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Diffusion model and characterisation of Fe2B layers on AISI 1018 steel

机译:AISI 1018钢上Fe2B层的扩散模型和表征

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摘要

An approach was suggested to study the kinetics of formation of Fe2B layers grown at the surface of AISI 1018 steel by the pack-boriding process. The kinetic model considered the principle of mass conservation at the (Fe2B/substrate) interface to evaluate the boron diffusion coefficient of Fe2B in the temperature range of 1,123-1,273 K. Validation of the model was made by comparing the experimental Fe2B layer thickness with the predicted value for the borided sample at 1,253 K during 5 h. In addition, the generated boride layers were analysed by optical microscopy, scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and X-ray diffraction analysis. Finally, a contour diagram describing the evolution of Fe2B layer thickness as a function of treatment time and temperature was also proposed. Finally, the boron activation energy for AISI 1018 steel was estimated as 159.3 kJ mol(-1) basing on our experimental results.
机译:有人提出了一种方法来研究通过填充-硼化工艺在AISI 1018钢表面生长的Fe2B层的形成动力学。该动力学模型考虑了在(Fe2B /基底)界面上的质量守恒原理,以评估1,123-1,273 K温度范围内Fe2B的硼扩散系数。硼化样品在5小时内在1,253 K处的预测值。另外,通过光学显微镜,扫描电子显微镜(SEM),能量色散X射线光谱法(EDS)和X射线衍射分析来分析产生的硼化物层。最后,提出了描述Fe2B层厚度随处理时间和温度变化的等高线图。最后,根据我们的实验结果,AISI 1018钢的硼活化能估计为159.3 kJ mol(-1)。

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