Micro-shear bond strength of different surface treatments on a polymer infiltrated ceramic network

F1000Res. 2022 Jul 18:11:798. doi: 10.12688/f1000research.122108.1. eCollection 2022.

Abstract

Background: Polymer infiltrated ceramic networks, or hybrid ceramics, are a combination of infiltrating polymerizable organic monomers into a pre-sintered porous ceramic matrix. In addition to having good mechanical properties, the polymer infiltrated ceramic network must comply with the possibility of adequate bonding to the resinous cement. The surface conditioning of this hybrid material must be carefully considered due to its organic composition and ceramic network. The purpose of this research is to evaluate the effect of hydrofluoric acid and a self-etching ceramic primer, under two different application times, on the bond strength of a polymer infiltrated ceramic network. Methods: Blocks of a polymer infiltrated ceramic network were cut to obtain sheets, and these were randomized into five groups. For the group termed AAS, airborne-particle abrasion with Al 2O 3 (aluminum oxide) of 50µm was used. For groups HF2 and HF6, hydrofluoric acid was used for 20 and 60 seconds respectively, and for the groups MB2 and MB6, a self-etch ceramic primer was applied for 20 and 60 seconds respectively. A silane was applied to the groups AAS, HF2, and HF6 after the treatment. After 24-hour storage in distilled water, a micro-shear bond strength test was performed using a universal mechanical testing machine. All samples were evaluated in a stereomicroscope at 40x and 50x to determine the type of failure. Results: The highest and lowest values of bond strength were reported by groups MB6 and AAS, respectively. Groups HF2, HF6, MB6, and MB2 did not report statistically significant differences. The predominant failure pattern was a mixed failure. Conclusions: With the limitations of the present investigation, the treatments of self-etching ceramic primer and hydrofluoric acid followed by silane were reported to be statistically equal at 20 and 60 seconds.

Keywords: Micro shear bond strength; polymer infiltrated ceramic network (PICN).

MeSH terms

  • Ceramics / chemistry
  • Dental Materials* / chemistry
  • Hydrofluoric Acid
  • Materials Testing
  • Polymers*
  • Random Allocation
  • Shear Strength
  • Silanes* / chemistry
  • Surface Properties

Substances

  • Hydrofluoric Acid
  • Polymers
  • Silanes
  • Dental Materials

Grants and funding

The author(s) declared that no grants were involved in supporting this work.