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Experimental study on the effect of basalt and glass fibers on behavior of open-graded friction course asphalt modified with nano-silica

机译:玄武岩和玻璃纤维对纳米二氧化硅改性的梯度渐变摩擦沥青性能的试验研究

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Open-graded friction course (OGFC) is a mixture having gap graded aggregate which is used in pavement surfacing. Asphalt mixtures were modified by Nano silica, polymer, basalt fiber and glass fiber. A draindown test, Cantabro test, permeability test and an indirect tensile strength test and moisture susceptibility were used to evaluate the performance of OGFC mixtures. Test results revealed optimum compounds for 0.2% basalt fiber with 2% nano-silica and 4.5% Styrene-Butadiene Styrene (SBS) Polymer. The minimum air voids content of fiber-reinforced OGFC mixtures modified with nanomaterial should be 13% for 6% bitumen. The results showed the effect of nano-silica in reducing abrasion and reduction of sensitivity to oxidation is considerable and the effect of basalt fiber per 0.2% in the asphalt mixture to be greater than that of glass fiber in reducing the draindown phenomenon: and for controlling the level of draindown phenomenon, nano-silica compound should also be used with basalt fiber. It was also found that although the use of basalt fiber is more effective in decreasing draindown in comparison with glass fiber, the effect of glass fiber in reducing the permeability of the asphalt mixture is far greater than basalt fiber. (C) 2019 Elsevier Ltd. All rights reserved.
机译:开级摩擦层(OGFC)是具有间隙分级骨料的混合物,用于路面铺面。沥青混合物用纳米二氧化硅,聚合物,玄武岩纤维和玻璃纤维改性。使用排水试验,Cantabro试验,渗透性试验以及间接拉伸强度试验和湿气敏感性来评估OGFC混合物的性能。测试结果表明,含0.2%玄武岩纤维,2%纳米二氧化硅和4.5%苯乙烯-丁二烯苯乙烯(SBS)聚合物的最佳化合物。对于6%的沥青,纤维增强的OGFC混合物经纳米材料改性后的最小空洞含量应为13%。结果表明,纳米二氧化硅在减少磨损和降低对氧化敏感性方面的作用是显着的,并且每0.2%的玄武岩纤维在沥青混合料中的作用大于玻璃纤维,在减少排水现象方面的作用:就排水现象的水平而言,纳米二氧化硅化合物也应与玄武岩纤维一起使用。还发现,尽管与玻璃纤维相比,使用玄武岩纤维在减少排水方面更有效,但是玻璃纤维在降低沥青混合物的渗透性方面的作用远大于玄武岩纤维。 (C)2019 Elsevier Ltd.保留所有权利。

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