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Numerical analysis of anisotropic ductile continuum damage

✍ Scribed by Michael Brünig


Book ID
104267287
Publisher
Elsevier Science
Year
2003
Tongue
English
Weight
246 KB
Volume
192
Category
Article
ISSN
0045-7825

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✦ Synopsis


The paper deals with the numerical analysis of large elastic-plastic deformation behavior of anisotropically damaged ductile solids based on a generalized macroscopic theory within the framework of nonlinear continuum damage mechanics. Estimates of the stress and strain histories are obtained from a straightforward numerical integration algorithm based on operator split methodology which employs an inelastic (damage-plastic) predictor followed by an elastic corrector step. The finite element method is used to approximate the linearized variational problem. Furthermore, identification of material parameters is discussed. Numerical simulation of the elastic-plastic deformation behavior of damaged tension specimens demonstrate the efficiency of the formulation.


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