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Coupled bending-torsional vibration analysis of rotor with rub and crack

机译:转子碰摩裂纹的弯扭耦合振动分析

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Rotor-stator rub and fatigue crack of the shafts are two important rotor faults. They have detrimental effects on health and reliability of the rotating machinery. In this paper, modelling and vibration signature analysis of rotor with rotor-stator rub, transverse fatigue crack and unbalance is attempted. The rotor-stator interaction effects on the response of a rotor are investigated in the presence/absence of a transverse crack. The torsional vibrations are investigated for their sensitivity to rubbing using finite element model that also accounts for cross coupling of stiffness introduced due to crack. Due to the presence of both rotor-stator rub and transverse crack in a horizontal rotor, the system becomes highly nonlinear. The time localised rub excitations and nonlinear stiffness variation due to breathing of the crack influence the rotor response in both lateral and torsional modes and are explored extensively using Hilbert-Huang transform with the objective of unravelling some unique features of these faults that may be useful for fault identification.
机译:转子的定子-定子摩擦和疲劳裂纹是两个重要的转子故障。它们对旋转机械的健康和可靠性有不利影响。本文尝试进行定子静摩擦,横向疲劳裂纹和不平衡的转子建模和振动特征分析。在存在或不存在横向裂纹的情况下,研究了转子-定子相互作用对转子响应的影响。使用有限元模型研究了扭转振动对摩擦的敏感性,该模型也考虑了由于裂纹而引起的刚度的交叉耦合。由于水平转子中同时存在定子-定子摩擦和横向裂纹,因此系统变得高度非线性。由于裂纹的呼吸而引起的时间局部摩擦激励和非线性刚度变化会在横向和扭转模式下影响转子响应,并使用希尔伯特-黄(Hilbert-Huang)变换进行了广泛探索,目的是揭示这些断层的某些独特特征,这些特征可能对故障识别。

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