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Investigation of the favorable conditions to apply the combination resonances approach for crack detection purposes

机译:对应用组合共振方法进行裂缝检测目的的有利条件的调查

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摘要

Various structural health monitoring methods were recently applied to fault diagnosis of rotating machinery, in which vibration response-based techniques demonstrated to be well adapted for different scenarios. However, only severe cracks are detected when most of such techniques are applied. Thus, innovative methods are proposed to identify the existence of incipient cracks in rotating shafts. In a previous contribution, the combination resonance approach for crack identification purposes was presented. This method is based on the application of additional forces at combination frequencies along with a heuristic optimization method to identify crack signatures in the vibration responses of the rotor. In the present work, the best conditions to apply the combination resonance approach are investigated in terms of the amplitude and frequency of the so-called diagnostic force. The vibration responses and phase angles of a cracked rotor were determined by using the harmonic balance technique. The FLEX approach is used to model the crack. Numerical simulations were performed using the finite element model of a horizontal rotor.
机译:最近应用各种结构健康监测方法对旋转机械的故障诊断,其中基于振动响应的技术表明,适应不同的场景。然而,当大多数这样的技术应用时,才检测到严重的裂缝。因此,提出了创新的方法来识别旋转轴中的初始裂缝的存在。在以前的贡献中,提出了用于裂缝识别目的的组合共振方法。该方法基于在组合频率下携带额外力的应用以及启发式优化方法,以识别转子振动响应中的裂缝签名。在本作的工作中,根据所谓的诊断力的幅度和频率来研究应用组合共振方法的最佳条件。通过使用谐波平衡技术确定裂缝转子的振动响应和相位角。 Flex方法用于模拟裂缝。使用水平转子的有限元模型进行数值模拟。

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