首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Spur bevel gear differentials: designing involute tooth numbers for the pinion and side gear
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Spur bevel gear differentials: designing involute tooth numbers for the pinion and side gear

机译:正齿轮锥差速器:设计小齿轮和侧齿轮的渐开线齿数

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摘要

It has been theoretically proven that both friction in two mating gears and the drawing of mating involute tooth profiles along the pressure line (the line of action) generate oscillation of axial force components of the resultant force acting in a single pair of mating spur bevel gears. The law of summing the axial force components acting on the side gear from all the differential satellites (pinions), as well as on the pinion from the two side gears, depends on combinations of numbers of teeth on the side gear and pinion. A classification of bevel gear differentials into four groups depending on these combinations has been carried out in the present work. A designer should ensure that a differential under development be in accordance with group III to decrease oscillation of the total axial forces acting inside the mechanism itself. Testing has corroborated the theoretical solutions.
机译:理论上已经证明,两个配合齿轮的摩擦力以及沿压力线(作用线)的渐开线渐开线齿廓的绘图都会产生作用在一对配对正齿轮中的合力的轴向力分量的振荡。 。将所有差速器副齿轮(小齿轮)上作用于侧齿轮的轴向力分量以及两个侧齿轮上作用于小齿轮的轴向力分量相加的定律取决于侧齿轮和小齿轮上齿数的组合。在本工作中,已将锥齿轮差速器根据这些组合分为四类。设计人员应确保所开发的差速器符合III类标准,以减少作用在机构自身内部的总轴向力的波动。测试证实了理论上的解决方案。

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