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ROLL-YAW COUPLED VIBRATION OF THE ROTOR SYSTEM WITH BREATHING CRACK AND UNBALANCE MASS

机译:带有裂纹和不平衡质量的转子系统的偏航耦合振动

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This paper develops a new finite element rotor model with consideration of the coupling effect of rolling and yawing motion. The crack model is built using released strain energy concept in fracture mechanics. The nonlinear breathing behavior of cracks on the rotor shaft is simulated through Zero Stress Intensity Factor (SIF) method. The vibration responses of rotor system are solved by Newmark Integration method for both nominal and damaged system. With the yawing motion, the additional force will be induced for beam element and center disk. Incorporated with breathing crack model, the breathing behavior of crack is comprehensively studied in terms of the rolling rate, yawing rate and yawing acceleration. The clear understanding of crack breathing behavior is beneficial for the damage detection and health monitoring of the rotor system.
机译:考虑滚动和横摆运动的耦合效应,本文开发了一种新的有限元转子模型。裂缝模型是使用断裂力学中释放的应变能概念建立的。通过零应力强度因子(SIF)方法模拟了转子轴上裂纹的非线性呼吸行为。转子系统的振动响应通过Newmark积分方法解决了标称和受损系统的问题。随着偏航运动,梁元件和中心盘会产生额外的力。结合呼吸裂纹模型,从滚动速率,横摆率和横摆加速度方面全面研究了裂纹的呼吸行为。清楚地了解裂纹的呼吸行为对于转子系统的损伤检测和健康监测很有帮助。

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