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A systematic second-order output spectrum based method for fault diagnosis with a local tuning approach

机译:基于系统的二阶输出频谱,具有局部调谐方法的故障诊断方法

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摘要

In order to diagnose potential serious and initial damages (loose bolts or fatigue cracks) in industrial structures more precisely, a systematic second-order output spectrum (SOOS) based method with a local tuning approach (LTA) is proposed in this article. In the novel method, structures with faults, material nonlinearities and nonlinear boundary conditions are represented by the Volterra series, and then a general ring type multi-degree-of-freedom (MDOF) model simulating nonlinearities as nonlinear restoring forces is built to describe the structures' behavior. With defined nonlinear fault features, two local damage indicators based on the SOOS and LTA are derived for diagnosing serious and initial faults in sequence. Results of experiments on a satellite-like structure with loose bolts show that the systematic SOOS based method can identify serious and initial bolt loosening faults more accurately. Thus, it can be more applicable for fault diagnosis in complex structures in practice. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了更精确地诊断工业结构中的潜在严重和初始损伤(松动螺栓或疲劳裂缝),在本文中提出了一种具有局部调谐方法(LTA)的系统的二阶输出频谱(SOO)的方法。在新的方法中,具有故障,材料非线性和非线性边界条件的结构由Volterra系列表示,然后将非线性的一般环形自由度(MDOF)模型模拟​​为非线性恢复力来描述结构的行为。通过定义的非线性故障特征,导出了两个基于SOOS和LTA的局部损坏指示器,以依次诊断严重和初始故障。用松动螺栓的卫星状结构实验结果表明,基于系统的SOOS的方法可以更准确地识别严重和初始螺栓松动断层。因此,在实践中可以更适用于复杂结构中的故障诊断。 (c)2020 elestvier有限公司保留所有权利。

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