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Articles

Performance of concrete containing crushed brick aggregate exposed to different fire temperatures

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Pages 805-824 | Received 03 Apr 2014, Accepted 02 Oct 2014, Published online: 30 Oct 2014

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Aref Abadel, Hussein Elsanadedy, Tarek Almusallam, Abdulaziz Alaskar, Husain Abbas & Yousef Al-Salloum. (2022) Residual compressive strength of plain and fiber reinforced concrete after exposure to different heating and cooling regimes. European Journal of Environmental and Civil Engineering 26:14, pages 6746-6765.
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Samya Hachemi & Abdelhafid Ounis. (2019) The influence of sand nature on the residual physical and mechanical properties of concrete after exposure to elevated temperature. European Journal of Environmental and Civil Engineering 23:8, pages 1003-1018.
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Abhishek Jain, Rajesh Gupta, Sanchit Gupta & Sandeep Chaudhary. (2023) Evaluation of real time fire performance of eco-efficient fly ash blended self-consolidating concrete including granite waste. Journal of Building Engineering 77, pages 107553.
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Dongping Wu, Zhenhao Mao, Jicheng Zhang, Shijie Li & Qiankun Ma. (2023) Performance evaluation of concrete with waste glass after elevated temperatures. Construction and Building Materials 368, pages 130486.
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Seungyeon Han, Mohammad Shakhawat Hossain, Taeho Ha & Kyong Ku Yun. (2022) Graphene-oxide-reinforced cement composites mechanical and microstructural characteristics at elevated temperatures. Nanotechnology Reviews 11:1, pages 3174-3194.
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María Eugenia Maciá, Ángel Castillo, Isabel Martinez & Francisco José Rubiano. (2022) High-Temperature Residual Compressive Strength in Concretes Bearing Construction and Demolition Waste (CDW): An Experimental Study. Iranian Journal of Science and Technology, Transactions of Civil Engineering 46:6, pages 4303-4312.
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Shijie Li, Jicheng Zhang, Guofeng Du, Zhenhao Mao, Qiankun Ma, Zhuozhuo Luo, Yuan Miao & Yanni Duan. (2022) Properties of concrete with waste glass after exposure to elevated temperatures. Journal of Building Engineering 57, pages 104822.
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Samya Hachemi, Mohammed Khattab & Hicham Benzetta. (2022) The effects of recycled brick and water/cement ratios on the physical and mechanical performance of recycled aggregates concrete. Innovative Infrastructure Solutions 7:4.
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Tao Meng, Huadong Wei, Dawang Dai, Jianping Liao & Sara Ahmed. (2022) Effect of brick aggregate on failure process of mixed recycled aggregate concrete via X-CT. Construction and Building Materials 327, pages 126934.
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Ahmed Abderraouf Belkadi, Oussama Kessal, Sara Bensalem, Salima Aggoun, Chahinez Amouri & Mohamed Lyes Kamel Khouadjia. (2022) Aggregate Type Influence on Microstructural Behavior of Concrete Exposed to Elevated Temperature. Civil and Environmental Engineering Reports 32:1, pages 19-42.
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Mohammed Khattab & Samya Hachemi. (2021) Performance of Recycled Aggregate Concrete Made with Waste Refractory Brick. International Journal of Engineering Research in Africa 57, pages 99-113.
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Michał Pasztetnik & Roman Wróblewski. (2021) A Literature Review of Concrete Ability to Sustain Strength after Fire Exposure Based on the Heat Accumulation Factor. Materials 14:16, pages 4719.
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N. Suresh & Manjunatha M.. (2021) Post-thermal properties of Portland cement concrete made with copper slag as fine aggregates. Journal of Structural Fire Engineering 12:2, pages 173-192.
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András Biró & Éva Lublóy. (2021) Classification of aggregates for fire. Construction and Building Materials 266, pages 121024.
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Van Lam Tang, Kim Dien Vu, Dinh Tho Vu, Boris Bulgakov, Sophia Bazhenova & Tai Nang Luong Nguyen. 2020. International Scientific Conference Energy Management of Municipal Facilities and Sustainable Energy Technologies EMMFT 2018. International Scientific Conference Energy Management of Municipal Facilities and Sustainable Energy Technologies EMMFT 2018 660 672 .
Zongping ChenJianjia Chen, Fan Ning & Yi Li. (2019) Residual properties of recycled concrete after exposure to high temperatures. Magazine of Concrete Research 71:15, pages 781-793.
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Zongping Chen, Ji Zhou, Peihuan Ye & Ying Liang. (2019) Analysis on Mechanical Properties of Recycled Aggregate Concrete Members after Exposure to High Temperatures. Applied Sciences 9:10, pages 2057.
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Pawel Sikora, Mohamed Abd Elrahman, Elzbieta Horszczaruk, Piotr Brzozowski & Dietmar Stephan. (2019) Incorporation of magnetite powder as a cement additive for improving thermal resistance and gamma-ray shielding properties of cement-based composites. Construction and Building Materials 204, pages 113-121.
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Pawel Sikora, Mohamed Abd Elrahman, Sang-Yeop Chung, Krzysztof Cendrowski, Ewa Mijowska & Dietmar Stephan. (2019) Mechanical and microstructural properties of cement pastes containing carbon nanotubes and carbon nanotube-silica core-shell structures, exposed to elevated temperature. Cement and Concrete Composites 95, pages 193-204.
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Ravindra K. Dhir, Jorge de Brito, Rui V. Silva & Chao Qun Lye. 2019. Sustainable Construction Materials. Sustainable Construction Materials 219 282 .
A. Masood, M. Shariq, M. Masroor Alam, T. Ahmad & A. Beg. (2018) Effect of Elevated Temperature on the Residual Properties of Quartzite, Granite and Basalt Aggregate Concrete. Journal of The Institution of Engineers (India): Series A 99:3, pages 485-494.
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Sagrario Martínez-Ramírez, Luis Diaz, Moisés Martín-Garrido, Lucia Fernández-Carrasco & David Torrens. (2018) In situ chemical modification of C–S–H induced by CO2 laser irradiation. Materials and Structures 51:1.
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