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The use of intelligent computational tools for damage detection and identification with an emphasis on composites - A review

机译:使用智能计算工具进行损伤检测和识别,重点是复合材料-综述

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摘要

Today, the Structural Health Monitorin (SHM) methodology is the main way to deal with the detection and identification of damages in a range of engineering sectors, mainly in the military and civil aerospace industry. The need to monitor damages and failures in increasingly complex structures has led to the development of various detection techniques. Identification of damages through intelligent signal processing and optimization algorithms are particularly emphasized. The methods discussed here are mainly elaborated by the evaluation of modal data due to the great potential of their application. Moreover, the optimization of damage identification is approached through methods of optimal positioning of sensors for the acquisition of the data that must be evaluated so that conclusions can be made. This article discusses the use of computational and intelligent techniques for structural monitoring in the form of a review with emphasis on composite materials. Despite the excellent mechanical performance already known about composite materials, they have a weak point. While damages, in a metallic material are easily visible (in some cases), composite materials often have the superficial appearance as if in perfect condition, when, inside, there are serious damages. This paper can be seen as a guideline or a starting point for developing and improving SHM systems. The contents of this paper aim to help engineers and researchers find a starting point in developing a better solution to their specific structural monitoring problems, either by inverse methods, pattern recognition, and intelligent signal processing.
机译:如今,结构健康监测(SHM)方法已成为处理和识别一系列工程领域(主要是军事和民用航空航天业)损伤的主要方法。监视日益复杂的结构中的损坏和故障的需求导致了各种检测技术的发展。特别强调了通过智能信号处理和优化算法来识别损坏。由于其应用的巨大潜力,这里讨论的方法主要通过模态数据的评估来详细阐述。此外,通过传感器的最佳定位方法来进行损伤识别的优化,以获取必须评估的数据,以便得出结论。本文以综述的形式讨论了如何将计算和智能技术用于结构监测,重点是复合材料。尽管已知复合材料具有出色的机械性能,但它们仍存在不足之处。尽管金属材料中的损坏很容易看到(在某些情况下),但复合材料通常在内部处于严重损坏的情况下,表面看起来好像处于完美状态。本文可被视为开发和改进SHM系统的指南或起点。本文的内容旨在通过逆向方法,模式识别和智能信号处理,帮助工程师和研究人员找到开发针对其特定结构监测问题的更好解决方案的起点。

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