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赵广
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教授   博士生导师   硕士生导师

任职 : 《推进技术》、《航空动力学报》青年编委,中国振动工程学会转子动力学专业委员会常务理事

性别: 男

毕业院校: 哈尔滨工业大学

学位: 博士

所在单位: 能源与动力学院

学科: 动力机械及工程. 流体机械及工程

办公地点: 大连理工大学西部校区能动学院621房间

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超静定转子系统不对中动力学的理论与实验研究

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发表时间: 2021-01-01

发表刊物: Zhendong yu Chongji/Journal of Vibration and Shock

所属单位: 能源与动力学院

卷号: 40

期号: 16

页面范围: 159-165 and 203

ISSN号: 1000-3835

摘要: Misalignment of a multi-support rotor system is one of the most common fault conditions. A low-pressure rotor system of aero-engine uses spline joint for connecting, which constitutes statically an indeterminate rotor system (SIRS) with three elastic supports. The inherent defect of SIRS is extremely sensitive to misalignment. In this paper, an analytical dynamic model of SIRS was derived using a combination of the force method and the virtual work principle about the D'Alembert principle under alignment and misalignment of turbine back support conditions, and misalignment dynamic loads were detailed derived to determine the natural frequency and vibration responses. In this paper, the aeroengine hyperstatic rotor system was taken as the research object, and the analytical model derivation and experimental verification were carried out for its complete alignment and tail fulcrum misalignment and both theoretical and experimental results agree well. As a result, with the increase of misalignment, frequency multiplication components occur, 2X component and increase linearly, the orbits change from ellipse to inside "8" shape. Due to the structural particularity of SIRS, the appearance of TBS misalignment which generates the dynamic external excitations, makes the response of low-pressure turbine more severely. © 2021, Editorial Office of Journal of Vibration and Shock. All right reserved.

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