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首页> 外文期刊>Surface Engineering >Microstructure and mechanical properties of surface layer of M50NiL steel plasma nitrided
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Microstructure and mechanical properties of surface layer of M50NiL steel plasma nitrided

机译:M50NiL等离子渗氮钢表面层的组织与力学性能。

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The quenched M50NiL steel specimens have been plasma nitrided at temperatures from 460 to 590°C for 4 h under a constant mixture gaseous supply of 0.05N_2-0.4H_2 L min~(-1). The effects of the treatment temperature on the microstructure, microhardness and wear resistance of the surface nitrided layers are studied. The results show that the plasma nitrided layer includes only the diffusion layer without conventional compound layer. The surface hardness is significantly enhanced. α'-Fe and γ'-Fe_4N phases in surface layer are formed at relatively low nitriding temperatures (460-560°C), while a low nitrogen phase FeN_(0.076) forms when the nitriding temperature exceeds 575°C. With the increase in nitriding temperature, the nitrided layer thickness increases, whereas both the surface and core microhardness of the nitrided specimens decreases. The wear resistance of specimens can also be improved significantly by plasma nitriding.
机译:M60NiL淬火钢试样已在460至590°C的温度下,在恒定混合气供给量为0.05N_2-0.4H_2 L min〜(-1)下进行了等离子氮化4小时。研究了处理温度对表面渗氮层组织,显微硬度和耐磨性的影响。结果表明,等离子体氮化层仅包括扩散层,而没有常规化合物层。表面硬度大大提高。表面层中的α'-Fe和γ'-Fe_4N相在相对较低的氮化温度(460-560°C)下形成,而当氮化温度超过575°C时形成低氮相FeN_(0.076)。随着渗氮温度的升高,渗氮层厚度增加,而渗氮试样的表面和核心显微硬度均下降。等离子体渗氮还可以显着提高样品的耐磨性。

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