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Research on Automatic Test System of Engine Blade Natural Frequency
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作者 LU Yonghua LIU Jingjing +2 位作者 YANG Haibo HUANG Chuan MA Zhicheng 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2024年第4期476-487,共12页
Blades are one of the important components on aircraft engines.If they break due to vibration failure,the normal operation of the entire engine will be offected.Therefore,it is necessary to measure their natural frequ... Blades are one of the important components on aircraft engines.If they break due to vibration failure,the normal operation of the entire engine will be offected.Therefore,it is necessary to measure their natural frequency before installing them on the engine to avoid resonance.At present,most blade vibration testing systems require manual operation by operators,which has high requirements for operators and the testing process is also very cumbersome.Therefore,the testing efficiency is low and cannot meet the needs of efficient testing.To solve the current problems of low testing efficiency and high operational requirements,a high-precision and high-efficiency automatic test system is designed.The testing accuracy of this system can reach ±1%,and the testing efficiency is improved by 37% compared to manual testing.Firstly,the influence of compression force and vibration exciter position on natural frequency test is analyzed by amplitude-frequency curve,so as to calibrate servo cylinder and fourdimensional motion platform.Secondly,the sine wave signal is used as the excitation to sweep the blade linearly,and the natural frequency is determined by the amplitude peak in the frequency domain.Finally,the accuracy experiment and efficiency experiment are carried out on the developed test system,whose results verify its high efficiency and high precision. 展开更多
关键词 BLADE vibration failure natural frequency automatic test system
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透平膨胀机叶轮故障处理分析 被引量:1
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作者 徐广磊 郭宏伟 《河南科技》 2021年第9期47-49,共3页
外界扰动力是一种激励源,也是影响叶轮振动的重要因素。本文结合一起典型的叶轮叶片断裂事故,分析叶轮叶片的自振频率与激励源所产生的激振力频率相耦合时所产生的共振影响,研究其对叶轮带来的损害。通过改变叶片的自振频率或者激励源... 外界扰动力是一种激励源,也是影响叶轮振动的重要因素。本文结合一起典型的叶轮叶片断裂事故,分析叶轮叶片的自振频率与激励源所产生的激振力频率相耦合时所产生的共振影响,研究其对叶轮带来的损害。通过改变叶片的自振频率或者激励源等方式,人们可以成功处理此类故障。 展开更多
关键词 膨胀叶轮 扰动力 叶片自振频率 激励源
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