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Babak Jaleh

Academic rank: Professor
ORCID:
Education: PhD.
ScopusId: 9244854600
HIndex:
Faculty: Faculty of Science
Address:
Phone:

Research

Title
Experimental characterization and fnite element investigation of ­SiO2 nanoparticles reinforced dental resin composite
Type
JournalPaper
Keywords
Nanocomposite, Dental resin, Finite element analysis, Mechanical properties
Year
2024
Journal Scientific Reports
DOI
Researchers Babak Jaleh ، Mohammad Kashfi ، Behnaz Feizi ، Morteza Shakhsi Niaee ، Fariborz Vafaee ، parisa fakhri ، Reza Golbedaghi ، Rui Fausto

Abstract

In this study, a commercial dental resin was reinforced by SiO2 nanoparticles (NPs) with diferent concentrations to enhance its mechanical functionality. The material characterization and fnite element analysis (FEA) have been performed to evaluate the mechanical properties. Wedge indentation and 3-point bending tests were conducted to assess the mechanical behavior of the prepared nanocomposites. The results revealed that the optimal content of NPs was achieved at 1% SiO2, resulting in a 35% increase in the indentation reaction force. Therefore, the sample containing 1% SiO2 NPs was considered for further tests. The morphology of selected sample was examined using feld emission scanning electron microscopy (FE-SEM), revealing the homogeneous dispersion of SiO2 NPs with minimal agglomeration. X-ray difraction (XRD) was employed to investigate the crystalline structure of the selected sample, indicating no change in the dental resin state upon adding SiO2 NPs. In the second part of the study, a novel approach called iterative FEA, supported by the experiment wedge indentation test, was used to determine the mechanical properties of the 1% SiO2-dental resin. Subsequently, the accurately determined material properties were assigned to a dental crown model to virtually investigate its behavior under oblique loading. The virtual test results demonstrated that most microcracks initiated from the top of the crown and extended through its thickness