基于电阻抗谱的CFRP温度效应及损伤检测

G. Caposciutti, G. Bandini, M. Marracci, A. Buffi, B. Tellini
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引用次数: 1

摘要

碳纤维增强聚合物(CFRPs)由于其特殊的机械性能而特别适用于航空航天应用。在其使用寿命期间,这些材料可能遭受损坏,有时难以检测,这可能会损害其机械性能。cfrp电性能的变化是监测这种损伤的策略之一。然而,多种变量导致了这种变化。本文初步分析了电阻抗与温度和损伤爆发的关系。测量是在受控环境下进行的,温度和频率范围很广。在某些情况下,测量数据显示由于存在损伤而引起的阻抗变化,这与温度引起的变化具有相似的实体。在缺乏额外信息的情况下,这可能导致对阻抗测量结果的误导性解释。因此,需要适当的温度监测,可能使用电阻抗谱分析,以明确地确定cfrp的健康状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature Effects and Damage Detection on CFRP through Electrical Impedance Spectroscopy
Carbon fiber reinforced polymers (CFRPs) are particularly suitable for aerospace applications due to their specific mechanical properties. During their service life, these materials can suffer damage, sometimes difficult to detect, which may compromise their mechanical performances. The variation of the electrical properties of CFRPs is one of the strategies that can be used to monitor such damage. However, multiple variables contribute to this variation. This paper presents a preliminary analysis of the electrical impedance dependence on temperature and on damages outbreaks. The measurements are performed in controlled environment on a wide range of temperature and frequency. In some cases, the measured data show an impedance change due to the damage presence, which is of similar entity with respect to the variations caused by temperature. This may lead to misleading interpretations of impedance measurements in the absence of additional information. Hence the need of a proper temperature monitoring to possibly use electrical impedance spectroscopy analysis is required to unequivocally determine the health status of CFRPs.
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