Effect of Fly Ash Fineness in Cement Replacement on the Compressive Behavior and Durability of Normal-Strength High-Volume Fly Ash Concrete †
Abstract
1. Introduction
2. Materials and Method
3. Result and Discussion
3.1. Slump Test
3.2. Compressive Strength Test
- : concrete compressive strength (N/mm2)
- P: maximum load (N)
- A: cross-sectional area of test object (mm2)
3.3. Concrete Durability Test
4. Conclusions
- The average slump value of HVFA mixtures containing 50% fly ash passing sieve No. 200 and No. 400 was 15 cm, suggesting that fly ash fineness has minimal influence on workability.
- The fly ash fineness gives significant effect on compressive strength, with the most significant improvement recorded at 28 days, reaching 13.29%.
- Finer fly ash particle plays a critical role in enhancing resistance to chloride ion ingress, in which the use of finer particles resulted in a denser and more compact concrete matrix, thereby lowering electrical conductivity and improving durability.
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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| Materials | Normal Concrete | Fly Ash 50% Passes Sieve 200 | Fly Ash 50% Passes Sieve 400 |
|---|---|---|---|
| Fine Aggregate (kg) | 854 | 854 | 854 |
| Coarse Aggregate (kg) | 1014 | 1014 | 1014 |
| Fly ash (kg) | - | 158.5 | 158.5 |
| Cement (kg) | 317 | 158.5 | 158.5 |
| Water (L) | 95 | 95 | 95 |
| Total (kg) | 2280 | 2280 | 2280 |
| Percentage of Fly Ash Passes Sieve 200 & 400 | Compressive Strength (Ø 15 cm, Height 30 cm) | Durability (Ø10 cm, Height 5 cm) | ||
|---|---|---|---|---|
| 14 Days | 28 Days | 56 Days | 56 Days | |
| 0% | 3 | 3 | 3 | 3 |
| 50% passes sieve 200 | 3 | 3 | 3 | 3 |
| 50% passes sieve 400 | 3 | 3 | 3 | 3 |
| Total | 36 | |||
| Type of Concrete | Water Usage per m3 (L) | Slump Result (cm) | |
|---|---|---|---|
| Plan | Actual | ||
| normal concrete | 95 | 150 | 18 |
| Passed Sieve 200 | 95 | 105 | 15 |
| Passed Sieve 400 | 95 | 105 | 15 |
| Charge Passed (Coulombs) | Chloride Ion Penetrability |
|---|---|
| >4000 | High |
| 2000–4000 | Moderate |
| 1000–2000 | Low |
| 100–1000 | Very low |
| <100 | Negligible |
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Solikin, M.; Mubarak, F.; Rustama, I.; Rochman, A.; Prasetya, A.R.; Ihsan, I.N. Effect of Fly Ash Fineness in Cement Replacement on the Compressive Behavior and Durability of Normal-Strength High-Volume Fly Ash Concrete. Eng. Proc. 2026, 137, 2. https://doi.org/10.3390/engproc2026137002
Solikin M, Mubarak F, Rustama I, Rochman A, Prasetya AR, Ihsan IN. Effect of Fly Ash Fineness in Cement Replacement on the Compressive Behavior and Durability of Normal-Strength High-Volume Fly Ash Concrete. Engineering Proceedings. 2026; 137(1):2. https://doi.org/10.3390/engproc2026137002
Chicago/Turabian StyleSolikin, Mochammad, Fauzi Mubarak, Indra Rustama, Abdul Rochman, Arruna Rodhi Prasetya, and Ibnu Nur Ihsan. 2026. "Effect of Fly Ash Fineness in Cement Replacement on the Compressive Behavior and Durability of Normal-Strength High-Volume Fly Ash Concrete" Engineering Proceedings 137, no. 1: 2. https://doi.org/10.3390/engproc2026137002
APA StyleSolikin, M., Mubarak, F., Rustama, I., Rochman, A., Prasetya, A. R., & Ihsan, I. N. (2026). Effect of Fly Ash Fineness in Cement Replacement on the Compressive Behavior and Durability of Normal-Strength High-Volume Fly Ash Concrete. Engineering Proceedings, 137(1), 2. https://doi.org/10.3390/engproc2026137002

