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A Methodology for Obtaining Optimum Gear Tooth Microtopographies for Noise and Stress Minimization over a Broad Operating Torque Range

机译:一种获得最佳齿轮微形貌的方法,以在较宽的工作扭矩范围内将噪声和应力最小化

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摘要

This paper presents a method for evaluating the effect of microgeometric or microtopographic variation on various gear performance parameters, i.e., noise excitations, gear contact and root stresses, film thickness and surface temperature under loaded conditions. Micro geometries that are considered are profile crown, profile slope, lead crown, lead slope and bias modifications variations. Various combinations of these micro geometries are considered in analytical simulations in which respective gear design metrics are evaluated based on the calculated load distributions. This paper will provide a walk-through analysis for a helical gear design in order to describe the procedure.
机译:本文介绍了一种评估微观几何或微观形貌变化对各种齿轮性能参数的影响的方法,这些参数包括噪声激励,齿轮接触和根应力,在负载条件下的薄膜厚度和表面温度。所考虑的微观几何形状是轮廓凸度,轮廓斜率,引线凸度,引线斜度和偏置修改偏差。在分析模拟中考虑了这些微观几何形状的各种组合,在这些模拟中,根据计算出的负载分布来评估相应的齿轮设计指标。本文将提供斜齿轮设计的演练分析,以描述该过程。

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