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An Algorithm for Characterization of Fiber Aggregation in Composite MicrostructuresComposite structures are susceptible to localized flaws, or variability, that drive global failure. To capture this variance, a multiscale model needs to be introduced that not only accurately represents the statistical nature of the composite microstructure but is also efficient. At the microscale, fiber aggregation creates local stress concentrations, where failure is likely to occur sooner than expected. A method of rapid microstructure generation, in conjunction with cluster characterization, is examined to develop accurate reproductions of 2D composite cross-sections. Parameterization of shape and size of fiber clusters is used to characterize representative volume elements. The discrete element method is used to generate pseudo-microstructures. The clustering parameters from the pseudo- and actual microstructure arrangements (obtained from micrographs) can be compared to determine the validity of the representative volume element generated with the discrete element method. Results show a promising approach to evaluating randomness of fiber distributions and how to accurately recreate microstructures for strength analysis.
Document ID
20205006994
Acquisition Source
Glenn Research Center
Document Type
Technical Memorandum (TM)
Authors
Jamal F Husseini
(University of Massachusetts Lowell Lowell, Massachusetts, United States)
Scott E Stapleton
(University of Massachusetts Lowell Lowell, Massachusetts, United States)
Evan J Pineda
(Glenn Research Center Cleveland, Ohio, United States)
Date Acquired
August 31, 2020
Publication Date
December 1, 2020
Subject Category
Composite Materials
Report/Patent Number
E-19875
NASA/TM-20205006994
Funding Number(s)
WBS: 228556.04.21.22
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
Carbon fiber
microstructure
statistics
representative volume element
polymer matrix
discrete element method
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