XFEM modelling of notched cross-ply woven gfrp composite plates
The study was carried out to predict the strength of glass fiber reinforce polymer (GFRP) composite laminates based on woven fabric reinforcement containing a circular hole. Finite element based approaches is implemented within ABAQUS CAE based on cohesive zone approach implementing traction-separat...
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uthm-73642015-10-19T00:30:08Z XFEM modelling of notched cross-ply woven gfrp composite plates Ahmad, Hilton@Mohd Hilton Tahrim, Zikri Lee, Sim Yee TP1080-1185 Polymers and polymer manufacture The study was carried out to predict the strength of glass fiber reinforce polymer (GFRP) composite laminates based on woven fabric reinforcement containing a circular hole. Finite element based approaches is implemented within ABAQUS CAE based on cohesive zone approach implementing traction-separation parameter taken from independent experimental measurements of strength and toughness, applied withii two-dimensional Extended Finite Element Method (XFEM) framework. The modeling work covers a range of cross-ply GFRP woven fabric systems eight harness satin weaves (8HS) and plain weave (PW) with notch size of 2.5 mm, 5 mm and 10 mm at the center of the plate. The prediction in current study showed good agreement with experimental datasets and other analytical predictions reported in the literatures 2015 Conference or Workshop Item PeerReviewed Ahmad, Hilton@Mohd Hilton and Tahrim, Zikri and Lee, Sim Yee (2015) XFEM modelling of notched cross-ply woven gfrp composite plates. In: The 14th International Conference on QiR (Quality in Research), 10-13 August 2015, Lombok, Indonesia. http://eprints.uthm.edu.my/7364/ |
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Universiti Tun Hussein Onn Malaysia |
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TP1080-1185 Polymers and polymer manufacture |
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TP1080-1185 Polymers and polymer manufacture Ahmad, Hilton@Mohd Hilton Tahrim, Zikri Lee, Sim Yee XFEM modelling of notched cross-ply woven gfrp composite plates |
description |
The study was carried out to predict the strength of glass fiber reinforce polymer (GFRP) composite
laminates based on woven fabric reinforcement containing a circular hole. Finite element based
approaches is implemented within ABAQUS CAE based on cohesive zone approach implementing
traction-separation parameter taken from independent experimental measurements of strength and
toughness, applied withii two-dimensional Extended Finite Element Method (XFEM) framework. The
modeling work covers a range of cross-ply GFRP woven fabric systems eight harness satin weaves
(8HS) and plain weave (PW) with notch size of 2.5 mm, 5 mm and 10 mm at the center of the plate.
The prediction in current study showed good agreement with experimental datasets and other
analytical predictions reported in the literatures |
format |
Conference or Workshop Item |
author |
Ahmad, Hilton@Mohd Hilton Tahrim, Zikri Lee, Sim Yee |
author_facet |
Ahmad, Hilton@Mohd Hilton Tahrim, Zikri Lee, Sim Yee |
author_sort |
Ahmad, Hilton@Mohd Hilton |
title |
XFEM modelling of notched cross-ply woven gfrp composite plates |
title_short |
XFEM modelling of notched cross-ply woven gfrp composite plates |
title_full |
XFEM modelling of notched cross-ply woven gfrp composite plates |
title_fullStr |
XFEM modelling of notched cross-ply woven gfrp composite plates |
title_full_unstemmed |
XFEM modelling of notched cross-ply woven gfrp composite plates |
title_sort |
xfem modelling of notched cross-ply woven gfrp composite plates |
publishDate |
2015 |
url |
http://eprints.uthm.edu.my/7364/ |
first_indexed |
2018-09-05T11:33:44Z |
last_indexed |
2018-09-05T11:33:44Z |
_version_ |
1610767112465285120 |