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首页> 外文期刊>International Journal of Pavement Research and Technology >Nanoscale study on water damage for different warm mix asphalt binders
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Nanoscale study on water damage for different warm mix asphalt binders

机译:不同温拌沥青混合料水损害的纳米尺度研究

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In order to analyze the water damage to different warm mix asphalt binders from the micro scale, five kinds of asphalt binders, 70#A base asphalt, sasobit warm mix asphalt, energy champion 120 °C (EC120) warm mix asphalt, aspha-min warm mix asphalt, sulfur-extended asphalt modifier (SEAM) warm mix asphalt, under different conditions (dry/wet, original/aging) are prepared for laboratory tests. The atomic force microscope (AFM) is used to observe the surface properties and measure the adhesion force between the asphalt and the mineral aggregate. The obtained results show that under the dry condition aspha-min warm mix asphalt and SEAM warm mix asphalt show stronger adhesive ability with the mineral aggregate compared with other asphalt binders, but also have relatively large dispersion and fluctuation in the tested results; under the wet condition, aspha-min warm mix asphalt and SEAM warm mix asphalt show stronger water damage resistance ability. The EC120 warm mix asphalt and aspha-min warm mix asphalt are less sensitive to moist, and their corresponding adhesion force is less susceptible to the change of external moisture conditions, leading to a better ability to resist water erosion. The aging process significantly lowers the moisture erosion resistance ability, which further impairs the water damage resistance ability. The base asphalt is more sensitive to moisture and more vulnerable to water damage, no matter whether it is under original or aging conditions. The aging aspha-min warm mix asphalt has the least loss of adhesion force, the smallest dispersion of the tested adhesion force, the strongest water damage resistance ability, no matter it is dry or wet.
机译:为了从微观角度分析水对不同的热拌沥青粘合剂的破坏,我们使用了五种沥青粘合剂,70#A基础沥青,sasobit温拌沥青,能量冠军120°C(EC120)温拌沥青,沥青准备了在不同条件下(干/湿,原始/老化)的热拌沥青,硫磺膨胀沥青改性剂(SEAM)的热拌沥青用于实验室测试。原子力显微镜(AFM)用于观察表面性能并测量沥青与矿物骨料之间的附着力。所得结果表明,在干燥条件下,沥青-最小温拌沥青和SEAM温拌沥青与其他沥青粘结剂相比,对矿物骨料的粘结能力更强,但试验结果具有较大的分散性和波动性。在潮湿条件下,沥青-最小温拌沥青和SEAM温拌沥青显示出更强的抗水害能力。 EC120温拌沥青和Aspha-min温拌沥青对湿气的敏感性较低,并且它们相应的附着力对外部水分条件的变化较不敏感,从而具有更好的抗水侵蚀能力。时效过程显着降低了抗水侵蚀能力,这进一步削弱了抗水损害能力。无论是在原始条件下还是在老化条件下,基础沥青都对水分更敏感,并且更容易受到水的破坏。无论是干还是湿,老化的沥青-最小温拌沥青具有最小的附着力损失,最小的测试附着力分散性,最强的抗水损害能力。

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