6533b861fe1ef96bd12c506d

RESEARCH PRODUCT

Bond strength of selected composite resin-cements to zirconium-oxide ceramic

Maria Granell-ruizAntonio Fons-fontMaría Fernanda Solá-ruízDavid Busquets-mataixVicente Amigó-borrásJuan-luis Román-rodríguezRubén-agustín Panadero

subject

CeramicsMaterials scienceComposite numberSurface treatmentOdontologíaDental bondingComposite ResinsDental Materialschemistry.chemical_compoundCIENCIA DE LOS MATERIALES E INGENIERIA METALURGICABiomaterials and Bioengineering in DentistryMaterials TestingCubic zirconiaCeramicComposite materialGeneral DentistryCementBond strengthShear bond strengthDental BondingSilica coating:CIENCIAS MÉDICAS [UNESCO]SilaneCiencias de la saludResin CementsOtorhinolaryngologychemistryvisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumZirconia ceramicsResearch-ArticleSurgeryZirconiumAdhesivePhosphate monomer

description

Objectives: The aim of this study was to evaluate bond strengths of zirconium-oxide (zirconia) ceramic and a selection of different composite resin cements. Study Design: 130 Lava TM cylinders were fabricated. The cylinders were sandblasted with 80 &#956;m aluminium oxide or silica coated with CoJet Sand. Silane, and bonding agent and/or Clearfil Ceramic Primer were applied. One hundred thirty composite cement cylinders, comprising two dual-polymerizing (Variolink II and Panavia F) and two autopolymerizing (Rely X and Multilink) resins were bonded to the ceramic samples. A shear test was conducted, followed by an optical microscopy study to identify the location and type of failure, an electron microscopy study (SEM and TEM) and statistical analysis using the Kruskal-Wallis test for more than two independent samples and Mann-Whitney for two independent samples. Given the large number of combinations, Bonferroni correction was applied (&#945;=0.001). Results: Dual-polymerizing cements provided better adhesion values (11.7 MPa) than the autopolymerizing (7.47 MPa) (p-value M-W<0.001). The worst techniques were Lava TM + sandblasting + Silane + Rely X; Lava TM + sandblasting + Silane + Multilink and Lava TM + CoJet + silane + Multilink. Adhesive failure (separation of cement and ceramic) was produced at a lesser force than cohesive failure (fracture of cement) (p-value M-W<0.001). Electron microscopy confirmed that the surface treatments modified the zirconium-oxide ceramic, creating a more rough and retentive surface, thus providing an improved micromechanical interlocking between the cement and the ceramic.

http://hdl.handle.net/10550/35563