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Home»Articles»Experimental Study on Strength and Durability Behaviour of Concrete by Partial Replacement of Cement with Tile Powder

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The Asian Review of Civil Engineering (TARCE)

Editor Prof. Francesco Colangelo
Print ISSN : 2249 - 6203
Frequency : Half-Yearly

Experimental Study on Strength and Durability Behaviour of Concrete by Partial Replacement of Cement with Tile Powder

Author : S Jijin and I. Michael Raj
Volume 7 No.1 January-June 2018 pp 23-27

Abstract

Concrete is the widely used material in construction around the world and cement, a major constituent of concrete is being costly and only moderately available, researches or experiments are conducted to study the variations in the strength characteristics of concrete by replacement of cement partially or fully by cheaper or locally available materials . Ceramic waste powder is settled by alleviation and then dumped away which results in environmental pollution, in addition to forming dust in summer and menacing both agriculture and public health. Therefore, utilization of the ceramic waste powder in various industrial sectors especially the construction, agriculture, glass and paper industries would help to protect the environment. In this research study the cement has been replaced by ceramic waste powder accordingly in the range of 10% 15%, 20% by weight of M30 grade. Concrete mixtures were produced, tested and compared in terms of compressive strength & split tensile strength to the conventional concrete. These tests were carried out to evaluate the mechanical properties for 7, 14 and 28 days. Test for durability is also carried out and compared with conventional concrete. This research work is concerned with the experimental investigation on strength & durability of concrete and optimum percentage of the partial replacement by replacing cement via 10%, 15%, 20%, of ceramic waste. Keeping all this view, the aim of the analysis is to study the performance of concrete while replacing the ceramic waste with different proportions in concrete.

Keywords

Strength, Durability Behaviour, Concrete, Partial Replacement, Cement with Tile Powder

Full Text:

References

[1] Amitkumar D. Raval1, Dr. Indrajit N. Patel and Prof. Jayeshkumar Pitroda, “Ceramic Waste Effective Replacement Of Cement For Establishing Sustainable Concrete”, Vol. 4, No. 6, pp. 23-24, 2013.
[2] Abdullah Anwar, Sabih Ahmad, S. Mohd. Ashraf Husain and Syed Aqeel Ahmad, “Salvage of ceramic waste and marble dust for the refinement of sustainable concrete”, Vol. 6, No. 9, Sep 2015, pp. 79-92, 2015.
[3] Concrete Technolology, Theory and practice, M.S.SHETTY.
[4] Dr. B. Krishna Rao, Manthena. Sri Lakshmi, “Use of Tile Dust as Partial Replacement for Cement in Concrete”, Vol. 2, No. 5, pp. 112-116, 2013.
[5] Dr M. Swaroopa Rani, “A Study on Ceramic Waste Powder”, Vol. 3, 2016.
[6] IS: 383-1970, Specification for Coarse and Fine Aggregates from Natural Sources for Concrete, Bureau of Indian standards, New Delhi, India. pp.2-4.
[7] IS:1727-1967, Methods of Test for Pozzolonic Materials, Bureau of Indian standards, New Delhi, India.
[8] IS:4031(Part-4)-1995, Methods of Physical Tests for Hydraulic Cement- Determination of Consistency of Standard Cement Paste, Bureau of Indian standards, New Delhi, India.
[9] IS:4031(Part-5)-1988, Methods of Physical Tests for Hydraulic Cement-Determination of Initial and Final Setting Times, Bureau of Indian standards.
[10] IS:4031(Part-6)-1988, Methods of Physical Tests for Hydraulic Cement – Determination of Compressive Strength of Hydraulic Cement other than Masonry Cement, Bureau of Indian standards, New Delhi, India.
[11] IS 10262 and IS 456 – For Mix Design, Bureau of Indian standards, New Delhi, India.
[12] Juber Khan and Ravi K. Chaturvedi, “Effect of Cement Bonding and Feasibility by the Partially Replaced by Waste Tiles Powder”, Vol. 3, No. 6, 2015.
[13] M.SriLakshmi, “Tile powder as partial replacement of cement in concrete”, Vol. 02, No. 04, 2015.
[14] R Nagaraja and Veena Kumara Adi, “Experimental studies on clay tile powder as partial replacement of cement for sustainable concrete”, Vol. 36, No. 1, 2016.
[15] MS Naveen Kumar, B Nikhil, AR Nikhil Patel, R Nagaraja and Veena Kumara Adi, “Experimental studies on clay tile powder as partial replacement of cement for sustainable concrete”, 2016.
[16] Nuran Ay and Mevlut Unal, “The use of waste ceramic tile in cement production”, Cement and Concrete Research, Vol. 30, pp. 497-499, 2000.
[17] Pincha Torkittikul and Arnon Chaipanich, “Utilization of ceramic waste as fine aggregate within portland cement and fly ash concretes”, Cement and Concrete composites 32, 440-449, 2010.
[18] Ponnapati. Manogna1 and M. Sri Lakshmi, “Tile Powder As Partial Replacement Of Cement In Concrete’, Vol. 2, No. 4, pp. 75, July-2015.
[19] RanjanKumar and Shyam Kishor Kumar, “Partial Replacement of Cement with Marble Dust Powder”, Vol. 5, No. 8, (Part – 4) 2015.

The Asian Review of Civil Engineering (TARCE) is a half-yearly international peer-reviewed journal of Civil Engineering. One of the objectives of this journal is to disseminate knowledge on various research issues connected with the topics include, but are not limited to:

Coastal engineering
Construction engineering
Earthquake engineering
Environmental engineering
Geotechnical engineering
Water resources engineering
Materials engineering
Structural engineering
Surveying
Transportation engineering
Municipal or urban engineering

Concrete is the widely used material in construction around the world and cement, a major constituent of concrete is being costly and only moderately available, researches or experiments are conducted to study the variations in the strength characteristics of concrete by replacement of cement partially or fully by cheaper or locally available materials . Ceramic waste powder is settled by alleviation and then dumped away which results in environmental pollution, in addition to forming dust in summer and menacing both agriculture and public health. Therefore, utilization of the ceramic waste powder in various industrial sectors especially the construction, agriculture, glass and paper industries would help to protect the environment. In this research study the cement has been replaced by ceramic waste powder accordingly in the range of 10% 15%, 20% by weight of M30 grade. Concrete mixtures were produced, tested and compared in terms of compressive strength & split tensile strength to the conventional concrete. These tests were carried out to evaluate the mechanical properties for 7, 14 and 28 days. Test for durability is also carried out and compared with conventional concrete. This research work is concerned with the experimental investigation on strength & durability of concrete and optimum percentage of the partial replacement by replacing cement via 10%, 15%, 20%, of ceramic waste. Keeping all this view, the aim of the analysis is to study the performance of concrete while replacing the ceramic waste with different proportions in concrete.

Editor-in-Chief
Prof. Francesco Colangelo
Department of Engineering, Universita degli Studi di Napoli Parthenope, Italy
[email protected]
Editorial Advisory Board
Dr. Suhana Binti Koting
Department of Civil Engineering, University of Malaya, Malaysia
[email protected]
Dr. Abdul Rahman Mohd. Sam
Department of Structure and Materials, Universiti Teknologi Malaysia
[email protected]
Prof. Sr Mokhtar Azizi Bin Mohd Din
Department of Civil Engineering, University of Malaya, Malaysia
[email protected]
Prof. N. Anuja
Department of Civil Engineering, Mepco Schlenk Engineering College, Sivakasi, India
[email protected]
Dr. Ramadhansyah Putra Jaya
Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
[email protected]
Dr. Johan Bin Sohaili
Department of Civil Engineering , Universiti Teknologi Malaysia
[email protected]
Dr. Norhisham Bin Bakhary
Department of Structure and Materials, Universiti Teknologi Malaysia
[email protected]
Dr. Sitti Asmah Hassan
Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
[email protected]
Dr. Libriati Binti Zardasti
Department of Structures and Materials, Universiti Teknologi Malaysia
[email protected]
Dr. Nor Zurairahetty Mohd Yunus
Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
[email protected]
Dr. Zaiton Haron
Department of Structure and Materials, Universiti Teknologi Malaysia
[email protected]
Dr. Rini Asnida Abdullah
Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
[email protected]
Dr. Mohd Razman bin Salim
Department of Environmental Engineering, Universiti Teknologi Malaysia
[email protected]
Dr. Norhidayah Abdul Hassan
Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
[email protected]
Dr. Yuen Choon Wah
Department of Civil Engineering, University of Malaya, Malaysia
[email protected]

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    Editorial Note

    Editorial Prof. Francesco Colangelo

    Editor-in-Chief
    Prof. Francesco Colangelo
    Department of Engineering, Universita degli Studi di Napoli Parthenope, Italy
    [email protected]
    Editorial Advisory Board
    Dr. Suhana Binti Koting
    Department of Civil Engineering, University of Malaya, Malaysia
    [email protected]
    Dr. Abdul Rahman Mohd. Sam
    Department of Structure and Materials, Universiti Teknologi Malaysia
    [email protected]
    Prof. Sr Mokhtar Azizi Bin Mohd Din
    Department of Civil Engineering, University of Malaya, Malaysia
    [email protected]
    Prof. N. Anuja
    Department of Civil Engineering, Mepco Schlenk Engineering College, Sivakasi, India
    [email protected]
    Dr. Ramadhansyah Putra Jaya
    Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
    [email protected]
    Dr. Johan Bin Sohaili
    Department of Civil Engineering , Universiti Teknologi Malaysia
    [email protected]
    Dr. Norhisham Bin Bakhary
    Department of Structure and Materials, Universiti Teknologi Malaysia
    [email protected]
    Dr. Sitti Asmah Hassan
    Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
    [email protected]
    Dr. Libriati Binti Zardasti
    Department of Structures and Materials, Universiti Teknologi Malaysia
    [email protected]
    Dr. Nor Zurairahetty Mohd Yunus
    Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
    [email protected]
    Dr. Zaiton Haron
    Department of Structure and Materials, Universiti Teknologi Malaysia
    [email protected]
    Dr. Rini Asnida Abdullah
    Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
    [email protected]
    Dr. Mohd Razman bin Salim
    Department of Environmental Engineering, Universiti Teknologi Malaysia
    [email protected]
    Dr. Norhidayah Abdul Hassan
    Department of Geotechnics and Transportation, Universiti Teknologi Malaysia
    [email protected]
    Dr. Yuen Choon Wah
    Department of Civil Engineering, University of Malaya, Malaysia
    [email protected]

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