Finite element analysis of FGM dental crowns using phase-field approach.

Ferit Sait, N. Saeidi, Turan Korkmaz
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引用次数: 0

Abstract

Functionally graded materials (FGMs) - categorized in advanced composite materials - are specially designed to reduce the stresses and failure due to material mismatches. Advances in manufacturing techniques have brought FGMs into use in a variety of applications. However, the numerical analysis is still challenging due to the difficulties in simulations of non-homogeneous material domains of complex parts. Presenting a numerical procedure that both facilitates the implementation of material non-homogeneity in geometrically complex mediums, and increases the accuracy of the calculations using a phase-field approach, this study investigates the usage of FGMs in dental prostheses. For this purpose, a porcelain fused to metal (PFM) mandibular first molar FGM crown is simulated and analyzed under the maximum masticatory bite force, and eventually the results are compared to a PFM crown prepared conventionally.
基于相场法的FGM牙冠有限元分析。
功能梯度材料(fgm)被归类为高级复合材料,专门用于减少由于材料不匹配而导致的应力和失效。制造技术的进步使fgm在各种应用中得到应用。然而,由于复杂零件非均质材料域的模拟困难,数值分析仍然具有挑战性。本研究提出了一个数值程序,既有利于在几何复杂的介质中实现材料非均匀性,又提高了使用相场方法计算的准确性,研究了fgm在牙科修复体中的使用。为此,模拟并分析了在最大咀嚼咬合力下的烤瓷(PFM)下颌第一磨牙FGM冠,并将结果与传统烤瓷烤瓷冠进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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