Experimental and simulation analysis on windage power loss of herringbone gear pair

IF 2.2 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Jin Yang, Tengjiao Lin, L. Jiang
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引用次数: 0

Abstract

This paper presents a novel windage power loss (WPL) measurement method for the meshing herringbone gear pair. Firstly, the WPL test rig of herringbone gear pair is put up, and then the measurement sequence of WPL is described; Secondly, the WPL of different gear pairs is tested and the influence of operation speed, design parameters on the WPL of meshing gear pairs is studied. Finally, the WPL simulation analysis of meshing gear pair is carried out. The generation mechanism of WPL is analyzed and the WPL of each meshing gear pair at different rotational speeds is obtained, which verifies the accuracy of the presented WPL measurement method. The research on the measurement method of WPL can provide support for the optimization design of the high-speed gear pair.
人字形齿轮副风阻功率损失的实验与仿真分析
提出了一种新的啮合人字齿轮副的窗口功率损耗测量方法。首先搭建了人字齿轮副WPL试验台,然后描述了WPL的测量流程;其次,测试了不同齿轮副的WPL,研究了运行速度、设计参数对啮合齿轮副WPL的影响。最后对啮合齿轮副进行了WPL仿真分析。分析了WPL的产生机理,得到了各啮合齿轮副在不同转速下的WPL,验证了WPL测量方法的准确性。对WPL测量方法的研究可以为高速齿轮副的优化设计提供支持。
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来源期刊
Journal of Tribology-transactions of The Asme
Journal of Tribology-transactions of The Asme 工程技术-工程:机械
CiteScore
4.20
自引率
12.00%
发文量
117
审稿时长
4.1 months
期刊介绍: The Journal of Tribology publishes over 100 outstanding technical articles of permanent interest to the tribology community annually and attracts articles by tribologists from around the world. The journal features a mix of experimental, numerical, and theoretical articles dealing with all aspects of the field. In addition to being of interest to engineers and other scientists doing research in the field, the Journal is also of great importance to engineers who design or use mechanical components such as bearings, gears, seals, magnetic recording heads and disks, or prosthetic joints, or who are involved with manufacturing processes. Scope: Friction and wear; Fluid film lubrication; Elastohydrodynamic lubrication; Surface properties and characterization; Contact mechanics; Magnetic recordings; Tribological systems; Seals; Bearing design and technology; Gears; Metalworking; Lubricants; Artificial joints
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