International Journal of Mechanics & Solids
  • Year: 2010
  • Volume: 5
  • Issue: 1

Study on Strength and Durability Characteristics of Glass Fibre Concrete

  • Author:
  • K. Chandramouli1, P. Srinivasa Rao2, N. Pannirselvam3,, T. Seshadri Sekhar4,, P. Sravana2
  • Total Page Count: 12
  • Page Number: 15 to 26

1Priyadrashini Institute of Technology for Women, Tenali, Guntur, Andhra Pradesh, India.

2JNTU College of Engineering, Hyderabad, Andhra Pradesh, India.

3VIT University, Vellore, India.

4Samual George Institute of Technology, Markapur, Prakasam District, Andhra Pradesh, India.

*E-Mail: npannirselvam@vit.ac.in

Abstract

The present day world is witnessing the construction of very challenging and difficult civil engineering structures. Quite often, concrete being the most important and widely used material is called upon to possess very high strength and sufficient workability properties. Efforts are being made in the field of concrete technology to develop such concretes with special characteristics. Researchers all over the world are attempting to develop high performance concretes by using fibres and other admixtures in concrete up to certain proportions. In the view of the global sustainable developments, it is imperative that fibres like glass, carbon, polypropylene and aramid fibres provide improvements in tensile strength, fatigue characteristics, durability, shrinkage characteristics, impact, cavitation, erosion resistance and serviceability of concrete.

Fibres impart energy absorption, toughness and impact resistance properties to fibre reinforced concrete material and these characteristics in turn improve the fracture and fatigue properties of fibre reinforced concrete. Research in glass fibre reinforced concrete resulted in the development of an alkali resistance fibres high dispersion that improved long term durability. This system was named alkali resistance glass fibre reinforced concrete. In the present experimental investigation the alkali resistance glass fibres has been used to study the effect on compressive, flexural, split tensile strength and chloride content present on M20, M30, M40 and M50 grades of concrete.

Keywords

Concrete, Glass fibres, Rapid chloride permeability test, Strength, properties