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A novel hybrid linear-hyperbranched poly(butylene adipate) copolymer as an epoxy resin modifier with toughening effect

机译:一种新型的具有增韧作用的杂化线性-超支化聚己二酸丁二酯共聚物作为环氧树脂改性剂

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摘要

A study was carried out on the effect of a hybrid linear-hyperbranched poly(butylene adipate) copolymer on the properties of a commercial epoxy resin. First, the synthesis of the hyperbranched systems was optimized. These systems were obtained by reacting linear oligomers with 1,1,1-tris(hydroxymethyl)propane used as branching agent and varying the reaction times from 16 to 44 h. The synthesized samples were characterized through matrix-assisted laser desorption ionization time-of-flight mass spectrometry, differential scanning calorimetry and thermogravimetric analysis. Results showed that for reaction times of 30 h a highly branched system, namely 5HB30, was obtained. This system was chosen as toughening agent for a commercial high-performance epoxy resin. A kinetics analysis of epoxy/5HB30 blends indicated that the hyperbranched system had no accelerator or catalytic effect on the crosslinking reaction in the resin. Furthermore, it was demonstrated that 5HB30 acted as an excellent toughening agent, increasing significantly impact resistance up to 90% with respect to neat epoxy resin. The toughness behaviours of epoxy-based blends were explained by investigating the fracture surface after impact tests through scanning electron microscopy before and after solvent etching. It was observed that the globular-like hyperbranch-rich domains, dispersed throughout the continuous epoxy resin, were able to absorb the impact energy without affecting thermal stability. (c) 2015 Society of Chemical Industry
机译:对杂化线性-超支化聚己二酸丁二酯共聚物对商业环氧树脂性能的影响进行了研究。首先,优化了超支化体系的合成。这些体系是通过使线性低聚物与用作支化剂的1,1,1-三(羟甲基)丙烷反应并将反应时间从16小时更改为44小时而获得的。合成样品通过基质辅助激光解吸电离飞行时间质谱,差示扫描量热法和热重分析进行表征。结果表明,对于30小时的反应时间,获得了高度分支的体系,即5HB30。该体系被选作市售高性能环氧树脂的增韧剂。环氧/ 5HB30共混物的动力学分析表明,超支化体系对树脂中的交联反应没有促进剂或催化作用。此外,已证明5HB30充当了优异的增韧剂,相对于纯净环氧树脂,抗冲击性显着提高了高达90%。通过在溶剂蚀刻之前和之后通过扫描电子显微镜研究冲击试验后的断裂表面,来解释环氧基共混物的韧性行为。观察到分散在整个连续环氧树脂中的球状高支化富集区域能够吸收冲击能量而不影响热稳定性。 (c)2015年化学工业学会

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