Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS

The concrete structure exposed to high temperatures can affect the strength of the structure. Limitations in the experimental method can be solved by mathematical modeling. This study aims to identify the stress and strain behavior that occurs at high-temperatures. The model is a cylindrical concret...

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Main Authors: Reni Suryanita, Wahyu Rahmadhan, Alfian Kamaldi
Format: Article
Language:English
Published: Universitas Diponegoro 2019-07-01
Series:Media Komunikasi Teknik Sipil
Subjects:
Online Access:https://ejournal.undip.ac.id/index.php/mkts/article/view/20575
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spelling doaj-53ef9099beb64dd7a98aa43732b293862020-11-24T22:01:01ZengUniversitas DiponegoroMedia Komunikasi Teknik Sipil0854-18092549-67782019-07-0125115512210.14710/mkts.v25i1.2057515336Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSASReni Suryanita0Wahyu Rahmadhan1Alfian Kamaldi2Jurusan Teknik Sipil, Universitas Riau PekanbaruJurusan Teknik Sipil, Universitas Riau PekanbaruJurusan Teknik Sipil, Universitas Riau PekanbaruThe concrete structure exposed to high temperatures can affect the strength of the structure. Limitations in the experimental method can be solved by mathematical modeling. This study aims to identify the stress and strain behavior that occurs at high-temperatures. The model is a cylindrical concrete with a diameter of 150 mm and a height of 300 mm. The concrete strength design is 25 MPa. The temperatures of the model are 100 °C, 200 °C, 300 °C, 400 °C, 500 °C, 600 °C, and 700 °C. The model analysis using LUSAS v. 16 Software to observe the properties of the concrete material due to exposure to high temperatures. The results of the study get the higher the temperature received by concrete, the strength of the concrete decreases. Concrete that burned to a temperature of 300 °C still had 82% available power, and at a temperature of 700 °C, the remaining concrete strength was 30%. The strain increases to 423% from normal conditions at a temperature of 700 ° C. Therefore, the results of the study can be used as a reference for structural engineers to know the behavior of the concrete that exposure to high temperatures.https://ejournal.undip.ac.id/index.php/mkts/article/view/20575Mathematical-modelling, high-temperature, LUSAS, stress, strain
collection DOAJ
language English
format Article
sources DOAJ
author Reni Suryanita
Wahyu Rahmadhan
Alfian Kamaldi
spellingShingle Reni Suryanita
Wahyu Rahmadhan
Alfian Kamaldi
Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS
Media Komunikasi Teknik Sipil
Mathematical-modelling, high-temperature, LUSAS, stress, strain
author_facet Reni Suryanita
Wahyu Rahmadhan
Alfian Kamaldi
author_sort Reni Suryanita
title Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS
title_short Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS
title_full Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS
title_fullStr Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS
title_full_unstemmed Pemodelan Perilaku Tegangan dan Regangan Beton pada Suhu Tinggi dengan Software LUSAS
title_sort pemodelan perilaku tegangan dan regangan beton pada suhu tinggi dengan software lusas
publisher Universitas Diponegoro
series Media Komunikasi Teknik Sipil
issn 0854-1809
2549-6778
publishDate 2019-07-01
description The concrete structure exposed to high temperatures can affect the strength of the structure. Limitations in the experimental method can be solved by mathematical modeling. This study aims to identify the stress and strain behavior that occurs at high-temperatures. The model is a cylindrical concrete with a diameter of 150 mm and a height of 300 mm. The concrete strength design is 25 MPa. The temperatures of the model are 100 °C, 200 °C, 300 °C, 400 °C, 500 °C, 600 °C, and 700 °C. The model analysis using LUSAS v. 16 Software to observe the properties of the concrete material due to exposure to high temperatures. The results of the study get the higher the temperature received by concrete, the strength of the concrete decreases. Concrete that burned to a temperature of 300 °C still had 82% available power, and at a temperature of 700 °C, the remaining concrete strength was 30%. The strain increases to 423% from normal conditions at a temperature of 700 ° C. Therefore, the results of the study can be used as a reference for structural engineers to know the behavior of the concrete that exposure to high temperatures.
topic Mathematical-modelling, high-temperature, LUSAS, stress, strain
url https://ejournal.undip.ac.id/index.php/mkts/article/view/20575
work_keys_str_mv AT renisuryanita pemodelanperilakutegangandanreganganbetonpadasuhutinggidengansoftwarelusas
AT wahyurahmadhan pemodelanperilakutegangandanreganganbetonpadasuhutinggidengansoftwarelusas
AT alfiankamaldi pemodelanperilakutegangandanreganganbetonpadasuhutinggidengansoftwarelusas
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