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Mechanical behavior of conceptual posterior dental crowns with functional elasticity gradient

机译:功能弹性梯度概念后牙科冠的力学行为

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Purpose: To evaluate the biomechanical behavior of monolithic ceramic crowns with functional elasticity gradient. Methods: Using a CAD software, a lower molar received a full-crown preparation (1.5 mm occlusal and axial reduction). The monolithic crown was modeled with a resin cement layer of 0.1 mm. Four groups were distributed according to the full crown elastic modulus (E):(a) Bioinspired crown with decreasing elastic modulus (from 90 to 30GPa); (b) Crown with increasing elastic modulus (from 30 to 90 GPa); (c) Rigid crown (90 GPa) and (d) Flexible crown (30 GPa). The model was exported to the analysis software and meshed into 385.240 tetrahedral elements and 696.310 nodes. Materials were considered isotropic, linearly elastic, and homogeneous, with ideal contacts. A 300-N load was applied at the occlusal surface and the base of the model was fixed in all directions. The results were required in maximum principal stress criterion. Results: Crowns consisting of layers with increasing elastic modulus presented intermediate results between the rigid and flexible crowns. Compared to the flexible crown, the bioinspired crown showed acceptable stress distribution across the structure with lower stress concentration in the tooth. In dental crowns the multilayer structure with functional elasticity gradient modifies the stress distribution in the restoration, with promising results for bioinspired design.
机译:目的:评价用功能弹性梯度的单片陶瓷冠的生物力学行为。方法:采用CAD软件,较低摩尔接受全冠制备(1.5mm咬合和轴向减少)。单片冠状冠状物模拟0.1mm的树脂水泥层。根据全冠弹性模量(e)(a)生物透明冠状冠,弹性模量减少(a),分布四组,弹性模量减少(从90至30gpa); (b)弹性模量增加(30至90gPa)的冠部; (c)刚性冠(90 gpa)和(d)柔性冠(30 gpa)。该模型出口到分析软件,并将其呈现为385.240四面体元素和696.310节点。材料被认为是各向同性,线性弹性和均匀的,具有理想的触点。在咬合表面上施加300-n负载,并且在所有方向上固定模型的基部。结果是最大主应力标准所需的。结果:由增加弹性模量的层组成的冠,呈现刚性和柔性冠之间的中间导致。与柔性冠相比,BioinSpired Crown在牙齿中具有较低应力浓度的结构上显示可接受的应力分布。在牙科冠中,具有功能弹性梯度的多层结构改变了恢复中的应力分布,具有生物悬浮设计的有希望的结果。

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