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首页> 外文期刊>International journal of structural integrity >On the damages detection in aluminium beam using Hilbert-Huang transformation
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On the damages detection in aluminium beam using Hilbert-Huang transformation

机译:基于希尔伯特-黄变换的铝梁损伤检测

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Purpose - Continuous on-line monitoring of structural integrity are in priority in many engineering fields such as aerospace, automotive, civilian structures, and industrial applications. Of all these possible applications, the aerospace industry has one of the highest payoffs. Possible damage can lead to catastrophic failures and costly inspections. On the other hand, processing a signal consists of important feature from sensors measurements to reach the considered target. Typically, the sensors translate a physical phenomenon from one or many sources in temporal variations or in spatial variations. The purpose of this paper is to investigate damages, in terms of suddenly screw removal or in a small cut, detection in vibrating (clamped-free) aluminum beam structures using the empirical mode decomposition (EMD) method along with the Hilbert-Huang transformation (HHT). The perspective is to identify very small defects in real aircraft structures. Design/methodology/approach - The proposed method deals with a new time-frequency signal processing analysis tool, for damages detection in a vibrating plate. An experimental test ring is used in order to excite a clamped-free aluminum plate. Two types of excitations are used. The first one is a harmonic excitation and the second one is a random excitation provided by an impact hammer. A hole and its filled by a screw with mass of 0.2 g, and a small cut is created, simulating a cut creation, are produced afterword, and the HHT is used in order to arise the developed oscillations, and to reveal hidden reflections in the data and to provide a high-resolution energy-time frequency spectrum. Findings - The major finding was the clear amplitude increment either for screw removal or for cut creation, using the EMD process with the HHT, giving the possibility to detect them. Originality/value - The use of the HHT to detect, using an experimental procedure, two different defects: a suddenly screw removal and a cut creation, in a clamped-free beam, excited by non-stationary and non-linear signals.
机译:目的-在许多工程领域(例如航空航天,汽车,民用建筑和工业应用)中,对结构完整性进行连续在线监视是当务之急。在所有这些可能的应用中,航空航天业的收益最高。可能的损坏会导致灾难性故障和昂贵的检查。另一方面,处理信号包括传感器测量值的重要特征,以达到所考虑的目标。通常,传感器以时间变化或空间变化从一个或多个源转换物理现象。本文的目的是使用经验模态分解(EMD)方法以及Hilbert-Huang变换(以下简称EMD)研究振动(无夹钳)铝梁结构检测中的损坏(无论是突然取下螺钉还是小切口)( HHT)。透视图是确定实际飞机结构中的很小缺陷。设计/方法/方法-所提出的方法涉及一种新的时频信号处理分析工具,用于检测振动板上的损伤。为了激发无夹紧的铝板,使用了一个试验环。使用两种类型的激励。第一个是谐波激励,第二个是冲击锤提供的随机激励。产生一个孔,并用质量为0.2 g的螺钉填充,并产生一个小切口,模拟切口的产生,产生后遗症,并使用HHT产生所产生的振动,并揭示出其内部的隐藏反射。数据并提供高分辨率的能量时间频谱。发现-主要发现是使用HHT的EMD工艺,无论是螺钉拆除还是切割切口,振幅明显增加,从而有可能对其进行检测。独创性/价值-通过实验程序使用HHT来检测两个不同的缺陷:在非固定光束中突然被螺钉去除和在非固定和非线性信号激发下产生的切口。

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