An Investigation of the Mechanical Properties of Sintered Fly Ash Lightweight Aggregate Concrete (SFLWAC) with Steel Fibers

Author:

Babu B. Ranjith1,Thenmozhi R.2

Affiliation:

1. 1Assistant Professor., M.E., P.S.N.A. College of Engineering and Technology, Faculty of Civil Engineering, Dindigul-624622, Tamil Nadu, India

2. 22Associate Professor., M.E., Ph.D., Government College of Technology, Faculty of Civil Engineering, Coimbatore-641013, Tamil Nadu, India

Abstract

Abstractthis study investigates the fresh and mechanical performance of concrete incorporating sintered fly ash lightweight aggregates (SFLWA) both with and without steel fibers. Comparative assessments of natural aggregates with sintered fly ash aggregates were evaluated. Mix design was obtained by the IS method for M30 grade concrete, and within the natural aggregates were replaced with 20%, 40%, and 60% amounts of SFLWA. The addition of SFLWA shows an increase in the workability of the concrete. Replacement with SFLWA increases with an increase in slump value, and decreases in strength parameters. Compressive strength of 42.6 MPa was achieved with a 40% replacement of SFLWA with steel fibers. The mechanical properties such as compressive strength, split tensile strength, flexural strength, elastic modulus, and structural efficiency of SFLWAC were examined, both with and without fibers. The incorporation of fibers drastically improved the mechanical properties of the mix.

Publisher

Walter de Gruyter GmbH

Subject

Civil and Structural Engineering

Reference22 articles.

1. IS Method of Tests for Strength of Concrete Bureau of Indian Standards New Delhi,1959

2. Strength and durability of lightweight concrete in hot marine exposure conditions Master struct;Khaiyat,1999

3. IS Method of sampling ana analysis of Bureau of Indian Standards;NewDelhi;Concrete,1959

4. IS Method of sampling ana analysis of Bureau of Indian Standards;NewDelhi;Concrete,1959

5. IS Specification for Ordinary Portland cement grade Bureau of Indian Standards New Delhi,1989

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