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Moisture Susceptibility Evaluation of Asphalt Mixtures Containing Steel Slag Powder as Filler

机译:以钢渣粉为填充料的沥青混合料的湿气敏感性评估

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摘要

The primary objective of this paper was to investigate the effect of replacing steel slag powder (SSP) with limestone filler (LF) with different contents as an inorganic anti-stripping agent on the moisture susceptibility of asphalt mixtures. Two traditional inorganic anti-stripping agents were selected for comparison, namely cement (CE) and slaked lime (SL). Apparent morphology, chemical compositions, and the particle size distribution of the four fillers were firstly studied. LF was replaced by SSP, CE, and SL with different contents, and then mixed with asphalt to prepare asphalt mortars. An 80 °C water immersion test was conducted to investigate the adhesion of asphalt mortar and aggregates, and an image analysis technique was utilized to evaluate the stripping of asphalt from the aggregates. A Marshall stability test and freeze-thaw split test were then conducted to analyze the effect of different fillers on the moisture susceptibility of asphalt mixtures. The results show that SSP contains a large amount of CaO, which indicates that SSP has a certain alkalinity. Compared with LF, SSP has a rougher surface texture and a finer particle size. Image analysis results show that the partially replacement of LF by SSP increases the asphalt coverage rate of aggregates, which means that SSP can improve the adhesion between asphalt mortar and aggregates. However, the excessive addition of SSP will result in a decrease in adhesion. The results of both the Marshall stability test and freeze-thaw split test demonstrate that CE, SL, and SSP can improve the moisture susceptibility of asphalt mixtures compared with the LF group, and that asphalt mixtures containing SSP have better moisture damage resistance than those with CE, but less such resistance than those with SL. With the increase of the amount of SSP replacing LF, the moisture susceptibility of the asphalt mixture decreases gradually. The optimum substitution amount of SSP was 25% of the total volume of fillers in this test.
机译:本文的主要目的是研究用不同含量的石灰石填料(LF)代替钢渣粉(SSP)作为无机防剥离剂对沥青混合料的水分敏感性的影响。比较了两种传统的无机防剥离剂,即水泥(CE)和熟石灰(SL)。首先研究了四种填料的表观形态,化学组成和粒径分布。用不同含量的SSP,CE和SL代替LF,然后与沥青混合以制备沥青砂浆。进行了80°C的水浸试验,以研究沥青砂浆和骨料的粘附性,并使用图像分析技术评估从骨料中剥离的沥青。然后进行了马歇尔稳定性试验和冻融分裂试验,以分析不同填料对沥青混合料的水分敏感性的影响。结果表明,SSP含有大量的CaO,表明SSP具有一定的碱度。与LF相比,SSP具有更粗糙的表面纹理和更细的粒度。图像分析结果表明,SSP替代LF可以提高集料的沥青覆盖率,这意味着SSP可以提高沥青砂浆与集料之间的附着力。但是,过量添加SSP将导致粘合力下降。马歇尔稳定性试验和冻融劈裂试验的结果表明,与LF组相比,CE,SL和SSP可以改善沥青混合料的水分敏感性,并且含有SSP的沥青混合料比LF组具有更好的抗水损害性。 CE,但比SL的抗性小。随着SSP替代LF用量的增加,沥青混合料的湿气敏感性逐渐降低。在该测试中,SSP的最佳取代量为填料总体积的25%。

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