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Influence of type of cement and their thickness on stress distribution at dentin-cement interface of computer-aided designed glass fiber post: A three-dimensional finite element analysis

机译:水泥类型及其厚度对计算机辅助设计玻璃纤维桩牙本质-水泥界面应力分布的影响:三维有限元分析

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Aim: This study aims to evaluate the effect of type of cement, and their thickness on stress distribution at dentin-cement interface of computer-aided designed glass fiber post using three-dimensional finite element analysis. Materials and Methods: Nine 3D models of endodontically treated maxillary second premolar were divided into three groups according to the adhesive cement used PermaCem (Group I), Variolink II (Group II), and ParaCore (Group III). Each group was further divided into subgroup a, b, and c on the basis of the thickness of the adhesive cement 50 μm, 200 μm, and 300 μm, respectively. All the models were simulated to be cemented with computer-aided designed glass fiber post and core followed by zirconia crown. The core was modeled with incomplete ferrule. The load of 200N at 45° at lingual and central fossa was applied. Maximum von Mises stresses distribution was calculated. Results: Maximum and minimum stresses in dentin were seen in the Ic and IIIa, respectively. Maximum and minimum stresses in cement were seen in IIIc and Ia, respectively. Conclusion: The von Mises stresses in dentin can be minimized by keeping the cement thickness minimum and selecting the cement whose modulus of elasticity is closest to that of dentin.
机译:目的:本研究旨在通过三维有限元分析,评估水泥类型及其厚度对计算机辅助设计玻璃纤维桩牙本质-水泥界面应力分布的影响。材料与方法:根据PermaCem(I组),Variolink II(II组)和ParaCore(III组)所使用的粘结胶,将经过牙髓治疗的上颌第二前磨牙的9个3D模型分为三组。根据粘合水泥的厚度分别为50μm,200μm和300μm,将每组进一步分为亚组a,b和c。对所有模型进行了模拟,将其与计算机辅助设计的玻璃纤维桩和核以及随后的氧化锆冠进行胶合。用不完整的密封垫圈为核心建模。在舌窝和中央窝处施加45°200N的载荷。计算了最大冯·米塞斯应力分布。结果:分别在Ic和IIIa中观察到牙本质的最大和最小应力。在IIIc和Ia中分别看到了水泥的最大和最小应力。结论:保持牙本质厚度最小并选择弹性模量最接近牙本质的骨水泥可以使牙本质的von Mises应力最小化。

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