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Feasibility study of a multi-parameter probability of detection formulation for a Lamb waves-based structural health monitoring approach to light alloy aeronautical plates

机译:基于Lamb Wave的轻合金航空板结构健康监测方法的多参数概率检测公式的可行性研究

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摘要

In view of an extensive literature about guided waves-based structural health monitoring of plate-like structures made of metallic and composite materials, a lack of information is pointed out regarding an effective and universally accepted approach for characterizing capability and reliability in detecting, localizing and sizing in-service damages. On the other hand, in the frame of traditional non-destructive testing systems, capability is typically expressed by means of suitable probability of detection' curves based on Berens' model, where a linear relationship is established between probability of detection and flaw size. Although the uncertain factors are usually different between a non-destructive inspection technique and a structural health monitoring approach, it seems that a similar mathematical framework could be assumed. From this point of view, this research investigates the feasibility of application of the very recent multi-parameter' probability of detection approach, developed within the traditional non-destructive testing field, to guided waves-based structural health monitoring. In particular, numerical simulations as well as experimental responses from flawed aluminium alloy plates were combined to bring about a master' probability of detection curve. Once established, this curve can be used to study the intrinsic capability of the system in terms of probability of detection curves, overcoming the intrinsic limitation of a single predictor (like the crack size) and a statistical model typically based upon a linear behaviour between the predictor and the response.
机译:鉴于有关基于金属和复合材料制成的板状结构基于导波的结构健康监测的大量文献,指出缺乏有关有效,普遍接受的表征检测,定位和检测能力和可靠性的方法的信息。调整使用中的损坏。另一方面,在传统的非破坏性测试系统的框架中,能力通常通过基于Berens模型的合适的检测概率曲线来表示,其中检测概率与缺陷尺寸之间建立线性关系。尽管不确定性因素通常在非破坏性检查技术和结构健康监测方法之间是不同的,但似乎可以假定类似的数学框架。从这一角度出发,本研究调查了在传统的无损检测领域内开发的最新多参数检测概率方法在基于导波的结构健康监测中的可行性。特别是,结合了数值模拟以及来自有缺陷的铝合金板的实验响应,从而获得了检测曲线的高手概率。一旦建立,该曲线就可以用于根据检测曲线的概率研究系统的内在能力,克服单个预测变量(如裂缝尺寸)和通常基于模型之间的线性行为的统计模型的内在限制。预测器和响应。

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