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Accurate Tooth Lead Crowning without Twist in Cylindrical Helical Gear Grinding

机译:圆柱斜齿轮磨削中无扭曲的准确齿冠加冠

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摘要

Form grinding is a popular finishing process in manufacturing cylindrical gears with tooth flank modification. The tooth flanks are usually twisted when a lead crowning is performed only through additional radial motion during double flank grinding. For solving the problem, this paper proposes a method for application of tooth lead crowning without twist in cylindrical helical gears based on the idea of tooth form correction for spiral bevel and hypoid gears. In this method, the motion of each following axis is formulated as a six-order polynomial of the leading axis position and the sensitivity of tooth ground flanks with respect to the changes in the motion polynomial coefficients is analyzed. Polynomial coefficients for lead crowning are optimized by minimizing the errors between the ground tooth flanks and the target tooth flanks. The proposed optimization procedure uses dynamic sensitivity matrix instead of static, and it can obtain optimum solution with fewer steps stably. Simulation and experimental results demonstrate the effectiveness of this twist preventing method.
机译:成型磨削是制造带有齿面改型的圆柱齿轮的一种流行的精加工工艺。当仅在双刃磨削过程中仅通过额外的径向运动执行导程加冠时,通常会扭曲齿面。为了解决该问题,本文提出了一种基于螺旋锥齿轮和准双曲面齿轮齿形校正的思想,在圆柱斜齿轮中应用无扭转的齿冠加冠的方法。在这种方法中,每个跟随轴的运动被公式化为引导轴位置的六阶多项式,并且分析了齿面的侧面对运动多项式系数变化的敏感性。通过最小化齿面和目标齿面之间的误差,优化了用于凸度凸面的多项式系数。所提出的优化程序使用动态灵敏度矩阵代替静态矩阵,并且可以稳定地以较少的步骤获得最优解。仿真和实验结果证明了这种防扭曲方法的有效性。

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