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Evaluation of Temperature and Stress Distribution on 2 Different Post Systems Using 3-Dimensional Finite Element Analysis

机译:使用三维有限元分析评估2种不同立柱系统的温度和应力分布

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BACKGROUND The mouth is exposed to thermal irritation from hot and cold food and drinks.Thermal changes in the oral cavity produce expansions and contractions in tooth structures and restorative materials. The aim of this study was to investigate the effect of temperature and stress distribution on 2 different post systems using the 3-dimensional (3D) finite element method. MATERIAL AND METHODS The 3D finite element model shows a labio-lingual cross-sectional view of the endodontically treated upper right central incisor and supporting periodontal ligament with bone structures. Stainless steel and glass fiber post systems with different physical and thermal properties were modelled in the tooth restored with composite core and ceramic crown. We placed 100 N static vertical occlusal loading onto the center of the incisal surface of the tooth.Thermal loads of 0°C and 65°C were applied on the model for 5 s. Temperature and thermal stresses were determined on the labio-lingual section of the model at 6 different points. RESULTS The distribution of stress, including thermal stress values, was calculated using 3D finite element analysis.The stainless steel post system produced more temperature and thermal stresses on the restorative materials, tooth structures, and posts than did the glass fiber reinforced composite posts. CONCLUSIONS Thermal changes generated stresses in the restorative materials, tooth, and supporting structures.
机译:背景技术口腔暴露于冷热食品和饮料的热刺激下,口腔中的热变化在牙齿结构和修复材料中产生膨胀和收缩。这项研究的目的是使用3D(3D)有限元方法研究温度和应力分布对2种不同的立柱系统的影响。材料和方法3D有限元模型显示了经牙髓治疗的右上中切牙和具有骨结构的牙周膜的唇舌横截面图。在具有复合芯和陶瓷冠修复的牙齿中,对具有不同物理和热特性的不锈钢和玻璃纤维桩系统进行了建模。我们将100 N静态垂直咬合负荷放置在牙齿切牙表面的中心,在模型上施加0°C和65°C的热负荷5 s。在模型的唇舌部分的6个不同点确定温度和热应力。结果使用3D有限元分析计算了应力分布,包括热应力值。与玻璃纤维增​​强复合材料桩相比,不锈钢桩系统在修复材料,牙齿结构和桩上产生的温度和热应力更大。结论热变化会在修复材料,牙齿和支撑结构中产生应力。

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