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Simulations of Yarn Micro-Mechanics of Woven Heat Shield MaterialsCarbon and phenolic fibers are commonly used in ablative thermal protection materials, such as 3-dimensional Mid-Density Carbon Phenolic (3MDCP), a 3D-woven composite comprised of mixed-fiber yarn bundles. Predicting the micro-mechanical response and fracture of twisted yarns composed of brittle and ductile fibers requires a modeling approach that captures per-fiber yielding, fiber fracture, and inter-fiber friction and contact. This work presents an extended bonded particle model (BPM) for discrete element method (DEM) simulation of fiber and yarn mechanics, implemented in LAMMPS. The model builds on the incremental bond formulation of Guo et al. and introduces a piecewise elasto-plastic constitutive law for axial extension, enabling representation of fibers that yield before failure. 3MDCP yarns were constructed using measured fiber radius distributions and helical twist geometry. Tensile simulations of single-ply 3MDCP yarns show good agreement with vender stress–strain results. Fiber breakage models also show details on yarn breakage propagration, centered radially in the yarn. Yarn breakage of multi-ply 3MDCP also matched experimental observations in per-ply breakage; however, predicted yarn breakage strength were found higher than experimental observations.
Document ID
20260008239
Acquisition Source
Ames Research Center
Document Type
Presentation
Authors
Elizabeth Suehr
(Oak Ridge Associated Universities Oak Ridge, United States)
Ava Balanon
(California Institute of Technology Pasadena, United States)
Enoch Kim
(University of California, Irvine Irvine, United States)
Cheol Park
(Langley Research Center Hampton, United States)
Lauren Abbott
(Ames Research Center Mountain View, United States)
Andrew Santos
(Ames Research Center Mountain View, United States)
Date Acquired
August 25, 2026
Subject Category
Composite Materials
Numerical Analysis
Meeting Information
Meeting: 16th Ablation Workshop
Location: Las Cruces, NM
Country: US
Start Date: September 1, 2026
End Date: September 3, 2026
Sponsors: University of Kentucky
Funding Number(s)
CONTRACT_GRANT: 80HQTR21CA005
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
NASA Peer Committee
Keywords
Discrete Element Method
Bonded Particle
Carbon Fiber
Phenolic
3MDCP
TPS
Woven
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