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Effects of austenitizing temperature on microstructure and mechanical property of a 4-GPa-grade PM high-speed steel

机译:奥氏体化温度对4-GPa级PM高速钢组织和力学性能的影响

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摘要

Effects of austenitizing temperature on the microstructure and mechanical property of a high-strength PM high-speed steel were systematically investigated using a series of heat treatments in the temperature range of 1070–1180 °C. Results showed that the optimal austenitizing temperature to obtain the desired combination of high compressive strength of 3838 MPa and high ductility of 29.7%, the optimal austenitizing temperature was 1180 °C. A maximum strength of 3870 MPa and a fracture strain of 22.7% was obtained by austenitized at 1120 °C. It is evident that the size distribution and carbide contents of both VC and Fe3W3C can be significantly changed by heat treatment and triple tempering resulted in slight decline in the amount of cracked carbides. Fractography showed that more broken particles of Fe3W3C carbide was observed than that of the VC particles in fractured specimens.
机译:利用一系列在1070–1180 C温度范围内的热处理,系统地研究了奥氏体化温度对高强度PM高速钢的组织和力学性能的影响。结果表明,最佳奥氏体化温度为获得3838 MPa的高抗压强度和29.7%的高延性的理想组合,最佳奥氏体化温度为1180C。在1120 C下奥氏体化,最大强度为3870 MPa,断裂应变为22.7%。显然,通过热处理可以明显改变VC和Fe3W3C的尺寸分布和碳化物含量,三重回火可导致开裂碳化物数量略有下降。断口扫描显示,在断裂试样中观察到的Fe3W3C碳化物破碎颗粒比VC颗粒破碎。

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  • 来源
    《Materials Science and Engineering》 |2018年第14期|21-26|共6页
  • 作者单位

    State Key Laboratory of Material Processing and Die & Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology;

    School of Mechanical and Automotive Engineering, South China University of Technology;

    School of Mechanical and Automotive Engineering, South China University of Technology;

    School of Mechanical and Automotive Engineering, South China University of Technology;

    State Key Laboratory of Material Processing and Die & Mould Technology, School of Materials Science and Engineering, Huazhong University of Science and Technology;

    College of Electronic Information and Electrical Engineering, Huizhou University;

    College of Electronic Information and Electrical Engineering, Huizhou University;

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

    High-speed steel; Carbides; Microstructure evolution; Heat treatment; Compressive strength;

    机译:高速钢;硬质合金;组织演变;热处理;抗压强度;

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