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Comparative analysis of internal and external-hex crown connection systems - a finite element study

机译:内外六角顶冠连接系统的比较分析-有限元研究

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摘要

The abutment connection with the crown is fundamental to the structural stability of the implant system and to the prevention of mechanical exertion that can compromise the success of the implant treatment. The aim of this study is to clarify the difference in the stress distribution patterns between implants with internal and external-hex connections with the crown using the Finite Element Method (FEM). Material and Methods: The internal and external-hex connections of the Neoss and 3i implant systems respectively, are considered. The geometrical properties of the implant systems are modeled using three-dimensional (3D) brick elements. Loading conditions include a masticatory force of 200, 500 and 1000N applied to the occlusal surface of the crown along with an abutment screw torque of 110, 320 and 550Nmm. The von Mises stress distributions in the crown are examined for all loading conditions. Assumptions made in the modeling include: 1. half of the implant system is modeled and symmetrical boundary conditions applied; 2. temperature sensitive elements are used to replicate the torque within the abutment screw. Results: The connection type strongly influences the resulting stress characteristics within the crown. The magnitude of stress produced by the internal-hex implant system is generally lower than that of the external-hex system. The internal-hex system held an advantage by including the use of an abutment between the abutment screw and the crown. Conclusions: The geometrical design of the external-hex system tends to induce stress concentrations in the crown at a distance of 2.89mm from the apex. At this location the torque applied to the abutment screw also affects the stresses, so that the compressive stresses on the right hand side of the crown are increased. The internal-hex system has reduced stress concentrations in the crown. However, because the torque is transferred through the abutment screw to the abutment contact, changing the torque has greater effect on this hex system than the masticatory force. Overall the masticatory force is more influential on the stress within the crown for the external-hex system and the torque is more influential on the internal-hex system.
机译:与牙冠的基台连接对于植入物系统的结构稳定性以及防止可能影响植入物治疗成功的机械作用至关重要。这项研究的目的是使用有限元方法(FEM)来弄清楚具有内部和外部六角形连接冠的种植体之间的应力分布模式的差异。材料和方法:分别考虑Neoss和3i植入系统的内部和外部六角连接。植入系统的几何特性是使用三维(3D)砖元素建模的。载荷条件包括施加在牙冠咬合面上的200、500和1000N的咀嚼力,以及110、320和550Nmm的基台螺丝扭矩。对所有载荷条件下的胎冠中的von Mises应力分布进行了检查。建模中的假设包括:1.对植入系统的一半进行建模,并应用对称边界条件; 2.温度敏感元件用于复制基台螺丝内的扭矩。结果:连接类型会严重影响冠部内产生的应力特性。内部六角形植入物系统产生的应力大小通常低于外部六角形植入物系统。内六角系统通过在基台螺丝和牙冠之间使用基台而保持优势。结论:外六角形系统的几何设计易于在距顶点2.89mm的距离内引起牙冠应力集中。在此位置,施加在基台螺丝上的扭矩也会影响应力,因此会增加牙冠右手侧的压应力。内部六角系统降低了胎冠中的应力集中。但是,由于扭矩是通过基台螺钉传递到基台触点的,因此与该咀嚼力相比,更改扭矩对该六角形系统的影响更大。总体而言,对于外部六角系统,咀嚼力对冠内应力的影响更大,而对于内部六角系统,扭矩的影响更大。

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