Stiffness Evaluation of Laboratory and Plant Produced Foamed Bitumen Warm Asphalt Mixtures with Fiber Reinforcement and Bio-Flux Additive

被引:6
作者
Iwanski, Marek [1 ]
Chomicz-Kowalska, Anna [1 ]
Maciejewski, Krzysztof [1 ]
Janus, Karolina [1 ]
Radziszewski, Piotr [2 ]
Liphardt, Adam [2 ]
Michalec, Maciej [3 ]
Goral, Karol [3 ]
机构
[1] Kielce Univ Technol, Fac Civil Engn & Architecture, Dept Transportat Engn, Al Tysiaclec Panstwa Polskiego 7, PL-25314 Kielce, Poland
[2] Warsaw Univ Technol, Inst Rd & Bridges, Fac Civil Engn, Al Armii Ludowej 16, PL-00637 Warsaw, Poland
[3] Zaklad Robot Drogowych DUKT Sp Zoo, PL-26052 Nowiny, Poland
关键词
WMA; foamed bitumen; Bio-Flux; complex stiffness modulus; plant production; highly modified bitumen; polymer modified bitumen; high stiffness modulus asphalt concrete; surface course; TEMPERATURE; CONSTRUCTION; PERFORMANCE; RESISTANCE; MODULUS; BINDER; GLASS;
D O I
10.3390/ma16051950
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The present paper investigates the viscoelastic stress-strain responses of laboratory and plant produced warm mix asphalt mixtures containing basalt fiber dispersed reinforcement. The investigated processes and mixture components were evaluated for their efficacy in producing highly performing asphalt mixtures with decreased mixing and compaction temperatures. Surface course asphalt concrete (AC-S 11 mm) and high modulus asphalt concrete (HMAC 22 mm) conventionally and using a warm mix asphalt technique with foamed bitumen and a bio-derived fluxing additive. The warm mixtures included lowered production temperature (by 10 degrees C) and lowered compaction temperatures (by 15 degrees C and 30 degrees C). The complex stiffness moduli of the mixtures were assessed under cyclic loading tests at combinations of four temperatures and five loading frequencies. It was found that the warm produced mixtures were characterized by lower dynamic moduli than the reference mixtures in the whole spectrum of loading conditions, however, the mixtures compacted at the 30 degrees C lower temperature performed better than the mixtures compacted at 15 degrees C lower temperature, specifically when highest testing temperatures are considered. The differences in the performance of plant and laboratory produced mixtures were ascertained to be nonsignificant. It was concluded that the differences in stiffness of hot mix and warm mixtures can be attributed to the inherent properties of foamed bitumen mixtures and that these differences should shrink in time.
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页数:16
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