Thermomechanical Property Evolution and Virtual Curing of an Aerospace Bismaleimide Resin via Experimentally Validated Molecular Dynamics Simulation

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Main Authors: Cecil Evers, Joshua Kemppainen, Zhiyong Liang, Gregory Odegard, Kaylee Thagard, Britannia Vondrasek, Trevor Wavrunek
Format: Recurso digital
Published: Zenodo 2025
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author Cecil Evers
Joshua Kemppainen
Zhiyong Liang
Gregory Odegard
Kaylee Thagard
Britannia Vondrasek
Trevor Wavrunek
author_facet Cecil Evers
Joshua Kemppainen
Zhiyong Liang
Gregory Odegard
Kaylee Thagard
Britannia Vondrasek
Trevor Wavrunek
contents Virtual curing simulations were performed on a bismaleimide resin to describe the evolution of cure-dependent thermomechanical properties as informed by reaction kinetics in Molecular Dynamics.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18597737
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Thermomechanical Property Evolution and Virtual Curing of an Aerospace Bismaleimide Resin via Experimentally Validated Molecular Dynamics Simulation
Cecil Evers
Joshua Kemppainen
Zhiyong Liang
Gregory Odegard
Kaylee Thagard
Britannia Vondrasek
Trevor Wavrunek
Virtual curing simulations were performed on a bismaleimide resin to describe the evolution of cure-dependent thermomechanical properties as informed by reaction kinetics in Molecular Dynamics.
title Thermomechanical Property Evolution and Virtual Curing of an Aerospace Bismaleimide Resin via Experimentally Validated Molecular Dynamics Simulation
url https://doi.org/10.5281/zenodo.18597737