Variation of stress intensity factor through the thickness of plate

Stress intensity factor (SIF) is one of the most important parameters in fracture mechanics. Therefore there is essential request on investigation of the behavior of SIF. Due to extensive and practical usage of plate structures in components, hence the behavior of SIF through the thickness of plate...

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Main Authors: Oshkour, Azim Ataollahi, Sahari, Barkawi, Ali, Aidy
Format: Article
Language:English
Published: IOP Publishing 2011
Online Access:http://psasir.upm.edu.my/id/eprint/22962/1/Variation%20of%20stress%20intensity%20factor%20through%20the%20thickness%20of%20plate.pdf
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author Oshkour, Azim Ataollahi
Sahari, Barkawi
Ali, Aidy
author_facet Oshkour, Azim Ataollahi
Sahari, Barkawi
Ali, Aidy
author_sort Oshkour, Azim Ataollahi
collection UPM
description Stress intensity factor (SIF) is one of the most important parameters in fracture mechanics. Therefore there is essential request on investigation of the behavior of SIF. Due to extensive and practical usage of plate structures in components, hence the behavior of SIF through the thickness of plate has been done. The three dimensional (3D) plate has simulated in ABAQUS finite element software. Crack tip has been meshed by 20 quarter node elements. The results presented that the SIF in free surfaces of plate had minimum value and variation of SIFs approximately was constant through the thickness of plate except on free surface.
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spelling upm.eprints-229622015-12-09T08:05:14Z http://psasir.upm.edu.my/id/eprint/22962/ Variation of stress intensity factor through the thickness of plate Oshkour, Azim Ataollahi Sahari, Barkawi Ali, Aidy Stress intensity factor (SIF) is one of the most important parameters in fracture mechanics. Therefore there is essential request on investigation of the behavior of SIF. Due to extensive and practical usage of plate structures in components, hence the behavior of SIF through the thickness of plate has been done. The three dimensional (3D) plate has simulated in ABAQUS finite element software. Crack tip has been meshed by 20 quarter node elements. The results presented that the SIF in free surfaces of plate had minimum value and variation of SIFs approximately was constant through the thickness of plate except on free surface. IOP Publishing 2011 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/22962/1/Variation%20of%20stress%20intensity%20factor%20through%20the%20thickness%20of%20plate.pdf Oshkour, Azim Ataollahi and Sahari, Barkawi and Ali, Aidy (2011) Variation of stress intensity factor through the thickness of plate. IOP Conference Series: Materials Science and Engineering, 17 (1). art. no. 012004. pp. 1-12. ISSN 1757-8981; ESSN: 1757-899X http://iopscience.iop.org/article/10.1088/1757-899X/17/1/012004/meta 10.1088/1757-899X/17/1/012004
spellingShingle Oshkour, Azim Ataollahi
Sahari, Barkawi
Ali, Aidy
Variation of stress intensity factor through the thickness of plate
title Variation of stress intensity factor through the thickness of plate
title_full Variation of stress intensity factor through the thickness of plate
title_fullStr Variation of stress intensity factor through the thickness of plate
title_full_unstemmed Variation of stress intensity factor through the thickness of plate
title_short Variation of stress intensity factor through the thickness of plate
title_sort variation of stress intensity factor through the thickness of plate
url http://psasir.upm.edu.my/id/eprint/22962/1/Variation%20of%20stress%20intensity%20factor%20through%20the%20thickness%20of%20plate.pdf
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