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Insights into the thermal history of carbon fibers using Raman spectroscopy and a novel kinetic model

机译:使用拉曼光谱和新颖的动力学模型深入了解碳纤维的热历史

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摘要

Abstract Carbon fibers and carbon fiber composites are applied in high-performance applications, but a key consideration for application is their relative sensitivity to oxidative environments. To enable in-situ characterization of carbon fibers exposed to oxidative conditions, the Raman spectral response of T700 carbon fibers that have been exposed to a variety of dwell temperatures is reported herein with dwell times reaching up to 1 month. We evaluate the spectra holistically by using integrated absolute difference analysis. By combining this analysis with straightforward kinetic models, we connect the total Raman spectral response to the temperature-time curve that could yield such a shift in spectral parameters. Our work connects the Raman spectral response of carbon fibers to their thermal history and can easily be extended to other graphitic materials, such as nuclear graphite.
机译:摘要 碳纤维和碳纤维复合材料在高性能应用中的应用,但其对氧化环境的相对敏感性是应用的关键考虑因素。为了能够对暴露于氧化条件的碳纤维进行原位表征,本文报道了暴露于各种停留温度的 T700 碳纤维的拉曼光谱响应,停留时间长达 1 个月。我们通过使用集成的绝对差分分析来全面评估光谱。通过将这种分析与简单的动力学模型相结合,我们将总拉曼光谱响应与温度-时间曲线联系起来,从而产生光谱参数的这种变化。我们的工作将碳纤维的拉曼光谱响应与其热历史联系起来,可以很容易地扩展到其他石墨材料,如核石墨。

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