Finite element simulation of fixed dental prostheses made from PMMA —Part II: Material modeling and nonlinear finite element analysis
Author:
Affiliation:
1. Institute of Mechanics and Materials, Technische Hochschule Mittelhessen
2. Department of Prosthodontics, Dental Clinic, Justus-Liebig-University
Publisher
Japanese Society for Dental Materials and Devices
Subject
General Dentistry,Ceramics and Composites
Link
https://www.jstage.jst.go.jp/article/dmj/40/4/40_2020-231/_pdf
Reference43 articles.
1. 1) Niem T, Youssef N, Wostmann B. Energy dissipation capacities of CAD-CAM restorative materials: A comparative evaluation of resilience and toughness. J Prosthet Dent 2019; 121: 101-109.
2. 2) Wakabayashi N, Ona M, Suzuki T, Igarashi Y. Nonlinear finite element analyses: advances and challenges in dental applications. J Dent 2008; 36: 463-471.
3. 3) Stein E. History of the Finite Element Method – Mathematics Meets Mechanics – Part I: Engineering Developments. The History of Theoretical, Material and Computational Mechanics - Mathematics Meets Mechanics and Engineering. 1. Berlin: Springer; 2014.
4. 4) Tenek LT, Argyris J. A brief history of FEM. Finite Element Analysis for Composite Structures Solid Mechanics and Its Applications. 59. Dordrecht1998.
5. 5) Toparli M, Aykul H, Aksoy T. Stress distribution associated with loaded acrylic-metal-cement crowns by using finite element method. J Oral Rehabil 2002; 29: 1108-1114.
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2. Comparative Analysis of the Structural Weights of Fixed Prostheses of Zirconium Dioxide, Metal Ceramic, PMMA and 3DPP Printing Resin—Mechanical Implications;Dentistry Journal;2023-10-26
3. A statistical model of the rate-dependent fracture behavior of dental polymer-based biomaterials;Dental Materials Journal;2023-03-25
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