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Formulation and study of metal fiber-reinforced reactive powder concrete

Mounira Chadli (Department of Civil Engineering and Hydrology, University of Biskra, Algeria)
Mellas Mekki (Laboratory of Civil Engineering, Department of Civil Engineering and Hydrology, University of Biskra, Biskra, Algeria)
Bouzidi Mezghiche (Department of Civil Engineering and Hydrology, Universite Mohamed Khider de Biskra, Algeria)

World Journal of Engineering

ISSN: 1708-5284

Article publication date: 6 August 2018

104

Abstract

Purpose

Reactive powder concretes (RPCs) are new concretes characterized by a particle diameter not exceeding 600 µm and very high compressive and tensile strengths. This paper aims to the development and study of the physico-mechanical, elastic properties and durability of an ultra-high performance concrete from materials existing on the Algerian market.

Design/methodology/approach

Three mineral additions such as granulated slag, quartz powder and silica fume are incorporated into the cement with 15, 23 and 25 per cent, respectively, in addition to use two different values of steel fiber volume fraction (2 and 2.5 per cent). The results show that the incorporation of 2.5 per cent metal fibers in the formulation of the RPC gives a high compressive strengths of 143.5 MPa at 60 days. The relationship between the relative value and the longitudinal elasto-instantaneous deformations of the RPC to a linear characteristic throughout the relative stress ranges. Also, the modulus of elasticity developed for a fiber-reinforced reactive concrete is greater than that of the unbound fiber.

Findings

Results from the current study concluded that the presence of the mineral additions improves the durability of the concretes compared with that not adjuvanted by mineral additions.

Originality/value

It can be possible to manufacture fiber-reinforced reactive powder concretes (RPCFs) with compressive strength exceeding 140 MPa, with an adequate plasticity, despite the simplicity of means and materials and the incorporation of different percentage of metal fiber on the mechanical strength of concretes and its influence on behavior with respect to aggressive environment were achieved.

Keywords

Citation

Chadli, M., Mekki, M. and Mezghiche, B. (2018), "Formulation and study of metal fiber-reinforced reactive powder concrete", World Journal of Engineering, Vol. 15 No. 4, pp. 531-539. https://doi.org/10.1108/WJE-04-2017-0094

Publisher

:

Emerald Publishing Limited

Copyright © 2018, Emerald Publishing Limited

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