February 2025

Journal

High-strength 3D printed poly(lactic acid) composites reinforced by shear-aligned polymer-grafted cellulose nanofibrils

By:
Kelly, Peter; Shams Es-haghi, Siamak; Lamm, Meghan E; Copenhaver, Katherine E; Alyamac seydibeyoglu, Elif; Ozcan, Soydan ; Gardner, Douglas; Gramlich, William
Journal Name:
rsc applied polymers
Page Number:
111-124
Volume:
3
Publication Date:
February 27, 2025
View DOI Listing:
https://doi.org/10.1039/D4LP00283K

Abstract

This work demonstrates the application of pilot-scale surface functionalization of cellulose nanofibrils (CNFs) by aqueous grafting-through polymerization and subsequent spray drying in 3D printed poly(lactic acid) (PLA) composites. Grafted-CNF composites attain an ultimate tensile strength of 88 ± 3 MPa and a tensile modulus of elasticity of 7.8 ± 1.3 GPa in the printing direction at 20 wt% reinforcement loading. These increases, 42% and 139% over neat PLA, respectively, represent the strongest reported 3D printed CNF/PLA composite to date in the literature. The mechanisms behind these improvements are investigated by comparisons to neat PLA and unmodified spray-dried CNF/PLA controls using melt rheology, dynamic mechanical analysis, and assessment of the reinforcement dispersion. These experiments reveal that improved network formation and shear-induced alignment of the grafted CNFs facilitate the remarkable tensile properties of the printed composites.