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Topology Optimization and Analysis of Static Transmission Error in Lightweight Gears

机译:轻型齿轮静态传输误差拓扑优化与分析

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In this paper, the influence of gear-body lightweighting on the static transmission error (STE) for a pair of spur gears is investigated by using the Finite Element (FE) method. The transmission error, in fact, is recognized as one of the main internal excitation sources in a mechanical transmission and the minimization of its variability along the meshing cycle is considered as a design target to improve the N&V behaviour of the full transmission. The case study analysed in this paper is derived from a gearbox typically used in helicopter transmissions. The FE model of three different variants of the same gear pair, one solid model and two lightweight models, are generated and analysed by non-linear FE static simulations. By deriving the STE curves for each of the gear pairs, the impact of the increased flexibility caused by material removal in the two lightweight models is investigated.
机译:本文采用有限元(Fe)法研究了一对旋转齿轮的静态传输误差(STE)的齿轮体轻量值的影响。实际上,传输错误被识别为机械传输中的主要内部激励源之一,并且沿着啮合周期的可变性最小化被认为是改善完全传输的N&V行为的设计目标。本文分析的情况研究来自通常用于直升机传输的齿轮箱。通过非线性FE静态模拟产生并分析三种不同齿轮对的三种不同变体的FE模型,一个固体模型和两个轻质模型。通过为每个齿轮对的STE曲线衍生,研究了由两种轻质模型中材料去除引起的增加的灵活性的影响。

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