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采用自然梯度材料分布建模的人类牙齿中的应力分布。

Stress distributions in human teeth modeled with a natural graded material distribution.

作者信息

Chen YungChung, Fok Alex

机构信息

Minnesota Dental Research Center for Biomaterials and Biomechanics, School of Dentistry, University of Minnesota, MN, USA.

Minnesota Dental Research Center for Biomaterials and Biomechanics, School of Dentistry, University of Minnesota, MN, USA.

出版信息

Dent Mater. 2014 Dec;30(12):e337-48. doi: 10.1016/j.dental.2014.08.372. Epub 2014 Sep 16.

Abstract

OBJECTIVE

This study aimed to investigate how the structural stress distribution in human teeth could be affected by the presence of a graded material distribution often found in nature using the finite element (FE) method.

METHODS

Hydroxyapatite (HA) tablets with different densities were scanned using a Micro-CT scanner to obtain a relationship between the attenuation coefficient and the elastic modulus via the mineral density. Two maxillary premolars were scanned to provide the geometries and material distributions for constructing the FE models. Stress analyses were then performed to compare the stress distributions between the models with uniform material properties and those with a graded material layout.

RESULTS

The attenuation coefficients and densities of the HA tablets measured ranged from 109.77 to 175.01cm(-1) and 0.99 to 1.54gcm(-3), respectively. A linear relationship was found between them and applied to the premolars to derive the elastic modulus via the mineral density. Stress analysis showed that, with a graded material layout, the peak maximum principal stress in the enamel was reduced by about 50% and the overall stress distribution was more uniform. Along the DEJ, two stress peaks were found near the dentin horns, but again they were much lower in magnitude in the models with a graded material distribution.

SIGNIFICANCE

The results from this study support the hypothesis that the material layout in human enamel is optimized for distributing the external load evenly. They also point to the importance of taking into account the graded material distribution in nature when performing stress analysis for tooth structures.

摘要

目的

本研究旨在使用有限元(FE)方法,研究自然界中常见的渐变材料分布对人类牙齿结构应力分布的影响。

方法

使用微型计算机断层扫描(Micro-CT)扫描仪对不同密度的羟基磷灰石(HA)片剂进行扫描,通过矿物质密度获得衰减系数与弹性模量之间的关系。扫描两颗上颌前磨牙,以提供构建有限元模型的几何形状和材料分布。然后进行应力分析,比较材料属性均匀的模型和具有渐变材料布局的模型之间的应力分布。

结果

所测HA片剂的衰减系数和密度范围分别为109.77至175.01cm⁻¹和0.99至1.54g/cm³。发现它们之间存在线性关系,并应用于前磨牙以通过矿物质密度推导弹性模量。应力分析表明,采用渐变材料布局时,牙釉质中的最大主应力峰值降低了约50%,且整体应力分布更加均匀。沿着牙釉质牙本质界(DEJ),在牙本质角附近发现了两个应力峰值,但在具有渐变材料分布的模型中,其大小也低得多。

意义

本研究结果支持以下假设,即人类牙釉质中的材料布局经过优化,可均匀分布外部载荷。它们还指出,在对牙齿结构进行应力分析时,考虑自然界中的渐变材料分布非常重要。

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