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首页> 外文期刊>The Journal of Prosthetic Dentistry >The effects of post-core and crown material and luting agents on stress distribution in tooth restorations
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The effects of post-core and crown material and luting agents on stress distribution in tooth restorations

机译:牙冠和牙冠后冠材料和浸润剂对牙齿修复物中应力分布的影响

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Statement of problem Cement microfracture, post-and-core dislodgement, and tooth fracture are related to the mechanical properties and deformation of restorations. Purpose The purpose of this study was to determine which combinations of post-and-core cements provide the most favorable stress distribution upon loading. Material and methods Three-dimensional models of teeth were created with the ANSYS program to simulate the different materials used for metal ceramic crowns (nickel-chromium, gold-palladium), posts and cores (Ti, Ni-Cr, Au-Pd), and cement (glass ionomer, composite resin, zinc phosphate, polycarboxylate, Panavia). Models were divided into 2 groups according to the alloys used in the crown restorations. A simulated masticatory force of 400 N was applied to the occlusal surface at a 45-degree inclination in the linguolabial direction to the long axis of the tooth, and von Mises equivalent stress values were calculated. Results The Ni-Cr metal ceramic crown/Au-Pd post-and-core/glass ionomer cement had the highest residual root von Mises equivalent stress value, whereas the Ni-Cr metal ceramic crown/Ni-Cr post-and-core/glass ionomer cement had the highest post stress value and the Ni-Cr metal ceramic crown/Au-Pd post-and-core/zinc phosphate cement had the highest cement stress value. For each post-and-core alloy, the stress values in the post and core were higher with Au-Pd metal ceramic crowns than with Ni-Cr metal ceramic crowns. The post-and-core material affected the amount of deformation. Conclusions The use of a post-and-core material with a lower elastic modulus and a cement with a higher elastic modulus led to a reduction in deformation in the residual root, cement, and post and core, and a reduction in stress in the post and core. The Ni-Cr metal ceramic crown/Au-Pd post-and-core/zinc phosphate cement or Panavia may therefore be favorable for post-and-core restorations.
机译:问题陈述水泥微裂纹,桩核后移和牙齿断裂与力学性能和修复体变形有关。目的这项研究的目的是确定哪种芯桩水泥组合在加载时提供最有利的应力分布。材料和方法使用ANSYS程序创建了牙齿的三维模型,以模拟用于金属陶瓷冠(镍铬合金,金钯合金),柱和芯(Ti,Ni-Cr,Au-Pd)的不同材料,和水泥(玻璃离聚物,复合树脂,磷酸锌,聚羧酸盐,Panavia)。根据牙冠修复体中使用的合金将模型分为2组。向咬合面施加400 N的模拟咀嚼力,沿舌长唇向牙齿的长轴倾斜45度,并计算von Mises等效应力值。结果Ni-Cr金属陶瓷冠/ Au-Pd柱芯/玻璃离聚物水泥具有最高的残余根von Mises当量应力值,而Ni-Cr金属陶瓷冠/ Ni-Cr柱芯/ Ni / Cr玻璃离聚物水泥具有最高的后应力值,而Ni-Cr金属陶瓷冠/ Au-Pd核芯/磷酸锌水泥具有最高的水泥应力值。对于每种柱核合金,Au-Pd金属陶瓷胎冠比Ni-Cr金属陶瓷胎冠更高。芯后材料影响变形量。结论使用具有较低弹性模量的桩心材料和具有较高弹性模量的水泥可减少残余牙根,水泥,桩和桩心的变形,并降低桩后应力和核心。因此,Ni-Cr金属陶瓷牙冠/ Au-Pd桩核/磷酸锌水泥或Panavia可能适合桩核修复。

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