IJRET
  • CrossRef
  • Google Scholar
  • ischolar
  • Index Copernicus
  • IJRET
  • Alternate Text
  • IJRET
  • IJRET
  • IJRET
  • Alternate Text
  • IJRET
  • IJRET
  • IJRET
  • IJRET
  • IJRET
  • IJRET
  • IJRET
Authors will receive one hard copy of full paper, individual print certificates and digital certificates, Submit Manuscript

CALL FOR PAPERS : DEC-2018

Submission Last Date :  30-Dec-2018
Acceptance Notification :  in 15 days
Publication Date :  in 5 days
Submit Manuscript Online

FOR AUTHORS

FOR REVIEWERS

IJRET® PUBLICATIONS

DOWNLOADS

CONTACT US

NEWS & UPDATES

Call for Paper Vol-7 Iss-02 Feb-2018

IJRET invites papers from various engineering disciplines for Volume-07 Issue-02, Feb-2018.

Submit Manuscript

Published Vol-07 Iss-01 Jan-18

IJRET Volume-07 Issue-01, Jan-2018 is published now.

Browse Papers

COMPRESSIVE STRENGTH VARIABILITY OF BROWN COAL FLY ASH GEOPOLYMER CONCRETE

Rahmat Dirgantara, David W. Law, Tom K. Molyneaux

Abstract: The use of Fly Ash (FA) as an alternative binder material to Ordinary Portland Cement (OPC) is well established, with class F FA the most commonly used in the synthesis of this alkali-activated binder at present. ASTM C618 classifies FA as class F produced from anthracite and bituminous and class C from lignite and sub-bituminous coals. In Australia, Victoria FA is produced from lignite known as Brown Coal (BC), but due to the chemical composition cannot categorize as class C. Recent studies have shown the viability of using 100% BC FA as the binder to create alkali activated geopolymer concrete. A previous study using Victoria BC FA for geopolymer concrete provided strength of more than 40MPa which is comparable to class F geopolymer and OPC specimens. The activation process of geopolymer concrete varies remarkably from PC concrete, due to the activation of the aluminosilicate by high concentration alkali. Therefore, the durability of geopolymer concrete may possibly be different to OPC concrete. This paper reports on a research project investigating compressive strength variability that could, in turn, affect the durability characteristic of the BC FA geopolymer concrete for use in the construction industry.a

Keywords: fly ash, brown coal, geopolymer concrete, variability, compressive strength

DOI: https://doi.org/10.15623/ijret.2014.0325027

Home | Publication Ethics | Privacy Policy | Terms & Conditions | Refund Policy | Feedback | Contact Us
Copyright © 2012-2018 IJRET Journal All rights reserved