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Nanoparticles-coated glass fibre-based damage localisation and monitoring system for polymer composites

机译:纳米颗粒涂层基于玻璃纤维的损伤定位和用于聚合物复合材料的监测系统

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摘要

The polymer composites are extensively used as advanced materials for various engineering applications such as aviation, marine, automobile and civil structures because of its unique superior properties. The anisotropic nature of the composite makes it as a complicated material to predict strain and damage induced in it under the real-time loading. In order to improve safety and reliability of these composite materials, the real-time strain induced in the composite needs to monitor continuously. With that focus, nanoparticles such as reduced graphene oxide and nano-nickel-coated glass fibre are fabricated and characterised for damage sensing application for the polymer composites reported in this work. The concept of embedding nanoparticles-coated glass fibres in an array of rows and columns as damage sensor is demonstrated by studying its real-time piezoresistive response under medium-velocity impact. When embedded composites are subjected to impact, the corresponding row and column sensor show variation in the piezoresistance. Thus, by monitoring the piezoresistance of the coated glass fibre, the damage and its location can be predicted. Thus, localisation and degree of damage induced in the polymer composites can be predicted by monitoring the piezoresistance of the embedded glass fibre under impact loading.
机译:聚合物复合材料广泛用作各种工程应用的先进材料,例如航空,海洋,汽车和民用结构,因为其独特的优势。复合材料的各向异性性质使其作为一种复杂的材料,以预测在实时负载下引起的应变和损伤。为了提高这些复合材料的安全性和可靠性,复合材料中诱导的实时菌株需要连续监测。利用这种焦点,制造纳米颗粒,例如石墨烯氧化物和纳米镍涂覆的玻璃纤维,并表征损伤该工作中报告的聚合物复合材料的损伤施用。通过研究其在中速冲击下的实时压阻响应,嵌入行和柱阵列中的纳米颗粒涂层玻璃纤维的概念。当嵌入复合材料受冲击时,相应的行和柱子传感器显示压电阻滞的变化。因此,通过监测涂覆的玻璃纤维的压阻,可以预测损坏及其位置。因此,通过监测嵌入式玻璃纤维下的冲击载荷的压阻来预测聚合物复合材料中诱导的局部化和程度。

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