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In-situ structural health monitoring of glass fiber reinforced composites by tufted reinforcement

机译:簇绒加固玻璃纤维增​​强复合材料的原位结构健康监测

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Through-the-thickness reinforcement (TTR) techniques have been increasingly applied to fiber-reinforced polymer composite laminates to reduce the issues caused by the weak out-of-plane properties which can reduce significantly their load-bearing capacity. The present work investigates the electrical response of carbon tuft threads as reinforcements of GFRP omega stiffened panel. Besides the mechanical contribution of the tuft reinforcements to the composites structures, this study focuses on the evaluation of the electrical response on the tufted yarns as a means of monitor the structural health. The first studies consisted of evaluating GFRP composite laminate plates reinforced with carbon tufts by means of the electrical response through tufts to damage generated by multiple low-velocity impacts. Once the tufts exhibited their ability to respond continuously while increasing damage, pull-off mechanical tests were performed in the omega stiffeners assisted by electrical resistance measurements as well as acoustic emission (AE) and Digital Image Correlation (DIC). The results showed that the measures of electric resistance on the yarns are capable to distinguish important events during the mechanical tests, as the delamination and tuft failure. Furthermore, they are in common agreement with the cumulative energy on AE and strain field response on DIC.
机译:通过 - 厚度的增强(TTR)技术已经越来越多地应用于纤维增强的聚合物复合层压板,以减少由弱外平面性能引起的问题,这可以减少其承载能力。目前的工作调查了碳簇线作为GFRP Omega加强板的增强件的电响应。除了簇生增强对复合材料结构的机械贡献之外,该研究侧重于评估簇绒纱线的电气响应作为监测结构健康的手段。第一项研究包括通过通过簇通过电气响应来评估用碳簇加强的GFRP复合层压板,通过多个低速冲击产生的损坏。一旦塔布表现出在不断造成损坏的同时持续响应的能力,就通过电阻测量和声发射(AE)和数字图像相关(DIC)辅助的Omega加强筋进行掉落机械测试。结果表明,纱线的电阻措施能够在机械测试期间区分重要事件,作为分层和簇绒失效。此外,它们与DIC上的AE和应变场响应的累积能量共同一致。

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