Open Access
Issue |
E3S Web Conf.
Volume 596, 2024
International Conference on Civil, Materials, and Environment for Sustainability (ICCMES 2024)
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Article Number | 01014 | |
Number of page(s) | 12 | |
Section | Civil, Materials and Environment for Sustainability ICCMES 2024 | |
DOI | https://doi.org/10.1051/e3sconf/202459601014 | |
Published online | 22 November 2024 |
- Anders M, Frida R, Andreas S, Brandtsegg C, Harald TH, Anita B, Alexander W, Anja R (2019) Prospects for global warming potential reduction in the concrete industry. Plos One 14(4): 1–26 doi 10.1371/journal.pone.0208643. [Google Scholar]
- Song H, Pack S, Nam S, Jang J, Saraswathy V (1998) Estimation of the permeability of silica fume cement concrete. Construction and building material 24(3):315–321 doi.org/10.1016/j.conbuildmat.2009.08.033. [Google Scholar]
- Hassan KE, Cabrera GJ, Maliehe RP (2017) The effect of mineral admixtures on the properties of high-performance concrete. Cement & Concrete Composites 22(1):267–271 doi.org/10.1016/S0958-9465(00)00031-7. [Google Scholar]
- Kumar S, Kumar R (2019) Behavior of High- Performance Concrete Using Alccofine and Flyash. International Journal for Technological Research in Engineering 5(10):3985–3990. [Google Scholar]
- Gopalakrishnan K, Chinna Raju K (2015) Durability of Alkali Activated Concrete – A Review. Australian Journal of Basic and Applied Sciences 9(27):457–464. [Google Scholar]
- Tae Hyoung Kim, Chang U Chae, Gil Hwan Kim, Hyoung Jae Jang (2016) Analysis of CO2 Emission Characteristics of Concrete Used at Construction Sites. Sustainability 8(1):348–362. [CrossRef] [Google Scholar]
- Haque MN, Kayali O (1998) Properties of High Strength Concrete Using a Fine Fly Ash. Cement and Concrete Research 28(10) 1445–1452. [CrossRef] [Google Scholar]
- Fouzia Shaheen, Mohammed Samiuddin Fazil (2015) Effect of Metakaolin and Alccofine on Strength of Concrete. IRACST – Engineering Science and Technology: An International Journal 5(4):302–305. [Google Scholar]
- Nivin Philip, Neeraja D (2015) Mechanical Properties of High-Performance Concrete with Admixtures and Steel Fibre. ARPN Journal of Engineering and Applied Sciences 12(8): 2439–2444. [Google Scholar]
- Aitcin PC (1984) High performance Concrete. E & FN SPON London, England. [Google Scholar]
- Umamaheswaran V, Sudha C, Ravichandran PT, Kannan Rajkumar PR (2015) Use of M Sand in High Strength and High-Performance Concrete. Indian Journal of Science and Technology 8(28):1–8. [CrossRef] [Google Scholar]
- Jaydeep Chowdhury, Arka Saha (2015) High Strength concrete incorporating an Indian fly ash. International Journal of Scientific & Engineering Research 7(4):93–99. [Google Scholar]
- Annadurai A, Ravichandran A (2014) Development of Mix Design for High Strength Concrete with Admixtures. IOSR Journal of Mechanical and Civil Engineering 10(5):22–27. [Google Scholar]
- Caldarone MA (2009) High-Strength Concrete – A Practical Guide.Taylor & Francis Group. 1(1):1–272. [Google Scholar]
- Bharat Bhushan Jindal, Dhirendra Singhal, Sanjay Sharma K, Deepankar K, Ashish, Parveen (2017) Effect of Alccofine and Metakaolin on the Performance of SCC. Advances in Concrete Construction 5(1):17–29. [CrossRef] [Google Scholar]
- Ilda Kovacevic, Sanin Dzidic High-Strength Concrete (HSC) Material for High-Rise Buildings.12th Scientific/Research Symposium with International Participation, Metallic and Non-Metallic Materials, 12 (2018), No. 12, ISSN 2566-4344, pp 214–223. [Google Scholar]
- Chan YN, Luo X, Sun W (2000) Compressive strength and pore structure of high-performance concrete after exposure to high temperature up to 800ºC. Cement and Concrete Research 30(2) 247–251. [CrossRef] [Google Scholar]
- Kavitha S, Felix Kala T (2017) Effect of Bamboo Fiber in Self Compacting Concrete Partially Replacing Cement with GGBS and Alccofine. International Journal of Civil Engineering and Technology 8(3) 158–166. [Google Scholar]
- Haryanto Y, Hermanto NIS, Pamudji G, Wardana KP (2017) Compressive Strength and Modulus of Elasticity of Concrete with Cubed Waste Tire Rubbers as Coarse Aggregates. IOP Conference Series. Materials Science and Engineering 267:1–7. [Google Scholar]
- Zhengqi Li (2016) Drying shrinkage prediction of paste containing meta-kaolin and ultrafine fly ash for developing ultra-high-performance concrete. Materials Today Communications 6(1):74–80. [CrossRef] [Google Scholar]
- Dvorkin A, Bezusyak N, Lushnikova, Ribakov Y, Dvorkin L, Bezusyak A, Lushnikova N, Ribakov Y (2012) Using mathematical modeling for design of self-compacting high strength concrete with metakaolin admixture. Construction and Building Materials 37(1):851–864. [CrossRef] [Google Scholar]
- Nor NM, Ghazali MAA, Ahmed MZ, Yusof MA, Vikneswaran M, Yathra MA (2017) High strength concrete using common admixture. Journal of Fundamental and Applied Sciences 9(3): 546–554. [Google Scholar]
- Zainet MFM, Md. Safiuddin, Mahmud H (2000) Development of high-performance concrete using silica fume at relatively high water±binder ratios. Cement and Concrete Research 30(9):1501–1505. [CrossRef] [Google Scholar]
- Poona CS, Lama L, Koua SC, Wonga YL, Ron Wongb (2001) Rate of pozzolanic reaction of metakaolin in high-performance cement pastes. Cement and Concrete Research, 31(1): 1301–1306. [CrossRef] [Google Scholar]
- Venkatesan G, Tamizhazhagan T (2016) Ultra-High Strength Concrete. International Journal of Innovative Research in Science, Engineering and Technology 5(3):4412–4418. [Google Scholar]
- Rajesh Kumar S, Amiya K, Samanta, Singha Roy DK (2014) Characterization and Development of Eco-friendly concrete using industrial waste- A review. Journal of Urban and Environmental Engineering 8(1):98–108. [CrossRef] [Google Scholar]
- Mo.Tofik Y. Patel, Siddharth P, Upadhyay AR, Darji, Jamnu MA (2014) To Study on Effect of High-Performance Concrete with Alccofine and Waste Glass Powder. International Journal for Scientific Research & Development 2(4): 939- 341. [Google Scholar]
- Ansari US, Chaudhri IM, Ghuge NP, Phatangre RR (2015) High Performance Concrete with Partial Replacement of Cement by Alccofine & Fly Ash. Indian Research Transaction 5(2):19–23. [Google Scholar]
- Khana MI, Lynsdaleb CJ (2002) Strength, permeability, and carbonation of high- performance concrete. Cement and Concrete Research 32(1):123–131. [CrossRef] [Google Scholar]
- Yixin Shao, Hilal El-Hassan (2019) CO2 Utilization in Concrete. Third international conference on sustainable construction materials and technologies. [Google Scholar]
- Chong Hu, Franqois de Larrard (1999) The Rheology of Fresh High-Performance Concrete. Cement and Concrete Research 26(2):283–294. [Google Scholar]
- Sivakumar D, Hemalatha T, Shakthi N, Shobana T, Soundarya C (2015) Durability and Mechanical Characterization of Concrete Using Alccofines. International Journal of Applied Engineering Research 10(53):178–182. [Google Scholar]
- Hassan KE, Cabrera JG, Maliehe RS (2000) The effect of mineral admixtures on the properties of high-performance concrete. Cement & Concrete Composites 22(1):267–271. [CrossRef] [Google Scholar]
- Francois de Larrard, Thierry Sedran (2002) Mixture-proportioning of high-performance concrete. Cement and Concrete Research 32(11):1699–1704. [CrossRef] [Google Scholar]
- Ramezanianpour AA, Jovein HB (2012) Influence of metakaolin as supplementary cementing material on strength and durability of concretes. Construction and Building Materials 30(5):470–479. [CrossRef] [Google Scholar]
- Eva vesmelkova, Milena pavlikova, Martin keppert, Zbynek kerner,Pavla, Rovnanikova, Michal ondracek, Martin sedlmajer, Robert cerny (2010) High performance concrete with Czech metakaolin:Experimental analysis of strength,toughness and durability characteristics. Construction and Building Materials 24(8):1404– 1411. [Google Scholar]
- Vikas Srivastava, Rakesh Kumar, Agarwal VC, Mehta PK (2012) Effect of Silica Fume and Metakaolin combination on concrete. International Journal of Civil and Structural Engineering 2(3):893–900. [Google Scholar]
- Venu Malagavelli, Srinivas Angadi, Prasad JSR (2018) Influence of Metakaolin in Concrete as Partial Replacement of Cement. International Journal of Civil Engineering and Technology 9(7):105–111. [Google Scholar]
- Surendra Kumar, Rohit Kumar (2018) Behavior of High-Performance Concrete Using Alccofine and Flyash. International Journal for Technological Research in Engineering 5(10):3985–3990. [Google Scholar]
- Lakshmisupriya K, Krishna Bhanu J, Durga Chaitanya Kumar J, Arunakanthi E (2020) Different Mineral admixtures in Concrete: A Review. S N Applied Sciences 2:760–770. [CrossRef] [Google Scholar]
- Satyendra Dubey, Rajiv Chandak, Yadav RK (2015) Experimental Study of Concrete with Metakaolin as Partial Replacement of OPC. International Journal of Advanced Engineering Research and Science 2(6):38–40. [Google Scholar]
- Nova John (2013) Strength Properties of Metakaolin Admixed Concrete. International Journal of Scientific and Research Publications 3(6):1–7. [Google Scholar]
- Krishna Rao, Anil Kumar A (2016) Study on Partial Replacement of Cement with Metakaolin and Fine Aggregate with Waste Foundry Sand. International Journal of Engineering Research & Technology 5(12):402–407. [Google Scholar]
- Narmatha M, Felixkala T (2016) Metakaolin– the best material for replacement of cement in concrete. IOSR Journal of Mechanical and Civil Engineering 13(4):66–71. [CrossRef] [Google Scholar]
- Jagtap SA, Shirsath MN, Karpe Sambhaji L (2017) Effect of metakaolin on the properties of concrete. International Research Journal of Engineering and Technology 4(7):643–645. [Google Scholar]
- Hemanth Rama Raju O, Sravani Ramya Singam P (2017) An Experimental Investigation on Partial Replacement of Cement with Metakaolin and Fine Aggregate with Robo Sand. International Research Journal of Engineering and Technology 4(4):1169–1173. [Google Scholar]
- Madhu K, Divya Bhavana T, Syed Eashan Adil (2016) Study on Partial Replacement of Cement with RHA and Metakaolin. International Journal of Advanced Research 4(12):300–305. [CrossRef] [Google Scholar]
- Swaminathen AN (2016) Effect of Partial Replacement of Cement with Metakaolin and Rice Husk Ash on the Strength and Durability Properties of High Strength Concrete. International Journal of Advanced Research Trends in Engineering and Technology 3(8):16–26. [Google Scholar]
- Nikhila CJ, Kumar JC (2015) Partial replacement of cement with metakaolin in high strength concrete. International Journal of Engineering Sciences & Research Technology 4(4):336–349. [Google Scholar]
- Vivek Sood, Ashok Kumar, Agarwal SK (2014) Comparative Hydration Behavior of Metakaolin-Microfine System. Journal of Engineering Computers & Applied Sciences 3(4) 60–65. [Google Scholar]
- Nivin Philip, Neeraja D (2015) Mechanical Properties of High-Performance Concrete with Admixtures and Steel Fibre. ARPN Journal of Engineering and Applied Sciences 12(8):2439–2444. [Google Scholar]
- Indu Lidoo, Sanjeev Naval, Rajeev Sharda (2017) Design of High-Performance Concrete (Hpc) M100 Using Mineral Admixture (Alccofine1203) and Fly ash. International Interdisciplinary Conference on Science Technology Engineering Management Pharmacy and Humanities 1(1):407–414. [Google Scholar]
- Narender Reddy, Meena (2018) Compressive Behavior of Ternary Blended Concrete Incorporating Alccofine. Materials Today: Proceedings 5(5):11356–11363. [CrossRef] [Google Scholar]
- Gayathri K, Ravichandran K, Saravanan J (2016) Durability and Cementing Efficiency of Alccofine in Concretes. International Journal of Engineering Research & Technology 5(5):460–467. [Google Scholar]
- Kaviya B, Rohith K, Soniya Kindo, Manoj Kumar J, Divya P (2017) Experimental Study on Partial Replacement of Cement Using Alccofine. International Journal of Pure and Applied Mathematics 116(13):399–405. [Google Scholar]
- Tushar Bansal, Shilpa Pal, Jaya Maitra (2018) Effect of Alccofine and Metakaolin on the Performance of SCC. 1st International Conference on New Frontiers in Engineering, Science & Technology. [Google Scholar]
- Steffy Kurian, Jisanto MDR (2017) Strength and Durability Characteristics of Concrete Replaced with Pond Ash and Alccofine. International Journal of Innovative Research in Science, Engineering and Technology 6(5):7447–7458. [Google Scholar]
- Faisal KM, AnishaAsafali (2016) Effect of Glass Fiber on Alccofine Mix Concrete, International Journal of Scientific & Engineering Research 7(10):31–35. [Google Scholar]
- Akula Rajani, Kurendha Geetha (2020) Influence on the Properties of Concrete Containing Steel Fibers and Alccofine. International Journal of Engineering and Advanced Technology 9(5):168–170. [CrossRef] [Google Scholar]
- Surendra Kumar, Rohit Kumar (2018) Behavior Of High-Performance Concrete Using Alccofine and Flyash. International Journal for Technological Research in Engineering 5(10):3985–3990. [Google Scholar]
- Vijaya Sekhar Reddy M, Ashalatha K, Ashalatha K (2016) Studies on Eco-Friendly Concrete by Partial Replacement of Cement with Alccofine and Fine Fly Ash. ARPN Journal of Engineering and Applied Sciences 11 (5):3445–3448. [Google Scholar]
- Rajani A, Geetha K (2001) Influence on the Properties of Concrete Containing Steel Fibers and Alccofine. International Journal of Engineering and Advanced Technology 9(5):168–170 doi: 10.35940/ijeat.D8742.069520. [Google Scholar]
- Velamarthi Bala Kumar, Deepak Patil, Karthik (2019) Characteristic Study on Concrete by Partially Replacing Cement with Metakaolin and Alccofine and by Adding Conplastsp 430, Compost NC & Sodium Lignosulphonate as Admixtures. International Journal and magazine of Engineering, Technology, Management and Research 6(5):54–58. [Google Scholar]
- Magdum MM, Karjinni VV, (2017) Effect of Mineral Admixture (Alccofine-1203) on Durability of Hybrid Fiber Reinforced Concrete. Indian Journal of Science and Technology 10(29):1–4. [CrossRef] [Google Scholar]
- Hermawana,F. Puti, Marzukia, Muhamad Abduha, Driejanaa R (2015) Identification of source factors of carbon dioxide (CO2) emissions in concreting of reinforced concrete. Procedia Engineering 125(1) 692 – 698. [Google Scholar]
- Pavittar Singh (2017) Study the Effect of Alccofine on Development of High Strength Concrete. International Journal of Advanced Technology in Engineering and Science 6(11):1985–1992. [Google Scholar]
- Gowdham K, Sumathi A, Saravana Raja Mohan K (2017) Study on the strength characteristics of High strength concrete with Micro steel fibers. IOP Conf. Series: Earth and Environmental Science 80(1):1–5. [Google Scholar]
- Mahesh SM, Ravi Chandra S (2017) Evaluating the Strength Behavior of Concrete by Using as Partial Replacement of Cement. International Journal of Current Research 9(7):53482–53488. [Google Scholar]
- Srinivasan G (2020) Study on Alccofine Based High Performance Concrete. IOP Conf. Series: Materials Science and Engineering 993(1):1–12. [Google Scholar]
- Sumathi A, Gowdham K, Saravana Raja Mohan K (2018) Strength and Durability Studies on Alccofine Concrete with Micro Steel Fibres. Romanian Journal of Materials, 48(1):58–63. [Google Scholar]
- Aïtcin, P. C. (1998). High-Performance Concrete. E&FN Spon. [CrossRef] [Google Scholar]
- Mehta, P. K., & Monteiro, P. J. (2014). Concrète: Microstructure, Properties, and Materials. McGraw-Hill Education. [Google Scholar]
- Siddique, R., & Klaus, J. (2009). Influence of metakaolin on the properties of mortar and concrete: A review. Applied Clay Science, 43(3-4), 392–400. [CrossRef] [Google Scholar]
- Yang, J., Wang, Y., & Wu, S. (2015). The influence of metakaolin on the properties of concrete in aggressive environments. Construction and Building Materials, 100, 101–110. [Google Scholar]
- Gandhi, N. S., & Shah, P. J. (2016). Effects of Alccofine and fly ash on mechanical properties of high-performance concrete. International Journal of Engineering Research & Technology, 5(10), 94- 97. [Google Scholar]
- Choudhary, A. K., Gupta, L. K., & Shrivastava, O. (2020). Effect of Alccofine on the properties of concrete. Journal of Building Engineering, 28, 101051. [CrossRef] [Google Scholar]
- Bansal, P., Kumar, A., & Kaur, R. (2020). A review on the use of Alccofine as a cement replacement material in concrete. Materials Today: Proceedings, 27(2), 1212–1215. https://doi.org/10.1016/j.matpr.2020.02.153 [Google Scholar]
- Hossain, K. M. A., & Sarker, P. K. (2019). Sustainable concrete using metakaolin and silica fume: A review. Construction and Building Materials, 204, 247–256. https://doi.org/10.1016/j.conbuildmat.2019.01.137 [CrossRef] [Google Scholar]
- Sharma, S., Kumar, S., & Saini, R. (2020). Influence of silica fume and metakaolin on the mechanical properties of concrete: A review. Materials Today: Proceedings, 27(3), 1992–1995. https://doi.org/10.1016/j.matpr.2020.01.158 [Google Scholar]
- Wang, H., Yu, J., & Chen, H. (2018). Economic analysis of using metakaolin in concrete: A case study. Journal of Cleaner Production, 203, 1413–1421. https://doi.org/10.1016/j.jclepro.2018.08.213 [Google Scholar]
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