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首页> 外文期刊>International Journal of Mechanical Sciences >Coupled bending torsional vibrations of non-ideal energy source rotors under non-stationary operating conditions
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Coupled bending torsional vibrations of non-ideal energy source rotors under non-stationary operating conditions

机译:在非静止操作条件下耦合非理想能源转子的弯曲扭转振动

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摘要

In the automotive industry, high-speed elecrical engines will be used in a very large range of speeds, leading to non-stationary operating conditions. Thus more critical speeds may be crossed a very large number of times during the whole life-time of the engine. Therefore, estimating accurately the non-stationary loads and deformations during these transient regimes is of first importance for a correct design. In this paper, we propose a novel dynamic model for unbalanced high-speed rotors with less restrictive assumptions. The finite element model accounts for flexion, torsion and traction-compression leading to six degrees of freedom on each node. The non-ideal energy source is considered and the rotor is running under non-stationary operating conditions and crossing supercritical speeds. The angular displacement is defined in such a way that it combines simultaneously the intrinsic nominal rotation and the torsional deformation. The comparison of the proposed model with other models under different assumptions on the energy source and on the bending-torsion coupling shows that our model offers more accurate prediction for both lateral and torsional vibrations when crossing critical speeds. The ability of the proposed model to account for the mutual influence between lateral and torsional behavior is highlighted and is exhibited through time-frequency analyses.
机译:在汽车行业中,高速电子发动机将用于非常大的速度,导致非静止的操作条件。因此,在发动机的整个寿命期间,可以在发动机的整个寿命期间跨越大量临界速度。因此,在这些瞬时制度期间精确地估计非静止载荷和变形是正确的设计的首重重要性。在本文中,我们提出了一种新的动态模型,用于不平衡高速转子,具有较少限制的假设。有限元模型用于屈曲,扭转和牵引压缩,导致每个节点上的六个自由度。考虑非理想能源,并且转子在非静止操作条件下运行并交叉超临界速度。角位移以这样的方式定义,使其同时结合固有的标称旋转和扭转变形。在能源和弯曲扭转​​耦合下不同假设下提出模型与其他模型的比较表明,在交叉临界速度时,我们的模型对横向和扭转振动的更准确的预测。突出显示所提出的模型的能力,以通过时频分析表现出横向和扭转行为之间的相互影响。

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