Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation

The study of the transient thermal stress problem for a periodic edge cracks in an elastic plate on an elastic foundations is investigated. This study may also be applied for circumferentially periodic cracked hollow cylinder under transient thermal stresses. Based on previous studies, the cylindric...

Full description

Bibliographic Details
Main Author: Abd El-Fattah A. Rizk
Format: Article
Language:English
Published: IIUM Press, International Islamic University Malaysia 2012-10-01
Series:International Islamic University Malaysia Engineering Journal
Online Access:http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/392
id doaj-90fa96b5d05c414d86f8853b208052c4
record_format Article
spelling doaj-90fa96b5d05c414d86f8853b208052c42020-11-25T03:04:11ZengIIUM Press, International Islamic University MalaysiaInternational Islamic University Malaysia Engineering Journal1511-788X2289-78602012-10-016210.31436/iiumej.v6i2.392Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic FoundationAbd El-Fattah A. Rizk0Department of Science in Engineering,Faculty of Engineering, International Islamic University Malaysia, P.O. Box 10, 50728, Kuala Lumpur, MalaysiaThe study of the transient thermal stress problem for a periodic edge cracks in an elastic plate on an elastic foundations is investigated. This study may also be applied for circumferentially periodic cracked hollow cylinder under transient thermal stresses. Based on previous studies, the cylindrical shell may be modeled by a plate on an elastic foundation. The thermal stresses are generated due to sudden convective cooling on the boundary containing the edge cracks while the other boundary is insulated. The superposition technique is utilized to solve the problem. The perturbation problem is formulated by using the thermal stresses obtained from uncracked problem with opposite sign on the crack surfaces as the only external loading. This leads to hypersingular integral equation with the crack surface displacement as the only unknown function. The main output of this study is the transient stress intensity factors that are evaluated numerically. The parametric studies based on time (Fourier number), crack length, coefficient of heat transfer (Biot number), Periodic crack spacing and the stiffness of elastic foundation are investigated.  Keywords: Fracture mechanics, Thermal stresses, Periodic crack, Stress intensity  factor. http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/392
collection DOAJ
language English
format Article
sources DOAJ
author Abd El-Fattah A. Rizk
spellingShingle Abd El-Fattah A. Rizk
Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation
International Islamic University Malaysia Engineering Journal
author_facet Abd El-Fattah A. Rizk
author_sort Abd El-Fattah A. Rizk
title Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation
title_short Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation
title_full Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation
title_fullStr Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation
title_full_unstemmed Thermal Shock In Periodic Edge-Cracked Plate Supported By Elastic Foundation
title_sort thermal shock in periodic edge-cracked plate supported by elastic foundation
publisher IIUM Press, International Islamic University Malaysia
series International Islamic University Malaysia Engineering Journal
issn 1511-788X
2289-7860
publishDate 2012-10-01
description The study of the transient thermal stress problem for a periodic edge cracks in an elastic plate on an elastic foundations is investigated. This study may also be applied for circumferentially periodic cracked hollow cylinder under transient thermal stresses. Based on previous studies, the cylindrical shell may be modeled by a plate on an elastic foundation. The thermal stresses are generated due to sudden convective cooling on the boundary containing the edge cracks while the other boundary is insulated. The superposition technique is utilized to solve the problem. The perturbation problem is formulated by using the thermal stresses obtained from uncracked problem with opposite sign on the crack surfaces as the only external loading. This leads to hypersingular integral equation with the crack surface displacement as the only unknown function. The main output of this study is the transient stress intensity factors that are evaluated numerically. The parametric studies based on time (Fourier number), crack length, coefficient of heat transfer (Biot number), Periodic crack spacing and the stiffness of elastic foundation are investigated.  Keywords: Fracture mechanics, Thermal stresses, Periodic crack, Stress intensity  factor.
url http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/392
work_keys_str_mv AT abdelfattaharizk thermalshockinperiodicedgecrackedplatesupportedbyelasticfoundation
_version_ 1724682462694473728