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Strain sensing in single carbon fiber epoxy composites by simultaneous in-situ Raman and piezoresistance measurements

机译:通过同时原位拉曼和压阻测量来检测单碳纤维环氧复合材料中的应变

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摘要

The change of electrical resistance in continuous single carbon fibers and single carbon fiber/epoxy model composites with applied strain has been investigated with a new method combining simultaneous in-situ Raman and electromechanical measurements. In all cases, a sudden increase to infinity of the relative electrical resistance corresponds to fiber fracture. The gage factors of the piezoresistance curves were determined. Reinforcement/matrix interface are compared for sized and unsized systems. It is shown that, in principle, it is possible to correlate the fiber strain and the variation of electrical fiber resistance as a function of the applied strain for a single fiber embedded in epoxy. This study indicates that carbon fibers embedded in epoxy matrix may serve as electrical strain sensors to detect both their own onset of damage and that of the composite under load, prior to specimen fracture. (C) 2016 Elsevier Ltd. All rights reserved.
机译:结合连续原位拉曼和机电测量的新方法,研究了连续单碳纤维和单碳纤维/环氧树脂模型复合材料在施加应变时电阻的变化。在所有情况下,相对电阻的突然增加到无穷大对应于纤维断裂。确定了压阻曲线的应变系数。比较了尺寸/未尺寸系统的钢筋/矩阵界面。结果表明,对于嵌入环氧树脂的单根纤维,原则上可以将纤维应变与电阻的变化相关联,作为施加应变的函数。这项研究表明,嵌入到环氧树脂基体中的碳纤维可以用作电应变传感器,以检测其自身的破坏以及复合材料在载荷作用下在试样破裂之前的破坏。 (C)2016 Elsevier Ltd.保留所有权利。

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