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Characterization of thermally crosslinkable polyester films by thermomechanical analysis: a versatile and very sensitive technique for the evaluation of low crosslinking degree in polymers

机译:热机械分析的热交联聚酯薄膜的表征:一种多功能且非常敏感的聚合物中低交联度评价的技术

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Thermomechanical analysis (TMA) is an effective technique for the characterization of small samples such as thin films of micrometric thickness, allowing the determination of thermal events such as glass transition, softening temperature and thermal expansion. Here we describe use of the TMA technique to investigate the drying and curing properties of polyester thin films ranging from 40 to 70m thick. The main purpose of this study was to investigate the effects of residual solvent and crosslinking on the glass transition and softening temperatures of the polyester films subjected to thermal cycling. Despite the fact that the analysed films were thinner than 100m, TMA proved to be very sensitive to small changes in residual solvent content and to the effects of the degree of crosslinking on the glass transition and softening temperatures of the polymer films. The most important finding is the possibility of detecting very small degrees of crosslinking in an easy, fast and quantitative way. Other methods such as swelling were not sensitive enough to differentiate the crosslinked samples and data for thicker films are not comparable to the data for thin films. (c) 2018 Society of Chemical Industry
机译:热机械分析(TMA)是用于表征小型样品的有效技术,例如微米厚度的薄膜,允许确定玻璃过渡,软化温度和热膨胀等热敏事件。在这里,我们描述了TMA技术的使用来研究聚酯薄膜的干燥和固化性能范围为40至70m厚。本研究的主要目的是研究残留溶剂和交联对经受热循环的聚酯薄膜的玻璃化转变和软化温度的影响。尽管分析的薄膜比100m薄,TMA被证明对残留溶剂含量的小变化非常敏感,以及交联程度对聚合物膜的玻璃化转变和软化温度的影响。最重要的发现是以容易,快速和定量的方式检测非常小的交联程度。其他方法如溶胀仍然足够敏感以区分交联的样品和用于较厚膜的数据与薄膜的数据不相当。 (c)2018化学工业协会

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