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Application of ground scrap tyre rubbers in asphalt concrete pavements

机译:废旧轮胎橡胶在沥青混凝土路面中的应用

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A laboratory scale evaluation of the feasibility of using ground rubber from scrap tyres in dry process hot-mix asphalt concrete used for road pavement was investigated. The rubber to asphalt ratio (by weight) of the specimens that was initially kept constant at 0.2 was subsequently varied from 0.1 to 0.5 using different rubber particle sizes. Some specimens were cured at ambient temperature, while others were soaked in water inside a curing tank, for a period of 28-days in the laboratory. The Marshall method was used to prepare both conventional and rubberized asphalt concrete specimens. The indirect tensile testing machine was used in the measurements of mechanical properties of all specimens. The results from the study show that the rubberized asphalt concrete mix has much better mechanical properties than the conventional one: the tensile strength of the specimens for example, increased from 1.82 X 10~3 to 2.04 X 10~3 kPa as the rubber to asphalt ratio increased from 0.1 to 0.3. Similar trends were observed in compressive and tensile moduli. The mechanical properties of rubberized specimens cured in air and those soaked in water were not significantly different (P>0.05). However, the conventional concrete especially those soaked in water showed inferior mechanical properties. The rubber particle size of 0.60 mm had the best mechanical properties while that of particle size 2.36 mm has the poorest mechanical properties.
机译:在实验室规模的评估中,研究了在公路路面干法热拌沥青混凝土中使用废轮胎磨碎的橡胶的可行性。最初保持恒定为0.2的样品的橡胶沥青比率(重量)随后使用不同的橡胶粒度从0.1变为0.5。在实验室中,一些标本在环境温度下固化,而另一些标本则在固化罐内的水中浸泡28天。马歇尔法用于制备常规和橡胶沥青混凝土样品。间接拉伸试验机用于测量所有样品的机械性能。研究结果表明,橡胶沥青混凝土混合物的机械性能比常规混合物好得多:例如,从橡胶到沥青,试样的拉伸强度从1.82 X 10〜3增加到2.04 X 10〜3 kPa。比率从0.1增加到0.3。在压缩模量和拉伸模量中观察到相似的趋势。空气中硫化和浸入水中的橡胶试样的力学性能没有显着差异(P> 0.05)。但是,常规混凝土,特别是浸泡在水中的混凝土,显示出较差的机械性能。橡胶粒径为0.60 mm的机械性能最佳,而粒径为2.36 mm的橡胶的机械性能最差。

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