Effect of Tooth Surface Modification on Dynamic Transmission Efficiency of Double Helical Gear Trains

Feng Wang, Xing Xu, Jiaqi Xia, Hongbo Que
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Abstract

To analyse the influence mechanism of vibration loads on dynamic transmission efficiency (DTEF) of double helical gear trains (DHGT), a calculation method of DTEF which takes into consideration the real-time dynamic loads is proposed from the perspective of improving both efficiency and precision. The average DTEF is taken as the dynamic objective function of optimization for three-dimensional modification technology of tooth surface. An engineering example is given in form of numerical simulation, which proves that the average DTEF with the consideration of dynamic loads is obviously lower than the static transmission efficiency (STEF), especially for the resonance speed region. The results also show that the DTEF after 3-D modification is significantly improved, owing to the improvement of meshing state of tooth surface. The comparison of DTEF with different loads and speeds via simulation and experiment furtherly demonstrates the credibility of this theoretical perspectives. This study gives the explanation on the importance of DTEF in determination of driveline parameters and estimation of transmission quality of DHGT. The developed method for DTEF analysis is practical in engineering, and establishes a reliable foundation for further research on design of high-quality double helical gear trains.
齿面修形对双斜齿轮传动效率的影响
为了分析振动载荷对双斜齿轮传动动传动效率的影响机理,从提高效率和精度的角度出发,提出了一种考虑实时动载荷的双斜齿轮传动动传动效率计算方法。将平均DTEF作为齿面三维修形技术优化的动态目标函数。以数值模拟的形式给出了一个工程实例,证明了考虑动载荷的平均传动效率明显低于静态传动效率(STEF),特别是在共振速度区域。结果还表明,由于齿面啮合状态的改善,三维修饰后的DTEF得到了显著提高。通过仿真和实验对不同载荷和速度下的DTEF进行了比较,进一步验证了该理论观点的可信性。本文阐述了DTEF在DHGT传动系统参数确定和传动质量评价中的重要性。所建立的DTEF分析方法具有一定的工程实用性,为进一步研究高质量双斜齿轮系的设计奠定了可靠的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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