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Fracture behavior of single-structure fiber-reinforced composite restorations

机译:单结构纤维增强复合材料修复体的断裂行为

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Objective: The applications of single-structure fiber-reinforced composite (FRC) in restorative dentistry have not been well reported. This study aimed to clarify the static mechanical properties of anterior crown restorations prepared using two types of single-structure FRC.Materials and methods: An experimental crown restoration was designed for an upper anterior incisor. The restorations were made from IPS Empress CAD for CEREC (Emp), IPS e.max~(?) CAD (eMx), experimental single-structure all-FRC (a-FRC), Filtek? Supreme XTE (XTE), and commercially available single-structure short-FRC (everX Posterior?) (n ?=?8 for each material) (s-FRC). The a-FRC restorations were prepared from an experimental FRC blank using a computer-aided design and manufacturing (CAD/CAM) device. A fracture test was performed to assess the fracture load, toughness, and failure mode. The fracture loads were vertically applied on the restorations. The surface micromorphology of the FRC restorations was observed by scanning electron microscopy (SEM). The data were analyzed by analysis of variance (p ?=?.05) followed by Tukey's test.Results: s-FRC showed the highest mean fracture load (1145.0?±?89.6 N) and toughness (26.2?±?5.8 Ncm) among all the groups tested. With regard to the micromorphology of the prosthetic surface, local crushing of the fiberglass was observed in s-FRC, whereas chopped fiberglass was observed in a-FRC.Conclusions: The restorations made of short-FRC showed a higher load-bearing capacity than those made of the experimental all-FRC blanks for CAD/CAM. The brittle-like fractures were exhibited in the recent dental esthetic materials, while local crushing fractures were shown for single-structure FRC restorations.
机译:目的:单结构纤维增强复合材料(FRC)在修复牙科中的应用尚未得到充分报道。本研究旨在阐明使用两种类型的单结构FRC制备的前牙冠修复体的静态力学性能。材料和方法:设计了针对上前切牙的实验性牙冠修复体。修复体由用于CEREC(Emp)的IPS Empress CAD,用于eREC的IPS e.max〜(?)CAD(eMx),实验性单结构全FRC(a-FRC),Filtek?制成。 Supreme XTE(XTE)和可商购的单结构短FRC(everX Posterior?)(每种材料的nη=?8)(s-FRC)。使用计算机辅助设计和制造(CAD / CAM)设备从实验性FRC毛坯制备a-FRC修复体。进行断裂试验以评估断裂载荷,韧性和破坏模式。将断裂载荷垂直施加在修复体上。通过扫描电子显微镜(SEM)观察到FRC修复体的表面微观形态。通过方差分析(p <0.05)对数据进行分析,然后进行Tukey检验。结果:s-FRC显示出最高的平均断裂载荷(1145.0≤±89.6 N)和韧性(26.2≤±0.96)。 5.8 Ncm)。关于假体表面的微观形态,在s-FRC中观察到了玻璃纤维的局部破碎,而在a-FRC中观察到了切碎的玻璃纤维。结论:短FRC制成的修复体显示出比其更高的承载能力由用于CAD / CAM的实验性全FRC毛坯制成。在最近的牙科美学材料中表现出脆性骨折,而对于单结构FRC修复体则显示出局部压溃骨折。

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