Strength of Concrete Using Different Types of Additives

In this investigation, conventional concrete mixes (as a reference mixes) and concretemixes produced with (5, 10, and 20)% of cement replacement by silica fume, crushed glass and crushed nucleate additives respectively, these mixes were used in preparing (144) concrete specimens. Laboratory test re...

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Main Author: Ali Hussain Ali
Format: Article
Language:Arabic
Published: Mustansiriyah University/College of Engineering 2011-12-01
Series:Journal of Engineering and Sustainable Development
Subjects:
Online Access:https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1306
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author Ali Hussain Ali
author_facet Ali Hussain Ali
author_sort Ali Hussain Ali
collection DOAJ
description In this investigation, conventional concrete mixes (as a reference mixes) and concretemixes produced with (5, 10, and 20)% of cement replacement by silica fume, crushed glass and crushed nucleate additives respectively, these mixes were used in preparing (144) concrete specimens. Laboratory test results in dictated that: a)There was a significant increase (17.6 to 88.5 and 8.8 to 25.8) % in the compressive strength of concretes produced with silica fume and crushed glass additives respectively, while a significant reduction (29.6 to 62.6)% in the compressive strength was recorded using concrete mixes with crushed nucleate. b)there lation ships between the 7-day(fc,7)and:the28day(fc,28)compressive strength areas follows - [fc,28 = 1.701 fc,7] for (reference mix); - [fc,28 = (1.590 to 1.931) fc,7] for silica fume mixes;
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spelling doaj.art-7485f6eb84e84c4ab11917eeb888077d2022-12-22T04:38:15ZaraMustansiriyah University/College of EngineeringJournal of Engineering and Sustainable Development2520-09172520-09252011-12-01154Strength of Concrete Using Different Types of AdditivesAli Hussain Ali0Technical Engineering College, Mosul, Iraq In this investigation, conventional concrete mixes (as a reference mixes) and concretemixes produced with (5, 10, and 20)% of cement replacement by silica fume, crushed glass and crushed nucleate additives respectively, these mixes were used in preparing (144) concrete specimens. Laboratory test results in dictated that: a)There was a significant increase (17.6 to 88.5 and 8.8 to 25.8) % in the compressive strength of concretes produced with silica fume and crushed glass additives respectively, while a significant reduction (29.6 to 62.6)% in the compressive strength was recorded using concrete mixes with crushed nucleate. b)there lation ships between the 7-day(fc,7)and:the28day(fc,28)compressive strength areas follows - [fc,28 = 1.701 fc,7] for (reference mix); - [fc,28 = (1.590 to 1.931) fc,7] for silica fume mixes; https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1306Silica fumeCrushed glassCrushed nucleatecompressive strengthtensile strengthflexural strength
spellingShingle Ali Hussain Ali
Strength of Concrete Using Different Types of Additives
Journal of Engineering and Sustainable Development
Silica fume
Crushed glass
Crushed nucleate
compressive strength
tensile strength
flexural strength
title Strength of Concrete Using Different Types of Additives
title_full Strength of Concrete Using Different Types of Additives
title_fullStr Strength of Concrete Using Different Types of Additives
title_full_unstemmed Strength of Concrete Using Different Types of Additives
title_short Strength of Concrete Using Different Types of Additives
title_sort strength of concrete using different types of additives
topic Silica fume
Crushed glass
Crushed nucleate
compressive strength
tensile strength
flexural strength
url https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1306
work_keys_str_mv AT alihussainali strengthofconcreteusingdifferenttypesofadditives