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Practical Approach to Determining Effective Case Depth of Gas Carburizing

机译:确定渗碳有效案例深度的实用方法

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Effective case depth is an important factor and goal in gas carburizing, involving complicated procedures in the furnace and requiring precise control of many thermal parameters. Based upon diffusion theory and years of carburizing experience, this paper calculates the effective case depth governed by carburizing temperature, time, carbon content of steel, and carbon potential of atmosphere. In light of this analysis, carburizing factors at various temperatures and carbon potentials for steels with different carbon content were calculated to determine the necessary carburizing cycle time. This methodology provides simple (without computer simulation) and practical guidance of optimized gas carburizing and has been applied to plant production. It shows that measured, effective case depth of gear parts covering most of the industrial application range (0.020 inch to over 0.250 inch) was in good agreement with the calculation.
机译:有效的表层深度是气体渗碳的重要因素和目标,涉及炉中复杂的过程,并且需要精确控制许多热参数。基于扩散理论和多年渗碳经验,本文计算了有效渗碳深度,该深度受渗碳温度,时间,钢中碳含量和大气中碳势的影响。根据该分析,计算出了不同碳含量的钢在各种温度和碳势下的渗碳系数,以确定必要的渗碳循环时间。这种方法为优化气体渗碳提供了简单的方法(无需计算机模拟)和实用指南,已应用于工厂生产。结果表明,覆盖大部分工业应用范围(0.020英寸至0.250英寸以上)的齿轮零件的有效表壳深度与计算结果吻合良好。

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