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Effects of Twist Angle on Rubbing Induced Vibration Responses of Blade

机译:扭斜对叶片摩擦振动响应的影响

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In rotating machinery, such as axial-flow compressor, gas turbine and aero-engine, the small clearance between the rotational blade and casing can increase the system efficiency, but may also lead to the rubbing between the blade and casing. The severe rubbing can bring about damages of the blade or casing. In this paper, two mathematical models of blade: a uniform-thickness shell (UTS) model and a uniform-thickness-twisted-shell (UTTS) model, are established to compare the effects of the blade twist angle on the rubbing-induced vibration responses. The natural characteristics obtained from the two models are compared. Dynamic behaviors obtained from two models considering the combined effects of centrifugal force and aerodynamic force are also compared. Moreover, considering the effects of the misalignment angle and radial misalignment, the transient responses caused by rubbing using the two models are discussed. The results exhibit that the resonance in the radial direction cannot be observed when the blade twist angle is ignored (using UTS model). However, this resonance can be observed using the UTTS model, i.e., taking the influences of twist angle into account.
机译:在旋转机械,诸如轴流式压缩机,燃气涡轮机和航空发动机,旋转叶片和壳体之间的微小间隙可以提高系统的效率,而且还可能导致叶片和壳体之间的摩擦。严重的摩擦会导致叶片或外壳的损坏。在本文中,刀片的两个数学模型:均匀厚度的壳(UTS)模型和均匀厚度的捻 - 壳(UTTS)模型,建立以比较叶片扭转角的在摩擦引起的振动的影响响应。从两个模型中获得的自然特性进行了比较。从两个模型考虑的离心力和空气动力的综合作用得到动态行为进行了对比。此外,考虑到未对准角度和径向未对准的影响,瞬态响应因使用两个模型进行了讨论摩擦。结果显示出,当叶片扭转角(使用UTS模型)忽略在径向方向的共振不能被观察到。然而,该谐振可使用UTTS模型,即,取扭曲角的影响考虑在内来观察。

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