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The effect of reactive diluent on mechanical properties and microstructure of epoxy resins

机译:反应性稀释剂对环氧树脂机械性能和微观结构的影响

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The effects of an aliphatic reactive diluent on the viscosity, gel time, chemical resistance, mechanical properties, fracture toughness, microstructure and relaxations of two different epoxy resins, i.e., a bifunctional and a multifunctional epoxy, were investigated. The gel time was not significantly affected by the diluent. The modulus and ultimate strength gradually declined, while the ductility steadily increased as the diluent content was increased. The failure mode of epoxy samples under flexural test changed from brittle to much more ductile upon the progressive incorporation of diluent into the epoxy resins. The strain at break of bifunctional resin improved by 75%, while that of multifunctional resin enhanced by more than 24%. The dynamic mechanical thermal analysis (DMTA) showed that the introduction of reactive diluent into different epoxy resins reduced the storage modulus at the glassy region and significantly broadened the glass transition region of the epoxy matrices with approximately no change in the glass transition temperature. The DMTA results also indicated increased microstructural heterogeneities upon the addition of diluent to the epoxy resins as evidenced by atomic force microscopy. The fracture toughness of epoxy resins enhanced with diluent content, about 20% and 29% increase for bifunctional and multifunctional resins, respectively. This was attributed to the improved material's ductility and activation of plastic deformation in the epoxy resins upon the addition of reactive diluent.
机译:研究了脂族反应性稀释剂对两种不同环氧树脂的粘度,凝胶时间,耐化学性,机械性能,断裂韧性,微观结构和弛豫的影响。凝胶时间没有受到稀释剂的显着影响。模量和极限强度逐渐下降,而随着稀释剂含量的增加,稳定增加的延展性增加。弯曲试验下环氧样品的失效模式从脆性变为更加延展性在稀释剂中的稀释剂中的更加韧性。双官能树脂中断的菌株提高了75%,而多官能树脂的菌株增强超过24%。动态机械热分析(DMTA)表明,将反应性稀释剂引入不同的环氧树脂中,在玻璃状区域的储存模量降低,并在玻璃化转变温度下大致无变化显着宽大地扩展了环氧基质的玻璃化转变区域。 DMTA结果还表明,在加入环氧树脂上,通过原子力显微镜证明,在环氧树脂中加入稀释剂时增加了微观结构的异质性。环氧树脂的断裂韧性增强了稀释剂含量,分别为双官能和多官能树脂的增加约20%和29%。这归因于在加入反应性稀释剂时改善了材料的延展性和环氧树脂中塑性变形的激活。

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