小齿轮
渐开线
非圆齿轮
丁坝
螺旋锥齿轮
正齿轮
渐开线齿轮
运动学
接触分析
机架
结构工程
齿面
摆线齿轮
接触力学
功率(物理)
材料科学
机械工程
工程类
有限元法
物理
减速器
经典力学
量子力学
摆线
作者
Wei Sheng,Zhengminqing Li,Hong Zhang,Rupeng Zhu
标识
DOI:10.1177/16878140211012547
摘要
The relative sliding between tooth surfaces is the main cause of tooth wear and power loss, which directly affects the transmission efficiency and durability of gear. The aim of this paper is to provide a method to design such spur gear with low sliding ratio (LSR). Based on kinematics, differential geometry and contact path, the general mathematical models of the generating rack, the pinion and the mating gear tooth profiles are established in turn. Then, according to the relationship between the contact path and sliding ratio, a contact path described by a cubic function is proposed to construct a spur gear drive with low sliding ratio. In order to ensure the continuity of action and non-interference, solid models of the mated gear pair are established, and the motion simulation is carried out by an example. Moreover, the effects of the contact path function coefficients on sliding ratio, tooth shape, and contact ratio are analyzed. Meshing efficiency and tooth wear of LSR gear drive are evaluated by comparing with those of the involute gear drive. The results show that, this LSR spur gear drive has higher transmission efficiency and better anti-wear performance.
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