首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A novel amplitude-independent crack identification method for rotating shaft
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A novel amplitude-independent crack identification method for rotating shaft

机译:一种旋转轴的新型振幅裂缝识别方法

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摘要

The shaft crack is one of the most common and serious malfunctions in rotating machines and may lead to catastrophic failure if undetected in time. However, the conventional crack identification methods are amplitude-dependent and thus can be only applied to the crack identification under some specific conditions. In this paper, a novel amplitude-independent crack identification method (AiCIM) is significantly proposed to eliminate the amplitude-dependent property and promote the effectiveness of the crack identification. First and foremost, a fast time-varying vibration phenomenon of the cracked-rotor system is newly found. Through the theoretical analysis, the fast time-varying vibration mechanism of the cracked-rotor system is revealed for the first time. It is indicated that the vibration signal of the cracked-rotor system is modulated by the fast-oscillated instantaneous frequency, which is independent of the amplitude of the vibration signal. AiCIM is then put forward on the basis of the fast time-varying vibration mechanism and matching time-frequency analysis theory. Specially, the amplitude-independent instantaneous frequency of the vibration signal is extracted via the matching time-frequency analysis theory, and the time-frequency representation energy-concentration is enhanced along the instantaneous frequency trajectory. Since instantaneous frequency of the vibration signal carrying the critical fault information is employed to identify the shaft crack, AiCIM is only relevant to the phase of the vibration signal, i.e. amplitude independent. As a result, AiCIM successfully eliminates the dependence on the signal amplitude and is more sensitive to the weak crack. Both the numerical and experimental results demonstrate that AiCIM behaves best to extract the fast-oscillated feature of the fast time-varying vibration induced by the shaft crack in comparison with other time-frequency analysis methods, and AiCIM effectively suppress the effect of noises on the instantaneous frequency estimation because of its amplitude-independent property. Influences of the crack parameters on the nonlinear instantaneous frequency are finally discussed with AiCIM. This study provides a potential way to the online crack identification.
机译:轴裂缝是旋转机器中最常见和最严重的故障之一,如果未被发现,可能会导致灾难性的故障。然而,传统的裂缝鉴定方法是幅度依赖性,因此可以仅在一些特定条件下施加到裂缝识别。本文显着提出了一种新颖的独立式裂缝识别方法(AICIM)以消除幅度依赖性性质,促进裂纹鉴定的有效性。首先,新发现了裂缝转子系统的快速时变振动现象。通过理论分析,首次揭示了裂纹转子系统的快速时变振动机构。表示,裂缝转子系统的振动信号由快速振荡瞬时频率调制,其与振动信号的幅度无关。然后基于快速时变振动机制和匹配的时频分析理论提出AICIM。特别地,通过匹配的时频分析理论提取振动信号的幅度无关瞬时频率,并且沿瞬时频率轨迹增强了时频表示能量浓度。由于采用承载关键故障信息的振动信号的瞬时频率来识别轴裂纹,因此AICIM仅与振动信号的相位相关,即幅度独立。结果,AICIM成功消除了对信号幅度的依赖性,并且对弱裂纹更敏感。数值和实验结果表明,与其他时频分析方法相比,AICIM的表现最佳地提取由轴裂纹诱导的快速时变振动的快速振荡特征,并且AICIM有效地抑制了噪声对噪声的影响由于其振幅无关的属性,瞬时频率估计。最后用AICIM讨论了裂缝参数对非线性瞬时频率的影响。本研究为在线裂缝识别提供了一种潜在的方法。

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