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Effect of quenching temperature on martensite multi-level microstructures and properties of strength and toughness in 20CrNi2Mo steel

机译:淬火温度对20CrNi2Mo钢马氏体多相组织和强度和韧性的影响

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摘要

The martensite multi-level microstructures of 20CrNi2Mo steel, which were quenched at the different temperatures of 900-1200 ℃ and tempered at 200 ℃, were investigated by optical microscope (OM), scanning electron microscopy (SEM), electron backscattering diffraction (EBSD) and transmission electron microscopy (TEM), and the relationship between the microstructures and properties of strength and toughness was discussed by the classic formula of Hall-Petch. The results show that the size of prior austenite grain (d_r), martensite packet (d_p) and block (d_b) increase with increasing of the quenching temperature, while the martensite lath (d_l) size is opposite. On another hand, the confusion degree of the martensite packets changes from disorder to order. The boundaries of prior austenite grain, packet, block and the martensite lath are high angle boundaries (HBs) and low angle boundaries (LBs), respectively, and the ratio of the low angle boundaries increase with the quenching temperature by calculating to the multi-level microstructure size with the mathematical model established by myself. In addition, the relationship between the packet/block and strength follows the classical formula of Hall-Petch, and the size of d_b is far lower than the size of d_p, d_b is the effective control unit of the strength. Meanwhile, d_1 is the effective control unit of toughness because it strongly impacts the crack initiation and propagation and follows also the Hall-Petch with toughness in 20CrNi2Mo steel.
机译:通过光学显微镜(OM),扫描电子显微镜(SEM),电子背散射衍射(EBSD)研究了20CrNi2Mo钢在900-1200℃不同温度下淬火并在200℃回火后的马氏体多级组织。透射电子显微镜(TEM),并用经典的Hall-Petch公式讨论了显微组织与强度和韧性性能之间的关系。结果表明,随着淬火温度的升高,原始奥氏体晶粒尺寸(d_r),马氏体包(d_p)和块体(d_b)的尺寸增加,而马氏体板条(d_1)的尺寸却相反。另一方面,马氏体包的混乱程度从无序到有序变化。原始奥氏体晶粒,小块,块状和马氏体板条的边界分别是高角度边界(HBs)和低角度边界(LBs),低角度边界的比率随着淬火温度的增加而增加,通过计算得出:我自己建立的数学模型来达到微观结构尺寸的目的。另外,分组/块与强度之间的关系遵循霍尔-帕奇(Hall-Petch)的经典公式,并且d_b的大小远小于d_p的大小,d_b是强度的有效控制单位。同时,d_1是韧性的有效控制单位,因为它强烈影响裂纹的萌生和扩展,并且在20CrNi2Mo钢中也遵循具有韧性的Hall-Petch。

著录项

  • 来源
    《Materials Science and Engineering》 |2016年第31期|38-47|共10页
  • 作者单位

    College of Materials Science and Metallurgical Engineering, Guizhou University, People's Republic of China,Guizhou Key Laboratory for Mechanical Behavior and Microstructure of Materials, People's Republic of China,National & Local Joint Engineering Laboratory for High-performance Metal Structure Material and Advanced Manufacturing Technology, People's Republic of China;

    College of Materials Science and Metallurgical Engineering, Guizhou University, Xibei Road, Huaxi District, Guiyang 550025, People's Republic of China,Guizhou Key Laboratory for Mechanical Behavior and Microstructure of Materials, People's Republic of China,National & Local Joint Engineering Laboratory for High-performance Metal Structure Material and Advanced Manufacturing Technology, People's Republic of China;

    Guizhou Key Laboratory for Mechanical Behavior and Microstructure of Materials, People's Republic of China,National & Local Joint Engineering Laboratory for High-performance Metal Structure Material and Advanced Manufacturing Technology, People's Republic of China;

    College of Materials Science and Metallurgical Engineering, Guizhou University, People's Republic of China,Guizhou Key Laboratory for Mechanical Behavior and Microstructure of Materials, People's Republic of China,National & Local Joint Engineering Laboratory for High-performance Metal Structure Material and Advanced Manufacturing Technology, People's Republic of China;

    College of Materials Science and Metallurgical Engineering, Guizhou University, People's Republic of China,Guizhou Key Laboratory for Mechanical Behavior and Microstructure of Materials, People's Republic of China,National & Local Joint Engineering Laboratory for High-performance Metal Structure Material and Advanced Manufacturing Technology, People's Republic of China;

    College of Materials Science and Metallurgical Engineering, Guizhou University, People's Republic of China,Guizhou Key Laboratory for Mechanical Behavior and Microstructure of Materials, People's Republic of China,National & Local Joint Engineering Laboratory for High-performance Metal Structure Material and Advanced Manufacturing Technology, People's Republic of China;

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

    20CrNi2Mo Steel; Martensite; Multi-level microstructure; Effective control unit;

    机译:20CrNi2Mo钢;马氏体多级微观结构;有效控制单元;

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