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Study of Bearing Modelling in the Helicopter Gearbox

机译:直升机变速箱轴承建模研究

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In trying to incessantly reduce gearboxes weight, designers can negatively impact the service reliability, particularly in the aeronautic industry, where a weight reduction is often linked with stiffness decrease. Looking for weight savings, gearbox casings are classically made of magnesium or aluminium alloy. In addition, helicopter gearbox design is included the integration of several functions within the same part (like the shafts which gather one or more gears, splines and integrated bearings raceways). These particularities in the design are requiring some specific methodologies for Power Transmission bearing modelling. In this paper, a comparison between tests and simulations results of the aforementioned gearboxes is presented. The first section of the article focuses on the helicopter gearbox description and associated finite elements modelling. Then, the second section provides a comparison between the experimental observations with the results of both FEM simulation and classical analytical simulation. This comparison demonstrates the interest of using FEM simulation to analyze gearboxes behaviour.
机译:在试图不断地减少齿轮箱重量时,设计人员可以对服务可靠性产生负面影响,特别是在航空工业中,其中重量减轻通常与刚度减小相关。寻找体重节省,齿轮箱外壳经典由镁或铝合金制成。此外,直升机齿轮箱设计包括在同一部分内的多个功能的集成(如轴收集一个或多个齿轮,花键和滚滚道)。这些设计中的这些特殊性需要一些用于电力传输轴承建模的特定方法。在本文中,提出了上述齿轮箱的试验和模拟结果的比较。文章的第一部分重点介绍直升机变速箱描述和相关的有限元建模。然后,第二部分提供了对PEM模拟和经典分析模拟的结果的实验​​观察结果的比较。该比较表明使用有限元模拟来分析变速箱行为的兴趣。

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