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Predicting Char Yield of High-Temperature ResinsA simulation technique has been developed for predicting the char yield of organic resins during high-temperature processing. In silico methods can aid in the screening of new advanced materials for a number of important properties, but no chemistry-sensitive protocol currently exists for predicting the important experimental value of char yield. The proposed method utilizes a reactive force field (ReaxFF) to model the chemical transformation of precursor monomers into carbonized structures during three processing stages: ramp-up to pyrolysis temperatures (~3000 K), pyrolysis, and quenching. Achieving good agreement with experimental char yields requires continuous removal of small by-product molecules to mimic outgassing, and the application of high pressure to encourage the formation of a dense, glassy network. Six different resin chemistries were investigated: an ethynyl, a phenylethynyl, a cyanate ester, a phthalonitrile, acrylonitrile, and adamantane. These candidates represent a diverse group of precursors with respect to initial cyclic content, presence of heteroatoms, and types of reactive groups. The protocol developed accurately predicts the relative char yield between the investigated chemistries and provides quantitative agreement with experimental values, especially for high char yield resins. Several simulated properties of the carbonized structures are compared with experimental results, including outgassing products, morphology of the final chemical configurations, cyclic content, and mechanical properties.
Document ID
20230006042
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Jacob R Gissinger
(Oak Ridge Associated Universities Oak Ridge, Tennessee, United States)
Scott R Zavada
(Langley Research Center Hampton, Virginia, United States)
Joseph G Smith
(Langley Research Center Hampton, Virginia, United States)
Josh Kemppainen
(Michigan Technological University Houghton, Michigan, United States)
Ivan Gallegos
(Michigan Technological University Houghton, Michigan, United States)
Gregory Odegard
(Michigan Technological University Houghton, Michigan, United States)
Emilie J Siochi
(Langley Research Center Hampton, Virginia, United States)
Kristopher E Wise
(Langley Research Center Hampton, Virginia, United States)
Date Acquired
April 19, 2023
Subject Category
Chemistry and Materials (General)
Meeting Information
Meeting: 2023 JANNAF Spring Meeting
Location: Pittsburgh, PA
Country: US
Start Date: May 22, 2023
End Date: May 26, 2023
Sponsors: United States Department of the Army, United States Department of the Air Force, United States Department of the Navy, National Aeronautics and Space Administration
Funding Number(s)
WBS: 228556.04.23.23
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
NASA Technical Management
Keywords
polymer simulations, molecular dynamics
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