Mechanical performance of 3D-printed and milled resins for pediatric provisional restorations

J Ji-Su Song Y Yooseok Shin J Jee-Hwan Kim K Ko Eun Lee J Jiho Lee J Jinhong Min H Hoon Kim J Je Seon Song

Abstract

Abstract Given the growth-related challenges in pediatric and adolescent patients and the increasing adoption of digital workflows, durable yet adaptable materials are needed for provisional restorations. This study evaluated the mechanical performance of two 3D-printed resins, Graphy TC-80DP (GP) and NextDent C&B MFH (ND), and a milled nano-hybrid resin, Mazic Duro (MD). A multidimensional assessment was conducted, including fracture resistance, flexural strength, flexural modulus, viscoelasticity, and polymerization behavior. ND showed the highest fracture resistance, MD exhibited superior flexural strength and flexural modulus, and GP demonstrated faster polymerization and greater thermal stability. These findings suggest that both 3D-printed and milled resins are clinically viable for pediatric provisional restorations, with material selection depending on occlusal load, patient age, and functional demands.

Article Details

Volume / Issue Vol. 15, Issue 1
Published November 06, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (8)

J

Ji-Su Song

Y

Yooseok Shin

J

Jee-Hwan Kim

K

Ko Eun Lee

J

Jiho Lee

J

Jinhong Min

H

Hoon Kim

J

Je Seon Song