An Experimental Development on Properties of Concrete with GGBS in Addition with Alkaline Solution of Sodium Hydroxide and Sodium Silicate
Veera Lakshmi S1, Divya Anusha Naidu2, Dumpa Venkateswarlu3 

1Veera Lakshmi S, Department of Civil Engineering, Godavari Institute of Engineering and Technology, Rajahmundry, India.
2Divya Anusha Naidu, Department of Civil Engineering, Godavari Institute of Engineering and Technology, Rajahmundry, India.
3Dr. Dumpa Venkateswarlu, Department of Civil Engineering, Godavari Institute of Engineering and Technology, Rajahmundry, India.

Manuscript received on 10 March 2019 | Revised Manuscript received on 17 March 2019 | Manuscript published on 30 July 2019 | PP: 5306-5310 | Volume-8 Issue-2, July 2019 | Retrieval Number: B1087078219/19©BEIESP | DOI: 10.35940/ijrte.B1087.078219
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: Becoming modern waste have discovered the need to transfer of mechanical waste, The waste that must be arranged would two be able to be spared to use in some way, among the two modern waste preparing cementatious nature substances can be supplanted as folio include number in cement to separated. Ground Granulated Blast Furnaces Slag (GGBS) which used to be squander from an iron assembling industry, which used to be utilized as substitute of bond in cement because of its characteristic solidifying properties. To increase the strength of the concrete some of the special cements are used. Due to various codal specifications the binding material replacements of GGBS have been restricted up to 80% in maximum. In this project replacement of GGBS is done by an amount of 10% ,20% ,30% and 40%. In accordance with above restrictions the replacement variations in binding material have been decoded in a high strength concrete mixture. The research work have been extensively executed in almost all areas of testing like compressive strength, spilt tensile strength, and flexural strength, and also various primary tests like specific gravity, granular gradation etc. have also been excited to achieve high strength concrete.
Keywords: About Four Key Words or Phrases in Alphabetical Order, Separated by Commas.

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