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A novel gear flank modification methodology on internal gearing power honing gear machine

机译:内部齿轮电动珩磨机上的新型齿轮侧面改性方法

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Highlights?An electronic gear box model for gear modification of internal gear honing machine is proposed.?A method of gear modification using coordinated motion between each axis without changing the tooth surface of the standard involute diamond gear is proposed.?The mesh equations to analyze the dressing process and honing process are presented.?The influence of the variation of A-axis and B-axis polynomial coefficients on the tooth surface is studied.AbstractIn order to reduce the impact of load fluctuation, noise and vibration, the tooth surface of the gear in the high speed transmission gearbox is usually modified along the lead and profile direction. In this paper, a method for lead and profile crowning tooth flank of work gear is proposed by setting the movement of A and B axes as two fourth order polynomial functions of axial feed of work gear in the internal gearing power honing. Diamond dressing gear used for honing stone in dressing process is standard involute, and it is not necessary to design an especial diamond dressing gear for each different modified gear. The sensitivity matrix of polynomial coefficients is calculated by the normal deviation of the gear tooth surface, and the influence of the variation of polynomial coefficients on the tooth surface is studied. The honed tooth surface can be approximated to the given tooth surface by adjusting the polynomial coefficients through least squares estimation with the aim of minimization of the tooth surface errors based on sensitivity matrix. The effectiveness of this crowning tooth flank modification method is confirmed numerically using a helical gear on the internal gearing power honing machine.]]>
机译:<![cdata [ 突出显示 提出了内部齿轮珩磨机的齿轮改变的电子齿轮箱模型。 使用每个协调运动的齿轮修改方法提出了轴而不改变标准渐开线钻石齿轮的牙齿表面。 网格方程分析梳妆过程和珩磨过程是pr Esented。 研究了齿面上轴和B轴多项式系数的变化的影响。 抽象 ,以减少负载波动,噪音和振动,牙齿的影响高速传动齿轮箱中的齿轮表面通常沿着引线和轮廓方向修改。本文通过将A和B轴的运动设定为内部齿轮动力珩磨中的工作齿轮轴向进料的两个四阶多项式函数,提出了一种用于工作齿轮的引线和轮廓齿齿的方法。用于磨削工艺中的珩磨石头的金刚石修装齿轮是标准的渐开捷,并且没有必要为每个不同改装齿轮设计一个特殊的金刚石敷料。通过齿轮齿表面的正常偏差计算多项式系数的灵敏度矩阵,研究了多项式系数在齿面上的变化的影响。通过基于灵敏度矩阵的齿面误差最小化,珩磨齿表面可以通过调节多项式系数来近似于通过最小二乘估计来近似于给定的齿表面。使用内部齿轮动力珩磨机上的螺旋齿轮在数值上进行了数值证实了该凸起牙齿侧翼修改方法的有效性。 ]]>

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