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Finite element simulation of fixed dental prostheses made from PMMA —Part II: Material modeling and nonlinear finite element analysis

机译:PMMA -PART II制造的固定牙科假体的有限元模拟:材料建模与非线性有限元分析

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Material characteristics can change significantly with increasing chewing velocity. As these in-vitro examinations are very time-consuming and cost-intensive, the application of finite element analysis (FEA) offers a suitable alternative for predicting the material behavior of complex specimen geometries under clinically relevant loads. Although FEA is applied within numerous dental investigations, there are only few studies available in which a nonlinear FEA is validated with real experiments. Therefore, the aim of the present study was to predict the mechanical behavior of a clinically close three-unit temporary bridge composed of polymethyl methacrylate (PMMA) in the left upper jaw with nonlinear FEA and to verify the prediction through validation experiments. In conclusion, simplifying assumptions of linear elastic material properties for polymeric materials should be avoided in FEA studies, because rate dependencies, stress relaxation and plastic flow are not considered. Additionally, precise preliminary investigations for material characterization are necessary.
机译:随着咀嚼速度的增加,材料特性可以显着变化。由于这些在体外检查是非常耗时和成本密集的,有限元分析(FEA)的应用提供了适当的替代方案,用于预测临床相关载荷下复杂标本几何形状的材料行为。虽然FEA适用于许多牙科调查,但只有很少的研究可用于,其中非线性FEA具有真实实验。因此,本研究的目的是预测由非线性FEA的左上爪中的聚甲基丙烯酸甲酯(PMMA)组成的临床关闭的三单元临时桥梁的力学行为,并通过验证实验验证预测。总之,在FEA研究中应避免简化用于聚合物材料的线性弹性材料性能的假设,因为不考虑速率依赖性,应力松弛和塑性流动。此外,需要精确地进行材料表征的初步研究。

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