首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Transient and steady state behaviour of elasto-aerodynamic air foil bearings, considering bump foil compliance and top foil inertia and flexibility: A numerical investigation
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Transient and steady state behaviour of elasto-aerodynamic air foil bearings, considering bump foil compliance and top foil inertia and flexibility: A numerical investigation

机译:弹性气动空气箔轴承的瞬态和稳态行为,考虑凸块箔合规性和顶部箔惯性和灵活性:数值调查

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This work gives a theoretical contribution to the problem of modelling air foil bearings considering large sagging effects in the calculation of the non-linear transient and steady state response of a rigid rotor. This paper consists of two parts: the development of a miltiphysics model of the air foil bearing, and a numerical parameter study of a rigid journal supported in an air foil bearing with a partially supported top foil. The mathematical model of the air foil bearing is centred around the finite element models of both the air film and the top foil structure. These finite element models utilise two types of eight-node isoparametric elements. The rotor is modelled as a rigid body without rotational inertia, i.e. as a journal. The bump foil is included via a bilinear version of the simple elastic foundation model. This paper introduces the bilinear simple elastic foundation model, which combined with the top foil structure model, enables a separation of the top foil and the bump foil. A phenomenon associated within areas of the top foil is where the aerodynamic pressure is sub-ambient. The parameter study investigates the performance of three air foil bearings with partially supported top foils and one air foil bearing with a fully supported top foil. The steady state responses of a journal supported by these air foil bearings are investigated for varied rotational speeds and journal unbalances as well as the top foil sagging in the unsupported area. The study reveals that sub-harmonic vibrations associated with a large journal unbalance can be eliminated by a proper design layout of the bump foil, i.e. placement of the unsupported area. The positive effect is attributed to equivalent shallow pockets' formed by the sagging top foil.
机译:这项工作对考虑到刚性转子的非线性瞬态瞬态和稳态响应的计算时,对考虑大的下垂效应进行大幅下垂效应来提供理论贡献。本文由两部分组成:开发空气箔轴承的米尔蒂卫星模型,以及用部分支撑的顶部箔支撑在空气箔轴承中的刚性轴颈的数值参数研究。空气箔轴承的数学模型围绕空气膜和顶部箔结构的有限元模型。这些有限元模型利用两种类型的八个节点等偶像元素。转子被建模为刚体而没有旋转惯性,即作为轴颈。凸块箔由简单的弹性基础模型的双线性版本包括。本文介绍了双线性简单弹性基础型号,与顶部箔结构模型相结合,可以分离顶部箔和凸块箔。在顶部箔的区域内的现象是空气动力学压力是亚环境的位置。该参数研究研究了三个空气箔轴承的性能,其具有部分支撑的顶部箔和一个空气箔轴承,其具有完全支撑的顶部箔。通过这些空气箔轴承支撑的轴颈的稳态响应进行了改变的转速和期刊的不平衡以及在不受支持的区域中下垂的顶部箔片。该研究表明,通过凸块箔的适当设计布局,可以消除与大轴外不平衡相关的副谐波振动,即放置不受支持的区域。积极效应归因于由下垂的顶部箔形成的等效浅口袋。

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