Class C fly ash as a substitute for mineral fillers in asphalt mixtures

IF 1.1 4区 工程技术 Q4 POLYMER SCIENCE Polimery Pub Date : 2022-09-23 DOI:10.14314/polimery.2022.9.5
Sajjad Ali, Dr. Muhammad Owais Raza Siddiqui, S. M. Noman, Tahreem Beg, Danmei Sun
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Abstract

The influence of class C fly ash as a substitute for mineral aggregate on the stability and density of asphalt mixtures containing 3.5−6 wt% of bitumen was investigated. For the fly ash concentration (in relation to the replaced aggregate) 25, 50, 75 and 100 wt%, the optimal asphalt content (OAC) was determined, respectively, 5.75, 4.82, 4.42, 4.4 and 4 wt%. The stability increased with the increase in the content of fly ash. The results confirm the possibility of replacing mineral aggregates with fly ash.
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C类粉煤灰在沥青混合料中替代矿物填料
研究了C类粉煤灰作为矿物骨料的替代品对沥青含量为3.5-6wt%的沥青混合料的稳定性和密度的影响。对于粉煤灰浓度(相对于更换的集料)25、50、75和100wt%,确定了最佳沥青含量(OAC),分别为5.75、4.82、4.42、4.4和4wt%。稳定性随粉煤灰含量的增加而增加。结果证实了用粉煤灰代替矿物骨料的可能性。
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来源期刊
Polimery
Polimery Materials Science-Polymers and Plastics
CiteScore
2.90
自引率
6.20%
发文量
35
审稿时长
1 months
期刊介绍: The "Polimery" journal, of international circulation, is publishing peerreviewed scientific and technical research papers covering polymer science and technology in the field of polymers, rubbers, chemical fibres and paints. The range of topics covered are raw materials, polymer synthesis, processing and applications of polymers. Apart from scientific and technical research papers the monthly includes technical and commercial information such as reports from fairs and exhibitions as well as home, world and technical news. “Polimery "- an international journal covering the following topics: polymers, rubber, chemical fibres and paints. The Journal is addressed to scientists, managers and engineering staff of universities, Polish Academy of Sciences, R&D institutions, industry, specializing in polymer chemistry, physical chemistry, technology and processing. “Polimery” publishes original, reviewed research, scientific and technology papers in the field of polymer synthesis, analysis, technology and modification, processing, properties, applications and recycling.
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