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Effects of coping designs on stress distributions in zirconia crowns: Finite element analysis

机译:应对设计对氧化锆冠的应力分布的影响:有限元分析

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摘要

The purpose of this study was to evaluate the effects of coping designs on the stress distributions in posterior zirconia crowns by non-linear three-dimensional finite element analysis. Three-dimensional finite element models of a mandibular right first molar with layers of veneering porcelain, zirconia coping, cement, and abutment tooth were designed by computer software (HyperWorks 10.0). Ten zirconia crowns with different designs were produced according to various shoulder positions and heights. The shoulders (1-mm width) exhibited incremental height increases of 1 mm, 2 mm, and 3 mm on the buccal, lingual, and proximal sides, respectively. An axial compressive dynamic load simulating the progressive load was applied until a stainless steel ball model (7 mm in diameter) deepened the veneer surface to 0.7 mm in depth. Loads were placed on the inner inclines of the mesiobuccal, distobuccal, and mesiolingual cusps. Residual maximum principal stresses (MPSs) at the veneer and coping under progressive loading were determined for each zirconia crown. Reinforcements with the shoulders on the buccal, lingual, and proximal axial walls resulted in lower MPSs in the veneering porcelain but higher MPSs in the zirconia coping. As the shoulder height increased, the tensile stresses decreased, while the compressive stresses increased in the veneering porcelains. It can be concluded that the shoulder height and position in the zirconia coping will affect the MPSs of the crown. Our findings conclusively reveal the critical role of the shoulder design of the coping in preventing veneer fracture on posterior zirconia restorations by reducing tensile stresses in veneering porcelain. 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:本研究的目的是评估应对设计对由非线性三维有限元分析进行后氧化锆冠的应力分布的影响。用电脑软件(HyperWorks 10.0)设计了具有层压瓷层,氧化锆应对,水泥和邻接牙齿层的下颌右磨牙的三维有限元模型。根据各种肩部位置和高度生产具有不同设计的10个Zirconia Crowns。肩部(1毫米宽度)分别表现出增量高度增加1毫米,2毫米和3毫米,舌,舌和近侧侧。施加轴向压缩动态负荷,施加渐进式负荷,直到不锈钢球模型(直径为7毫米)深化胶合板深度0.7mm。将载荷放置在Mesiobucal,Distobcal和毛皮纤维纤维纤皮的内斜面上。针对每个氧化锆冠测定胶合板上的残余最大主应力(MPS)并在逐渐加载下应对。用肩部,舌和近端轴向轴上的肩部加固导致肢体瓷器中的低MPS,但氧化锆应对中的MPS较高。随着肩部高度的增加,拉伸应力降低,而压缩应力在嵌合件中增加。可以得出结论,氧化锆应对的肩部高度和位置会影响冠的MPS。我们的研究结果最终揭示了通过减少塑料瓷器中的拉伸应力,揭示了防止胶合骨折对后氧化锆修复件的关键作用。 2015年作者。由elsevier有限公司出版。这是CC By-NC-ND许可下的开放式访问文章(http://creativecommons.org/licenses/by-nc-nd/4.0/)。

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