Title of article :
A new integration algorithm for finite strain J2 plasticity based on midpoint rule
Author/Authors :
Jahanshah، Mohsen نويسنده Currently he is an assistant professor in the Department of Civil Engineering, School of Science and Engineering, Sharif University of Technology, International Campus, Kish Island, ,
Issue Information :
دوماهنامه با شماره پیاپی 0 سال 2015
Pages :
17
From page :
1373
To page :
1389
Abstract :
Integrating the rate form equations governing the behavior of material is an important step in solving every plasticity problem. Providing a compromise between accuracy and computational e ort demands the combination of low order elements with ecient integration algorithms. First and second order accurate integration algorithms are well established in the realm of in nitesimal theory. However for large deformation plasticity models, second order integration algorithms are not given much attention in the literature. Inspired by midpoint rule algorithms conventionally used in small deformations, a new integration algorithm is proposed for nite strain J2 plasticity that outperforms the classical backward Euler method. Algorithmic setup as well as the derivation of tangent operator which is crucial for quadratic rate of convergence of the Newton-Raphson algorithm is discussed in detail. Employing four node quadrilateral elements in solving benchmark examples it is shown that the proposed algorithm is very stable from numerical standpoint and has outstanding convergence properties
Journal title :
Scientia Iranica(Transactions A: Civil Engineering)
Serial Year :
2015
Journal title :
Scientia Iranica(Transactions A: Civil Engineering)
Record number :
2315466
Link To Document :
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