr和Mo元件,通过热轧后的空气冷却过程获得贝氏体钢,从而省略控制的冷却和离线淬火。 Cr和Mo降低了γ/α变换温度,使铁素体基质被修饰至细贝氏体。发现Cu的多系统颗粒和(Nb,Ti)C颗粒是该贝氏体钢中的两个主要沉淀​​相。富含Cu的多系统颗粒包含B2有序结构和B2订购和9R结构之间的过渡状态结构。值得注意的是,与铁素体钢相比,该CR-Mo轴承贝氏体钢具有更好的强度和韧性。由于沉淀和晶界强化,其屈服强度达到1155MPa,分别估计为596和311MPa。与铁素体钢的切割断裂模式相比,该钢的冲击吸收能量〜55.3 j及其骨折模型的裂缝混合模式。该钢的小晶粒尺寸补偿了由沉淀引起的韧性劣化,并导致高冲击韧性。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第10期|141337.1-141337.13|共13页
  • 作者单位

    School of Materials Science and Engineering Tianjin University Tianjin 300350 China State Key Laboratory of Metal Material for Marine Equipment and Application Anshan 114009 China;

    School of Materials Science and Engineering Tianjin University Tianjin 300350 China;

    School of Materials Science and Engineering Tianjin University Tianjin 300350 China;

    School of Materials Science and Engineering Tianjin University Tianjin 300350 China;

    School of Materials Science and Engineering Tianjin University Tianjin 300350 China State Key Laboratory of Metal Material for Marine Equipment and Application Anshan 114009 China;

    School of Materials Science and Engineering Tianjin University Tianjin 300350 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultra-high strength steel; Bainite; Cu-rich multistructured precipitation; Strength and toughness;

    机译:超高强度钢;贝恩特;富含Cu的多系统沉淀;力量和韧性;

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