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Carburization Process Modeling and Sensitivity Analysis using Numerical Simulation

机译:使用数值模拟渗碳过程建模与敏感性分析

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Industry often faces problems in maintaining uniform case depth during the gas carburization heat treatment processes. Two important control parameters that control the carburization of steel: environmental reaction rate that causes carbon to be absorbed at the surface and the carbon diffusion rate from the steel surface to the interior of the part. In this study a computer model is developed to investigate the effect of temperature and gas composition on the mass transfer coefficients at the steel surface and the effect of carbon content and temperature on the carbon diffusion rate in low and medium carbon steels. A series of computer experiments are performed to investigate the sensitivity of the carburizing performance characteristics to the variation in these control parameters and to determine the potential route to reduce case depth variability and the cycle time.
机译:工业常常面临在气体渗碳热处理过程中保持均匀壳体深度的问题。控制钢渗碳的两个重要控制参数:导致碳在表面吸收的环境反应速率和从钢表面到部分内部的碳扩散速率。在该研究中,开发了一种计算机模型,以研究温度和气体组合物对钢表面的传质系数的影响以及碳含量和温度对低中碳钢中的碳扩散速率的影响。进行一系列计算机实验以研究渗碳性能特征对这些控制参数的变化的灵敏度,并确定降低壳体深度变异性和循环时间的潜在路线。

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