非标x齿轮行星直齿轮系参数变换及齿面修形

IF 1.9 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Xijin Zhang, Z. Fang, Xunmin Yin, Haitao Jia, Yaoguo Ma, Yingqiang Xu, Huan Zhao
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引用次数: 0

摘要

针对非标准行星正齿轮系修形计算缺乏现成公式的问题,重点研究了非标准x齿轮行星正齿轮系修形的新方法。首先,针对非标准x齿轮行星直齿轮系,提出了一种从节圆上的参数到参考圆上的参数的新颖变换方法,研究了其修形方法;其次,提出了非标准x齿轮行星直齿轮系齿面修形方案。第三,利用齿面接触分析和加载齿面接触分析,提出了外啮合直齿副混合弹流润滑下加载传动误差和齿面闪蒸温度的计算方法。在此基础上,提出了一种新的非标准x齿轮行星直齿轮系修形优化方法,并推导出沿齿高方向的最大修形长度公式。最后通过算例验证了修形优化方法的有效性,并推导了优化后的太阳齿轮修形参数的变换公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transform of parameter and teeth surface modification for non-standard planetary spur gear train with X-gears
In view of the lack of ready formulae for modification calculation of non-standard planetary spur gear trains, the paper is focused on new modification methods of non-standard planetary spur gear trains with X-gears. Firstly, a novelty transform method from the parameters on the pitch circle to the parameters on the reference circle for a non-standard planetary spur gear train with X-gears is proposed in order to study the modification method. Secondly, a scheme of teeth surface modification for non-standard planetary spur gear train with X-gears is put forward. Thirdly, the calculation method of loaded transmission error and flash temperature on the tooth surface under mixed elastohydrodynamic lubrication for external meshing spur gear pairs is proposed using tooth contact analysis as well as loaded tooth contact analysis. Then, a new modification optimization method for non-standard planetary spur gear train with X-gears is proposed, and formulae of the maximal modification length along the tooth height are derived. Finally, the effectiveness of the modification optimization method is confirmed by an example, and the transform formulae of the optimized modification parameters for sun gear are derived.
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来源期刊
CiteScore
4.10
自引率
11.10%
发文量
38
审稿时长
>12 weeks
期刊介绍: The Journal of Multi-body Dynamics is a multi-disciplinary forum covering all aspects of mechanical design and dynamic analysis of multi-body systems. It is essential reading for academic and industrial research and development departments active in the mechanical design, monitoring and dynamic analysis of multi-body systems.
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