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International Journal of Scientific Development and Research - IJSDR
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Paper Title: Study and Evaluation of Fresh and Mechanical Properties of Self Compacting Geopolymer Concrete on Replacement of Fine Aggregate at Various Percentage Levels with Copper Slag
Authors Name: K.Roja , J. Guru Jawahar
Unique Id: IJSDR1805113
Published In: Volume 3 Issue 5, May-2018
Abstract: This paper presents the study of fresh and mechanical properties of self-compacting by geopolymer concrete(SCGC) to the effect 8 molarity on strength properties of classF flyash(FA)ground granulated blast furnace slag(GGBFS)and copper slag blended geopolymer concrete(GPC) At 10%,20%,30%40%and50% at varies levels of replacement of copper slag and chemical admixture are sodium silicate(Na2SiO3), sodium hydroxide(NaOH), this solution has been used as alkaline activator. In the present investigation to study the fresh properties test conducted as shown in below slump, L-box, V-funnel, and T50and same as the investigation to study the mechanical properties are compressive strength, ultrasonic pulse velocity and split tensile test at different curing periods after 7, and 28 days of curing at ambient room temperature. From the results, it is conducted that the increased replacement level of copper slag(CS)from0%to 50% increased the mechanical properties of self-compacting by geopolymer concrete(SCGC) the rebound hammer and UPV values also increase from 0%to50% replacement levels of copper slag(CS).
Keywords: Ash, Ground Granulated Blast Furnace Slag (GGBS) copper slag, alkaline activators.
Cite Article: "Study and Evaluation of Fresh and Mechanical Properties of Self Compacting Geopolymer Concrete on Replacement of Fine Aggregate at Various Percentage Levels with Copper Slag", International Journal of Science & Engineering Development Research (www.ijsdr.org), ISSN:2455-2631, Vol.3, Issue 5, page no.743 - 747, May-2018, Available :http://www.ijsdr.org/papers/IJSDR1805113.pdf
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Publication Details: Published Paper ID: IJSDR1805113
Registration ID:180353
Published In: Volume 3 Issue 5, May-2018
DOI (Digital Object Identifier):
Page No: 743 - 747
Publisher: IJSDR | www.ijsdr.org
ISSN Number: 2455-2631

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