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Effect of Reactive Diluents and Kaolin on the Mechanical Properties of Epoxy Resin

机译:反应性稀释剂和高岭土对环氧树脂力学性能的影响

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Epoxy resin was modified using phenyl diglycidyl ether (PGE), xylene andkaolin. The impact strength (IS), critical stress intensity factor (K_C), flexural strength and glass transition temperature (Tg) were evaluated as functions of the modifier content. It was found that the addition of diluents led to a significant reduction of both viscosity and Tg. A three-fold increase of IS was obtained with the addition of 2.5% PGE. Moreover, the addition of 15% PGE resulted in about 145 % enhancement of the K_C parameter. However, the addition of xylene had no significant effect on these properties. Furthermore, the addition of 10% kaolin to epoxy resin gave compositions with the highest fracture toughness. Maximum K_C values were obtained with epoxy hybrid compositions containing 10% kaolin and 2.5% PGE and 10% kaolin and 5% PGE respectively. All tested compositions had higher energy at break than nonmodified epoxy resin. SEM micrographs of fractured surfaces of modified epoxy compositions revealed the presence of plastic deformations, which can be considered as the main source of the mechanical properties enhancement.
机译:使用苯基二缩水甘油醚(PGE),二甲苯和高岭土对环氧树脂进行改性。评估了冲击强度(IS),临界应力强度因子(K_C),抗弯强度和玻璃化转变温度(Tg)作为改性剂含量的函数。发现稀释剂的加入导致粘度和Tg的显着降低。加入2.5%PGE可使IS增长三倍。此外,添加15%PGE会导致K_C参数提高约145%。然而,二甲苯的添加对这些性能没有显着影响。此外,在环氧树脂中添加10%的高岭土使组合物具有最高的断裂韧性。用分别包含10%高岭土和2.5%PGE和10%高岭土和5%PGE的环氧杂化组合物获得最大K_C值。所有测试的组合物均比未改性的环氧树脂具有更高的断裂能。改性环氧组合物的断裂表面的SEM显微照片显示出塑性变形的存在,可以将其视为机械性能增强的主要来源。

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