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Modeling Dynamic Crush Behavior of Carbon Fiber Reinforced Polymer Composite Structures Using MAT213Modeling crushing of carbon fiber reinforced polymer (CFRP) composites is challenging, and current simulation methodologies involve tuning of non-physical parameters. MAT213, a next-generation material model, has advanced functionality to better simulate dynamic impact loading. The objective of the present investigation is to evaluate the potential for using MAT213 to simulate dynamic crushing of CFRPs. Two sets of simulations were performed: one for calibration based on a set of coupon-level experiments and another for prediction of the response of structural elements. Simulations involving dynamic crushing of flat specimens were iteratively run to calibrate model parameters. The calibration demonstrated that MAT213 could produce a simulated force-displacement response within experimental scatter. The simulated failure morphology was also comparable to the experiments. After successful calibration, predictive simulations of dynamic crushing of C-channel shaped specimens were completed using a simulated crash sled test rig and two pairs of impactor mass/velocity conditions. The simulated force-displacement curve in the crash sled simulations for the lower-velocity condition fell within the experimental scatter, but the stable crush force was underpredicted by 27% in the higher-velocity simulations. Better correlation in the lower-velocity test condition likely results from the calibration condition being a similar velocity to the lower-velocity crash sled condition.
Document ID
20240003555
Acquisition Source
Glenn Research Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
R.T. Haluza
(Pennsylvania State University State College, United States)
R.K. Goldberg
(Glenn Research Center Cleveland, Ohio, United States)
T.M. Ricks
(Glenn Research Center Cleveland, Ohio, United States)
J.M. Pereira
(Glenn Research Center Cleveland, Ohio, United States)
K.L. Koudela
(Pennsylvania State University State College, United States)
C.E. Bakis
(Pennsylvania State University State College, United States)
Date Acquired
March 22, 2024
Publication Date
March 24, 2024
Publication Information
Publication: Composite Structures
Publisher: Elsevier
Volume: 338
Issue Publication Date: June 15, 2024
ISSN: 0263-8223
e-ISSN: 1879-1085
Subject Category
Composite Materials
Funding Number(s)
WBS: 664817.02.03.03.03.03
CONTRACT_GRANT: 80GRC019D0001
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
External Peer Committee
Keywords
Dynamic Crush
MAT213
Composite
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