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article · Ain Shams Dental Journal

The effect of speed sintering and hydrothermal aging on the biaxial flexural strength and microstructure of recent cubic zirconia material

20241 citationOpen accessBadr University in Cairo

Abstract

Aim: To evaluate the effect of speed sintering protocol and hydrothermal aging on the biaxial flexural strength of recent cubic zirconia material.Materials and methods: Discs were prepared from recent cubic zirconia material, Katana UTML (K). The prepared discs were fabricated from milled cylinders. Prepared discs were divided according to sintering protocol applied, either a normal cycle (N) or a speed cycle (S). Half of the discs were subjected to biaxial flexural strength (BFS) test using a universal testing machine.the remaining discs were submitted to accelerated aging (A) for 5 hours and then subjected to biaxial flexural strength (BFS) test. Data collected and analyzed using one-way ANOVA. Scanning electron microscope was used for microstructure analysis. Results: Non-significant difference in (BFS) values were found between both normal and speed sintering protocols before and after subjecting to hydrothermal aging, The highest overall values were reported from KSA (2168± 212.4 MPa) . Average mean grain size values showed a reduction in size after subjecting to speed sintering protocol. Conclusion: Speed sintering protocols and hydrothermal aging did not report a significant difference in biaxial flexural strength mean values. Speed sintering cycles reduced the mean values of grain size.

Research topics

  • Advanced ceramic materials synthesis
  • Granular flow and fluidized beds
  • Recycling and utilization of industrial and municipal waste in materials production

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DOI: 10.21608/asdj.2024.285645.1265

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