Literature DB >> 19100613

Calculation of contraction stresses in dental composites by analysis of crack propagation in the matrix surrounding a cavity.

Takatsugu Yamamoto1, Jack L Ferracane, Ronald L Sakaguchi, Michael V Swain.   

Abstract

OBJECTIVES: Polymerization contraction of dental composite produces a stress field in the bonded surrounding substrate that may be capable of propagating cracks from pre-existing flaws. The objectives of this study were to assess the extent of crack propagation from flaws in the surrounding ceramic substrate caused by composite contraction stresses, and to propose a method to calculate the contraction stress in the ceramic using indentation fracture.
METHODS: Initial cracks were introduced with a Vickers indenter near a cylindrical hole drilled into a glass-ceramic simulating enamel. Lengths of the radial indentation cracks were measured. Three composites having different contraction stresses were cured within the hole using one- or two-step light-activation methods and the crack lengths were measured. The contraction stress in the ceramic was calculated from the crack length and the fracture toughness of the glass-ceramic. Interfacial gaps between the composite and the ceramic were expressed as the ratio of the gap length to the hole perimeter, as well as the maximum gap width.
RESULTS: All groups revealed crack propagation and the formation of contraction gaps. The calculated contraction stresses ranged from 4.2 MPa to 7.0 MPa. There was no correlation between the stress values and the contraction gaps. SIGNIFICANCE: This method for calculating the stresses produced by composites is a relatively simple technique requiring a conventional hardness tester. The method can investigate two clinical phenomena that may occur during the placement of composite restorations, i.e. simulated enamel cracking near the margins and the formation of contraction gaps.

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Year:  2008        PMID: 19100613     DOI: 10.1016/j.dental.2008.10.008

Source DB:  PubMed          Journal:  Dent Mater        ISSN: 0109-5641            Impact factor:   5.304


  6 in total

1.  Interfacial degradation of adhesive composite restorations mediated by oral biofilms and mechanical challenge in an extracted tooth model of secondary caries.

Authors:  Carola A Carrera; Yuping Li; Ruoquiong Chen; Conrado Aparicio; Alex Fok; Joel Rudney
Journal:  J Dent       Date:  2017-08-24       Impact factor: 4.379

2.  Shrinkage Stresses Generated during Resin-Composite Applications: A Review.

Authors:  Luis Felipe J Schneider; Larissa Maria Cavalcante; Nick Silikas
Journal:  J Dent Biomech       Date:  2009-09-30

3.  Six-month evaluation of a resin/dentin interface created by methacrylate and silorane-based materials.

Authors:  Renata Kirita Doi Sampaio; Linda Wang; Rodrigo Varella de Carvalho; Eugenio José Garcia; Andréa Mello de Andrade; Celso Afonso Klein-Júnior; Rosa Helena Miranda Grande; Sandra Kiss Moura
Journal:  J Appl Oral Sci       Date:  2013 Jan-Feb       Impact factor: 2.698

Review 4.  Polymer-Based Direct Filling Materials.

Authors:  Carmem S Pfeifer
Journal:  Dent Clin North Am       Date:  2017-10

Review 5.  Analytical methods for the measurement of polymerization kinetics and stresses of dental resin-based composites: A review.

Authors:  Mehrsima Ghavami-Lahiji; Tabassom Hooshmand
Journal:  Dent Res J (Isfahan)       Date:  2017 Jul-Aug

6.  Continuous and scalable polymer capsule processing for inertial fusion energy target shell fabrication using droplet microfluidics.

Authors:  Jin Li; Jack Lindley-Start; Adrian Porch; David Barrow
Journal:  Sci Rep       Date:  2017-07-24       Impact factor: 4.379

  6 in total

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