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Evaluation Method for Vibration Measurement on Casing in Aeroengine: Theoretical Analysis and Experimental Study

机译:航空发动机壳体振动测量评价方法:理论分析与实验研究

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The vibration measurement location is the basis for effective monitoring of aeroengine vibration conditions. Measurement locations need to reflect the vibration of the rotor sufficiently, while complex structures of the aeroengine bring many excitation sources. This paper presents an evaluation methodology for vibration measurement on casing in the aeroengine. A number of indexes are defined to quantify and characterize the vibration measurement ability of main measurement locations on casing for rotor vibration. A dynamic model of a dual-rotor-casing system is established according to the support structure of a certain type of aeroengine. By means of the introduced evaluation method, the vibration relation between rotors and the main vibration measurement sections is analyzed. Response characteristics and performance orders of measurement sections are given. The rationality of theoretical results is sound verified by experiments on a designed pneumatic-driven double-rotor-casing test bench. The best measured vibration section is consistent with the actual on-board vibration section of the engine, which further demonstrates the effectiveness of the evaluation method. The research results can provide a basis for the selection and optimization of vibration measurement locations and fault diagnosis in the aeroengine. Furthermore, the application of this method is not limited to aeroengine vibration analysis and sensor measurement location optimization, but will be useful for vibration analysis of other rotating machinery.
机译:振动测量位置是有效监测航空发动机振动条件的基础。测量位置需要充分地反映转子的振动,而航空发动机的复杂结构带来了许多励磁源。本文介绍了航空发动机壳体振动测量的评价方法。定义了许多索引来量化和表征主测量位置的振动测量能力,用于转子振动。根据一定类型的航空发动机的支撑结构建立双转子套管系统的动态模型。通过引入的评估方法,分析转子与主振动测量部分之间的振动关系。给出了响应特征和测量部分的性能订单。理论结果的合理性是通过在设计的气动驱动的双转子壳体试验台上进行实验验证的声音。最佳测量的振动部分与发动机的实际车载振动部分一致,进一步展示了评价方法的有效性。研究结果可以为航空发动机中的振动测量位置和故障诊断提供依据。此外,该方法的应用不限于航空发动机振动分析和传感器测量位置优化,但对于其他旋转机械的振动分析将是有用的。

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