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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (1/1 displayed)

  • 2024Effect of ZrO2 paste, surface treatments, and storage on Weibull characteristics and resin bond strength to zirconia1citations

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Crispim, Anne Heloyse Teixeira
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May, Liliana Gressler
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Moreira, Fernanda Gurgel De Gois
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Silva, Sarah Emille Gomes Da
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Silva, Bianca Cristina Dantas Da
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Souza, Rodrigo Othávio Assunção
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Dal Piva, Amanda
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2024

Co-Authors (by relevance)

  • Crispim, Anne Heloyse Teixeira
  • May, Liliana Gressler
  • Moreira, Fernanda Gurgel De Gois
  • Silva, Sarah Emille Gomes Da
  • Silva, Bianca Cristina Dantas Da
  • Souza, Rodrigo Othávio Assunção
  • Dal Piva, Amanda
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article

Effect of ZrO2 paste, surface treatments, and storage on Weibull characteristics and resin bond strength to zirconia

  • Crispim, Anne Heloyse Teixeira
  • May, Liliana Gressler
  • Moreira, Fernanda Gurgel De Gois
  • Silva, Sarah Emille Gomes Da
  • Silva, Bianca Cristina Dantas Da
  • Daudt, Natália De Freitas
  • Souza, Rodrigo Othávio Assunção
  • Dal Piva, Amanda
Abstract

<p>The objective is to evaluate the effect of different surface treatments and storage on the shear strength of ultratranslucent zirconia. 36 blocks of ultra-translucent zirconia were fabricated (7x7x2mm) and sintered. Then, divided into 12 groups according to the "surface treatment" (C -Primer; Al -Sandblasting with Al2O3 + Primer; Si -Silicate + Primer; Gl -Glaze + HF + Primer; Z -Zirlink; Zp -Zirlink + Primer) and "storage" factors (ST-with 150 days/37º and without). After surface treatment, five cylinders (Ø=2mm; h=2.0mm) of resin cement (n=15) were constructed in each ceramic block; at the end, the shear strength test was performed (1mm/min, 50Kgf), and analysis of surface failures. 60 additional samples (2x2x2mm) were made for extras analysis (surface roughness, MEV, and EDS). Bond strength and surface roughness data were statistically evaluated by ANOVA (2 factors/1 factor), Tukey test (5%), and Weibull analysis, respectively. ANOVA (2-way) revealed that all factors were statistically significant for bond strength. The silicatization groups (SiST: 30.47AMPa; Si: 29.21AMPa) showed the highest bond strength values, regardless of storage (Tukey's test). While the groups treated with Zirlink (ZST: 2.76FMPa; Z: 5.27EFMPa) showed the lowest values, just similar to the GlST group (5.14EFMPa). The Weibull modulus (m) showed a statistical difference between groups (p=0.000). ANOVA (1 factor) revealed that the "surface treatment" factor (p=0.0000) was statistically significant for surface roughness. Therefore, the application of Zirlink and Glaze on pre-sintered zirconia did not promote efficient adhesion of the ultratranslucent zirconia to the resin cement, even when associated with a primer containing MDP.</p>

Topics
  • impedance spectroscopy
  • surface
  • strength
  • cement
  • Energy-dispersive X-ray spectroscopy
  • ceramic
  • resin