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The Effect of Dental Grinding and Sandblasting on the Biaxial Flexural Strength and Weibull modulus of Tetragonal Zirconia

机译:牙科打磨和喷砂对四方氧化锆双轴弯曲强度和威布尔模量的影响

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摘要

The effects of dental grinding, sandblasting and aging on the biaxial flexural strength of Y-TZP ceramics containing 3 mol % yttria were evaluated. Dental grinding at a high rotation speed lowers the mean strength and reliability, whereas sandblasting may provide a powerful tool for surface strengthening. The coarse-grained materials were less susceptible to grinding induced defects, presumably due to higher fracture toughness. During aging at 140℃ for 24 hours, an about 100 μm thick layer has transformed to monoclinic on the surface of the standard-grade Y-TZP ceramics resulting in considerable strength degradation, whereas the "corrosion resistant" materials exhibited a much higher resistance toward the low-temperature degradation. Furthermore, preexisting monoclinic zirconia in the surface of the sandblasted Y-TZP hinders the propagation of the diffusion-controlled transformation during subsequent exposure to aqueous environments.
机译:评估了牙科打磨,喷砂和时效处理对含3摩尔%氧化钇的Y-TZP陶瓷的双轴弯曲强度的影响。高速旋转的牙科打磨会降低平均强度和可靠性,而喷砂处理可能会提供强大的表面强化工具。粗粒材料较不易受到磨削引起的缺陷的影响,这大概是由于较高的断裂韧性所致。在140℃老化24小时的过程中,标准级Y-TZP陶瓷的表面上约100μm厚的层转变为单斜晶,导致相当大的强度降低,而“耐腐蚀”材料表现出更高的耐腐蚀性能。低温降解。此外,喷砂Y-TZP表面预先存在的单斜晶氧化锆阻碍了随后暴露于水环境时扩散控制相变的传播。

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