Tooth Surface Error Correction Methodologies for Spiral Bevel and Hypoid Gears Generated by Duplex Helical Method

Zhang Yu, Yang Hongzhi, W. Zhiyong, Zhao Qing
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引用次数: 2

Abstract

In order to eliminate the tooth surface errors and ensure precision of spiral bevel and hypoid gears generated by the duplex helical method, two new methodologies for the format gears and the generated gear or the pinion manufactured by the duplex helical method are proposed. Firstly, the cutting characteristics of this method is analyzed, both mathematical models for the format gear and the generated gear or the pinion generated by the duplex helical are established, one includes 8 machine settings, the other one includes up to 40 universal motion coefficients. Furthermore, the tooth surface errors of the grid points are represented by up to 6th order polynomials, then Constraint Least Square Method for determining the appropriate changes of the corrective machine settings is proposed to minimize the tooth flank form errors. Finally, new tooth flank form error correction software for spiral bevel and hypoid gears has been developed and a hypoid gear set generated by the duplex helical method is used as an example to validate the effectiveness of the software. The results reveal that the flexibility and efficiency of the tooth flank form error correction for both format gear and pinion generated by duplex helical method are greatly improved. In addition, the new approach can also be applied to the tooth flank form error correction of bevel and hypoid gears generated by other process methods.
双螺旋法生成螺旋锥齿轮和准双曲面齿轮的齿面误差校正方法
为了消除双螺旋法加工螺旋锥齿轮和准双曲面齿轮的齿面误差,保证加工精度,提出了两种新的双螺旋法加工正形齿轮和正形齿轮的加工方法。首先,分析了该方法的切削特性,建立了成形齿轮和双螺旋生成齿轮的数学模型,其中一个包含8个机床设置,另一个包含多达40个万向运动系数。将网格点的齿面误差用最高6阶多项式表示,提出了约束最小二乘法来确定适当的修正机设置变化,以最小化齿面形状误差。最后,开发了新的螺旋锥齿轮和准双曲面齿轮齿面形误差校正软件,并以双螺旋法生成的准双曲面齿轮组为例验证了该软件的有效性。结果表明,双螺旋法生成的齿轮和小齿轮齿面形状误差修正的灵活性和效率都得到了很大的提高。此外,该方法也可应用于其他加工方法产生的锥齿轮和准双曲面齿轮齿面形状误差的校正。
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