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基于叶尖间隙测量的航空发动机转子振动预测
引用本文:沈响响,陈果,胡伟,李成刚.基于叶尖间隙测量的航空发动机转子振动预测[J].航空动力学报,2022,37(12):2840-2850.
作者姓名:沈响响  陈果  胡伟  李成刚
作者单位:1.南京航空航天大学 民航学院,南京 210016
基金项目:国防科工局中国航发自主创新专项(ZZCX-2018-013); 国家科技重大专项(J2019-Ⅳ-004-0071)
摘    要:基于叶尖间隙测量,进行了航空发动机转子振动位移和轴心轨迹的预测方法研究,建立于叶尖间隙变化动态模型,对叶尖间隙变化进行了数值计算以及有限元仿真,并针对带机匣的转子试验器进行了试验研究。采用电涡流传感器对相互垂直的两个测点进行叶尖间隙测试;通过Hilbert-Huang变换对信号进行处理,提取其低频分量;再利用互相关分析方法提取出转频信号,并由转频分量绘制了轴心轨迹;与直接测得同截面转轴上的轴心轨迹相比,两者的吻合度达到90%以上,试验结果充分表明了研究方法的正确有效性,为通过叶尖间隙测试间接获取转子振动位移提供了有效的技术途径。 

关 键 词:叶尖间隙    Hilbert-Huang变换    互相关分析方法    轴心轨迹    转子振动
收稿时间:2022-04-11

Vibration prediction of aero-engine rotor based on tip clearance measurement
Institution:1.College of Civil Aviation, Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China2.College of General Aviation and Flight, Nanjing University of Aeronautics and Astronautics,Liyang Jiangsu 213300,China3.Shenyang Engine Research Institute, Aero Engine Corporation of China,Shenyang 110015,China
Abstract:Based on the measurement of tip clearance, the prediction method of aeroengine rotor vibration displacement and axis trajectory was studied. Based on the dynamic model of tip clearance change, the numerical calculation and finite element simulation of tip clearance change were carried out, and the experimental research was carried out for the rotor tester with casing. The tip clearance of two measuring points perpendicular to each other was measured by eddy current sensor. The signal was processed by Hilbert Huang transform to extract its low-frequency component. The cross-correlation analysis method was used to extract the frequency conversion signal, and the axis trajectory was drawn from the frequency conversion component. Compared with the direct measurement of the axis trajectory on the rotating shaft of the same section, the coincidence degree of these two was more than 90%. The test results fully showed the correctness and effectiveness of the research method, providing an effective technical way to indirectly obtain the rotor vibration displacement through the blade tip clearance test. 
Keywords:
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