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Development and performance evaluation of epoxy asphalt concrete modified with mineral fiber

机译:矿物纤维改性环氧沥青混凝土的开发与性能评价。

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In order to improve the performance of epoxy asphalt concrete (EAC), epoxy asphalt concrete modified with mineral fiber (FEAC) was designed. The properties of epoxy asphalt modified with mineral fiber (FEA) under different fiber contents and lengths were studied by viscosity test and direct tensile test, and the performance of FEAC with different fiber contents were evaluated through several laboratory experiments. The results showed that the mineral fiber with appropriate length and content can increase the viscosity of FEA, can improve tensile strength and fracture elongation of FEA, and can shorten the allowable construction time of FEAC. Moreover, the improvement effects of mineral fiber on permeability, friction and high temperature stability of FEAC is not significant, but use of mineral fiber can significantly increase raveling resistance and moisture susceptibility of FEAC. When the fiber content changes from 0% to 9%, the increasing amplitude of flexural strain at failure at -20 degrees C is 55.2%. It indicates that the addition of mineral fiber can significantly improve crack resistance of FEAC at low temperatures. Furthermore, FEAC has good resistance to fatigue cracking when fiber content is around 9%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了提高环氧沥青混凝土(EAC)的性能,设计了矿物纤维改性的环氧沥青混凝土(FEAC)。通过黏度试验和直接拉伸试验研究了矿物纤维(FEA)改性环氧沥青在不同纤维含量和长度下的性能,并通过多次室内实验评价了不同纤维含量的FEAC的性能。结果表明,适当长度和含量的矿物纤维可以提高FEA的粘度,可以提高FEA的拉伸强度和断裂伸长率,并可以缩短FEAC的允许施工时间。而且,矿物纤维对FEAC的渗透性,摩擦和高温稳定性的改善效果不显着,但是使用矿物纤维可以显着提高FEAC的抗撕裂性和湿气敏感性。当纤维含量从0%变为9%时,-20℃时破坏时挠曲应变的增加幅度为55.2%。这表明添加矿物纤维可以显着提高FEAC在低温下的抗裂性。此外,当纤维含量约为9%时,FEAC具有良好的抗疲劳开裂性。 (C)2015 Elsevier Ltd.保留所有权利。

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