纳米材料对沥青混合料性能的影响

Q2 Engineering
Aman Patidar, Dipankar Sarkar, Manish Pal
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引用次数: 2

摘要

由于高速发展、交通负荷的增加、交通量的增大和温度的季节性变化,沥青路面在使用寿命期间出现车辙、疲劳、热裂等病害,需要对沥青进行添加剂改性。在本研究中,VG30级沥青通过添加纳米二氧化硅进行改性,添加量为沥青重量的1% ~ 5%(增量1%)。热混合沥青(HMA)具有较高的混合、铺设和轧制温度,从而导致较高的燃料消耗。为了解决这个问题,一种名为ZycoTherm的纳米材料被添加到沥青中,它是一种化学温混合沥青(WMA)添加剂。纳米二氧化硅改性(NSMB)与未改性沥青(UMB)相比,稳定性有所提高。在沥青含量较低时,WMA改性混合料的稳定性略高于UMB和NSMB。两种混合料的稳定性和抗拉强度比(TSR)分别大于75%和80%。与NSMB相比,WMA纳米二氧化硅具有更高的耐温性、耐湿性和耐短期老化性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studying The Behavior Of Asphalt Mix And Their Properties In The Presence Of Nano Materials
Due to rapid development, increase in the traffic load, higher traffic volume and seasonal variation in temperature, asphalt pavement shows distresses like rutting, fatigue and thermal cracking etc. because of this pavement fails during service life so that bitumen needs to be modified with some additive. In this study VG30 grade bitumen modify with addition of nanosilica with 1% to 5% (increment of 1%) by weight of bitumen. Hot mix asphalt (HMA) have higher mixing, laying and rolling temperatures which leads to higher consumption of fuel. To address this issue, a nano material named ZycoTherm which is chemical warm mix asphalt (WMA) additive is added to bitumen. Nanosilica modification (NSMB) results in the increase in stability compared to unmodified bitumen (UMB). WMA modified mix shows slightly higher stability than UMB and NSMB in a lower bitumen content. The Retained stability and tensile strength ratio (TSR) is more than 75% and 80% respectively for both mixes. Nanosilica with WMA has more resistant to temperature susceptibility, moisture susceptibility and short term aging than NSMB.
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
5346
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