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In vitro fracture resistance of four-unit fiber-reinforced composite fixed partial dentures

机译:四单元纤维增强复合固定假牙的体外抗断裂性

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Objectives. The aim of this in vitro study was to investigate the influence of glass fiber-reinforcement on the fracture resistance of four-unit composite fixed partial dentures (FPDs) in the posterior region. Methods. A total of 70 FPDs were fabricated of the composites Sinfony, Vita Zeta and Targis. With each material, 10 FPDs were made without glass fiber-reinforcement and 10 were reinforced with the new glass fiber system EverStick. In addition, 10 FPDs were fabricated of the material combination Targis/Vectris. After thermocycling, all FPDs were loaded until failure in a universal testing machine. The FPDs were then cut and cross-sectional areas were examined by scanning electron microscopy (SEM). Results. The load to fracture of the fiber-reinforced FPDs lay between 615 and 1191 N, which was significantly greater than the values found with unreinforced FPDs (between 178 and 307 N). The highest values were found with the combinations Targis/Vectris (1191 N) and Sinfony/EverStick (1137 N). SEM showed that the FPDs with EverStick reinforcement not only exhibited fracture lines in the fiber-composite interface, but also more often in the area of the fiber-reinforcement than was the case with the FPDs with Vectris reinforcement. The load to fracture was not significantly dependent on fiber quantity or course of fracture. Significance. It may be concluded that the fracture resistance of four-unit composite FPDs can be significantly raised by glass fiber frameworks (p < 0.05). The reinforcement effect of EverStick depended significantly on the composite used (p < 0.05).
机译:目标。这项体外研究的目的是研究玻璃纤维增​​强对后部四单元复合固定假牙(FPD)抗断裂性的影响。方法。由Sinfony,Vita Zeta和Targis复合材料制造了总共70个FPD。对于每种材料,在没有玻璃纤维增​​强的情况下制造了10片FPD,并通过新的玻璃纤维系统EverStick增强了10片。另外,由Targis / Vectris材料组合制造了10个FPD。热循环后,所有FPD都要加载,直到在通用测试机中失效为止。然后切割FPD,并通过扫描电子显微镜(SEM)检查横截面积。结果。纤维增强的FPD的断裂载荷在615和1191 N之间,这大大大于未增强的FPD的断裂载荷(在178和307 N之间)。使用Targis / Vectris(1191 N)和Sinfony / EverStick(1137 N)的组合发现最高值。 SEM显示,与含Vectris增强的FPD相比,含EverStick增强的FPD不仅在纤维复合材料界面处显示出断裂线,而且在纤维增强区域还更常见。断裂的载荷并不显着取决于纤维量或断裂过程。意义。可以得出结论,玻璃纤维框架可以显着提高四单元复合FPD的抗断裂性(p <0.05)。 EverStick的增强效果很大程度上取决于所使用的复合材料(p <0.05)。

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