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Highly sensitive thermal damage sensors for polymer composites: time temperature indicator based on thermochromic fluorescence turn-on response

机译:用于聚合物复合材料的高度敏感的热损伤传感器:基于热致变色荧光开启反应的时间温度指示器

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摘要

Carbon fiber epoxy composites have become prevalent in a variety of industries, especially in aerospace. The significant non-destructive evaluation (NDE) challenges of composites require new solutions, especially in detecting the onset of thermal damage. This work proposes the use of thermochromic fluorescent molecules dispersed in the composites as sensors for such detection. A molecule has been developed which transitions from a colorless, non-fluorescent state to a colorful, highly fluorescent state when exposed to temperature-time combinations that can cause damage in composites. This molecule dispersed in polymer composites of epoxy and PDMS matrices shows unique activation kinetics that can be used to quantitatively simulate the degradation kinetics of aerospace epoxies. The novel sensor materials based on the thermochromic activation of fluorescence can provide highly efficient and widely applicable NDE materials and techniques for carbon fiber epoxy composites.
机译:碳纤维环氧复合材料在各种行业中普遍存在,特别是在航空航天。 复合材料的显着的非破坏性评估(NDE)挑战需要新的解决方案,尤其是在检测热损伤的发作时。 这项工作提出使用分散在复合材料中的热致变色荧光分子作为用于这种检测的传感器。 已经开发了一种分子,其在暴露于可能导致复合材料中损坏的温度 - 时间组合时,从无色的非荧光状态转变为彩色的高荧光状态。 分散在环氧树脂和PDMS基质的聚合物复合材料中的该分子显示出独特的活化动力学,可用于定量模拟航空航天环氧树脂的降解动力学。 基于荧光热致变色激活的新型传感器材料可以提供高效且广泛适用的NDE材料和用于碳纤维环氧复合材料的技术。

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