Effect of Fly Ash on Performance and Design Slab Thickness of Jointed Plain Concrete Pavements

The effect of fly ash (up to 30% replacement level) on the compressive strength and coefficient of thermal expansion (CTE) of concrete mixtures up to 360 and 28 days, respectively, was investigated. The results show that 0% and 30% fly ash mixtures presented 30%–55% and 52%–116% strength gain over 360 days. The fly ash mixtures demonstrated lower CTE than mixtures without fly ash. AASHTOWare Pavement Mechanistic-Empirical Design (PMED) software was utilized to study performance predictions of jointed plain concrete pavements (JPCPs). Level 3 PMED simulations predict that fly ash increases pavement roughness and transverse cracking and reduces joint faulting. However, these simulations use 28-day strength data, which do not account for the long-term performance of fly ash. Increasing the slab thickness of the 30% fly ash JPCP mixtures to 1 in. can present comparable performance indicators to those of 0% fly ash mixtures. Level 2 simulations show a better depiction of pavement performance, as they incorporate a wider picture (up to 90 days) of strength gain than Level 3 simulations. However, the 90-day strength data do not completely portray the long-term strength gain of the fly ash–based concrete mixtures either. This study highlights limitations arising because PMED software limits the incorporation of strength data to 90 days under Level 2 simulations, whereas fly ash–based paving concrete develops significant strength at later ages. Therefore, it is necessary to validate these findings with the field performance of in-service pavements and to incorporate the long-term strength gain of fly ash mixtures in PMED software.

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Publication Details

Journal
Transportation Research Record Journal of the Transportation Research Board
Published
2026-09-26
DOI
https://doi.org/10.1177/03611981261480100
Primary Topic
Asphalt Pavement Performance Evaluation
Type
article
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article

Effect of Fly Ash on Performance and Design Slab Thickness of Jointed Plain Concrete Pavements

Gauhar Sabih, Tara L. Cavalline, Megan D. McIntosh, Clarke Summers et al.
Transportation Research Record Journal of the Transportation Research Board
Asphalt Pavement Performance Evaluation
article

Effect of Fly Ash on Performance and Design Slab Thickness of Jointed Plain Concrete Pavements

Gauhar Sabih, Tara L. Cavalline, Megan D. McIntosh, Clarke Summers, Abdul Qudoos
article en

Abstract

The effect of fly ash (up to 30% replacement level) on the compressive strength and coefficient of thermal expansion (CTE) of concrete mixtures up to 360 and 28 days, respectively, was investigated. The results show that 0% and 30% fly ash mixtures presented 30%–55% and 52%–116% strength gain over 360 days. The fly ash mixtures demonstrated lower CTE than mixtures without fly ash. AASHTOWare Pavement Mechanistic-Empirical Design (PMED) software was utilized to study performance predictions of jointed plain concrete pavements (JPCPs). Level 3 PMED simulations predict that fly ash increases pavement roughness and transverse cracking and reduces joint faulting. However, these simulations use 28-day strength data, which do not account for the long-term performance of fly ash. Increasing the slab thickness of the 30% fly ash JPCP mixtures to 1 in. can present comparable performance indicators to those of 0% fly ash mixtures. Level 2 simulations show a better depiction of pavement performance, as they incorporate a wider picture (up to 90 days) of strength gain than Level 3 simulations. However, the 90-day strength data do not completely portray the long-term strength gain of the fly ash–based concrete mixtures either. This study highlights limitations arising because PMED software limits the incorporation of strength data to 90 days under Level 2 simulations, whereas fly ash–based paving concrete develops significant strength at later ages. Therefore, it is necessary to validate these findings with the field performance of in-service pavements and to incorporate the long-term strength gain of fly ash mixtures in PMED software.

Transportation Research Record Journal of the Transportation Research Board
University of North Carolina at Charlotte (US), Lee College (US), Middle Tennessee State University (US)
Sustainable cities and communities
Openalex Percentile: Top 17%
Asphalt Pavement Performance Evaluation
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