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Impedance-based structural health monitoring and statistical method for threshold-level determination applied to 2024-T3 aluminum panels under varying temperature

机译:基于阻抗的结构健康监测和统计方法在温度变化下应用于2024-T3铝面板的阈值水平确定

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摘要

The impedance-based structural health monitoring method has become a promising and attractive tool for damage identification and is considered a nondestructive evaluation technique. However, conventional impedance-based structural health monitoring studies have mainly focused on structural damage identification but not so much on statistical modeling approaches in order to determine a threshold for the decision making of the damage detection system. In this study, the impedance-based structural health monitoring technique is used in a damage detection problem considering temperature variation effects. For this aim, three aluminum 2024-T3 plates were instrumented with small lead zirconate titanate patches close to their borders, and damage was introduced in the central position of the plates, with temperature ranging from - 10 degrees C to 60 degrees C. This article proposes a method to statistically determine a threshold for damage detection purposes using concepts of statistical process control, as well as confidence intervals and normality tests in order to obtain a diagnosis with a previously determined confidence level. Thus, this work presents a sensitivity evaluation of the impedance-based structural health monitoring technique as applied to aluminum plates under varying temperature. With the technique proposed, damage threshold levels are determined so that lead zirconate titanate patches placed approximately 280 mm from the damage inserted were able to detect saw cuts of approximately 7 mm long, with 95% confidence intervals inside the temperature range considered.
机译:基于阻抗的结构健康监测方法已成为一种有前途且有吸引力的损伤识别工具,被认为是一种无损评估技术。然而,常规的基于阻抗的结构健康监测研究主要集中在结构损伤的识别上,而不是集中在统计建模方法上,以便确定损伤检测系统决策的阈值。在这项研究中,基于阻抗的结构健康监测技术用于考虑温度变化影响的损伤检测问题。为此目的,对三块2024-T3铝板进行了测量,在其边界附近装有锆钛酸铅小块,并且在板的中心位置引入了损坏,温度范围为-10摄氏度至60摄氏度。提出了一种使用统计过程控制的概念以及置信区间和正态性检验来统计确定损坏检测阈值的方法,以便获得具有预先确定的置信度的诊断。因此,这项工作提出了基于阻抗的结构健康监测技术的灵敏度评估,该技术适用于变化温度下的铝板。通过提出的技术,可以确定损坏的阈值水平,以便从所插入的损坏起大约280 mm处放置锆钛酸铅钛合金贴片,能够检测到大约7 mm长的锯切,在所考虑的温度范围内的置信区间为95%。

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