Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species

Young’s Modulus and Poisson’s ratio are the mechanical properties that need to be determined for the production of engineering design or information for the numerical analysis of timber. In this study, Merpauh, Kapur and Sesenduk species were selected. This experimental investigation focuses on the...

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Published in:Jurnal Teknologi
Main Author: Hassan R.; Syed Mubarat S.S.A.; Alisibramulisi A.
Format: Article
Language:English
Published: Penerbit UTM Press 2016
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84968736380&doi=10.11113%2fjt.v78.8484&partnerID=40&md5=02564dcf9cceacd7fee2dc99571a8917
id 2-s2.0-84968736380
spelling 2-s2.0-84968736380
Hassan R.; Syed Mubarat S.S.A.; Alisibramulisi A.
Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
2016
Jurnal Teknologi
78
5-2
10.11113/jt.v78.8484
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84968736380&doi=10.11113%2fjt.v78.8484&partnerID=40&md5=02564dcf9cceacd7fee2dc99571a8917
Young’s Modulus and Poisson’s ratio are the mechanical properties that need to be determined for the production of engineering design or information for the numerical analysis of timber. In this study, Merpauh, Kapur and Sesenduk species were selected. This experimental investigation focuses on the elastic properties of those timber species. The Modulus of Elasticity (MOE) and Poisson’s ratio were determined by means of tensile tests. In addition, Modulus of Rigidity (MOR), tensile strength capacity and its moisture contents were also determined. The deformation during testing was measured by means of mechanical extensometer. The MOE of the studied species range from 36.7 N/mm2 to 119.2 N/mm2, whereas Poisson’s ratio values show less variability. The result of the study also shows that the mechanical properties for the species are related. The larger the density value, the larger value of stress and strain will be. Thus, the value of Poisson ratio will also increase, respectively. © 2016 Penerbit UTM Press. All rights reserved.
Penerbit UTM Press
1279696
English
Article

author Hassan R.; Syed Mubarat S.S.A.; Alisibramulisi A.
spellingShingle Hassan R.; Syed Mubarat S.S.A.; Alisibramulisi A.
Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
author_facet Hassan R.; Syed Mubarat S.S.A.; Alisibramulisi A.
author_sort Hassan R.; Syed Mubarat S.S.A.; Alisibramulisi A.
title Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
title_short Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
title_full Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
title_fullStr Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
title_full_unstemmed Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
title_sort Young’s modulus and poisson’s ratio of Merpauh, Kapur and Sesenduk species
publishDate 2016
container_title Jurnal Teknologi
container_volume 78
container_issue 5-2
doi_str_mv 10.11113/jt.v78.8484
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84968736380&doi=10.11113%2fjt.v78.8484&partnerID=40&md5=02564dcf9cceacd7fee2dc99571a8917
description Young’s Modulus and Poisson’s ratio are the mechanical properties that need to be determined for the production of engineering design or information for the numerical analysis of timber. In this study, Merpauh, Kapur and Sesenduk species were selected. This experimental investigation focuses on the elastic properties of those timber species. The Modulus of Elasticity (MOE) and Poisson’s ratio were determined by means of tensile tests. In addition, Modulus of Rigidity (MOR), tensile strength capacity and its moisture contents were also determined. The deformation during testing was measured by means of mechanical extensometer. The MOE of the studied species range from 36.7 N/mm2 to 119.2 N/mm2, whereas Poisson’s ratio values show less variability. The result of the study also shows that the mechanical properties for the species are related. The larger the density value, the larger value of stress and strain will be. Thus, the value of Poisson ratio will also increase, respectively. © 2016 Penerbit UTM Press. All rights reserved.
publisher Penerbit UTM Press
issn 1279696
language English
format Article
accesstype
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