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首页> 外文期刊>Journal of Materials Engineering and Performance >A Hybrid Plasma Treatment of H13 Tool Steel by Combining Plasma Nitriding and Post-Oxidation
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A Hybrid Plasma Treatment of H13 Tool Steel by Combining Plasma Nitriding and Post-Oxidation

机译:通过组合等离子体氮化和氧化结合方法H13工具钢的杂化等离子体处理

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Pulsed plasma nitriding and post-oxidizing process have been applied to hot work H13 tool steel to enhance the tribological properties (friction coefficient and wear rate). Nitriding was accomplished under specific conditions to generate a free white layer surface in order to avoid an abrasive wear mechanism. Post-oxidizing treatment was carried out in the same reactor after finishing the nitriding treatment; processing time was varied for 30 and 60min. The morphology, phase's composition and wear performance of duplex-treated samples were evaluated by scanning electron microscopy, x-ray diffraction analysis and pin-on-ball wear technique. The results show that the duplex treatment produces a bilayer arrangement constituted by an 80m diffusion zone with expanded martensite as the main phase underneath a 2-4m hematite-magnetite-oxidized layer. The duplex treatment modified the main wear mechanism of the nitrided sample from abrasive to plastic yielding. The changes in wear mechanisms resulted in a noticeable decrease, about 40%, in friction coefficient for oxidized samples in comparison with the nitrided-only sample. It was also established that the lowest friction coefficient values can be obtained when hematite is the main phase in the oxidized layer.
机译:脉冲等离子体氮化和后氧化过程已经应用于热工作H13工具钢,以增强摩擦学特性(摩擦系数和磨损率)。在特定条件下实现氮化以产生自由的白色层表面以避免磨料磨损机构。在整理氮化处理后在相同的反应器中进行后氧化处理;处理时间为30和60min。通过扫描电子显微镜,X射线衍射分析和引脚磨损技术来评估双链处理样品的形态,相位的组成和磨损性能。结果表明,双工处理产生由80M扩散区构成的双层布置,其具有膨胀的马氏体,作为2-4M赤铁矿 - 磁铁矿 - 氧化层下方的主相。双相处理将氮化样品的主磨损机理从磨蚀性改性到塑料屈服。与氮化样品相比,磨损机构的变化导致氧化样品的摩擦系数下降约40%。还建立了当赤铁矿是氧化层中的主相时,可以获得最低摩擦系数值。

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