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An efficient formulation for linear and geometric non- linear membrane elements

Author:
محمد رضائی پژند
,
مجید یعقوبی
,
Mohaamad Rezaiee Pajand
,
Majid Yaghoobi
Year
: 2014
Abstract: Utilizing the strain gradient notation process and the free formulation, an efficient way of constructing membrane elements will be proposed. This strategy can be utilized for linear and geometric non-linear problems. In the suggested formulation, the optimization constraints of insensitivity to distortion, rotational invariance and not having parasitic shear error are employed. In addition, the equilibrium equations will be established based on some constraints among the strain states. The authors' technique can easily separate the rigid body motions, and those belong to deformational motions. In this article, a novel triangular element, named SST10, is formulated. This element will be used in several plane problems having irregular mesh and complicated geometry with linear and geometrically nonlinear behavior. The numerical outcomes clearly demonstrate the efficiency of the new formulation.
URI: http://libsearch.um.ac.ir:80/fum/handle/fum/3351696
Keyword(s): Strain states,Geometric non-linear formulation,Plane problems,Finite element
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    An efficient formulation for linear and geometric non- linear membrane elements

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contributor authorمحمد رضائی پژندen
contributor authorمجید یعقوبیen
contributor authorMohaamad Rezaiee Pajandfa
contributor authorMajid Yaghoobifa
date accessioned2020-06-06T13:21:38Z
date available2020-06-06T13:21:38Z
date issued2014
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3351696?locale-attribute=en
description abstractUtilizing the strain gradient notation process and the free formulation, an efficient way of constructing membrane elements will be proposed. This strategy can be utilized for linear and geometric non-linear problems. In the suggested formulation, the optimization constraints of insensitivity to distortion, rotational invariance and not having parasitic shear error are employed. In addition, the equilibrium equations will be established based on some constraints among the strain states. The authors' technique can easily separate the rigid body motions, and those belong to deformational motions. In this article, a novel triangular element, named SST10, is formulated. This element will be used in several plane problems having irregular mesh and complicated geometry with linear and geometrically nonlinear behavior. The numerical outcomes clearly demonstrate the efficiency of the new formulation.en
languageEnglish
titleAn efficient formulation for linear and geometric non- linear membrane elementsen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsStrain statesen
subject keywordsGeometric non-linear formulationen
subject keywordsPlane problemsen
subject keywordsFinite elementen
journal titleLatin American Journal of Solids and Structuresfa
pages1012-1035
journal volume11
journal issue6
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1044941.html
identifier articleid1044941
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