Damage detection in CFRP without data from intact structures using statistical analysis of resistance-temperature characteristics

Yoshiro Suzuki, A. Todoroki, Y. Mizutani, R. Matsuzaki
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引用次数: 6

Abstract

The previous study employs delamination detection in CFRP laminates using statistical analysis of temperature characteristic of resistance to prevent electrical resistance changes caused by damages of electrical contact at electrodes. A statistical analysis method discriminates the temperature characteristic of resistance of the damaged structure from that of the intact structure. To detect delaminations without learning processes, a new method which compares the electrical resistances at high temperature with those at low temperature is developed here. The new method has applicability to existing structures and can also detect initial defects. The present study employs the new method for detecting delaminations and initial defects in quasi-isotropic-plied CFRP plates. The detection limit of delamination and the effectiveness of detecting initial defects are experimentally investigated, and the effect of electrode damage on the diagnosis is discussed here.
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基于电阻-温度特性统计分析的CFRP损伤检测方法
之前的研究通过对电阻温度特性的统计分析,对CFRP层压板进行分层检测,防止电极电接触损伤导致电阻变化。用统计分析的方法区分了损伤结构和完整结构的温度特性。为了在没有学习过程的情况下检测分层,本文提出了一种比较高温电阻和低温电阻的新方法。该方法不仅适用于现有结构,而且可以检测出初始缺陷。本研究采用新方法检测准各向同性CFRP板的分层和初始缺陷。实验研究了分层的检出限和检测初始缺陷的有效性,并讨论了电极损伤对诊断的影响。
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