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New methodology to define roller geometry on power bearings

机译:在动力轴承上定义滚子几何形状的新方法

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摘要

This article presents new tools developed to improve the geometrical corrections required on roller bearings of Helicopter gearboxes suffering from heavy deflection. A complex non-linear finite element model of the whole gearbox is firstly implemented to identify the deflection of inner and outer raceways under operational loads. The computed misalignment is then used as an input to predict and check the contact pressure edge effects occurring in the contact area and iteratively optimize the roller shape. Several approaches are tested based either on Boussinesq's potential theory or on specific FEM calculations. They permit increasing the service life of the bearings while reducing the overall gearbox development lead-time. (C) 2016 CIRP.
机译:本文介绍了开发的新工具,用于改善遭受严重偏斜的直升机齿轮箱的滚动轴承所需要的几何校正。首先实现了整个变速箱的复杂非线性有限元模型,以识别在运行载荷下内,外滚道的挠度。然后将计算出的未对准度用作输入,以预测和检查在接触区域中发生的接触压力边缘效应,并迭代地优化辊的形状。根据Boussinesq的势能理论或特定的FEM计算,测试了几种方法。它们可以延长轴承的使用寿命,同时减少整个变速箱开发的前置时间。 (C)2016 CIRP。

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