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Electrical Resistance Sensing of Epoxy Curing Using an Embedded Carbon Nanotube Yarn

机译:使用嵌入式碳纳米管纱的环氧固化的电阻感测

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摘要

Curing effects were investigated by using the electrical response of a single carbon nanotube yarn (CNTY) embedded in an epoxy resin during the polymerization process. Two epoxy resins of different viscosities and curing temperatures were investigated, varying also the concentration of the curing agent. It is shown that the kinetics of resin curing can be followed by using the electrical response of an individual CNTY embedded in the resin. The electrical resistance of an embedded CNTY increased (~9%) after resin curing for an epoxy resin cured at 130 °C with viscosity of ~59 cP at the pouring/curing temperature (“Epon 862”), while it decreased (~ −9%) for a different epoxy cured at 60 °C, whose viscosity is about double at the corresponding curing temperature. Lowering the curing temperature from 60 °C to room temperature caused slower and smoother changes of electrical resistance over time and smaller (positive) residual resistance. Increasing the concentration of the curing agent caused a faster curing kinetics and, consequently, more abrupt changes of electrical resistance over time, with negative residual electrical resistance. Therefore, the resin viscosity and curing kinetics play a paramount role in the CNTY wicking, wetting and resin infiltration processes, which ultimately govern the electrical response of the CNTY immersed into epoxy.
机译:通过在聚合过程中使用嵌入环氧树脂中的单碳纳米管纱线(CNTY)的电响应来研究固化效果。研究了两种粘度和固化温度不同的环氧树脂,它们的固化剂浓度也不同。结果表明,可以通过使用嵌入树脂中的单个CNTY的电响应来跟踪树脂固化的动力学。对于在130°C固化的环氧树脂在浇注/固化温度下粘度为〜59 cP(“ Epon 862”)进行固化的环氧树脂之后,嵌入的CNTY的电阻增加(〜9%),而下降(〜- 9%)用于在60°C下固化的另一种环氧树脂,其粘度在相应的固化温度下约为两倍。将固化温度从60°C降低到室温会导致电阻随时间的变化更缓慢,更平滑,并且残留电阻(正)变小。增加固化剂的浓度会导致更快的固化动力学,因此,电阻随时间的变化会更加突然,残余电阻为负。因此,树脂粘度和固化动力学在CNTY芯吸,润湿和树脂渗透过程中起着至关重要的作用,最终决定了浸入环氧树脂的CNTY的电响应。

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