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Bending-torsional coupled vibration of a rotor-bearing-system due to blade-casing rub in presence of non-uniform initial gap

机译:由于叶片 - 壳体摩擦存在于非均匀初始间隙的情况下,转子 - 轴承系统的弯曲耦合振动

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In most of investigations on rub, the initial gap between blades and casing is considered to be in uniform distribution around the circumstance. Actually, due to several factors, such as flight loads, thermal loads and coating inhomogeneity, the initial gap may be non-uniform. The aim of this paper is to gain insight into bending-torsional coupled vibration of a dynamic model of an aero engine subjected to blade-casing rub in presence of non-uniform initial gap. At first, a rotor-bearing-system is modelled, in which a non-uniform gap exists in on location or multiple locations. Utilizing the impact experiment performed at a rotor test rig, the Lankarani-Nikravesh model is proved to be able to reveal the impact mechanism between blades and casing under a non-uniform initial gap. In the tangential direction, the Coulomb model is applied to describe the friction characteristics at the contact points. After that the bending-torsional coupled vibration of the system is solved numerically and the response in the presence of a non-uniform gap is determined. Additionally, the effects of the features of the non-uniform initial gap are examined. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在大多数对摩擦的调查中,叶片和外壳之间的初始间隙被认为是围绕环境均匀的分布。实际上,由于若干因素,例如飞行载荷,热负荷和涂层不均匀性,初始间隙可能是不均匀的。本文的目的是深入了解在非均匀初始间隙存在下经受叶片壳体的Aero发动机的动态模型的弯曲耦合振动。首先,建模转子系统,其中在位置或多个位置存在不均匀的间隙。利用在转子试验台上进行的冲击实验,证明了LankArani-Nikravesh模型能够在不均匀的初始间隙下揭示叶片和壳体之间的冲击机构。在切向方向上,应用库仑模型来描述接触点处的摩擦特性。之后,在数值上求解系统的弯曲耦合振动,确定在存在不均匀间隙的情况下的响应。另外,检查非均匀初始间隙的特征的效果。 (c)2019年elestvier有限公司保留所有权利。

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