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Performance of fiber reinforced asphalt concrete under environmental temperature and water effects

机译:环境温度和水分作用下纤维增强沥青混凝土的性能

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This paper studies the reinforcing effects and mechanisms of fibers for asphalt concrete (AC) mixtures under the environment temperature and water effects. Four typical fiber types - polyester, polyacryloni-trile, lignin and asbestos - are studied. Laboratory tests were conduct on the fiber reinforced AC (FRAC) to measure its strength, strain and fatigue behavior. Results show that fibers have significantly improved AC's rutting resistance, fatigue life, and toughness. The flexural strength and ultimate flexural strain, and the split indirect tensile strength (SITS) at low temperature have also improved. The polymer fibers (polyester and polyacrylonitrile) have improved rutting resistance, fatigue life, and SITS more significantly than lignin and asbestos fibers, which may be primarily due to their greater networking function; while lignin and asbestos fibers result in greater flexural strength and ultimate flexural strain, which may be primarily due to their greater asphalt stabilization effect. However, fiber's effect under the water freezing-thaw effect does not seem promising, and the SITS of FRAC with lignin and asbestos fibers even reduces to some extent under this effect. It is also found that a fiber content of 0.35% by mass of mixture achieves the optimum performance outputs of rutting resistance and SITS for polyester fiber.
机译:本文研究了在环境温度和水作用下纤维对沥青混凝土(AC)混合物的增强作用和机理。研究了四种典型的纤维类型-聚酯纤维,聚丙烯腈,木质素和石棉。对纤维增强的交流电(FRAC)进行了实验室测试,以测量其强度,应变和疲劳性能。结果表明,纤维显着改善了AC的耐车辙性,疲劳寿命和韧性。低温下的挠曲强度和极限挠曲应变以及间接间接拉伸强度(SITS)也得到了改善。聚合物纤维(聚酯纤维和聚丙烯腈纤维)比木质素纤维和石棉纤维具有更好的耐车辙性,疲劳寿命和SITS,这可能主要是由于它们具有更高的网络功能。而木质素和石棉纤维会产生更大的弯曲强度和极限弯曲应变,这可能主要是由于它们具有更好的沥青稳定作用。但是,纤维在水冻融作用下的作用似乎没有希望,在木质素和石棉纤维作用下的FRAC的SITS甚至在某种程度上降低了。还发现,混合物中的纤维含量为0.35质量%,可以实现聚酯纤维的耐车辙性和SITS的最佳性能输出。

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