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A MODEL TO PREDICT POCKETING POWER LOSSES IN SPIRAL BEVEL GEARS

机译:预测螺旋锥齿轮中的袋装功率损耗的模型

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摘要

A computational methodology is proposed for prediction of power losses due to pocketing (pumping or squeezing) of oil at the mesh interface of spiral bevel gears. The model employs an existing cutting simulation procedure to define surface geometries of the gears through face-milling and face-hobbing processes. A novel hypoidal discretization method is proposed to define pocket volumes between meshing gear teeth along circumferential and face width directions. An existing fluid mechanics formulation, utilizing principles of conservation of mass, momentum and energy, is used to compute the load-independent (spin) power losses due to pocketing of the medium in the gear mesh interface. A simulation of aerospace applications is presented to highlight the effects of lubrication conditions, on pocketing power losses.
机译:提出了一种计算方法,用于预测由于螺旋锥齿轮的网状界面处的袋装(泵送或挤压)的功率损耗。该模型采用现有的切割模拟程序来通过面铣和面向履带工艺来限定齿轮的表面几何形状。提出了一种新颖的双波纹离散化方法,以沿着周向和面宽度方向在啮合齿轮齿之间限定袋体积。使用质量,动量和能量保护原理的现有流体力学制剂用于计算由于齿轮网界面中介质的凹陷而在载荷无关的(旋转)功率损耗。提出了一种仿真航空航天应用,以突出润滑条件的影响,润滑条件在零用力损失上。

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