Department of Restorative Dentistry, Faculty of Dentistry, Universidad de Concepción, Chile.
Dental Clinic 1 - Operative Dentistry and Periodontology, Research Laboratory for Dental Biomaterials, University of Erlangen-Nuremberg, Germany; Institute of Biomaterials, Department of Material Science and Engineering, University of Erlangen-Nuremberg, Germany.
Dent Mater. 2021 Jul;37(7):1156-1167. doi: 10.1016/j.dental.2021.04.002. Epub 2021 Apr 29.
The aim of the present study was to assess the effect of water storage on the quasi-static properties and cyclic fatigue behavior of four contemporary CAD/CAM resin composite materials.
The CAD/CAM resin composites Grandio Blocs, Lava Ultimate, Cerasmart and Brilliant Crios, as well as the direct resin composite Grandio SO, were evaluated. Rectangular plates were cut from the blocks or fabricated using a silicon mold to obtain specimens for fracture toughness (K, n = 10), biaxial strength (σ, n = 30) and cyclic fatigue testing (n = 30). Half of the specimens was stored for 24 h in dry conditions and the other half was aged for 60 days in distilled water at 37 °C. K was determined using the Compact-Tension (C(T)) method and σ and cyclic fatigue were tested using the Ball-on-Three-Balls assembly. Additional disc-shaped specimens (n = 5) were produced to obtain water sorption curves of the materials. Weibull statistics and two-way ANOVA with Tukey's post-hoc test were used for data assessment.
The highest water sorption was observed for Lava Ultimate (42.6 μg/mm), whereas Grandio SO displayed the lowest uptake (14 μg/mm). A statistically significant drop in K and σ was measured for all materials after water storage, except for the σ of Cerasmart. Water ageing had a dissimilar effect on the cyclic fatigue behavior, increasing the slow crack growth susceptibility of Lava Ultimate, but decreasing it for Cerasmart and Brilliant Crios.
Contemporary CAD/CAM resin composites are susceptible to water driven degradative processes, although differences in filler content and resin matrix constitution play an important role in how it impacts their mechanical properties.
本研究旨在评估水储存对四种当代 CAD/CAM 树脂复合材料的准静态性能和循环疲劳行为的影响。
评估 CAD/CAM 树脂复合材料 Grandio Blocs、Lava Ultimate、Cerasmart 和 Brilliant Crios 以及直接树脂复合材料 Grandio SO。从块体中切割出矩形板或使用硅模具制造以获得用于断裂韧性(K,n = 10)、双轴强度(σ,n = 30)和循环疲劳测试(n = 30)的试件。一半试件在干燥条件下储存 24 小时,另一半在 37°C 的蒸馏水中老化 60 天。K 采用紧凑拉伸(C(T))法测定,σ 和循环疲劳采用三球对一球试验装置进行测试。还制作了额外的圆盘状试件(n = 5)以获得材料的吸水率曲线。使用威布尔统计和双因素方差分析(Tukey 事后检验)评估数据。
Lava Ultimate 的吸水率最高(42.6μg/mm),而 Grandio SO 的吸水率最低(14μg/mm)。除了 Cerasmart 的σ之外,所有材料的 K 和σ在水储存后都有明显下降。水老化对循环疲劳行为有不同的影响,增加了 Lava Ultimate 的缓慢裂纹扩展敏感性,但降低了 Cerasmart 和 Brilliant Crios 的敏感性。
当代 CAD/CAM 树脂复合材料易受到水驱动的降解过程的影响,尽管填料含量和树脂基质组成的差异在其机械性能方面起着重要作用。