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A Novel Multiscale Physics Based Progressive Failure Methodology for Laminated Composite StructuresA variable fidelity, multiscale, physics based finite element procedure for predicting progressive damage and failure of laminated continuous fiber reinforced composites is introduced. At every integration point in a finite element model, progressive damage is accounted for at the lamina-level using thermodynamically based Schapery Theory. Separate failure criteria are applied at either the global-scale or the microscale in two different FEM models. A micromechanics model, the Generalized Method of Cells, is used to evaluate failure criteria at the micro-level. The stress-strain behavior and observed failure mechanisms are compared with experimental results for both models.
Document ID
20090005991
Acquisition Source
Glenn Research Center
Document Type
Technical Memorandum (TM)
Authors
Pineda, Evan J.
(Michigan Univ. Ann Arbor, MI, United States)
Waas, Anthony M.
(Michigan Univ. Ann Arbor, MI, United States)
Bednarcyk, Brett A.
(NASA Glenn Research Center Cleveland, OH, United States)
Collier, Craig S.
(Collier Research and Development Corp. Hampton, VA, United States)
Yarrington, Phillip W.
(NASA Glenn Research Center Cleveland, OH, United States)
Date Acquired
August 24, 2013
Publication Date
December 1, 2008
Subject Category
Structural Mechanics
Report/Patent Number
NASA/TM-2008-215448
E-16644
Report Number: NASA/TM-2008-215448
Report Number: E-16644
Funding Number(s)
WBS: WBS 984754.02.07.03.16.05
CONTRACT_GRANT: NNL07AA29C
Distribution Limits
Public
Copyright
Public Use Permitted.
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