Finite element simulation of fixed dental prostheses made from PMMA —Part I: Experimental investigation under quasi-static loading and chewing velocities
Author:
Affiliation:
1. Department of Prosthodontics, Dental Clinic, Justus-Liebig-University
2. Institute of Mechanics and Materials, Technische Hochschule Mittelhessen
Publisher
Japanese Society for Dental Materials and Devices
Subject
General Dentistry,Ceramics and Composites
Link
https://www.jstage.jst.go.jp/article/dmj/40/3/40_2020-230/_pdf
Reference41 articles.
1. 1) Ferry JD. Some reflections on the early development of polymer dynamics: Viscoelasticity, dielectric dispersion, and self-diffusion. Macromolecules 1991; 24: 5237-5245.
2. 2) International Organization for Standardization. ISO 10477:2018, Dentistry: Polymer-based crown and veneering materials 2018.
3. 3) Schmidt A, Schrader P, Frendel K, Schlenz MA, Wöstmann B, Kolling S. Is the assumption of linear elasticity within prosthodontics valid for polymers? —An exemplary study of possible problems. Dent Mater J 2021; 40: 52-60.
4. 4) Bates JF, Stafford GD, Harrison A. Masticatory function -a review of the literature: (II) Speed of movement of the mandible, rate of chewing and forces developed in chewing. J Oral Rehabil 1975; 2: 349-361.
5. (II) Speed of movement of the mandible, rate of chewing and forces developed in chewing. J Oral Rehabil 1975; 2: 349-361.
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3. Finite element simulation of fixed dental prostheses made from PMMA —Part II: Material modeling and nonlinear finite element analysis;Dental Materials Journal;2021-07-25
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