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A Phantom-Node Method with Edge-Based Strain Smoothing for Linear Elastic Fracture Mechanics

Authors :
N. Vu-Bac
H. Nguyen-Xuan
L. Chen
C. K. Lee
G. Zi
X. Zhuang
G. R. Liu
T. Rabczuk
Source :
Journal of Applied Mathematics, Vol 2013 (2013)
Publication Year :
2013
Publisher :
Wiley, 2013.

Abstract

This paper presents a novel numerical procedure based on the combination of an edge-based smoothed finite element (ES-FEM) with a phantom-node method for 2D linear elastic fracture mechanics. In the standard phantom-node method, the cracks are formulated by adding phantom nodes, and the cracked element is replaced by two new superimposed elements. This approach is quite simple to implement into existing explicit finite element programs. The shape functions associated with discontinuous elements are similar to those of the standard finite elements, which leads to certain simplification with implementing in the existing codes. The phantom-node method allows modeling discontinuities at an arbitrary location in the mesh. The ES-FEM model owns a close-to-exact stiffness that is much softer than lower-order finite element methods (FEM). Taking advantage of both the ES-FEM and the phantom-node method, we introduce an edge-based strain smoothing technique for the phantom-node method. Numerical results show that the proposed method achieves high accuracy compared with the extended finite element method (XFEM) and other reference solutions.

Subjects

Subjects :
Mathematics
QA1-939

Details

Language :
English
ISSN :
1110757X and 16870042
Volume :
2013
Database :
Directory of Open Access Journals
Journal :
Journal of Applied Mathematics
Publication Type :
Academic Journal
Accession number :
edsdoj.79f33cfb9d1a4bfa8fe1943cc5f4d6a2
Document Type :
article
Full Text :
https://doi.org/10.1155/2013/978026