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A flank correction methodology for a five-axis CNC gear profile grinding machine

机译:五轴CNC齿轮轮廓磨床的侧面校正方法

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摘要

Form grinding is the most popular finishing process for large-size gear because of its high accuracy, efficiency, and flexibility in tooth flank modification. Theoretically, this tooth flank topographical modification is calculated using loaded tooth contact analysis (LTCA), which takes into account the gear tooth, shaft, and housing deflections. Such topographical modification, however, is difficult in the existing gear form grinding method. To simplify production of the ground tooth flank topography, this paper proposes a tooth flank modification grinding method with high-order correction based on the degrees of freedom in the five-axis computer numerical control (CNC) gear profile grinding machine. Each axis of the grinding machine is formulated as a high-order polynomial, and the sensitivity of the polynomial coefficient is derived based on the topographic normal deviation on the gear tooth flank. The ground tooth flank can be approximated to the theoretical tooth flank by adjusting the coefficients of the polynomials based on their sensitivity. We demonstrate the validity of this flank correction method numerically using a helical gear made by the five-axis CNC gear profile grinding machine.
机译:成形磨削是大型齿轮最流行的精加工工艺,因为它具有很高的精度,效率和齿面修饰的灵活性。从理论上讲,该齿面的形貌修改是使用负载齿接触分析(LTCA)计算的,其中考虑了齿轮齿,轴和轴承座的挠度。然而,在现有的齿轮形式的研磨方法中,这种形貌的改变是困难的。为了简化磨削齿面形貌的生产,本文提出了一种基于五轴计算机数控齿轮轮廓磨削机自由度的,具有高阶校正的齿面变型磨削方法。磨床的每个轴都用高阶多项式表示,多项式系数的敏感性是根据齿轮齿侧面的法线法向偏差得出的。通过基于多项式的灵敏度调整多项式的系数,可以使齿面近似于理论齿面。我们使用由五轴CNC齿轮轮廓磨床制造的斜齿轮在数值上证明了这种侧面修正方法的有效性。

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