Physics-based Constitutive Modeling of Photo-oxidative Aging in Semi-Crystalline Polymers based on Chemical Characterization Techniques
Aimane Najmeddine, Zhen Xu, Guoliang Liu, Alan R. Esker, Maryam, Shakiba

TL;DR
This paper develops a physics-based model to predict how photo-oxidation affects the mechanical properties of semi-crystalline LDPE, using chemical characterization data to inform the evolution of material properties over time.
Contribution
It introduces a chemically verified, evolution-based constitutive framework for modeling photo-oxidative aging in LDPE without relying on non-physical fitting parameters.
Findings
The model accurately predicts mechanical response changes due to UV aging.
DSC and QCM-D effectively monitor chemical degradation processes.
The framework links chemical changes to macroscopic mechanical behavior.
Abstract
This paper proposes a physio-chemically-based constitutive framework to simulate and predict the response of semi-crystalline low-density polyethylene (LDPE) to severe photo-oxidation. Photo-oxidation induced by exposure to Ultra-Violet (UV) light and oxygen is the dominant degradation mechanism affecting the lifespan of LDPE. In this work, we propose evolution functions for the material properties in the constitutive equations of \cite{boyce2000constitutive} to incorporate the effects of photo-oxidation on the mechanical response of LDPE. The evolution functions are based on chemically verified processes that are responsible for material degradation, namely the change in crystallinity and mass loss relative to the initial pristine films over exposure time. Changes in crystallinity and mass loss are characterized by Differential Scanning Calorimetry (DSC) and Quartz Crystal Microbalance…
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Taxonomy
TopicsPolymer crystallization and properties · Polymer Nanocomposites and Properties · biodegradable polymer synthesis and properties
