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Surface properties of low alloy steel treated by plasma nitrocarburizing prior to laser quenching process

机译:激光淬火前等离子氮碳共渗处理的低合金钢的表面性能

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Laser quenching (LQ) technique is used as a part of duplex treatments to improve the thickness and hardness of the surface layers of steels. The present study is to investigate the surface properties of low alloy steel treated by plasma nitrocarburizing (PNC) prior to a laser quenching process (PNC+LQ). The microstructure and properties of PNC+LQ layer determined are compared with those obtained by PNC and LQ processes. OM, XRD, SEM and EDS analyses are utilized for microstructure observation, phases identification, morphology observation and chemical composition detection, respectively. Microhardness tester and pin-on-disc tribometer are used to investigate the mechanical properties of the modified layers. Laser quenching of plasma nitrocarburized (PNC+LQ) steel results in much improved thickness and hardness of the modified layer in comparison with the PNC or LQtreated specimens. The mechanism is that the introduction of trace of nitrogen decreases the eutectoid point, that is, the transformation hardened region is enlarged under the same temperature distribution. Moreover, the layer treated by PNC+LQ process exhibits enhanced wear resistance, due to the lubrication effect and optimized impact toughness, which is contributed to the formation of oxide film consisting of low nitrogen compound (FeN0.(076)) and iron oxidation (mainly of Fe3O4). (C) 2014 Elsevier Ltd. All rights reserved.
机译:激光淬火(LQ)技术被用作双相处理的一部分,以改善钢表层的厚度和硬度。本研究旨在研究在激光淬火(PNC + LQ)之前通过等离子体氮碳共渗(PNC)处理的低合金钢的表面性能。将确定的PNC + LQ层的微观结构和性能与通过PNC和LQ工艺获得的微观结构和性能进行比较。 OM,XRD,SEM和EDS分析分别用于微观结构观察,相识别,形态观察和化学成分检测。用显微硬度计和针盘式摩擦计研究改性层的机械性能。与PNC或LQ处理的样品相比,等离子氮碳共渗(PNC + LQ)钢的激光淬火可大大改善改性层的厚度和硬度。其机理是,微量的氮的引入降低了共析点,即在相同的温度分布下,转变硬化区扩大了。此外,通过PNC + LQ工艺处理的层由于润滑效果和优化的冲击韧性而显示出增强的耐磨性,这有助于形成由低氮化合物(FeN0。(076))和铁氧化(主要是Fe3O4)。 (C)2014 Elsevier Ltd.保留所有权利。

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