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Prediction of permanent deformation in cast clasps for denture prostheses using a validated nonlinear finite element model

机译:使用验证的非线性有限元模型预测义齿修复体铸扣的永久变形

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Objectives. Permanent deformation is one of the most common mechanical complications that affect denture clasps. This can lead to loss of retention and stability of the prosthesis. The purpose of this study was to apply and validate a nonlinear finite element model for permanent deformation prediction in cast denture clasps. Such a model can enhance the process of design optimization and contribute to minimizing the possibility of this problem. Methods. Cast clasps made from Ti-6Al-7Nb, Co-Cr and Type Ⅳ gold alloys were loaded in three different directions (outside, inside and outside inclined 30°), and the resulting permanent deformation values were recorded. Nonlinear finite element analysis simulations based on the maximum distortion energy criterion for yielding, were conducted for clasp models that were reproduced according to the dimensions of each experimental specimen. Linear regression analysis for the results of the experiment and simulation was performed to verify the validity of the mathematical models. Results. Deflections required to produce specific amounts of permanent deformation were in close agreement with those recorded experimentally. The R~2 value for all bending tests was 0.985 and the linear regression equation expressed in micrometers was [Deflection_(FEA) = 0.976 (Deflection_(Real)) + 34]. Significance. Permanent deformation behavior in the cast clasps with a relatively wide range of deflections (0-2 mm) can be predicted using the proposed model, which shall enhance the design optimization process of cast clasps for denture prostheses.
机译:目标。永久变形是影响义齿扣的最常见的机械并发症之一。这可能导致假体的保持力和稳定性丧失。这项研究的目的是应用和验证非线性有限元模型,用于铸造义齿扣的永久变形预测。这样的模型可以增强设计优化的过程,并有助于最小化此问题的可能性。方法。将Ti-6Al-7Nb,Co-Cr和Ⅳ型金合金制成的铸扣沿三个不同的方向(外侧,内侧和外侧倾斜30°)加载,并记录所得的永久变形值。针对根据每个实验样本的尺寸复制的表扣模型,进行了基于最大变形能量准则的非线性有限元分析模拟。对实验和仿真结果进行线性回归分析以验证数学模型的有效性。结果。产生特定数量的永久变形所需的挠度与实验记录的挠度非常一致。所有弯曲测试的R〜2值为0.985,以微米表示的线性回归方程为[Deflection_(FEA)= 0.976(Deflection_(Real))+ 34]。意义。可以使用提出的模型预测挠度相对较大范围(0-2mm)的铸扣的永久变形行为,这将增强义齿修复用铸扣的设计优化过程。

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