Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete

Dramatic population and economic growth result in increasing demand for concrete infrastructure, which leads to an increment of freshwater demand and a reduction of freshwater resources. however, freshwater is a finite resource, which means that freshwater will be used up someday in the future when...

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Main Authors: Razak, R.A., Ng, K. Yen, Al Bakri Abdullah, M.M., Yahya, Z., Mohamed, R., K., Muthusamy, Jusoh, W.A.W., Nabiałek, Marcin, Jez, Bartłomiej
Format: Article
Language:English
Published: Polish Academy of Sciences 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/38596/1/Journal%20Paper.pdf
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author Razak, R.A.
Ng, K. Yen
Al Bakri Abdullah, M.M.
Yahya, Z.
Mohamed, R.
K., Muthusamy
Jusoh, W.A.W.
Nabiałek, Marcin
Jez, Bartłomiej
author_facet Razak, R.A.
Ng, K. Yen
Al Bakri Abdullah, M.M.
Yahya, Z.
Mohamed, R.
K., Muthusamy
Jusoh, W.A.W.
Nabiałek, Marcin
Jez, Bartłomiej
author_sort Razak, R.A.
collection UMP
description Dramatic population and economic growth result in increasing demand for concrete infrastructure, which leads to an increment of freshwater demand and a reduction of freshwater resources. however, freshwater is a finite resource, which means that freshwater will be used up someday in the future when freshwater demand keeps increasing while freshwater resources are limited. therefore, replacing freshwater with seawater in concrete blending seems potentially beneficial for maintaining the freshwater resources as well as advantageous alternatives to the construction work near the sea. there have been few experimental research on the effect of blending water salt content on the mechanical and physical characteristics of concrete, particularly high-strength concrete. therefore, a research study on the influence of salt concentration of blending water on the physical and mechanical properties of high-strength concrete is necessary. this study covered the blending water salinity, which varied from 17.5 g/l to 52.5 g/l and was determined on the physical and mechanical properties, including workability, density, compressive strength, and flexural strength. the test results indicate that the use of sea salt in blending water had a slight negative influence on both the workability and the density of high strength concrete. it also indicates that the use of sea salt in blending water had a positive influence on both the compressive strength and the flexural strength of high-strength concrete in an earlystage.
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spelling UMPir385962024-02-19T07:53:49Z http://umpir.ump.edu.my/id/eprint/38596/ Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete Razak, R.A. Ng, K. Yen Al Bakri Abdullah, M.M. Yahya, Z. Mohamed, R. K., Muthusamy Jusoh, W.A.W. Nabiałek, Marcin Jez, Bartłomiej TA Engineering (General). Civil engineering (General) Dramatic population and economic growth result in increasing demand for concrete infrastructure, which leads to an increment of freshwater demand and a reduction of freshwater resources. however, freshwater is a finite resource, which means that freshwater will be used up someday in the future when freshwater demand keeps increasing while freshwater resources are limited. therefore, replacing freshwater with seawater in concrete blending seems potentially beneficial for maintaining the freshwater resources as well as advantageous alternatives to the construction work near the sea. there have been few experimental research on the effect of blending water salt content on the mechanical and physical characteristics of concrete, particularly high-strength concrete. therefore, a research study on the influence of salt concentration of blending water on the physical and mechanical properties of high-strength concrete is necessary. this study covered the blending water salinity, which varied from 17.5 g/l to 52.5 g/l and was determined on the physical and mechanical properties, including workability, density, compressive strength, and flexural strength. the test results indicate that the use of sea salt in blending water had a slight negative influence on both the workability and the density of high strength concrete. it also indicates that the use of sea salt in blending water had a positive influence on both the compressive strength and the flexural strength of high-strength concrete in an earlystage. Polish Academy of Sciences 2023 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/38596/1/Journal%20Paper.pdf Razak, R.A. and Ng, K. Yen and Al Bakri Abdullah, M.M. and Yahya, Z. and Mohamed, R. and K., Muthusamy and Jusoh, W.A.W. and Nabiałek, Marcin and Jez, Bartłomiej (2023) Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete. Archives of Metallurgy & Materials, 68 (3). pp. 1041-1045. ISSN 1733-3490. (Published) https://www.imim.pl/files/archiwum/Vol3_2023/28.pdf
spellingShingle TA Engineering (General). Civil engineering (General)
Razak, R.A.
Ng, K. Yen
Al Bakri Abdullah, M.M.
Yahya, Z.
Mohamed, R.
K., Muthusamy
Jusoh, W.A.W.
Nabiałek, Marcin
Jez, Bartłomiej
Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete
title Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete
title_full Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete
title_fullStr Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete
title_full_unstemmed Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete
title_short Influence of Salinity of Mixing Water Towards Physical and Mechanical Properties of High Strength Concrete
title_sort influence of salinity of mixing water towards physical and mechanical properties of high strength concrete
topic TA Engineering (General). Civil engineering (General)
url http://umpir.ump.edu.my/id/eprint/38596/1/Journal%20Paper.pdf
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