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Fracture resistance of abutment screws made of titanium, polyetheretherketone, and carbon fiber-reinforced polyetheretherketone

机译:钛,聚醚醚酮和碳纤维增强聚醚醚酮制成的基台螺丝的耐断裂性

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Fractured abutment screws may be replaced; however, sometimes, the screw cannot be removed and the entire implant must be surgically removed and replaced. The aim of this study was to compare the fracture resistance of abutment retention screws made of titanium, polyetheretherketone (PEEK) and 30% carbon fiber-reinforced PEEK, using an external hexagonal implant/UCLA-type abutment interface assembly. UCLA-type abutments were fixed to implants using titanium screws (Group 1), polyetheretherketone (PEEK) screws (Group 2), and 30% carbon fiber-reinforced PEEK screws (Group 3). The assemblies were placed on a stainless steel holding apparatus to allow for loading at 45o off-axis, in a universal testing machine. A 200 N load (static load) was applied at the central point of the abutment extremity, at a crosshead speed of 5 mm/minute, until failure. Data was analyzed by ANOVA and Tukey’s range test. The titanium screws had higher fracture resistance, compared with PEEK and 30% carbon fiber-reinforced PEEK screws (p 0.05). In contrast, no statistically significant difference was observed between the fracture resistance of the PEEK and the 30% carbon fiber-reinforced PEEK screws (p 0.05). Finally, visual analysis of the fractions revealed that 100% of them occurred at the neck of the abutment screw, suggesting that this is the weakest point of this unit. PEEK abutment screws have lower fracture resistance, in comparison with titanium abutment screws.
机译:断裂的基台螺丝可以更换;但是,有时无法取下螺钉,必须通过外科手术切除并更换整个植入物。这项研究的目的是使用外部六角形植入物/ UCLA型基台界面组件,比较由钛,聚醚醚酮(PEEK)和30%碳纤维增强的PEEK制成的基台固位螺钉的抗断裂性能。使用钛螺钉(第1组),聚醚醚酮(PEEK)螺钉(第2组)和30%碳纤维增强的PEEK螺钉(第3组)将UCLA型基台固定到植入物上。将组件放置在不锈钢固定设备上,以允许在通用测试机中以45o轴偏心加载。在基台末端的中心点以5 mm / min的十字头速度施加200 N的载荷(静态载荷),直到失效。数据通过ANOVA和Tukey的范围测试进行了分析。与PEEK和30%碳纤维增强的PEEK螺钉相比,钛螺钉具有更高的抗断裂性(p <0.05)。相反,在PEEK的抗断裂性和30%碳纤维增强的PEEK螺钉之间的抗断裂性上没有观察到统计学上的显着差异(p> 0.05)。最后,对这些部分的视觉分析表明,它们中的100%发生在基台螺钉的颈部,表明这是该单元的最弱点。与钛基台螺丝相比,PEEK基台螺丝具有较低的抗断裂性。

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