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STUDY ON THE CORE-SHELL STRUCTURED FIBER TYPE STRAIN SENSOR WITH LOAD BEARING CHARACTERISTICS IN COMPOSITE STRUCTURES

机译:复合结构负载轴承特性芯壳结构纤维型应变传感器的研究

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In this study, core-shell structured strain sensors with a sandwich structured conductive layer, which have high load carrying capacity as well as high sensing performances were fabricated by using a dry-jet wet spinning system. The core part of the fiber sensor was made of ultra-high molecular weight polyethylene (UHMWPE) which has high modulus and strength. The shell parts of the fiber sensor as an electrically conductive layer were composed with the sandwich structured MWCNT conductive coating layers to enhance the sensing performances. An outer surface of the fiber sensor was coated with a thin polyurethane (PU) layer for the electrical insulation. The scanning electron microscope (SEM) was used to confirm the formation of the core-shell structure of the fiber sensor. Single filament tensile tests were performed to estimate the mechanical properties of the fiber sensors. Strain sensitivity and repeatability of the fiber sensors were measured using an LCR meter during a static and dynamic tensile test, respectively. From the results, we confirmed that the core-shell structured sensor fibers with sandwich structured MWCNT layer showed significantly enhanced the mechanical properties by controlling the drawing condition and sensing performances including sensitivity and linearity by controlling structural configuration of the conductive layers as well.
机译:在该研究中,通过使用干式湿纺系统制造具有高负荷承载能力的夹层结构导电层的核壳结构的应变传感器,以及具有高负荷承载能力以及高感测性能。光纤传感器的芯部由超高分子量聚乙烯(UHMWPE)制成,具有高模量和强度。光纤传感器作为导电层的壳部分与夹层结构的MWCNT导电涂层组成,以增强感测性能。纤维传感器的外表面涂覆有薄的聚氨酯(PU)层,用于电绝缘。扫描电子显微镜(SEM)用于确认光纤传感器的核心壳结构的形成。进行单丝拉伸试验以估计光纤传感器的机械性能。使用LCR表分别在静态和动态拉伸试验期间测量光纤传感器的应变灵敏度和可重复性。从结果中,我们证实,具有夹层结构MWCNT层的核心壳结构传感器纤维通过控制图条件和通过控制导电层的结构构造,通过控制包括灵敏度和线性度的感测性能,显着提高了机械性能。

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