Impact of Curing Methods on the Porosity and Compressive Strength of Concrete
Francis Kwesi Nsakwa Gabriel-Wettey, Kennedy Appiadu-Boakye, Firmin Anewuoh
Journal of Engineering Research and Reports · pp. 18–30 · Published 1 Jul 2021
10.9734/jerr/2021/v20i917371Abstract
An experimental investigation was conducted to evaluate the impact of different curing practices on the porosity and compressive strength of concrete. The targeted compressive strength of the concrete at 28-day of curing was 20 N/mm2. Plain concrete cubes were prepared with a mix ratio 1:1.5:3 by weight and 0.6 water-cement ratio. A total of 120 concrete cubes were tested on 7th, 14th, 21st, 28th and 56th day curing periods for slump, porosity and compressive strength. The four curing methods used were immersion, jute sack, plastic sheet and sprinkling which were all carried out in the laboratory under the same average environmental conditions of 27 ± 20°C temperature and 75% relative humidity. The results from the study showed that slump values were within the range of 52mm to 58mm which is within the medium range of 25 to 100mm, hence a true slump was achieved. The porosity of all samples decreased with age (i.e. at the dried state, immersion recorded the lowest 4.35%, followed by jute sack with 5.25%, plastic sheet 5.29% and sprinkling 5.55%). Again, the pattern of increases in concrete density (immersion curing produced concrete with the highest mean densities of 2369 kg/m3, jute 2360 kg/m3 ,plastic sheet 2277 kg/m3, sprinkling 2229 kg/m3 all for 56 days) was similar to that of the compressive strength (i.e immersion curing method yielded the highest compressive strength of 25.43 N/mm2, jute method 23.90 N/mm2, plastic method 23.47 N/mm2 , sprinkling method 22.33 N/mm2 for 56 days curing ages respectively). Therefore, increases in both compressive strength and densities of concrete cube is a function of curing method. The study concludes that the immersion curing method has the greater effect on the properties of concrete since it yielded the highest strengths. The recommendation is made for further studies on the impact of curing methods on the porosity and compressive strength of concrete on the field since this study was done in the laboratory under control conditions.
Cited by 6
Wei He, Shoujun Wu, Bo Zhang · Materiali in tehnologije · 2024
Mark Onipe · ArtGRID - Journal of Architecture Engineering and Fine Arts · 2025
Weifeng Bai, Xiaofeng Lu, Junfeng Guan · Construction and Building Materials · 2022
Nikhil agrawal, Anshuman Srivastava, Manpreet Singh · Lecture Notes in Civil Engineering · 2025
Hawar Hasan Jasim · IOP Conference Series: Earth and Environmental Science · 2025
Lívia Vásárhelyi, Dániel Sebők, Imre Szenti · Materials and Structures · 2026
Related research
- Seed Moisture Influence on Some Physical and Mechanical Properties of African Mesquite (Prosopis africana) — shares topic coverage
- Determination of Some Petrophysical Properties of Reservoir Rocks in the Niger Delta — shares topic coverage
- A New Generation of Porous Polymer Materials from Polystyrene Waste: Synthesis and Adsorption of Nitrate Anions in Aqueous Media — shares topic coverage
- Investigation on Porous Carbon-Loaded MnO for Removing Hexavalent Chromium from Aqueous Solution — shares topic coverage
- Structural Style and Reservoir Distribution in Deep-Water Niger Delta: A Case Study of “Nanny Field” — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
6
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.