低碳锰铁渗氮过程吸氮量预测的数学模型

S. Ghali
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引用次数: 3

摘要

采用气固反应对低碳锰铁进行氮化。在不同的氮气压力下,在800°C - 950°C的温度范围内进行了氮化过程。研究了细粒低碳锰铁氮化工艺的温度、时间和分氮压。含氮量(以重量百分比计)大于9%。利用MATLAB软件推导出氮含量随温度和氮压变化的数学模型。根据导出的模型,氮含量可由下式计算:,其中,T为氮化温度,单位为K, P为氮压力,单位为bar。实验结果与预测结果吻合较好。结果表明,在稳态下,氮含量主要取决于渗氮过程的温度和压力。MATLAB是一个制作精密数学模型的好工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical Model of Prediction of Nitrogen Pickup in Nitriding Process of Low Carbon Ferromanganese
Low carbon ferromanganese was nitrided through gas-solid reaction. The nitriding process has been carried out on lab scale at temperature range 800°C–950°C at different nitrogen pressures. Temperature, time, and partial nitrogen pressure of nitriding process of fine low carbon ferromanganese were investigated. Nitrogen content, in weight percent, was more than 9%. MATLAB software was used to derive mathematical model to predict nitrogen content as a function of temperature and nitrogen pressure. According to derived model, nitrogen content can be calculated by the following equation: , where, T is nitriding temperature in K and P is nitrogen pressure in bar. The experimental results are in good agreement with the predicted results. The results showed that nitrogen content, at steady state, is mainly depending on temperature and pressure of nitriding process. MATLAB is a good tool to make precision mathematical model.
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