Bioengineering Institute of Technology, Universitat Internacional de Catalunya (UIC), 08195 Barcelona, Spain.
Automatic Control Department, Universitat Politècnica de Catalunya (UPC-BarcelonaTECH), 08028 Barcelona, Spain.
Int J Mol Sci. 2022 Aug 7;23(15):8769. doi: 10.3390/ijms23158769.
This study aimed to find the optimum mechanical characteristics of the restorative materials for the manufacture of implant crowns subjected to impact loading when different combinations of materials are used for the inner and outer crown. Several combinations of external-internal crown restorative materials were analyzed. The dynamic stresses at eight different zones of a dental implant subjected to an impact load and the influence of several mechanical properties, such as the Young's modulus, Poisson's ratio, density, and initial velocity, were analyzed and compared. A detailed 3D model was created, including the crown, the retention screw, the implant, and a mandible section. The model was then built by importing the 3D geometries from CAD software. The whole 3D model was carefully created in order to guarantee a finite element mesh that produced results adjusted to physical reality. Then, we conducted a numerical simulation using the finite element method (FEM). The results of the FEM analysis allowed for evaluating the effect that different combinations of restorative materials and mechanical properties had on the stress distribution in various regions of the implant. The choice of restorative material is a factor to be considered in order to preserve the integrity of osseointegration. Restorative materials transfer more or less stress to the dental implant and surrounding bone, depending on their stiffness. Therefore, an inadequate Young's modulus of the rehabilitation material can affect the survival of the implant over time. Eight interactive graphics were provided on a web-based surface platform to help clinical dentists, researchers, and manufacturers to select the best restorative materials combination for the crown.
本研究旨在寻找用于制造受冲击负荷的种植体冠的修复材料的最佳机械特性,当内冠和外冠使用不同的材料组合时。分析了几种外冠-内冠修复材料的组合。分析和比较了在受到冲击载荷时,种植体的八个不同区域的动态应力以及几种机械性能(如杨氏模量、泊松比、密度和初始速度)的影响。创建了一个详细的 3D 模型,包括冠、固位螺钉、种植体和下颌骨部分。然后,通过从 CAD 软件导入 3D 几何图形来构建模型。整个 3D 模型是精心创建的,以保证产生与物理现实相适应的有限元网格。然后,我们使用有限元方法(FEM)进行了数值模拟。FEM 分析的结果允许评估修复材料和机械性能的不同组合对种植体不同区域的应力分布的影响。修复材料的选择是为了保持骨整合的完整性而需要考虑的因素。修复材料根据其刚度或多或少地将应力传递到种植体和周围的骨骼上。因此,康复材料的杨氏模量不足会影响植入物随时间的存活。在基于网络的表面平台上提供了八个交互式图形,以帮助临床牙医、研究人员和制造商为冠选择最佳的修复材料组合。