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High and Low Temperature Performance and Fatigue Properties of Silica Fume/SBS Compound Modified Asphalt

机译:二氧化硅烟气/ SBS化合物改性沥青的高温低温性能和疲劳性能

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摘要

In order to study the high and low temperature properties, and fatigue properties, of silica fume/SBS (Styrene-Butadiene-Styrene) compound modified asphalt (SFSCMA), dynamic shear rheometer (DSR) and bending beam rheometer (BBR) are used to study matrix asphalt (MA), silica fume modified asphalt (SFMA) (silica fume (SF) 6%), SBS modified asphalt (SBSMA) (mass ratio of SBS to Matrix asphalt 4%), and silica fume/SBS compound modified asphalt, and the high temperature rheological properties of silica fume/SBS compound modified asphalt with different silica fume additions are also studied. The modification mechanism of SFSCMA was studied by scanning electron microscope (SEM). The investigation results turn out: along with the increase in the content of SF, the high temperature performance of SFSCMA is improved significantly. When the content of SF is 6%, the high temperature performance is the best. When the content of SF is more than 6%, the high temperature property of SFSCMA is lower than that of SBSMA. It is suggested to choose 6% as the content of SF. Compared with MA, SFMA, and SBSMA, SFSCMA has excellent high temperature performance; compared with MA and SFMA, the low temperature performance of SFSCMA is improved, but it is worse than that of SBSMA. Moreover, when the temperature is lower than −30 °C, its low temperature performance is close to that of MA, or even worse than that of MA. After the compound modification of SF and SBSMA, the fatigue properties of the asphalt are improved, and the fatigue performance of SFSCMA is the best among the four kinds of asphalt. There is a cross-linking force in the network structure of SFSCMA, which restrains the flow of the whole system, so that the stability of the compound modified asphalt is significantly improved, which is favorable to the high temperature performance and fatigue resistance of the compound modified asphalt. However, due to its low mobility, it has a negative impact on the low temperature performance of the compound modified asphalt. In addition, according to previous studies, compared with diatomite, it is proven that SF can reach the same level as diatomite in improving the high temperature performance and fatigue performance of asphalt. Therefore, SF can be used as a good choice of asphalt modifier and can achieve the purpose of waste recycling and environmental protection.
机译:为了研究二氧化硅烟气/ SBS(苯乙烯 - 丁二烯 - 苯乙烯)化合物改性沥青(SFSCMA),使用动态剪切流变仪(DSR)和弯曲梁流变仪(BBR)的高温性质和疲劳性能。研究基质沥青(MA),二氧化硅烟雾改性沥青(SFMA)(二氧化硅烟气(SF)6%),SBS改性沥青(SBSMA)(SBS的质量比为基质沥青4%),和二氧化硅烟草/ SBS化合物改性沥青还研究了二氧化硅烟气/ SBS化合物改性沥青的高温流变特性,具有不同的二氧化硅烟雾添加。通过扫描电子显微镜(SEM)研究了SFScma的修饰机制。调查结果结果:随着SF含量的增加,SFSCMA的高温性能显着提高。当SF的含量为6%时,高温性能最好。当SF的含量超过6%时,SFScma的高温性低于SBSMA的高温性。建议选择6%作为SF的含量。与MA,SFMA和SBSMA相比,SFSCMA具有优异的高温性能;与MA和SFMA相比,SFSCMA的低温性能得到改善,但比SBSMA更差。此外,当温度低于-30℃时,其低温性能接近MA的低温,甚至比MA更差。在SF和SBSMA的复合改性后,改善了沥青的疲劳性能,SFScma的疲劳性能是四种沥青中最好的。在SFSCMA的网络结构中存在交联力,其限制了整个系统的流动,从而显着提高了化合物改性沥青的稳定性,这有利于化合物的高温性能和疲劳性抗性改性沥青。然而,由于其低迁移率,它对化合物改性沥青的低温性能产生负面影响。此外,根据先前的研究,与硅藻土相比,证明SF可以达到与硅藻土相同的水平,从而提高沥青的高温性能和疲劳性能。因此,SF可作为沥青改性剂的良好选择,可以达到废物回收和环保的目的。

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