A model for predicting the multiscale crack growth due to an impact in heterogeneous viscoelastic solids |
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Authors: | F. V. Souza D. H. Allen |
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Affiliation: | (1) Department of Engineering Mechanics, University of Nebraska-Lincoln, W136 Nebraska Hall, Lincoln, Nebraska, USA |
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Abstract: | A two-scale model for predicting the multiple crack growth in viscoelastic solids due to an impact is presented. The cracks are considered only at the local scale through the use of a micromechanical viscoelastic cohesive zone model. The multiscale model has been implemented in a finite-element code. In order to minimize the computation time, the local finite-element meshes are solved in parallel by multiple processors. An example problem is given in order to demonstrate the capabilities of the model. Russian translation published in Mekhanika Kompozitnykh Materialov, Vol. 45, No. 2, pp. 211–222, March–April, 2009. |
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Keywords: | multiscale model heterogeneous viscoelastic media dynamic/impact loading fracture |
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