This study evaluated the influence of cyclic loading on zirconia bar-shaped specimens after being subjected to three different surface treatments: particle abrasion with either 50 μm or 110 μm alumina and grinding with diamond points, while polished specimens served as a control. Statistical analysis revealed significant reduction (38-67%) in flexure strength (P < 0.001) after three million cycles of dynamic loading for all surface treatments. Scanning electron imaging revealed grain boundary thickening, grain pull-out, and micro-cracking as the main structural defects. The results suggest that various surface treatments of zirconia based dental ceramics may significantly influence their long term fatigue resistance in the oral environment
Abstract: The fatigue properties of fine-grain Y-TZP in cyclic flexural testing are studied. Compara...
© 2021 The Academy of Dental MaterialsObjective: To evaluate the fatigue failure load, number of cyc...
This study characterized the mechanical properties (static and under fatigue), the crystalline micro...
This in vitro study focused on investigating the fatigue resistance of veneered zirconia molar crown...
The objective of this work was to evaluate the cyclic fatigue strength of a commercial pre-sintered ...
AbstractThe objective of this work was to evaluate the cyclic fatigue strength of a commercial pre-s...
Purpose. To investigate the influence of surface damage on the fatigue behavior of zirconia under tw...
Abstract This in vitro study evaluated the fatigue strength of different ceramic materials indicated...
This research focuses on the biocompatible zirconia ceramic (ZrO₂) material and load behavior causin...
This study investigated the effect of surface roughness (polished vs. CAD/CAM milling roughness simu...
Dental ceramics are attractive in restorative dentistry due to their approximations to the appearanc...
Clinical data on survival rates reveal that all-ceramic dental prostheses are susceptible to fractur...
The aim of this project was to evaluate and compare the mechanical properties of commercial yttria p...
Objective. To determine the effects of different aging methods on the degradation and flexural stren...
Zirconium-oxide ceramic was introduced as a potential restorative material for posterior teeth due t...
Abstract: The fatigue properties of fine-grain Y-TZP in cyclic flexural testing are studied. Compara...
© 2021 The Academy of Dental MaterialsObjective: To evaluate the fatigue failure load, number of cyc...
This study characterized the mechanical properties (static and under fatigue), the crystalline micro...
This in vitro study focused on investigating the fatigue resistance of veneered zirconia molar crown...
The objective of this work was to evaluate the cyclic fatigue strength of a commercial pre-sintered ...
AbstractThe objective of this work was to evaluate the cyclic fatigue strength of a commercial pre-s...
Purpose. To investigate the influence of surface damage on the fatigue behavior of zirconia under tw...
Abstract This in vitro study evaluated the fatigue strength of different ceramic materials indicated...
This research focuses on the biocompatible zirconia ceramic (ZrO₂) material and load behavior causin...
This study investigated the effect of surface roughness (polished vs. CAD/CAM milling roughness simu...
Dental ceramics are attractive in restorative dentistry due to their approximations to the appearanc...
Clinical data on survival rates reveal that all-ceramic dental prostheses are susceptible to fractur...
The aim of this project was to evaluate and compare the mechanical properties of commercial yttria p...
Objective. To determine the effects of different aging methods on the degradation and flexural stren...
Zirconium-oxide ceramic was introduced as a potential restorative material for posterior teeth due t...
Abstract: The fatigue properties of fine-grain Y-TZP in cyclic flexural testing are studied. Compara...
© 2021 The Academy of Dental MaterialsObjective: To evaluate the fatigue failure load, number of cyc...
This study characterized the mechanical properties (static and under fatigue), the crystalline micro...