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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Diagonal shaving of an involute pinion: optimization of the geometric and kinematic parameters for the pinion finishing operation
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Diagonal shaving of an involute pinion: optimization of the geometric and kinematic parameters for the pinion finishing operation

机译:渐开线小齿轮的对角剃须:优化小齿轮精加工操作的几何和运动学参数

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摘要

Investigation of diagonal shaving of an involute pinion and optimization of parameters for the pinion finishing operation and of the shaving cutter design are the objectives of the current research. The paper covers the following topics: (1) analysis of the local topology of the pinion tooth surface and shaving cutter; (2) exploration of the parameters of geometry of contact between the involute tooth surfaces of the pinion and the shaving cutter; (3) determination of the optimum parameters of the shaving cutter design and of the kinematics of the diagonal shaving operation. An approach for the computation of the optimum parameters for the diagonal shaving operation of an involute pinion is developed. The approach is based on fundamental results in the theory of gearing obtained by Buckingham (Analytical mechanics of gears, Dover Publications, New York). The developed approach enables the computation of the optimum parameters for the gear finishing operation. Its application can be easily extended to and employed for the optimization of parameters for other methods of rotary shaving operations of involute and non-involute pinions, i.e., axial (transverse or conventional) shaving, tangential (or underpass) shaving, and plunge shaving operations. Computer simulation of the diagonal shaving operation proves that application of the developed approach enables shaving time reduction or reduction of the actual pinion tooth surface deviation from the true involute tooth surface.
机译:对渐开线小齿轮的斜角剃须的研究以及对小齿轮精加工操作和剃须刀的设计参数的优化是当前研究的目标。本文涵盖以下主题:(1)分析小齿轮齿面和剃刀的局部拓扑; (2)探索小齿轮的渐开线齿表面与剃刀的接触几何参数; (3)确定剃须刀设计的最佳参数和对角剃须操作的运动学。开发了一种计算渐开线小齿轮对角线剃刮操作最佳参数的方法。该方法基于白金汉所获得的齿轮传动理论的基本结果(齿轮的分析力学,纽约多佛出版公司)。所开发的方法可以计算出齿轮精加工操作的最佳参数。它的应用可以轻松扩展到渐开线和非渐开线小齿轮的其他旋转式剃须方法的参数,并用于优化其参数,即轴向(横向或常规)剃须,切向(或地下通道)剃须和切入式剃须操作。对角线剃刮操作的计算机仿真证明,所开发方法的应用能够减少剃刮时间或减少实际小齿轮齿表面与真正的渐开线齿表面的偏差。

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