Propagation characteristics of acoustic emission signals in engine hollow supports

Zhenquan Li, Zhengcai Guo, Guoan Yang
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引用次数: 1

Abstract

Most of the supports in the engine are hollow structures. The hollow supports are the necessary paths for the internal acoustic emission (AE) signals to propagate to the shell. In this paper, the variation trend of amplitude and energy of AE signals with different frequencies in the propagation process of hollow supports are studied by numerical simulation and experiment. The amplitude and energy attenuation coefficients are proposed to quantify the propagation characteristics of signals. Through the pencil lead-break experiments, the spectrum analysis and the time-frequency domain analysis based on wavelet transform (WT) of AE signals in the propagation process are carried out. The results show that the tail end of the hollow support can converge and enhance the signals, and validated through experiments. This study demonstrates the propagation characteristics of AE signals in the hollow support structure, which helps to understand the signal propagation in complex structures and optimize the placement of AE sensors to improve the received signal strength.
发动机空心支架中声波发射信号的传播特性
发动机中的大部分支架都是空心结构。空心支架是内部声发射(AE)信号向外壳传播的必经之路。本文通过数值模拟和实验研究了空心支架传播过程中不同频率 AE 信号的振幅和能量的变化趋势。提出了幅值和能量衰减系数来量化信号的传播特性。通过铅笔断铅实验,对传播过程中的 AE 信号进行了频谱分析和基于小波变换 (WT) 的时频域分析。结果表明,空心支架的尾端可以收敛和增强信号,并通过实验进行了验证。本研究展示了 AE 信号在空心支撑结构中的传播特性,有助于理解信号在复杂结构中的传播,并优化 AE 传感器的布置以提高接收信号强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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