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Effect of quenching on microstructure and properties of modified Al-bearing high boron high speed steel

机译:淬火对改进的铝高硼高速钢微观结构和性能的影响

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In this paper, the effects of different quenching temperatures on the microstructure, hardness, and wear resistance of modified Al-bearing high boron high speed steel were investigated by means of optical microscopy (OM), scanning electron microscopy (SEM), X-ray diffraction (XRD), a hardness tester, and an MM-200 block-on-ring wear testing machine. The results showed that the as-cast microstructure of modified Al-bearing high boron high speed steel consisted of martensite, ferrite, pearlite and continuous network eutectic borocarbides which were distributed at the grain boundary. The eutectic borocarbides mainly included M_2B and M_7(C, B)_3. With an increase of quenching temperature, the matrix turned into martensite, and the continuous network structure of eutectic borocarbides were gradually broken and changed to the spherical; the secondary borocarbides M_(23)(C, B)_6 were precipitated from the matrix. After quenching at 1150 °C, eutectic borocarbides were clearly visible as a broken network and spheroidal in shape, and the distribution was more uniform. When the quenching temperature was in a range of 1000 °C to 1 150 °C, the hardness and wear resistance of the alloy obviously increased. When the quenching temperature attained 1150 °C, hardness reached the highest 64.3 HRC, and the wear resistance was best.
机译:本文采用光学显微镜(OM)研究了不同淬火温度对改性铝高硼高速钢的微观结构,硬度和耐磨性的影响,扫描电子显微镜(SEM),X射线衍射(XRD),硬度测试仪和MM-200嵌套磨损试验机。结果表明,经修饰的铝高硼高速钢的铸造微观结构由马氏体,铁氧体,珠光体和连续网络共晶硼化物组成,其分布在晶界处。共晶硼化物主要包括M_2B和M_7(C,B)_3。随着淬火温度的增加,基质变成马氏体,共晶硼化物的连续网络结构逐渐破裂并变为球形;二次硼化物M_(23)(C,B)_6从基质中沉淀出来。在1150℃下淬火后,将共晶硼化物作为破碎的网络和颗粒形状清晰可见,并且该分布更均匀。当淬火温度在1000℃至1 150℃的范围内时,合金的硬度和耐磨性明显增加。当淬火温度达到1150℃时,硬度达到最高的64.3 HRC,耐磨性最佳。

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