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Experimental Study on the Effects of Coal Ash and Emulsion Coated-Sisal Fibers in Hot Mix Asphalt

Experimental Study Effects Coal Ash is a M.Tech project topic for Civil Engineering. Explore the IEEE-style abstract, reference paper, PDF link, tools…

Experimental Study Effects Coal Ash is a M.Tech project topic for Civil Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Experimental Study Effects Coal Ash Project Details

Abstract

This experimental study solves one of the many issues caused by coal-fired thermal power plants byrecycling fly ash and bottom ash in Hot Mix Asphalt (HMA). In this study, fly ash works as a mineral filler, while bottom ash operates as fine aggregate, thus encouraging sustainable waste management. Additionally, emulsion-coated natural sisal fibers have been incorporated into the mix to improve performance and provide an alternative to conventional paving materials that are less environmentally friendly. Dense graded bituminous mixes (DBM) were prepared as per the MORTH (2013) guidelines using VG-30 bitumen with a nominal maximum aggregate size (NMAS) of 26.5 mm. Sisal fibers, which were pre-coated with the SS-1 emulsion,

were varied systematically in terms of content (0%–1%) and length (5 mm–20 mm) to study their effect. The optimal binder content, optimal fiber dosage, and optimal fiber length were determined using the Marshall Mix Design method. The optimum mix, which contained 5.57% binder, 0.5% fiber, and 10 mm fibers, reached a maximum Marshall Stability of 15 kN. The modified HMA’s mechanical properties were further improved in the performance tests: Tensile Strength Ratio (TSR), Indirect Tensile Strength (ITS), static creep, and moisture susceptibility tests. The results confirm coal ash and sisal fibers as suitable sustainable materials for asphalt mixtures.

Reference Paper Experimental Study on the Effects of Coal Ash and Emulsion Coated-Sisal Fibers in Hot Mix Asphalt
Domain Civil Engineering
Sub-Domain Transportation & Urban / Pavement Engineering / Bituminous Mix Design
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