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Tung oil-based thermosetting polymers for self-healing applications

机译:用于自愈合应用的桐油基热固性聚合物

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摘要

Several bio-renewable thermosetting polymers were successfully prepared from tung oil through cationic polymerization for the use as the healing agent in self-healing microencapsulated applications. The tung oil triglyceride was blended with its methyl ester, which was produced by saponification followed by esterification. The changes in storage modulus, loss modulus, and glass transition temperature as functions of the methyl ester content were measured using dynamic mechanical analysis. In addition, the fraction of cross-linked material in the polymer was calculated by Soxhlet extraction, while proton nuclear magnetic resonance, Fourier transform infrared spectroscopy and TEM were used to investigate the structure of the copolymer networks. The thermal stability of the thermosets as a function of their methyl ester blend contents was determined by thermogravimetric analysis. Finally, the adhesive properties of the thermosets were studied using compressive lap shear and the fracture surfaces were analyzed using SEM.
机译:通过阳离子聚合成功地用桐油成功制备几种生物可再生的热固性聚合物,以用作自愈合微胶囊化应用中的愈合剂。将桐油甘油三酯与其甲酯混合,其通过皂化,然后由酯化制成。使用动态力学分析测量储存模量,损耗模量和玻璃化转变温度的变化作为甲酯含量的函数。此外,通过Soxhlet萃取计算聚合物中的交联材料的分数,而质子核磁共振,傅里叶变换红外光谱和TEM用于研究共聚物网络的结构。通过热重分析测定作为其甲酯共混物内容物的函数的热固性的热稳定性。最后,使用压缩圈剪切研究热固性夹的粘合性能,使用SEM分析断裂表面。

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