Open Access
Issue |
E3S Web Conf.
Volume 552, 2024
16th International Conference on Materials Processing and Characterization (ICMPC 2024)
|
|
---|---|---|
Article Number | 01091 | |
Number of page(s) | 8 | |
DOI | https://doi.org/10.1051/e3sconf/202455201091 | |
Published online | 23 July 2024 |
- Farooq, Furqan, Slawomir Czarnecki, Pawel Niewiadomski, Fahid Aslam, Hisham Alabduljabbar, Krzysztof Adam Ostrowski, Klaudia Śliwa-Wieczorek, Tomasz Nowobilski, and Seweryn Malazdrewicz. “A comparative study for the prediction of the compressive strength of self-compacting concrete modified with fly ash.” Materials 14, 17 (2021): 4934. [CrossRef] [PubMed] [Google Scholar]
- Akinpelu, Mutiu A., Samson O. Odeyemi, Oladipupo S. Olafusi, and Fatimah Z. Muhammed. “Evaluation of splitting tensile and compressive strength relationship of self-compacting concrete.” Journal of King Saud University-Engineering Sciences 31, 1 (2019): 19–25. [CrossRef] [Google Scholar]
- Ahmad, Subhan, and Arshad Umar. “Characterization of self-compacting concrete.” Procedía engineering 173 (2017): 814–821. [CrossRef] [Google Scholar]
- Vakhshouri, Behnam, and Shami Nejadi. “Prediction of compressive strength of self-compacting concrete by ANFIS models.” Neurocomputing 280 (2018): 13–22. [CrossRef] [Google Scholar]
- Lo, T.Y., P.W.C. Tang, H.Z. Cui, and A. Nadeem. “Comparison of workability and mechanical properties of self-compacting lightweight concrete and normal self-compacting concrete.” Materials Research Innovations 11, 1 (2007): 45–50. [CrossRef] [Google Scholar]
- Bouziani, Tayeb. “Assessment of fresh properties and compressive strength of self-compacting concrete made with different sand types by mixture design modelling approach.” Construction and Building Materials 49 (2013): 308–314. [CrossRef] [Google Scholar]
- Panda, K.C., and P.K. Bal. “Properties of self-compacting concrete using recycled coarse aggregate.” Procedía Engineering 51 (2013): 159–164. [CrossRef] [Google Scholar]
- Asteris, Panagiotis G., Ali Ashrafian, and Mohammad Rezaie-Balf. “Prediction of the compressive strength of self-compacting concrete using surrogate models.” Comput.Concr 24, 2 (2019): 137–150. [Google Scholar]
- Dutta, Susom, A. Ramachandra Murthy, Dookie Kim, and Pijush Samui. “Prediction of Compressive Strength of Self-Compacting Concrete Using Intelligent Computational Modeling.” Computers, Materials & Continua 53, 2 (2017). [Google Scholar]
- Kamal, M.M., M.A. Safan, A.A. Bashandy, and A.M. Khalil. “Experimental investigation on the behavior of normal strength and high strength self-curing self-compacting concrete.” Journal of Building Engineering 16 (2018): 79–93. [CrossRef] [Google Scholar]
- Sukumar, Binu, K. Nagamani, and R. Srinivasa Raghavan. “Evaluation of strength at early ages of self-compacting concrete with high volume fly ash.” Construction and Building Materials 22, 7 (2008): 1394–1401. [CrossRef] [Google Scholar]
- Jalal, Mostafa, Alireza Pouladkhan, Omid Fasihi Harandi, and Davoud Jafari. “Comparative study on effects of Class F fly ash, nano silica and silica fume on properties of high-performance self-compacting concrete.” Construction and Building Materials 94, 90 (2015): 104. [CrossRef] [Google Scholar]
- Aiyer, Bhairevi Ganesh, Dookie Kim, Nithin Karingattikkal, Pijush Samui, and P. Ramamohan Rao. “Prediction of compressive strength of self-compacting concrete using least square support vector machine and relevance vector machine.” KSCE Journal of Civil Engineering 18 (2014): 1753–1758. [CrossRef] [Google Scholar]
- Uysal, Mucteba, and Harun Tanyildizi. “Predicting the core compressive strength of self-compacting concrete (SCC) mixtures with mineral additives using artificial neural network.” Construction and Building Materials 25, 11 (2011): 4105–4111. [CrossRef] [Google Scholar]
- Choi, Yun Wang, Yong Jic Kim, Hwa Cheol Shin, and Han Young Moon. “Experimental research on the fluidity and mechanical properties of high-strength lightweight self-compacting concrete.” Cement and Concrete Research 36, 9 (2006): 1595–1602. [CrossRef] [Google Scholar]
- Nepomuceno, Miguel CS, and Luís FA Bernardo. “Evaluation of self-compacting concrete strength with non-destructive tests for concrete structures.” Applied Sciences 9, 23 (2019): 5109. [CrossRef] [Google Scholar]
- Lone, Sabir Shafi, Megha Gupta, and Geeta Mehta. “Comparative Study of Nano-Silica Induced Mortar, Concrete and Self-Compacting Concrete â€"A Review.” Indian Journal of Science and Technology (2016). [Google Scholar]
- Karthik, D., K. Nirmalkumar, and R. Priyadharshini. “Characteristic assessment of self-compacting concrete with supplementary cementitious materials.” Construction and Building Materials 297 (2021): 123845. [CrossRef] [Google Scholar]
- Siddique, Rafat, Paratibha Aggarwal, and Yogesh Aggarwal. “Prediction of compressive strength of self-compacting concrete containing bottom ash using artificial neural networks.” Advances in engineering software 42, no. 10 (2011): 780–786. [CrossRef] [Google Scholar]
- Kamal, Mounir M., Mohamed A. Safan, Zeinab A. Etman, and Bsma M. Kasem. “Mechanical properties of self-compacted fiber concrete mixes.” HBRC Journal 10, 1 (2014): 25–34. [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.