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Applications of epoxy materials in pavement engineering

机译:环氧材料在路面工程中的应用

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Epoxy materials in the pavement behave well in thermal stability, mechanical properties, adhesive properties, corrosion and chemical resistance, due to unique three-dimensional crosslinking network structure and special functional groups. This review presents a summary mainly about the chemistry of epoxy resins, the curing mechanism and properties of epoxy materials covering epoxy asphalt, epoxy emulsified asphalt and epoxy concrete. Thereinto, the opening-ring mechanism, the polymerization mechanism and the formation of network provide scientific guidance for the actual composite process of epoxy materials. The addition of epoxy resins can enhance the high-temperature stability and mechanical properties of epoxy asphalt, epoxy emulsified asphalt and their mixtures, because the crosslinking network of epoxy resin restricts the movement of asphalt. Additionally, it is pointed out that epoxy concrete has excellent chemical resistance and high bond strength. Moreover, the curing of epoxy resin without curing agents can be catalyzed in the presence of cement, which gives a way to achieve self-healing of concrete. Hence, epoxy materials in the pavement can be a suitable alternative towards the high temperature stability, excellent bonding adhesion and mechanical performance of pavement materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于独特的三维交联网络结构和特殊的官能团,路面中的环氧树脂材料在热稳定性,机械性能,粘合性能,腐蚀和耐化学性方面表现良好。这篇综述主要对环氧树脂的化学,环氧树脂的固化机理和性能进行了概述,包括环氧沥青,环氧乳化沥青和环氧混凝土。其中,开环机理,聚合机理和网络的形成为环氧材料的实际复合工艺提供了科学指导。环氧树脂的添加可以增强环氧沥青,环氧乳化沥青及其混合物的高温稳定性和机械性能,因为环氧树脂的交联网络限制了沥青的运动。另外,指出环氧混凝土具有优异的耐化学性和高粘结强度。而且,在没有水泥的情况下可以催化没有固化剂的环氧树脂的固化,这为实现混凝土的自修复提供了一种途径。因此,路面中的环氧材料可以是高温稳定性,优异的粘结力和路面材料的机械性能的合适替代材料。 (C)2019 Elsevier Ltd.保留所有权利。

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