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01-04-2025 | Original Paper

Finite element simulation of octaaminophenyl polysilsesquioxane-modified Al2O3/polyimide composite thin film materials in a flexible display model

Authors: Yulong Gu, Hongmei Wu, Jian Chen, Yihui Fu

Published in: Journal of Polymer Research | Issue 4/2025

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Abstract

This article presents a comprehensive study on the finite element simulation of octaaminophenyl polysilsesquioxane-modified Al2O3/polyimide composite thin film materials, focusing on their application in flexible display models. The research highlights the exceptional thermal stability, chemical resistance, and mechanical strength of polyimide films, making them ideal for various high-performance applications, including flexible displays, aerospace, and automotive industries. The study employs finite element simulation to analyze the mechanical properties of a 5% CPI/OAPOSS@Al2O3 composite material under different bending angles, ranging from 15° to 180°. The results reveal that the material exhibits high stiffness, strength, and ductility, even under extreme bending conditions. The equivalent stress, elastic strain, total deformation, safety factor, and fatigue life of the composite material are thoroughly investigated, demonstrating its excellent mechanical properties and fatigue life. The article also discusses the microstructure of the composite material, attributing its superior performance to the homogeneous distribution of OAPOSS-modified Al2O3 fillers and their enhanced interfacial bonding properties. This research provides valuable insights into the design and optimization of composite materials for flexible displays, paving the way for the development of more reliable and efficient high-performance materials.

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Metadata
Title
Finite element simulation of octaaminophenyl polysilsesquioxane-modified Al2O3/polyimide composite thin film materials in a flexible display model
Authors
Yulong Gu
Hongmei Wu
Jian Chen
Yihui Fu
Publication date
01-04-2025
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 4/2025
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-025-04366-4

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