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Effect of vacuum oxy-nitrocarburizing on the microstructure of tool steels: an experimental and modeling study

机译:真空氧氮碳共渗对工具钢组织的影响:实验和模型研究

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The thermochemical treatments of tool steels improve the performance of the components with respect to surface hardness, wear and tribological performance as well as corrosion resistance. Compared to the conventional gas ferritic nitrocarburizing process, the original vacuum oxy-nitrocarburizing is a time-, cost-effective and environmentally-friendly gas process. Because of the oxidizing nature of the gas atmosphere, there is no need to perform subsequent post-oxidation.In this study, a vacuum oxynitrocarburizing process was carried out onto four tool steels (AISI H10, H11, H21 and D2) at 570 °C, after hardening and single tempering. The structural analysis of the compound and diffusion layers was performed by optical and electron microscopy, X-ray diffraction and glow discharge optical emission spectrometry (GDOES) methods. A largely monophase ε- layer is formed with a carbon accumulation at the substrate adjacent area. The overlaying oxides adjacent to the ε-carbonitride phase contained Fe_(3)O_(4) (magnetite) as a main constituent. A thermodynamic modelling approach was also performed to understand and optimize the process. The “Equilib module” of FactSage software which uses Gibbs energy minimization method, was used to estimate the possible products during vacuum oxynitrocarburising process.
机译:工具钢的热化学处理在表面硬度,磨损和摩擦性能以及耐腐蚀性方面提高了部件的性能。与常规的气体铁素体氮碳共渗工艺相比,原始的真空氧氮碳氮共渗是一种省时,经济高效且环保的气体工艺。由于气体气氛的氧化特性,因此无需进行后续的后氧化处理。在这项研究中,在570°C的温度下对四种工具钢(AISI H10,H11,H21和D2)进行了真空氧硝基碳共渗工艺,经过淬火和单回火。通过光学和电子显微镜,X射线衍射和辉光放电光发射光谱法(GDOES)对化合物和扩散层进行结构分析。大部分单相ε-层在基板相邻区域形成积碳。与ε-碳氮化物相相邻的覆盖氧化物以Fe_(3)O_(4)(磁铁矿)为主要成分。还执行了热力学建模方法以了解和优化过程。使用Gibbs能量最小化方法的FactSage软件的“ Equilib模块”用于估算真空氧硝碳共渗过程中的可能产品。

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