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Cure monitoring and residual stress sensing of single-carbon fiber reinforced epoxy composites using electrical resistivity measurement

机译:使用电阻率测量对单碳纤维增强环氧树脂复合材料进行固化监测和残余应力感测

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摘要

Temperature sensing and cure monitoring of the single-carbon fiber/epoxy composites were studied by the measurement of electrical resistivity as a new approach. IFSS and the difference in electrical resistivity (DELTAR) between before and after curing were highest for the smallest gauge length of the specimen. As curing temperature increased, logarithmic electrical resistivity of steel fiber increased due to the increased the mean path of the free electron. On the other hand, those of semi-conductive carbon and SiC fibers decreased due to the intrinsic electrical properties based on the band theory. Residual stress built in the fiber was highest at the fiber axis direction, whereas residual stress of built in the matrix was relatively higher for the fiber circumference and radius direction. Residual stresses by the calculating method were consistent well with those from the finite element analysis (FEA). The behavior of electrical resistivity was responded well quantitatively with the change of curing temperature and epoxy matrix modulus. Electrical resistance measurement of conductive fiber composites can be applicable for the useful technique to evaluate cure monitoring and residual stress sensing.
机译:通过测量电阻率作为一种新方法,研究了单碳纤维/环氧树脂复合材料的温度传感和固化监控。对于最小的标距,IFSS和固化前后的电阻率差异(DELTAR)最高。随着固化温度的升高,钢纤维的对数电阻率由于自由电子平均路径的增加而增加。另一方面,由于基于能带理论的固有电性能,半导电碳纤维和SiC纤维的碳纤维减少了。纤维中残留的残余应力在纤维轴向上最高,而基体中残留的残余应力在纤维圆周和半径方向上相对较高。计算方法的残余应力与有限元分析(FEA)的残余应力非常一致。随着固化温度和环氧基体模量的变化,电阻率行为得到了很好的定量响应。导电纤维复合材料的电阻测量可用于评估固化监控和残余应力传感的有用技术。

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