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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Parametric studies of spur gear lubrication performance considering dynamic loads
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Parametric studies of spur gear lubrication performance considering dynamic loads

机译:考虑动态载荷的正齿轮润滑性能参数研究

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Effects of friction excitation and gear backlash on spur gear lubrication performance, i.e. minimum film thickness, maximum pressure, etc. are investigated by considering the dynamic loads due to excitations of mesh stiffness, friction between gear tooth, and backlash. Dynamic loads are obtained using a semi-definite two-degree-of-freedom lumped-parameter model. Reduced Reynolds technique is applied to develop a lubrication model capable of dealing with any potential 'asperity contacts.' Varying spur gear geometry parameters and the Ree-Eyring fluid behavior are taken into account. Results show that friction excitation has a very limited influence on the dynamic load and hence on the lubrication performance. Backlash affects the dynamic load significantly but has a limited influence on the minimum film thickness. Maximum pressure increases with the value of backlash due to the direct relationship of pressure and load.
机译:摩擦激励和齿轮间隙对正齿轮润滑性能的影响,即最小膜厚,最大压力等,是通过考虑由于啮合刚度,齿轮齿间摩擦和间隙引起的动载荷来研究的。动载荷是使用半确定的两自由度集总参数模型获得的。运用简化的雷诺技术来开发一种润滑模型,该模型能够处理任何潜在的“粗糙接触”。考虑到正齿轮几何参数的变化和Ree-Eyring流体行为。结果表明,摩擦激励对动态载荷的影响非常有限,因此对润滑性能的影响非常有限。齿隙显着影响动态负载,但对最小薄膜厚度的影响有限。由于压力和负载的直接关系,最大压力随反冲值的增加而增加。

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