Compressive strength of lightweight foamed concrete with charcoal as a sand replacement
Foamed concrete, a high performance concrete with lightweight properties and strength-enhancing additive have drawn the attention of researchers towards a sustainable life style. This paper presents a study of the compressive strength of various charcoal-filled lightweight foamed concrete (LFC), whe...
| Main Authors: | , , , , , , |
|---|---|
| Format: | Article |
| Language: | English |
| Published: |
National Institute of Science Communication and Information Resources
2018
|
| Subjects: | |
| Online Access: | http://eprints.uthm.edu.my/5586/ http://eprints.uthm.edu.my/5586/1/AJ%202018%20%28235%29.pdf |
| _version_ | 1848888588163350528 |
|---|---|
| author | Lee, Yeong Huei Lim, Ming Han Lee, Yee Ling Lee, Yee Yong Tan, Cher Siang Mohammad, Shahrin Ma, Chau Khun |
| author_facet | Lee, Yeong Huei Lim, Ming Han Lee, Yee Ling Lee, Yee Yong Tan, Cher Siang Mohammad, Shahrin Ma, Chau Khun |
| author_sort | Lee, Yeong Huei |
| building | UTHM Institutional Repository |
| collection | Online Access |
| description | Foamed concrete, a high performance concrete with lightweight properties and strength-enhancing additive have drawn the attention of researchers towards a sustainable life style. This paper presents a study of the compressive strength of various charcoal-filled lightweight foamed concrete (LFC), where waste materials, water-reducing agent and strength enhancement additives are introduced to the mix design in order to obtain further lightweight concrete. Five series of experimental tests were carried out, where Series 1 tested optimum ratio of silica fume and superplasticizer, Series 2 depicted the design mix of sand replacement with charcoal, Series 3 described the mix for additives, Series 4 illustrated effect of aggregate size for charcoal and different densities, as well as Series 5 was the conventional design mix ratio. The fresh and harden densities have been recorded while the shrinkage of LFC had also been observed during the casting and curing period. From the results, the mixture with silica fume replacing the cement was found to have a lower compressive strength as compared to mixtures with a full portion of cement. The strength reductions ranged between 62 to 80% for the mix with no superplasticizer and 29 to 82% for the mix with superplasticizer, which was obtained from the 20 to 50% of cement replacement with silica fume. Foamed concrete with superplasticizer achieved 66% of higher compressive strength. However, concrete expansion and spalling were discovered at the later concrete age of Series 5 which degraded the concrete strength. From this study, it was found that charcoal with low specific gravity is a suitable for full sand replacement in foamed concrete prior to the treatment that can lower its alkalinity. |
| first_indexed | 2025-11-15T20:12:40Z |
| format | Article |
| id | uthm-5586 |
| institution | Universiti Tun Hussein Onn Malaysia |
| institution_category | Local University |
| language | English |
| last_indexed | 2025-11-15T20:12:40Z |
| publishDate | 2018 |
| publisher | National Institute of Science Communication and Information Resources |
| recordtype | eprints |
| repository_type | Digital Repository |
| spelling | uthm-55862022-01-17T01:46:04Z http://eprints.uthm.edu.my/5586/ Compressive strength of lightweight foamed concrete with charcoal as a sand replacement Lee, Yeong Huei Lim, Ming Han Lee, Yee Ling Lee, Yee Yong Tan, Cher Siang Mohammad, Shahrin Ma, Chau Khun TH Building construction TA401-492 Materials of engineering and construction. Mechanics of materials TH1000-1725 Systems of building construction. Including fireproof construction, concrete construction Foamed concrete, a high performance concrete with lightweight properties and strength-enhancing additive have drawn the attention of researchers towards a sustainable life style. This paper presents a study of the compressive strength of various charcoal-filled lightweight foamed concrete (LFC), where waste materials, water-reducing agent and strength enhancement additives are introduced to the mix design in order to obtain further lightweight concrete. Five series of experimental tests were carried out, where Series 1 tested optimum ratio of silica fume and superplasticizer, Series 2 depicted the design mix of sand replacement with charcoal, Series 3 described the mix for additives, Series 4 illustrated effect of aggregate size for charcoal and different densities, as well as Series 5 was the conventional design mix ratio. The fresh and harden densities have been recorded while the shrinkage of LFC had also been observed during the casting and curing period. From the results, the mixture with silica fume replacing the cement was found to have a lower compressive strength as compared to mixtures with a full portion of cement. The strength reductions ranged between 62 to 80% for the mix with no superplasticizer and 29 to 82% for the mix with superplasticizer, which was obtained from the 20 to 50% of cement replacement with silica fume. Foamed concrete with superplasticizer achieved 66% of higher compressive strength. However, concrete expansion and spalling were discovered at the later concrete age of Series 5 which degraded the concrete strength. From this study, it was found that charcoal with low specific gravity is a suitable for full sand replacement in foamed concrete prior to the treatment that can lower its alkalinity. National Institute of Science Communication and Information Resources 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/5586/1/AJ%202018%20%28235%29.pdf Lee, Yeong Huei and Lim, Ming Han and Lee, Yee Ling and Lee, Yee Yong and Tan, Cher Siang and Mohammad, Shahrin and Ma, Chau Khun (2018) Compressive strength of lightweight foamed concrete with charcoal as a sand replacement. Indian Journal of Engineering and Materials Sciences, 25 (1). pp. 98-108. ISSN 0971-4588 |
| spellingShingle | TH Building construction TA401-492 Materials of engineering and construction. Mechanics of materials TH1000-1725 Systems of building construction. Including fireproof construction, concrete construction Lee, Yeong Huei Lim, Ming Han Lee, Yee Ling Lee, Yee Yong Tan, Cher Siang Mohammad, Shahrin Ma, Chau Khun Compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| title | Compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| title_full | Compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| title_fullStr | Compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| title_full_unstemmed | Compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| title_short | Compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| title_sort | compressive strength of lightweight foamed concrete with charcoal as a sand replacement |
| topic | TH Building construction TA401-492 Materials of engineering and construction. Mechanics of materials TH1000-1725 Systems of building construction. Including fireproof construction, concrete construction |
| url | http://eprints.uthm.edu.my/5586/ http://eprints.uthm.edu.my/5586/1/AJ%202018%20%28235%29.pdf |