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Finite element analysis of shafts with lands and holes under torque loading using cyclic symmetry

机译:循环载荷下扭矩载荷下带凸台和孔的轴的有限元分析

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The development of aeroengines with increasing thrust capabilities requires the development of shaft technology to deal with this greater power transmission, while still restricting their dimensions and weight. One important way of achieving this is by reducing the core size of the engine. The diameter of a low-pressure driveshaft is one of the main factors determining the overall size of the core. A key design objective is to reduce the diameter while at least maintaining the same torque capacity. This requires the optimization of the geometry of individual stress-raising features. This paper focuses on one of these, the holes that allow the transfer of sealing and cooling air around the engine. A series of parametric studies is presented, which show the interactions between the holes, the reinforcement lands, and the adjacent plain shaft sections under torque loading. These use a cyclic symmetry-based modelling approach to reduce computational expense. Guidelines are proposed for selecting the thickness and axial length of the lands.
机译:发展具有更大推力的航空发动机需要开发轴技术来应对这种更大的动力传递,同时还要限制其尺寸和重量。实现这一目标的一种重要方法是减小引擎的核心尺寸。低压传动轴的直径是决定型芯整体尺寸的主要因素之一。一个关键的设计目标是减小直径,同时至少保持相同的扭矩容量。这需要优化各个应力增大特征的几何形状。本文着眼于这些孔之一,这些孔允许在发动机周围传递密封和冷却空气。提出了一系列参数研究,这些研究显示了在扭矩载荷下孔,加固平台和相邻的普通轴段之间的相互作用。它们使用基于循环对称性的建模方法来减少计算费用。提出了选择平台厚度和轴向长度的指南。

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