LABORATORY EVALUATION OF ORGANIC AND CHEMICAL WARM MIX ASPHALT TECHNOLOGIES FOR SMA ASPHALT

被引:14
作者
Zaumanis, Martins [1 ]
Olesen, Eric [2 ]
Haritonovs, Viktors [1 ]
Brencis, Guntis [1 ]
Smirnovs, Juris [1 ]
机构
[1] Riga Tech Univ, Dept Transportat, LV-1048 Riga, Latvia
[2] Danish Rd Inst, DK-2640 Hedehusene, Denmark
来源
BALTIC JOURNAL OF ROAD AND BRIDGE ENGINEERING | 2012年 / 7卷 / 03期
关键词
warm mix asphalt; bitumen rheology; stiffness; aging; permanent deformations;
D O I
10.3846/bjrbe.2012.26
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Warm mix asphalt (WMA) technologies allow significant lowering of the production and paving temperature of the conventional hot mix asphalt (HMA), which promise various benefits, e.g. lowering the greenhouse gas emissions, reduction of energy consumption, improved working conditions, better workability and compaction, etc. However, in order to reach widespread implementation of WMA, it is necessary to prove that it has the same or better mechanical characteristics and long-term performance as HMA. This article presents a laboratory study that has been conducted to evaluate two different WMA technologies - chemical (using Rediset WMX) and organic (using Sasobit) for the use with stone matrix asphalt (SMA). The properties of two types of bitumen after modification with two different dosages of each WMA additive have been tested by traditional empirical test methods and with the Dynamic Shear Rheometer for a wide temperature range. Asphalt testing has been performed for SMA11 type mixture. At first, the necessary changes in testing conditions were determined by means of asphalt stiffness - the results suggested that for adequate comparison with reference HMA, at least two hour asphalt aging is essential before preparing test specimens. The properties of asphalt were determined for specimens that were prepared at four different compaction temperatures by means of two compaction methods - Marshall hammer and gyratory compactor. The test results show that it is possible to reduce the compaction temperature of 155 degrees C for HMA to at least 125 degrees C for both WMA products with maintaining similar density and mechanical characteristics at intermediate to high temperatures.
引用
收藏
页码:191 / 197
页数:7
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