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Cure characterization of unsaturated polyester resin by near-IR and mid-IR spectroscopy

机译:近红外和中红外光谱法表征不饱和聚酯树脂的固化特性

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A near-IR spectroscopic technique for cure characterization of unsaturated polyester resin has been developed, first by using model compound mixtures to identify and quantify various reactions and then by applying these quantification techniques to the resin, with IR spectroscopy as a complementary technique. Analysis of NIR spectra of model compound mixtures (styrene/ethylbenzene, diethyl fumarate/ diethyl succinate) showed that the integrated peak areas at 1629 and 2087 nm could be used to quantify the changes in the concentration of styrene and vinylene C=C bonds in the unsaturated polyester resin, respectively. NIR-based conversions were compared with those values using mid-IR spectroscopy. Differences in NIR and mid-IR conversion values have been explained by the sample volume and heat buildup differences in the samples used to obtain the NIR and mid-IR measurements. NIR results also confirmed an optimum temperature for the highest overall conversion and vinylene conversion, probably due to the reduced diffusion of styrene into tightly cross-linked microgels at high temperature. The complex trend of styrene conversion as a function of vinylene conversion at 75 degreesC, analyzed by NIR, can be approximated by taking into account the reactivity ratios in the copolymerization reaction. [References: 51]
机译:已开发出一种近红外光谱技术,用于不饱和聚酯树脂的固化表征,首先通过使用模型化合物混合物来识别和量化各种反应,然后将这些定量技术应用于树脂,并以红外光谱作为补充技术。对模型化合物混合物(苯乙烯/乙苯,富马酸二乙酯/琥珀酸二乙酯)的NIR光谱分析表明,在1629和2087 nm处的积分峰面积可用于定量分析苯乙烯和亚乙烯基C = C键浓度的变化。不饱和聚酯树脂分别。使用中红外光谱将基于NIR的转换与这些值进行比较。 NIR和中红外转换值的差异已通过用于获得NIR和中红外测量值的样品中的样品体积和热量累积差异来解释。 NIR结果也证实了最高总转化率和亚乙烯基转化率的最佳温度,这可能是由于在高温下苯乙烯向紧密交联的微凝胶中扩散的减少所致。通过NIR分析,在75℃下苯乙烯转化率随亚乙烯基转化率变化的复杂趋势可以通过考虑共聚反应中的反应率来估算。 [参考:51]

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