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Magnitude and distribution of stresses in composite resin and sound dentine interface with mechanical retentions

机译:复合树脂中应力的大小和分布以及具有机械固位力的良好牙本质界面

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摘要

Background: Adhesive systems are constantly subjected to mechanical and chemical stresses that negatively impact the integrity and durability of the dentine-adhesive interface. Despite the lack of evidence to support or reject the clinical indication for mechanical retention, the potential further contribution of these preparations to the behavior of the composite resin-sound dentine bond has been rarely addressed. The authors evaluated by finite element analysis the effect of mechanical retention on the magnitude and distribution of stresses in a composite resin-sound dentin bonding interface when subjected to tensile and shear forces. Material and Methods: A three-dimensional model was created based on three cylindrical volumes representing the sound dentin, adhesive system, and composite resin. From this main model, two models were designed to simulate dentine bonding: 1) a model with no mechanical retention, which considered flat adhesion; and 2) a model with retention, which considered four hemispherical holes on the dentine surface. Both groups were subjected to linear static analysis under tensile and shear loading of 200N. Results: At the model with retentions’ bonding interface under tensile and shear loading, a concentration of Von Mises equivalent stress was observed within the retentions, with a reduction of those stresses on the bonding boundary surface. Conclusions: Additional mechanical retention increases the tensile strength of the sound dentin-composite resin bonding interface, promoting a decrease in the magnitude of the stresses and their redistribution under tensile and shear loading
机译:背景技术:胶粘剂系统不断受到机械和化学应力的影响,这些应力会对牙本质-胶粘剂界面的完整性和耐用性产生负面影响。尽管缺乏支持或拒绝机械保留的临床指征的证据,但是很少涉及这些制剂对复合树脂-声固齿本质键行为的潜在进一步贡献。作者通过有限元分析评估了机械保持力对承受拉伸力和剪切力的复合树脂-声固齿素粘接界面中应力的大小和分布的影响。材料和方法:基于三个圆柱体体积创建了三维模型,这些圆柱体代表了良好的牙本质,粘合系统和复合树脂。从这个主要模型中,设计了两个模型来模拟牙本质粘合:1)没有机械保持力的模型,该模型考虑了平坦的附着力; 2)具有保持力的模型,其中考虑了在牙质表面上的四个半球形孔。两组均在200N的拉伸和剪切载荷下进行线性静力分析。结果:在拉伸和剪切载荷作用下具有固位体粘结界面的模型中,在固位体中观察到Von Mises等效应力的集中,而粘结边界表面上的应力减小了。结论:额外的机械保持力提高了良好的牙本质复合树脂粘结界面的拉伸强度,从而降低了应力大小及其在拉伸和剪切载荷下的重新分布

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