Cálculo de la energía de activación de la difusión de boro en la capa de Fe2B en la borurización por empaquetamiento de los aceros SAE 1050 y DIN UC1

Merced Martínez-Vázquez, Marissa Vargas-Ramírez, Lourdes Cortés-Campos, Juan Gregorio Hortelano-Capetillo
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引用次数: 1

Abstract

The layer of iron boride (Fe2B) was formed on the surface of two steels, SAE 1005 and DIN UC1; after being subjected a treatment by packaging, and it was used to study the effect of the chemical composition on the thickness of the layer, the growth kinetics and the activation energy for boron diffusion. The mass balance equation and the parabolic growth law were used at the Fe2B/substrate interface, considering that the layer begins to grow after an incubation time (t0). The microscopic analysis revealed in the iron boride its form irregular, type saw teeth, in both steels. The present phases were identified by X-Ray diffraction, corroborating the presence of a single-phase Fe2B layer. An Arrhenius-type equation was used to correlate the layer thickness with the activation energy, which for this study was determined in 132.3 and 143.9 kJ mol-1 for SAE1005 and DIN UC1 steels, respectively.
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SAE 1050和DIN UC1钢填料硼化过程中硼在Fe2B层扩散的活化能计算
在sae1005和dinuc1两种钢的表面形成硼化铁(Fe2B)层;经过包装处理后,研究了化学成分对层厚、生长动力学和硼扩散活化能的影响。考虑到孵育时间(t0)后层开始生长,在Fe2B/衬底界面处采用质量平衡方程和抛物线生长定律。显微分析表明,两种钢的硼化铁均呈不规则锯齿状。通过x射线衍射鉴定了当前的相,证实了单相Fe2B层的存在。采用arrhenius型方程将层厚与活化能联系起来,本研究中SAE1005和DIN UC1钢的活化能分别为132.3和143.9 kJ mol-1。
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