Giti Rashin, Abbasi Benika
Department of Prosthodontics, School of Dentistry, Shiraz University of Medical Sciences, Shiraz, Iran.
Int J Dent. 2021 Nov 9;2021:8022430. doi: 10.1155/2021/8022430. eCollection 2021.
This study aimed to evaluate the effect of the degrees of translucency in different types of monolithic zirconia as well as the aging and surface treatment with airborne particle abrasion on the flexural strength of monolithic zirconia.
Sixty bar-shaped specimens were fabricated from three different types of presintered monolithic zirconia ( = 20 per group) including low translucent (LT) (DD Bio ZW iso, high strength zirconia, Dental Direkt, Germany), high translucent (HT) (DD Bio ZX 98, high translucent zirconia, Dental Direkt, Germany), and multilayered system (ML) (DD cubeX2®ML, multilayer, cubic zirconia system, Dental Direkt, Germany). Each monolithic zirconia group was equally subdivided according to be either air-abraded with 110 µm aluminium oxide particles or left untreated (control). After thermocycling, the flexural strength was measured by using a universal testing machine. Two-way ANOVA followed by Tukey's post hoc and independent samples -test were used for the statistical analyses ( < 0.05).
Surface treatment and types of zirconia were found to have a significant interaction ( = 0.010). Having controlled the effect of surface treatment, the flexural strength of HT and LT zirconia was found to be significantly higher than the ML zirconia system ( ≤ 0.001). Airborne particle abrasion could significantly decrease the flexural strength of monolithic zirconia only in ML zirconia ( = 0.002).
Multilayered zirconia system had the lowest flexural strength among all groups. Moreover, the flexural strength of this system was attenuated by surface treatment with airborne particles abrasion.
本研究旨在评估不同类型的整体式氧化锆的半透明度、老化以及空气颗粒研磨表面处理对整体式氧化锆抗弯强度的影响。
用三种不同类型的预烧结整体式氧化锆制作60个棒状试件(每组20个),包括低半透明(LT)(DD Bio ZW iso,高强度氧化锆,德国Dental Direkt公司)、高半透明(HT)(DD Bio ZX 98,高半透明氧化锆,德国Dental Direkt公司)和多层系统(ML)(DD cubeX2®ML,多层立方氧化锆系统,德国Dental Direkt公司)。每个整体式氧化锆组根据是否用110 µm氧化铝颗粒进行空气研磨或不处理(对照)平均再细分。热循环后,使用万能试验机测量抗弯强度。采用双向方差分析,随后进行Tukey事后检验和独立样本t检验进行统计分析(P<0.05)。
发现表面处理和氧化锆类型有显著交互作用(P = 0.010)。在控制表面处理的影响后,发现HT和LT氧化锆的抗弯强度显著高于ML氧化锆系统(P≤0.001)。空气颗粒研磨仅在ML氧化锆中能显著降低整体式氧化锆的抗弯强度(P = 0.002)。
多层氧化锆系统在所有组中抗弯强度最低。此外,该系统的抗弯强度因空气颗粒研磨表面处理而降低。