Contact-impact problems using a quasi-linear finite element approach
Contact-impact problems are a class of problems that exist in almost all machinery, automotive, aerospace, and structural applications. The contact-impact phenomena is inherently nonlinear and numerous approaches were used to solve such problems. In this paper, we exploit the linear Finite Element...
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iium-498412016-04-07T03:37:35Z http://irep.iium.edu.my/49841/ Contact-impact problems using a quasi-linear finite element approach Faris, Waleed Fekry T Technology (General) T351 Mechanical drawing. Engineering graphics TJ Mechanical engineering and machinery TJ181 Mechanical movements TJ210.2 Mechanical devices and figures. Automata. Ingenious mechanism. Robots (General) Contact-impact problems are a class of problems that exist in almost all machinery, automotive, aerospace, and structural applications. The contact-impact phenomena is inherently nonlinear and numerous approaches were used to solve such problems. In this paper, we exploit the linear Finite Element formulation within an incremental approach to solve Contact-impact problems under random excitations. The random excitations were modeled using Monte-Carlo simulation. We studied the input-output relationship for some of these problems to see the effect of random excitation on structural behavior. INSI Publications 2012-01 Article PeerReviewed application/pdf en http://irep.iium.edu.my/49841/1/17-21.pdf Faris, Waleed Fekry (2012) Contact-impact problems using a quasi-linear finite element approach. Australian Journal of Basic and Applied Sciences, 6 (1). pp. 17-21. ISSN 1991-8178 http://ajbasweb.com/old/ajbas_january_2012.html |
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Local University |
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International Islamic University Malaysia |
building |
IIUM Repository |
collection |
Online Access |
language |
English |
topic |
T Technology (General) T351 Mechanical drawing. Engineering graphics TJ Mechanical engineering and machinery TJ181 Mechanical movements TJ210.2 Mechanical devices and figures. Automata. Ingenious mechanism. Robots (General) |
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T Technology (General) T351 Mechanical drawing. Engineering graphics TJ Mechanical engineering and machinery TJ181 Mechanical movements TJ210.2 Mechanical devices and figures. Automata. Ingenious mechanism. Robots (General) Faris, Waleed Fekry Contact-impact problems using a quasi-linear finite element approach |
description |
Contact-impact problems are a class of problems that exist in almost all machinery,
automotive, aerospace, and structural applications. The contact-impact phenomena is inherently nonlinear and numerous approaches were used to solve such problems. In this paper, we exploit the linear Finite Element formulation within an incremental approach to solve Contact-impact problems under random excitations. The random excitations were modeled using Monte-Carlo simulation. We studied the input-output relationship for some of these problems to see the effect of random excitation on structural behavior. |
format |
Article |
author |
Faris, Waleed Fekry |
author_facet |
Faris, Waleed Fekry |
author_sort |
Faris, Waleed Fekry |
title |
Contact-impact problems using a quasi-linear finite element approach |
title_short |
Contact-impact problems using a quasi-linear finite element approach |
title_full |
Contact-impact problems using a quasi-linear finite element approach |
title_fullStr |
Contact-impact problems using a quasi-linear finite element approach |
title_full_unstemmed |
Contact-impact problems using a quasi-linear finite element approach |
title_sort |
contact-impact problems using a quasi-linear finite element approach |
publisher |
INSI Publications |
publishDate |
2012 |
url |
http://irep.iium.edu.my/49841/ http://irep.iium.edu.my/49841/ http://irep.iium.edu.my/49841/1/17-21.pdf |
first_indexed |
2018-09-07T06:59:09Z |
last_indexed |
2018-09-07T06:59:09Z |
_version_ |
1610931030847389696 |