Properties of high strength concrete with reduced amount of Portland cement– a case study
In the last 15 years Bangalore city has systematically modernized its concrete production process with the help of ready-mix concrete (RMC) facility. However, one of the present requirements of these facilities is to lower its carbon footprint by reducing consumption of Portland cement in the concre...
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doaj-62038dacc2684690bec3e8deccb910ad2021-07-26T12:59:40ZengTaylor & Francis GroupCogent Engineering2331-19162021-01-018110.1080/23311916.2021.19383691938369Properties of high strength concrete with reduced amount of Portland cement– a case studyRaghavendra Y B0Ramalinga Reddy Y1Nabil Hossiney2Dinesh H T3School of Civil Engineering, REVA University, Rukmini Knowledge ParkSchool of Civil Engineering, REVA University, Rukmini Knowledge ParkCHRIST (Deemed to Be University)BMS College of EngineeringIn the last 15 years Bangalore city has systematically modernized its concrete production process with the help of ready-mix concrete (RMC) facility. However, one of the present requirements of these facilities is to lower its carbon footprint by reducing consumption of Portland cement in the concrete production process. Further, the demand for high-strength concrete (HSC) has increased due to construction of high-rise buildings and other major infrastructure projects in the urban areas of the city. Therefore, this study presents the experimental test results of HSC mixes proportioned with reduced consumption of Portland cement. Four types of concrete mixes with 50% of Portland cement replaced by ground granulated blast furnace slag (GGBS) were considered. Additionally, two control mixes without GGBS replacement were also tested. Fresh, hardened, and durability properties of all the mixes were experimental determined and presented. The results showed that concrete mixes proportioned with 50% GGBS obtained a maximum 28-day compressive strength of 77 MPa. Further, all the mixes with GGBS exhibited superior durability properties when compared to control mixes. Thus, concrete mixes with 50% GGBS replaced for Portland cement are favourable for producing HSC at RMC facilities at Bangalore city.http://dx.doi.org/10.1080/23311916.2021.1938369strengthggbsportland cementconcretedurability |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Raghavendra Y B Ramalinga Reddy Y Nabil Hossiney Dinesh H T |
spellingShingle |
Raghavendra Y B Ramalinga Reddy Y Nabil Hossiney Dinesh H T Properties of high strength concrete with reduced amount of Portland cement– a case study Cogent Engineering strength ggbs portland cement concrete durability |
author_facet |
Raghavendra Y B Ramalinga Reddy Y Nabil Hossiney Dinesh H T |
author_sort |
Raghavendra Y B |
title |
Properties of high strength concrete with reduced amount of Portland cement– a case study |
title_short |
Properties of high strength concrete with reduced amount of Portland cement– a case study |
title_full |
Properties of high strength concrete with reduced amount of Portland cement– a case study |
title_fullStr |
Properties of high strength concrete with reduced amount of Portland cement– a case study |
title_full_unstemmed |
Properties of high strength concrete with reduced amount of Portland cement– a case study |
title_sort |
properties of high strength concrete with reduced amount of portland cement– a case study |
publisher |
Taylor & Francis Group |
series |
Cogent Engineering |
issn |
2331-1916 |
publishDate |
2021-01-01 |
description |
In the last 15 years Bangalore city has systematically modernized its concrete production process with the help of ready-mix concrete (RMC) facility. However, one of the present requirements of these facilities is to lower its carbon footprint by reducing consumption of Portland cement in the concrete production process. Further, the demand for high-strength concrete (HSC) has increased due to construction of high-rise buildings and other major infrastructure projects in the urban areas of the city. Therefore, this study presents the experimental test results of HSC mixes proportioned with reduced consumption of Portland cement. Four types of concrete mixes with 50% of Portland cement replaced by ground granulated blast furnace slag (GGBS) were considered. Additionally, two control mixes without GGBS replacement were also tested. Fresh, hardened, and durability properties of all the mixes were experimental determined and presented. The results showed that concrete mixes proportioned with 50% GGBS obtained a maximum 28-day compressive strength of 77 MPa. Further, all the mixes with GGBS exhibited superior durability properties when compared to control mixes. Thus, concrete mixes with 50% GGBS replaced for Portland cement are favourable for producing HSC at RMC facilities at Bangalore city. |
topic |
strength ggbs portland cement concrete durability |
url |
http://dx.doi.org/10.1080/23311916.2021.1938369 |
work_keys_str_mv |
AT raghavendrayb propertiesofhighstrengthconcretewithreducedamountofportlandcementacasestudy AT ramalingareddyy propertiesofhighstrengthconcretewithreducedamountofportlandcementacasestudy AT nabilhossiney propertiesofhighstrengthconcretewithreducedamountofportlandcementacasestudy AT dineshht propertiesofhighstrengthconcretewithreducedamountofportlandcementacasestudy |
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1721281074648055808 |