Understanding Cooling Rate Response of Test Pieces and Actual Gears Using Heat Treat

M. Maniruzzaman, Michael A. Pershing, Joel Komurka, Curtis Henning
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Abstract

The cooling history of carburized heat-treated gears plays a significant role in developing microstructure, hardness, and residual stress in the tooth that influences the fatigue performance of the gear. Evaluating gear carburizing heat treatment should include a microstructure and hardened depth evaluation. This can be done on an actual part or with a test piece. The best practice for a test piece is to use a section size that closely approximates the cooling rate at the gear flank of the actual gear. This study furthers work already presented showing the correct test piece size that should be used for different gear modules (tooth thicknesses). Metallurgical comparisons between test pieces, actual gears, and FEA simulations are shown.
热处理试样和实际齿轮冷却速率响应的理解
渗碳热处理齿轮的冷却历史在影响齿轮疲劳性能的微观组织、硬度和残余应力的发展中起着重要作用。评估齿轮渗碳热处理应包括微观结构和硬化深度评估。这可以在实际零件或测试件上完成。测试件的最佳做法是使用与实际齿轮侧面的冷却速率非常接近的截面尺寸。这项研究进一步的工作已经提出了正确的测试片尺寸,应该用于不同的齿轮模块(齿厚)。给出了试样、实际齿轮和有限元模拟之间的冶金比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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