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首页> 外文期刊>Journal of Applied Biomechanics >Fracture Resistance and Analysis of Stress Distribution of Implant-Supported Single Zirconium Ceramic Coping Combination with Abutments Made of Different Materials
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Fracture Resistance and Analysis of Stress Distribution of Implant-Supported Single Zirconium Ceramic Coping Combination with Abutments Made of Different Materials

机译:种植体支撑的单锆陶瓷顶盖与不同材料制成的基台组合的抗断裂性能和应力分布分析

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摘要

The purpose of this study was to compare the fracture resistance and fracture mode of single implant-zirconium coping combinations using zirconium and titanium abutments and to analyze the stress distribution pattern using three-dimensional finite elements analysis. Twenty implants with titanium and zirconium abutments were randomly divided into two groups (n = 10) and into resin blocks. Zirconium copings were cemented onto the abutments. The specimens were loaded with 135° angles to the long axis and the load values at the moment of failure were recorded using a universal test machine. Stress levels were calculated according to the maximum Von Mises criteria. The fracture resistances for titanium and zirconium abutment groups were 525.65 N and 514.05 N, respectively. No significant differences were observed between two groups regarding the fracture resistance levels. The maximum Von Mises equivalent stress concentrated on zirconium copings in both of the groups. Implant-abutment-ZrO_2 coping combination has the potential to withstand physiological occlusal forces in the anterior region. Three-dimensional finite elements analysis results of the implant-abutment-ZrO_2 coping combination is compatible with the results of fracture resistance.
机译:这项研究的目的是比较使用锆和钛基台的单个植入物-锆顶盖组合的抗断裂性和断裂模式,并使用三维有限元分析来分析应力分布模式。将20个带有钛和锆基台的植入物随机分为两组(n = 10)和树脂块。锆帽被粘接到基台上。样品与长轴成135°角加载,并使用万能试验机记录破坏时的载荷值。根据最大的冯·米塞斯标准计算压力水平。钛和锆基台组的抗断裂强度分别为525.65 N和514.05N。两组之间的抗断裂强度没有显着差异。两组中最大的冯·米塞斯等效应力集中在锆层上。种植体-基台-ZrO_2应对组合具有承受前区生理性咬合力的潜力。种植体-基台-ZrO_2应对组合的三维有限元分析结果与抗断裂性结果兼容。

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