Optimum concrete compression strength using bio-enzyme

To make concrete with high compressive strength and has a certain concrete specifications other than the main concrete materials are also needed concrete mix quality control and other added material is also in line with the current technology of concrete mix that produces concrete with specific char...

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Main Authors: Bagio Tony Hartono, Basoeki Makno, Tistogondo Julistyana, Pradana Sofyan Ali
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201713801013
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author Bagio Tony Hartono
Basoeki Makno
Tistogondo Julistyana
Pradana Sofyan Ali
author_facet Bagio Tony Hartono
Basoeki Makno
Tistogondo Julistyana
Pradana Sofyan Ali
author_sort Bagio Tony Hartono
collection DOAJ
description To make concrete with high compressive strength and has a certain concrete specifications other than the main concrete materials are also needed concrete mix quality control and other added material is also in line with the current technology of concrete mix that produces concrete with specific characteristics. Addition of bio enzyme on five concrete mixture that will be compared with normal concrete in order to know the optimum level bio-enzyme in concrete to increase the strength of the concrete. Concrete with bio-enzyme 200 ml/m3, 400 ml/m3, 600 ml/m3, 800 ml/m3, 1000 ml/m3 and normal concrete. Refer to the crushing test result, its tends to the mathematical model using 4th degree polynomial regression (least quartic), as represent on the attached data series, which is for the design mix fc′ = 25 MPa generate optimum value for 33,98 MPa, on the bio-additive dosage of 509 ml bio enzymes.
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spelling doaj.art-e71413b8d94948ce88604994035c93402022-12-21T22:48:46ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011380101310.1051/matecconf/201713801013matecconf_eacef2017_01013Optimum concrete compression strength using bio-enzymeBagio Tony HartonoBasoeki MaknoTistogondo JulistyanaPradana Sofyan AliTo make concrete with high compressive strength and has a certain concrete specifications other than the main concrete materials are also needed concrete mix quality control and other added material is also in line with the current technology of concrete mix that produces concrete with specific characteristics. Addition of bio enzyme on five concrete mixture that will be compared with normal concrete in order to know the optimum level bio-enzyme in concrete to increase the strength of the concrete. Concrete with bio-enzyme 200 ml/m3, 400 ml/m3, 600 ml/m3, 800 ml/m3, 1000 ml/m3 and normal concrete. Refer to the crushing test result, its tends to the mathematical model using 4th degree polynomial regression (least quartic), as represent on the attached data series, which is for the design mix fc′ = 25 MPa generate optimum value for 33,98 MPa, on the bio-additive dosage of 509 ml bio enzymes.https://doi.org/10.1051/matecconf/201713801013
spellingShingle Bagio Tony Hartono
Basoeki Makno
Tistogondo Julistyana
Pradana Sofyan Ali
Optimum concrete compression strength using bio-enzyme
MATEC Web of Conferences
title Optimum concrete compression strength using bio-enzyme
title_full Optimum concrete compression strength using bio-enzyme
title_fullStr Optimum concrete compression strength using bio-enzyme
title_full_unstemmed Optimum concrete compression strength using bio-enzyme
title_short Optimum concrete compression strength using bio-enzyme
title_sort optimum concrete compression strength using bio enzyme
url https://doi.org/10.1051/matecconf/201713801013
work_keys_str_mv AT bagiotonyhartono optimumconcretecompressionstrengthusingbioenzyme
AT basoekimakno optimumconcretecompressionstrengthusingbioenzyme
AT tistogondojulistyana optimumconcretecompressionstrengthusingbioenzyme
AT pradanasofyanali optimumconcretecompressionstrengthusingbioenzyme