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1.
J Adhes Dent ; 22(4): 421-431, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32666069

RESUMO

PURPOSE: To investigate the effects of 1-year water storage and surface treatments on shear bond strength (SBS) of two composite cements bonded to resin matrix CAD-CAM ceramics (RMCs) and on the mechanical properties of RMCs. MATERIALS AND METHODS: Three types of RMCs were tested: 1. polymer-infiltrated hybrid ceramic (PIHC, Enamic, VITA Zahnfabrik); 2. resin nanoceramic (RNC, Lava Ultimate, 3M Oral Care); and 3. flexible hybrid ceramic (FHC, Cerasmart, GC). One indirect laboratory composite (ILC, Epricord, Kuraray Noritake) was used as control. For each material, 60 plates (14 x 7 x 1 mm) were prepared for the SBS test and submitted to three different surface treatments: following manufacturer's instructions, non-thermal atmospheric plasma application (30 s), and plasma + bonding agent. Two composite cements were tested: RelyX Ultimate (3M Oral Care) and Panavia V5 (Kurarary Noritake). Two resin cylinders (1.5 mm diameter x 1.5 mm height) were bonded to each plate (n = 10), with one tested after 24-h storage in distilled water and the other after 1 year of storage in distilled water. Twenty rectangular bars (12 x 2 x 1 mm) of each indirect material were prepared and submitted to the 3-point flexural test after 24-h or 1-year water storage to determine the elastic modulus (EM) and flexural strength (FS) (n = 10). Fractured samples were also examined with SEM and energy dispersive x-ray spectroscopy (EDS). SBS data were analyzed by four-way ANOVA, and EM and FS data by two-way ANOVA, followed by Tukey's post-hoc test (α = 0.05). RESULTS: Groups treated in accordance with manufacturer's instructions exhibited higher SBS than did plasma and plasma + bonding agent groups for all indirect materials, composite cements, and storage periods tested. In general, RelyX Ultimate displayed higher mean SBS than did Panavia V5, except for some groups of ILC where manufacturer's instructions were followed. After 1-year storage in water, all groups exhibited a significant reduction in SBS, except for some groups that following manufacturer's instructions. ILC showed the lowest values of EM and FS. Among the CAD-CAM materials, FHC exhibited the lowest EM and highest FS means, while PIHC possessed the highest EM and lowest FS means for both storage periods. CONCLUSIONS: In general, following the respective manufacturer's instructions yielded the best bond strength results. For most materials, 1-year water storage decreased bond strength of composite cements to RMCs, as well as their FS, while increasing their EM. Microstructure and composition influenced the mechanical properties studied.


Assuntos
Cerâmica , Colagem Dentária , Desenho Assistido por Computador , Teste de Materiais , Polímeros , Cimentos de Resina , Resistência ao Cisalhamento , Propriedades de Superfície
2.
ROBRAC ; 28(87): 232-239, out./dez. 2019. tab, ilus
Artigo em Português | LILACS-Express | LILACS | ID: biblio-1096272

RESUMO

O objetivo deste trabalho foi avaliar o efeito do plasma atmosférico não-térmico (PANT), sozinho ou associado ao jateamento ou adesivo, e do tempo de armazenamento em água na resistência de união por cisalhamento (RUC) do reparo de cerâmicas CAD/CAM de matriz resinosa (CMR) com resina composta. Amostras de 14x7x1mm de três CMRs, Enamic (VITA Zahnfabrik), Cerasmart (GC Corp.) e Lava Ultimate (3M Oral Care), foram obtidas e submetidas ao envelhecimento artificial (EQ-UV, Equilam) por 300 horas. Os seguintes tratamentos de superfície foram realizados: (1- Controle) jateamento + silano + adesivo; (2) PANT; (3) PANT + adesivo; (4) jateamento + PANT. Cilindros de resina composta (Spectra Smart, Dentsply Sirona, 1,5 mm diâmetro e altura) foram aderidos às superfícies tratadas e a RUC foi avaliada em uma máquina de ensaio universal (EZ Test, Shimadzu) após 24 horas ou 1 ano de imersão em água, a 37oC (n=10). No geral, o tratamento controle obteve os melhores resultados de RUC, comparado aos grupos tratados com PANT. Houve redução da RUC após 1 ano de imersão em água para a maioria dos grupos, entre eles para o controle do Enamic e Lava Ultimate, enquanto Cerasmart não mostrou redução. O tratamento com PANT, sozinho ou associado a outro tratamento, não foi capaz de aumentar a RUC do reparo das CMRs com resina composta. O tratamento controle parece ser o melhor método de reparo das CMRs, principalmente considerando-se a longevidade do tratamento.


The objective of this study was to evaluate the effect of nonthermal atmospheric plasma (NTAP), alone or combined with sandblasting or adhesive, and water-storage time on the shear bond strength (SBS) of resin composite repair of resin matrix ceramics (RMC). Samples (14x7x1mm) of three RMCs, Enamic (VITA Zahnfabrik), Cerasmart (GC Corp.), and Lava Ultimate (3M Oral Care), were prepared and submitted to artificial aging (EQ-UV, Equilam) for 300 h. The following surface treatments were performed: (1- Control) sandblasting + silane + adhesive; (2) NTAP; (3) NTAP + adhesive; (4) sandblasting + NTAP. Resin composite cylinders (Spectra Smart, Dentsply Sirona, 1,5 mm diameter and height) were bonded to the treated surfaces and the SBS was evaluated in a universal testing machine (EZ Test, Shimadzu) after 24 h or 1 year of water storage, at 37oC (n=10). In general, the control treatment obtained the best SBS results, compared to groups treated with NTAP. There was a decrease in SBS after 1 year of water immersion for most groups, including the control treatment for Enamic and Lava Ultimate, while Cerasmart presented no reduction. The treatment with NTAP alone or combined with another treatment, was not capable of increasing the SBS of resin composite repair to RMCs. Control treatment seems to be the best method for repairing CMRs, mainly considering the treatment longevity.

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