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Use of tung oil as a reactive toughening agent in dicyclopentadiene-terminated unsaturated polyester resins.

机译:桐油在双环戊二烯封端的不饱和聚酯树脂中用作反应性增韧剂的用途。

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摘要

Unsaturated polyester resin terminated with dicyclopentadiene (DCPD-UPR) was modified by tung oil (TO) via intermolecular Diels-Alder reaction occurring at the later stage of melt polycondensation. These TO-modified DCPD-UPR (DCPD-UPR-TO) polymers were characterized by FT-IR, 1H NMR, and gel permeation chromatography. The DCPD-UPR-TO polymers were further blended with styrene comonomer and cured via free-radical polymerization to give crosslinked thermosetting polymers. Scanning electron microscopy was employed to produce surface morphology and dynamic mechanical analysis was conducted to study the thermo-mechanical properties. Thermal and mechanical properties of these biomaterials were also investigated and the results show that toughness of them increases obviously as the increase of TO content. Compared with the neat DCPD-UPR matrix, the matrix obtained from DCPD-UPR-TO with a TO content of 20% has maximum increase of 373% and 875% in impact strength and tensile failure strain due to the synergistic effects of phase separation and crosslink density. However, the optimum amount of tung oil is 10% because its polymer matrix gives a best stiffness-toughness balance. These oil-based polymer materials show promise as an alternative to replace petroleum-based materials.
机译:用桐油(TO)通过在熔融缩聚后期发生的分子间Diels-Alder反应,将被二环戊二烯(DCPD-UPR)封端的不饱和聚酯树脂改性。通过FT-IR, 1 1 H NMR和凝胶渗透色谱对这些TO改性的DCPD-UPR(DCPD-UPR-TO)聚合物进行了表征。将DCPD-UPR-TO聚合物进一步与苯乙烯共聚单体共混,并通过自由基聚合反应进行固化,从而得到交联的热固性聚合物。利用扫描电子显微镜产生表面形态,并进行动态力学分析以研究热机械性能。还对这些生物材料的热力学性能进行了研究,结果表明,随着TO含量的增加,其韧性明显提高。与纯DCPD-UPR基质相比,TOPD含量为20%的DCPD-UPR-TO基质由于相分离和相变的协同作用,在冲击强度和拉伸破坏应变方面分别增加了373%和875%。交联密度。但是,桐油的最佳用量为10%,因为其聚合物基体具有最佳的刚度和韧性平衡。这些油基聚合物材料有望替代石油基材料。

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