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Self-Sensing of Position-Related Loads in Continuous Carbon Fibers-Embedded 3D-Printed Polymer Structures Using Electrical Resistance Measurement

机译:使用电阻测量的连续碳纤维嵌入式3D印刷聚合物结构中定位相关载荷的自我传感

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摘要

Condition monitoring in polymer composites and structures based on continuous carbon fibers show overwhelming advantages over other potentially competitive sensing technologies in long-gauge measurements due to their great electromechanical behavior and excellent reinforcement property. Although carbon fibers have been developed as strain- or stress-sensing agents in composite structures through electrical resistance measurements, the electromechanical behavior under flexural loads in terms of different loading positions still lacks adequate research, which is the most common situation in practical applications. This study establishes the relationship between the fractional change in electrical resistance of carbon fibers and the external loads at different loading positions along the fibers’ longitudinal direction. An approach for real-time monitoring of flexural loads at different loading positions was presented simultaneously based on this relationship. The effectiveness and feasibility of the approach were verified by experiments on carbon fiber-embedded three-dimensional (3D) printed thermoplastic polymer beam. The error in using the provided approach to monitor the external loads at different loading positions was less than 1.28%. The study fully taps the potential of continuous carbon fibers as long-gauge sensory agents and reinforcement in the 3D-printed polymer structures.
机译:基于连续碳纤维的聚合物复合材料和结构中的条件监测显示,由于其巨大的机电行为和优异的加固特性,在长规测量中的其他潜在竞争的传感技术上的压倒性优点。尽管通过电阻测量已经被开发为复合结构中的应变或应激感测剂的碳纤维,但在不同的装载位置方面弯曲载荷下的机电行为仍然缺乏足够的研究,这是实际应用中最常见的情况。该研究建立了碳纤维电阻的分数变化与沿着纤维的纵向不同装载位置的外部载荷之间的关系。基于这种关系,同时提出了一种用于不同装载位置的弯曲载荷的实时监测方法。通过碳纤维嵌入的三维(3D)印刷热塑性聚合物束的实验验证了该方法的有效性和可行性。使用提供的方法在不同装载位置监控外部负载的错误小于1.28%。该研究完全敲击连续碳纤维的潜力作为长表感觉剂和3D印刷聚合物结构中的增强。

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