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Kinetics of Boron Diffusion and Characterization of Fe2B Layers on AISI 9840 Steel

机译:AISI 9840钢FE2B层扩散的动力学和表征

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In this work, the AISI 9840 steel was subjected to the powder-pack boriding in the temperature range of 1123-1273 K for various times ranging from 2 to 8 h. A kinetic model based on the principle of mass conservation at the growing interface was used to estimate the boron diffusion coefficients through the Fe2B layers. The pack-borided samples were experimentally characterized by different techniques such as: Scaning electron microscopy, XRD analysis, Microhardness Vickers testing. The Daimler-Benz Rockwell-C indentation technique was used to assess the adhesion quality of boride coatings on AISI 9840 steel. Finally, the scratch and pin-on-disc tests for wear resistance were respectively performed using an LG Motion Ltd and a CSM tribometer under dry sliding conditions. The boron activation energy for the AISI 9840 steel was estimated as 193.08 kJ /mol by applying the present model. To confirm and extend the validity of the diffusion model, the experimental values of Fe2B layers thicknesses obtained for other boriding conditions were compared with the predicted values.
机译:在这项工作中,将AISI 9840钢进行粉末包装在1123-1273k的温度范围内,各个时间范围为2至8小时。基于生长界面的大规模保护原理的动力学模型用于估计通过Fe2b层的硼扩散系数。通过不同的技术进行实验表征包装硼样品,例如:扫描电子显微镜,XRD分析,微硬度维氏试验。戴姆勒 - 奔驰罗克韦尔-C压痕技术用于评估AISI 9840钢上的硼化物涂层的粘附质量。最后,在干燥滑动条件下,分别使用LG运动Ltd和CSM摩擦计分别进行耐磨性的划痕和引脚盘试验。通过应用本模型估计AISI 9840钢的硼活化能量为193.08kJ / mol。为了确认并扩展扩散模型的有效性,将其他硼化条件获得的Fe2B层厚度的实验值与预测值进行比较。

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