Effect of Wet-Dry Cycles on Resilient Modulus of Class C Coal Fly Ash-Stabilized Aggregate Base

Author:

Khoury Naji N.1,Zaman Musharraf M.1

Affiliation:

1. School of Civil Engineering and Environmental Science, University of Oklahoma, 202 West Boyd Street, Room 334, Norman, OK 73019-1024

Abstract

A laboratory study was undertaken to investigate the effect of wet-dry (W-D) cycles on low-quality aggregates stabilized with Class C coal fly ash (CFA). Resilient modulus ( M r), unconfined compressive strength, and elastic modulus were used to evaluate this effect. Cylindrical specimens stabilized with 10% CFA, cured for 3 and 28 days, and subjected to different W-D cycles were tested. The M r values of 28-day-cured specimens increased as W-D cycles increased up to 12, beyond which a reduction was observed. For 3-day-cured specimens, M r increased with the number of W-D cycles. W-D action produced a greater detrimental effect on 28-day-cured specimens than on 3-day-cured specimens. The M r values of 28-day-cured specimens subjected to 30 cycles were approximately 5% lower than the corresponding M r values of specimens without any W-D cycles. The M r values of 3-day-cured specimens subjected to 30 W-D cycles, however, increased approximately 55% compared with the corresponding M r values of specimens with no W-D cycles. Also, it was found that 12 to 30 W-D cycles could be considered adequate to have a noticeable negative effect on 28-day-cured specimens; however, more than 30 cycles are needed for 3-day-cured specimens. Additionally, the positive effect of curing time was more dominant on 3-day-cured specimens, and the detrimental effect of W-D cycles was more influential on 28-day-cured specimens.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference15 articles.

1. Permanent Deformation of a Granular Base Material

2. YiL. Resilient Modulus of Fly Ash Stabilized Aggregates. Master’s thesis. University of Oklahoma, Norman, 1995.

3. PandeyK. K. Evaluation of Resilient Modulus and Layer Coefficients of a Coal Ash Stabilized Marginal Aggregate Base for AASHTO Flexible Pavement Design. Ph.D. dissertation. University of Oklahoma, Norman, 1996.

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