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Original Articles

Mechanical characteristics of PET fibre-reinforced green ultra-high performance composite concrete

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Pages 2797-2818 | Received 20 Sep 2019, Accepted 13 May 2020, Published online: 08 Jun 2020

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Can Özgün Sayı & Özgür Eren. (2022) Physical and durability properties of recycled polyethylene terephthalate (PET) fibre reinforced concrete. European Journal of Environmental and Civil Engineering 26:14, pages 7084-7102.
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Articles from other publishers (7)

Mohamed Amin, Ibrahim Saad Agwa, Nuha Mashaan, Shaker Mahmood & Mahmoud H. Abd-Elrahman. (2023) Investigation of the Physical Mechanical Properties and Durability of Sustainable Ultra-High Performance Concrete with Recycled Waste Glass. Sustainability 15:4, pages 3085.
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Maheswara Marabathina Rao, Sanjaya K. Patro & Sunil S. Basarkar. (2022) Mechanical and Post-Cracking Performance of Recycled High Density Polyethylene Fiber Reinforced Concrete. Journal of The Institution of Engineers (India): Series A 103:2, pages 519-530.
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Necat Özaşik & Özgür Eren. (2022) Influence of recycled polyethylene terephthalate fibres on plastic shrinkage and mechanical properties of concrete. Frontiers of Structural and Civil Engineering 16:6, pages 792-802.
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Aktham H. Alani, Megat Azmi Megat Johari, Ahmed Tareq Noaman, N. Muhamad Bunnori & T.A. Majid. (2022) Effect of the incorporation of PET fiber and ternary blended binder on the flexural and tensile behaviour of ultra-high performance green concrete. Construction and Building Materials 331, pages 127306.
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Rongjin CaiJin-Cheng Liu & Hailong Ye. (2021) Spalling Prevention of Ultrahigh-Performance Concrete: Comparative Effectiveness of Polyethylene Terephthalate and Polypropylene Fibers. Journal of Materials in Civil Engineering 33:12.
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Banafsheh Sadeghi, Yousef Marfavi, Raouf AliAkbari, Elaheh Kowsari, Farshad Borbor Ajdari & Seeram Ramakrishna. (2021) Recent Studies on Recycled PET Fibers: Production and Applications: a Review. Materials Circular Economy 3:1.
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Paul O. Awoyera, Oladimeji B. Olalusi & Nkay Iweriebo. (2021) Physical, strength, and microscale properties of plastic fiber-reinforced concrete containing fine ceramics particles. Materialia 15, pages 100970.
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