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Articles

Strengthening of ordinary vibrated concrete using steel fibers self-compacting concrete

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Pages 1556-1571 | Received 18 Apr 2019, Accepted 31 Dec 2019, Published online: 15 Jan 2020

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Uğur Kemiklioğlu. (2023) Mechanical and morphological investigation of laminated composite polymers depending on increasing vibration cycle. International Journal of Polymer Analysis and Characterization 28:8, pages 726-733.
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Zhenrong Liu, Huaxin Liu, Weixing Xu, Beibei Liu, Yue Zhong, Jian Geng & Genjin Liu. Study on the bond properties between basalt fiber-reinforced spontaneous combustion coal gangue concrete and BFRP bars. Journal of Adhesion Science and Technology 0:0, pages 1-28.
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Articles from other publishers (6)

Meriem Bayah, Farid Debieb, El-Hadj Kadri & Mohamed Bentchikou. (2024) Engineering properties of self-compacting concrete incorporating PET fibres and recycled fine concrete aggregates. Budownictwo i Architektura 22:4, pages 071-095.
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Zhao Liang, Xi Peng & Hui Wang. (2023) The Influence of Aspect Ratio of Steel Fibers on the Conductive and Mechanical Properties of Compound Cement Reactive Powder Concrete. Coatings 13:2, pages 331.
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S S Vivek, B Karthikeyan, Senthil Kumaran Selvaraj, M Pradeep Kumar, Utkarsh Chadha, Sreethul Das, G Ranjani, R Rajasakthivel, K Tamilvendhan & Tezeta Moges Adane. (2022) A comprehensive study on physico-mechanical properties of non-metallic fibre reinforced SCC blended with metakaolin and alcofine. Materials Research Express 9:12, pages 125301.
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Hassan M. Magbool & Abdullah M. Zeyad. (2021) The effect of various steel fibers and volcanic pumice powder on fracture characteristics of Self-Compacting concrete. Construction and Building Materials 312, pages 125444.
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Hassan M. Magbool & Abdullah M. Zeyad. (2021) The effect of varied types of steel fibers on the performance of self-compacting concrete modified with volcanic pumice powder. Materials Science-Poland 39:2, pages 172-187.
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Alejandro Meza, Pablo Pujadas, Laura Montserrat Meza, Francesc Pardo-Bosch & Rubén D. López-Carreño. (2021) Mechanical Optimization of Concrete with Recycled PET Fibres Based on a Statistical-Experimental Study. Materials 14:2, pages 240.
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