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首页> 外文期刊>Dental materials >Numerical fatigue 3D-FE modeling of indirect composite-restored posterior teeth
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Numerical fatigue 3D-FE modeling of indirect composite-restored posterior teeth

机译:间接复合修复后牙的数值疲劳3D-FE建模

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摘要

Objective. In restored teeth, stresses at the tooth-restoration interface during masticatory processes may fracture the teeth or the restoration and cracks may grow and propagate. The aim was to apply numerical methodologies to simulate the behavior of a restored tooth and to evaluate fatigue lifetimes before crack failure. Materials and methods. Using a CAD-FEM procedure and fatigue mechanic laws, the fatigue damage of a restored molar was numerically estimated. Tessellated surfaces of enamel and dentin were extracted by applying segmentation and classification algorithms, to sets of 2D image data. A user-friendly GUI, which enables selection and visualization of 3D tessellated surfaces, was developed in a MatLab® environment. The tooth-boundary surfaces of enamel and dentin were then created by sweeping operations through cross-sections. A class II MOD cavity preparation was then added into the 3D model and tetrahedral mesh elements were generated. Fatigue simulation was performed by combining a preliminary static FEA simulation with classical fatigue mechanical laws. Results. Regions with the shortest fatigue-life were located around the fillets of the class II MOD cavity, where the static stress was highest. Significance. The described method can be successfully adopted to generate detailed 3D-FE models of molar teeth, with different cavities and restorative materials. This method could be quickly implemented for other dental or biomechanical applications.
机译:目的。在修复的牙齿中,咀嚼过程中牙齿-修复界面处的应力可能会使牙齿断裂或修复,并且裂纹可能会扩展并传播。目的是应用数值方法来模拟修复牙齿的行为并评估裂纹破坏之前的疲劳寿命。材料和方法。使用CAD-FEM程序和疲劳力学定律,通过数值估算修复后磨牙的疲劳损伤。通过应用分割和分类算法,将搪瓷和牙本质的棋盘格化表面提取到2D图像数据集上。在MatLab®环境中开发了一个用户友好的GUI,可以选择和可视化3D镶嵌曲面。牙釉质和牙本质的牙齿边界表面然后通过横断面的扫掠操作产生。然后将II类MOD腔准备添加到3D模型中,并生成四面体网格元素。通过将静态静态FEA模拟与经典疲劳力学定律相结合来执行疲劳模拟。结果。疲劳寿命最短的区域位于II类MOD腔的圆角周围,其中静应力最高。意义。所描述的方法可以成功地用于生成具有不同蛀牙和修复材料的磨牙的详细3D-FE模型。该方法可以快速用于其他牙科或生物力学应用。

著录项

  • 来源
    《Dental materials》 |2011年第5期|p.423-430|共8页
  • 作者单位

    Department of Restorative Dentistry, School 0f Dentistry, University of Naples Federico II, V.S. Pansini 5, 80131 Naples, Italy;

    School of Engineering, University of Molise, Termoli (CB), Italy;

    Department of Mechanics and Energetics, School 0f Engineering, University 0f Naples Federico II, Naples, Italy;

    School 0f Dentistry and Photon Science Institute, University 0f Manchester, Manchester M15 6FH, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    micro-ct; 3d image acquisition; cad-fem modeling; class ii mod restoration; 3d fatigue simulation;

    机译:micro-ct;3d图像采集;cad-fem建模;II类mod还原;3d疲劳模拟;

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