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Study on Strength of Hybrid Mortar Synthesis with Epoxy Resin, Fly Ash and Quarry Dust Under Extreme Conditions

机译:在极端条件下用环氧树脂的杂交砂浆合成强度研究

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摘要

Blend and characterization of Bisphenol-A diglycidyl ether based thermosetting polymer mortar comprising an epoxy resin, Fly ash and Quarry dust are presented here for the strength study. The specimens have been prepared by means of an innovative process in Extreme conditions of commercial epoxy resin, Fly ash and Quarry dust based paste. In this way, thermosetting based hybrid mortars characterized by a different contents of normalized Fly ash and Quarry dust by a homogeneous distribution of the resin have been attained. Once hardened, these new composite materials show improved compressive strength and toughness in respect to both the Fly ash and Rock sand pastes since the Resin provides a more cohesive microstructure, with a reduced number of micro cracks. The micro structural characterization allows pointing out the presence of an Interfacial Transition Zone similar to that observed in cement based mortars. A correlation between micro-structural features and mechanical properties of the mortar has also been studied in Extreme conditions.
机译:本文介绍了包含环氧树脂,粉煤灰和采石粉的二苯酚-Pisphenol-A基于二缩水甘油醚的热固性聚合物砂浆的融合和表征。通过在商业环氧树脂的极端条件下,通过创新过程制备了标本,粉煤灰和采石场的糊状物。以这种方式,已经获得了通过树脂均匀分布的归一化粉煤灰和采石灰的不同含量的基于热固性的混合砂浆。一旦硬化,这些新的复合材料就可以提高粉煤灰和岩砂浆料,因为树脂提供了更粘性的微观结构,其微裂纹减少。微结构表征允许指向类似于在基于水泥的砂浆中观察到的界面过渡区的存在。还在极端条件下研究了微观结构特征和砂浆力学性能之间的相关性。

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