Textile-based strain sensors for fiber-reinforced composites under tension, compression and bending

Hung Le Xuan, Chokri Cherif
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Abstract

This research addresses the challenging task of monitoring the structural integrity of fiber-reinforced composite (FRC) components under complex loading conditions. Ensuring the safety and functionality of these components is critical but economically challenging. Therefore, this study presents an innovative approach using textile-based strain sensors that are cost-effective and structurally compatible with carbon fiber-reinforced plastic (CFRP) components. The investigation includes the systematic electromechanical characterization and comparison of four different sensor materials at the yarn and composite scale in various test scenarios. Cyclic tensile, compression, and bending tests of CFRP specimens are performed and show good reproducibility of sensor signals within the elastic range, with significant agreement observed with applied strain measurement methods, particularly in tensile tests. Although there are minor deviations in compression and bending evaluations, the signals are still meaningful for in-situ detection of complex loading patterns, crack initiation, and structural failure. The study demonstrates that the integration of textile-based sensor yarns allows for continuous structural health monitoring (SHM) of CFRP components under various loading scenarios, including tensile, bending, and especially compressive loads.
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用于拉伸、压缩和弯曲条件下纤维增强复合材料的纺织应变传感器
这项研究针对的是在复杂加载条件下监测纤维增强复合材料(FRC)部件结构完整性这一具有挑战性的任务。确保这些部件的安全性和功能性至关重要,但在经济上却极具挑战性。因此,本研究提出了一种创新方法,即使用基于纺织品的应变传感器,这种传感器具有成本效益,并且在结构上与碳纤维增强塑料 (CFRP) 组件兼容。调查包括在各种测试场景下,对纱线和复合材料尺度上的四种不同传感器材料进行系统的机电表征和比较。对 CFRP 试样进行了循环拉伸、压缩和弯曲测试,结果表明传感器信号在弹性范围内具有良好的重现性,与应用的应变测量方法有显著的一致性,尤其是在拉伸测试中。虽然在压缩和弯曲评估中存在细微偏差,但这些信号对于现场检测复杂加载模式、裂纹起始和结构失效仍然很有意义。该研究表明,集成纺织传感器纱线可以在各种加载情况下(包括拉伸、弯曲,尤其是压缩载荷)对 CFRP 组件进行连续结构健康监测(SHM)。
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