首页> 外文期刊>Journal of Clinical and Diagnostic Research >Mechanical Behaviour of Ceramic Layered Zirconia Restorations: A Three Dimensional Finite Element Analysis using Microcomputed Tomography Data
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Mechanical Behaviour of Ceramic Layered Zirconia Restorations: A Three Dimensional Finite Element Analysis using Microcomputed Tomography Data

机译:陶瓷层状氧化锆修复体的力学行为:使用微计算机断层扫描数据的三维有限元分析

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Combining the strength of zirconia cores and superior aesthetics of a weaker veneer ceramic can result in a reliable and more biocompatible restoration.Aim: To investigate the mechanical behaviour with respect to different designs of zirconia-ceramic veneer interface using three-dimensional finite element analysis.Materials and Methods: Tooth preparation of the indicated mandibular molar was done for three patients. Each patient was restored with a different design of zirconia-ceramic interface (Design I- full ceramic veneer, Design II- ceramic veneer on buccal surface extending upto occlusal surface, Design III- ceramic veneer on buccal surface only). Cone Beam Computed Tomography (CBCT) image was taken for each patient after the cementation of the restoration which was used to develop 3D finite element models by applying appropriate softwares (Mimics, Rapidform, Hypermesh, ANSYS). Four types of loads were applied to each of the 3D finite element model-600 N load was applied vertically, 225 N load was applied in three directions (vertically, oblique at 45° and horizontally) at different points on occlusal surface and their buccal inclines. Maximum principal stress and minimum principal stress were obtained by finite element analysis.Results: When vertical loads of 600 N and 225 N were applied, ceramic layer of design II experienced larger tensile stresses 21.83 MPa and 28.33 MPa. When horizontal load of 225 N was applied, tensile stress in ceramic layer was largest in design I i.e., 29.87 MPa. When an oblique load of 225 N was applied, largest tensile stress in ceramic layer of 12.82 MPa was observed in design I.Conclusion: The different design characteristics of the junction between ceramic and zirconia will affect the bond between zirconia core and ceramic veneer. Design III has the least chances of chipping of ceramic layer under masticatory loads. Design II is more prone to chipping of ceramic layer under masticatory loads. Design I may show chipping under high occlusal loads.
机译:结合氧化锆芯的强度和较弱的贴面陶瓷的美学效果,可以实现可靠且更具生物相容性的修复。目的:研究使用三维有限元分析不同设计的氧化锆-陶瓷贴面界面的力学性能材料与方法:对三名患者进行了下颌磨牙的牙齿准备。使用不同设计的氧化锆-陶瓷界面(设计I-全陶瓷贴面,颊侧表面上的设计II-陶瓷贴面延伸到咬合面,设计III-面颊上的设计III-陶瓷贴面)修复了每个患者。胶结修复体后,为每位患者拍摄锥形束计算机断层扫描(CBCT)图像,通过应用适当的软件(Mimics,Rapidform,Hypermesh,ANSYS)将其用于开发3D有限元模型。在每种3D有限元模型中分别施加四种类型的载荷-垂直施加600 N载荷,在咬合面的不同点及其颊侧向三个方向(垂直,倾斜45度和水平方向)施加225 N载荷。通过有限元分析获得最大主应力和最小主应力。结果:当施加600 N和225 N的垂直载荷时,设计II的陶瓷层承受的拉应力更大,分别为21.83 MPa和28.33 MPa。当施加225N的水平载荷时,陶瓷层中的拉伸应力在设计I中最大,即29.87MPa。当施加225 N的斜向载荷时,在设计I中观察到陶瓷层的最大拉应力为12.82 MPa。结论:陶瓷与氧化锆之间连接处的不同设计特性会影响氧化锆核与陶瓷之间的键合单板。在咀嚼负载下,设计III具有最小的陶瓷层崩裂机会。设计II更容易在咀嚼载荷下使陶瓷层崩裂。设计I可能显示在高咬合负荷下崩裂。

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