Title of article :
Restoration of non-carious cervical lesions: Part II. Restorative material selection to minimise fracture
Author/Authors :
I.P. Ichim، نويسنده , , P.R. Schmidlin، نويسنده , , Q. Li، نويسنده , , J.A. Kieser، نويسنده , , M.V. Swain، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
8
From page :
1562
To page :
1569
Abstract :
Objective It is still largely unknown as to what material parameter requirements would be most suitable to minimise the fracture and maximising the retention rate of the restoration of cervical non-carious lesions (NCCL). The present paper, as a first of its kind, proposes a radical approach to address the problems of material improvement, namely: numerical-based, fracture and damage mechanics materials optimisation engineering. It investigates the influence of the elastic modulus (E) on the failure of cervical restorative materials and aims to identify an E value that will minimise mechanical failure under clinically realistic loading conditions. Method The present work relies on the principle that a more flexible restorative material would partially buffer the local stress concentration. We employ a “most favourable” parametric analysis of the restorativeʹs elastic modulus using a fracture mechanics model embedded into finite element method. The advanced numerical modelling adopts a Rankine and rotating crack material fracture model coupled to a non-linear analysis in an explicit finite element framework. Results The present study shows that the restorative materials currently used in non-carious cervical lesions are largely unsuitable in terms of resistance to fracture of the restoration and we suggest that the elastic modulus of such a material should be in the range of 1 GPa. We anticipate that the presented methodology would provide more informative guidelines for the development of dental restorative materials, which could be tailored to specific clinical applications cognisant of the underlying mechanical environment.
Keywords :
Dental materials , Elastic modulus , Crack propagation , Abfraction lesion , Fracture Mechanics , Restorative dentistry
Journal title :
Dental Materials
Serial Year :
2007
Journal title :
Dental Materials
Record number :
506403
Link To Document :
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