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Finite-element modeling of the N concentration profile in 31CrMoV9 steel after gas nitriding

机译:氮气后31Crmov9钢N浓度谱的有限元建模

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This paper presents a possibility for the numerical calculation of the profile of nitrogen (N) concentration in 31CrMoV9 steel after gas nitriding. Samples subjected to gas nitriding at three different temperatures were investigated with different experimental methods. The concentration profile of nitrogen was determined using a Jeol JXA-8900 RL electron probe microanalyzer (Epma). The distance between two points was 5 mu m, while the acceleration voltage was 20 kV and the sample current was 40 nA. The nitrogen concentration profile was then modeled using the finite-element method. The program was written in Ansys Parametric Design Language, and the basic element was the three-dimensional element Solid70, while simulation of the model was done in Ansys. Comparison of the results obtained from Epma and modeling confirmed the accuracy of the theoretical approach.
机译:本文提出了在氮气气体后31Crmov9钢中氮(n)浓度谱的数值计算的可能性。采用不同的实验方法研究了在三种不同温度下氮化气体的样品。使用JEOLJXA-8900 RL电子探针(EPMA)测定氮的浓度分布。两点之间的距离为5μm,而加速电压为20kV,样品电流为40纳。然后使用有限元方法进行建模氮浓度曲线。该程序以ANSYS参数设计语言编写,基本元素是三维元素SILE70,而模型的仿真是在ANSYS中完成的。从EPMA和建模获得的结果的比较证实了理论方法的准确性。

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