期刊文献+

基底冠结构变化对金属烤瓷冠应力分布影响的三维有限元分析

Effect of stress distribution of different metal framework on metal-ceramic crown by three-dimensional finite element analysis
暂未订购
导出
摘要 目的探讨基底冠结构变化对后牙金属烤瓷冠应力分布的影响,为基底冠的结构设计提供理论指导。方法将金属基底冠设计为均匀厚度形、蝶形和水平形三种结构型,建立金属烤瓷冠三维有限元模型,模拟加载1N垂直载荷时的应力分布。结果瓷层最大主应力主要集中于金瓷界面,蝶形结构型和水平结构型的瓷层最大主应力峰值明显低于均匀厚度型,而最小主应力峰值则明显高于均匀厚度型。蝶形结构型和水平结构型的基底冠von-Mises应力峰值明显低于均匀厚度型。结论蝶形结构型和水平结构型基底冠设计,能有效优化金属烤瓷冠的应力分布,提高瓷层的抗拉强度,增强金属烤瓷冠的结构强度。 Objective To investigate the influences of different metal framework on the stress distribution of posterior ceramic - metal crown, and to provide theoretical guidance for designing metal framework. Methods Three kinds of metal framework were designed as traditional framework, butterfly framework and flat framework. Three - dimensional finite element models were created and the stress distribution was simulated respeetively. Loading direction was vertically downward along tooth axis with a load of 1 N. Results The maximum principal stress in porcelain occurred at the porcelain - metal interface. The peak of the maximum principal stress in porcelain for traditional framework was much higher than that of butterfly framework and flat framework, but the peak of the minimum principal stress was obviously lower than that of hutterfly framework and flat framework. The peak of van - Mises was also markedly higher than that of butterfly framework and flat framework. Conclusion The butterfly and flat frame designs can effectively change the stress distribution of ceramic - metal crown, optimizing stress distribution in porcelain under perpendicular load, and enhance structural strength of porcelain.
出处 《现代口腔医学杂志》 CAS CSCD 2009年第4期398-401,共4页 Journal of Modern Stomatology
基金 上海市卫生局科研计划08176
关键词 金属烤瓷冠 基底冠 三维有限元分析 应力 Metal -ceramic crown Metal framework Three -dimensional finite element The stress
  • 相关文献

参考文献10

  • 1Shirakura A,Lee H,Geminiani A,et al.The influence of veneering porcelain thickness of all-ceramic and metal ceramic crowns on failure resistance after cyclic loading.J Prosthet Dent,2009,101(2):119-127.
  • 2Ulusoy M,Toksavul S.Fracture resistance of five different metal framework designs for metal-ceramic restorations.Int J Prosthodont,2002,15(6):571-574.
  • 3李芸,张少锋,王忠义,凌伟,段媛媛.三维有限元分析基底冠厚度对金属烤瓷冠应力的影响[J].中国临床康复,2004,8(5):876-877. 被引量:3
  • 4Rosenstiel SF,Land MF,Fujimoto J.Contemporary Fixed Prosthodontics.3rd Ed.,Mosby,USA,2001,488-512.
  • 5Masaka N.Casting accuracy of one-piece cast fixed bridges.Shikwa Gakuho,1970,70(6):725-758.
  • 6Yang HS,Lang LA,Molina A,et al.The effects of dowel design and load direction on dowel-and-core restorations.J Prosthet Dent,2001,85(6):558-567.
  • 7Wang R,Li X,Yang J,et al.Influences of metal frame design on the mechanical strength of posterior porcelain fused to metal crown.Matsumoto Shigaku,2007,33(3):299-312.
  • 8汪饶饶,王小平,徐远志,华之成.金属烤瓷全冠面中央及边缘耐压强度分析[J].口腔医学,2000,20(2):76-77. 被引量:6
  • 9Kojima Y,Yamamoto M,Murakami H,et al.Stress analysis of an all ceramic crown on lower second molar.J Dent Mater,2001,20(3):200-208.
  • 10Yamamoto M,Murakami H,Kojima Y,et al.Stress analysis of molar all-ceramics crown using the three-dimensional finite element method.J Jpn Prosthodont Soc,2001,45(5):622-631.

二级参考文献14

共引文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部