Study on freshness, morphology, strength, and durability properties of foamed concrete reinforced with agave fiber

Author:

Mydin Md Azree Othuman1,Majeed Samadar S.2,Bahrami Alireza3ORCID,Dulaimi Anmar45,Özkılıç Yasin Onuralp67ORCID,Omar Roshartini8,Abdullah Mohd Mustafa Al Bakri910,Palanisamy Jagadesh11ORCID,Awoyera Paul Oluwaseun12

Affiliation:

1. School of Housing, Building and Planning, Universiti Sains Malaysia, Penang, Malaysia

2. Civil Engineering Department, College of Engineering, Nawroz University, Duhok, Kurdistan Region, Iraq

3. Department of Building Engineering, Energy Systems and Sustainability Science, Faculty of Engineering and Sustainable Development, University of Gävle, Gävle, Sweden

4. Department of Civil Engineering, College of Engineering, University of Kerbala, Karbala, Iraq

5. Department of Civil Engineering, College of Engineering, University of Warith Al-Anbiyaa, Karbala, Iraq

6. Department of Civil Engineering, Faculty of Engineering, Necmettin Erbakan University, Konya, Turkey

7. Department of Civil Engineering, Lebanese American University, Byblos, Lebanon

8. Department of Construction Management, Faculty of Technology Management and Business, Universiti Tun Hussein Onn Malaysia, Parit Raja, Batu Pahat, Johor, Malaysia

9. Geopolymer and Green Technology, Centre of Excellence, Universiti Malaysia Perlis, Perlis, Malaysia

10. Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis, Perlis, Malaysia

11. Department of Civil Engineering, Coimbatore Institute of Technology, Tamil Nadu, India

12. Department of Civil Engineering, Covenant University, Ota, Nigeria

Abstract

Currently, foamed concrete (FC) is widely employed in building construction and civil engineering works, and by using abundant natural fibers in FC, significant environmental benefits can be obtained. The durability properties of the essential materials acting independently could well be enhanced if the appropriate proportion of natural fiber-strengthened FC were used in the correct volume. This study aimed to develop new composite materials composed of FC and agave fiber (AF). The objective was to ascertain the optimal proportion of AF to be added to FC to increase its durability performance. A low-density FC of 950 kg/m3 was fabricated utilizing varying percentages of AF, namely 0% (control), 1.5%, 3.0%, 4.5%, 6.0%, and 7.5%. The evaluated properties were the shrinkage, workability, density, water absorption, ultrasonic pulse velocity, porosity, compressive strength, and elastic modulus. Using AFs in FC, the optimal shrinkage and ultrasonic pulse velocity were observed. When the weight fractions of AF were increased from 1% to 4.5% in the mixtures, the porosity, workability, and water absorption of FC were significantly reduced. In addition, FC showed a slight increase in the dry density with the rise in the AF’s weight fraction and the increase in the curing age from day-7 to day-56. This research delivers noteworthy data on the durability properties of FC-AF composites, allowing future researchers to study other properties like the structural performance, strength properties, and thermal conductivity of FC-AF composites.

Funder

Ministry of Higher Education, Malaysia

Publisher

SAGE Publications

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