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A cusp supporting framework design can decrease critical stresses in veneered molar crowns

机译:尖头支撑框架设计可以减少饰面磨牙牙冠的临界应力

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Objectives. Veneered zirconia restorations predominately fail due to veneering fractures. It is hypothesized that a cusp-supporting framework design can prevent these catastrophic failures in all-ceramic restorations. Therefore, we investigated the influence of framework design and framework material on the stress distribution in a single tooth restoration using the numerical finite element method. Methods. A three-dimensional model of a veneered lower molar (36) crown with constant outer shape was used. The framework design was either cusp supporting or with a constant framework thickness. Zirconia, alumina, and a gold alloy were used as framework material. A glass ceramic material was used as veneering material for both cases. Two different load cases were simulated: terminal occlusion with load distributed over the occlusal surface of the tooth and a fairly extreme load case with all force concentrated on one cusp. Results. Maximum tensile stresses in the glass ceramic veneering material concentrated in the fissure region for all models. A cusp supporting framework design decreased the maximum tensile stresses significantly up to 30.5%. The distolingual load case resulted in an approximately fourfold higher stress level compared to the terminal occlusion load case. Significance. A cusp supporting framework design can significantly decrease the maximum tensile stresses in the veneering material of single crowns. Based on the numerical results of this study it can be expected that such a design could decrease the risk of veneering failure in vivo.
机译:目标。贴面氧化锆修复体主要是由于贴面破裂而失败。据推测,支持尖端的框架设计可以防止全陶瓷修复体中的这些灾难性故障。因此,我们使用数值有限元方法研究了框架设计和框架材料对单颗牙齿修复中应力分布的影响。方法。使用具有恒定外形的贴面下臼齿(36)牙冠的三维模型。框架设计要么是尖头支撑,要么具有恒定的框架厚度。氧化锆,氧化铝和金合金用作框架材料。两种情况下均使用玻璃陶瓷材料作为饰面材料。模拟了两种不同的载荷情况:末端闭塞,载荷分布在牙齿的咬合面上;以及相当极端的载荷情况,所有力都集中在一个牙尖上。结果。对于所有型号,玻璃陶瓷饰面材料中的最大拉伸应力集中在裂隙区域。尖头支撑框架设计最大降低了最大拉应力达30.5%。与终端咬合负荷情况相比,非舌状负荷情况导致的应力水平大约高四倍。意义。尖头支撑框架设计可以显着降低单冠饰面材料中的最大拉应力。根据这项研究的数值结果,可以预期这样的设计可以降低体内镶面失败的风险。

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