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| 1 | 鼠笼弹性支承刚度的数值仿真及影响因素研究显示文摘为了能准确获得鼠笼弹性支承的刚度特性,对鼠笼刚度进行了理论分析、数值仿真和试验测试研究。首先,对鼠笼进行了网格无关性检验,研究表明,鼠笼条网格和鼠笼条根部圆倒角网格对鼠笼刚度计算结果影响明显。其次,研究了外力加载方式对鼠笼刚度的影响,研究表明,在不考虑轴承建模时,不同的外力加载方式会使得鼠笼承力端产生不同程度的形变而影响鼠笼的刚度;考虑轴承建模时,外力加载方式对鼠笼刚度的影响减小,且数值仿真结果趋近于通过刚性域加载得到的鼠笼刚度。最后,设计并搭建了鼠笼刚度试验测试平台,得到了鼠笼刚度的试验值,验证了数值仿真的正确性及合理性。 | 周海仑 曹刚毅 冯祚崐 闫玉奇 尹训彦 | 2024 | 郑州航空工业管理学院学报2024,42,1: | 0 |
| 2 | Multi-blade rubbing characteristics of the shaft-disk-blade-casing system with large rotation显示文摘Blade rubbing faults cause detrimental impact on the operation of aeroengines. Most of the existing studies on blade rubbing in the shaft-disk-blade-casing(SDBC) system have overlooked the elastic deformation of the blade, while some only consider the whirl of the rotor, neglecting its spin. To address these limitations, this paper proposes a dynamic model with large rotation for the SDBC system. The model incorporates the spin and whirl of the rotor, enabling the realistic reproduction of multiblade rubbing faults. To verify the accuracy of the SDBC model with large rotation and demonstrate its capability to effectively consider the rotational effects such as the centrifugal stiffening and gyroscopic effects, the natural characteristics and dynamic responses of the proposed model are compared with those obtained from reported research and experimental results. Furthermore, the effects of the rotating speed, contact stiffness,and blade number on the dynamic characteristics of the SDBC system with multi-blade rubbing are investigated. The results indicate that the phase angle between the rotor deflection and the unbalance excitation force increases with the increasing rotating speed,which significantly influences the rubbing penetration of each blade. The natural frequency of the SDBC system with rubbing constrain can be observed in the acceleration response of the casing and the torsional response of the shaft, and the frequency is related to the contact stiffness. Moreover, the vibration amplitude increases significantly with the product of the blade number under rubbing, and the rotating frequency approaches the natural frequency of the SDBC system. The proposed model can provide valuable insight for the fault diagnosis of rubbing in bladed rotating machinery. | Zhiyuan WU Linchuan ZHAO Han YAN Ge YAN Ao CHEN Wenming ZHANG | 2024 | Applied Mathematics and Mechanics(English Edition)2024,45,1: | 0 |
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