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FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials

The aim of this paper is to underline the mechanical properties of dental single crown prosthodontics materials in order to differentiate the possibility of using each material for typical clinical condition and masticatory load. Objective of the investigation is to highlight the stress distribution...

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Autores principales: Bramanti, Ennio, Cervino, Gabriele, Lauritano, Floriana, Fiorillo, Luca, D'Amico, Cesare, Sambataro, Sergio, Denaro, Deborah, Famà, Fausto, Ierardo, Gaetano, Polimeni, Antonella, Cicciù, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5394389/
https://www.ncbi.nlm.nih.gov/pubmed/28474002
http://dx.doi.org/10.1155/2017/1029574
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author Bramanti, Ennio
Cervino, Gabriele
Lauritano, Floriana
Fiorillo, Luca
D'Amico, Cesare
Sambataro, Sergio
Denaro, Deborah
Famà, Fausto
Ierardo, Gaetano
Polimeni, Antonella
Cicciù, Marco
author_facet Bramanti, Ennio
Cervino, Gabriele
Lauritano, Floriana
Fiorillo, Luca
D'Amico, Cesare
Sambataro, Sergio
Denaro, Deborah
Famà, Fausto
Ierardo, Gaetano
Polimeni, Antonella
Cicciù, Marco
author_sort Bramanti, Ennio
collection PubMed
description The aim of this paper is to underline the mechanical properties of dental single crown prosthodontics materials in order to differentiate the possibility of using each material for typical clinical condition and masticatory load. Objective of the investigation is to highlight the stress distribution over different common dental crowns by using computer-aided design software and a three-dimensional virtual model. By using engineering systems of analyses like FEM and Von Mises investigations it has been highlighted the strength over simulated lower first premolar crowns made by chrome cobalt alloy, golden alloy, dental resin, and zirconia. The prosthodontics crown models have been created and put on simulated chewing stresses. The three-dimensional models were subjected to axial and oblique forces and both guaranteed expected results over simulated masticatory cycle. Dental resin presented the low value of fracture while high values have been recorded for the metal alloy and zirconia. Clinicians should choose the better prosthetic solution for the teeth they want to restore and replace. Both prosthetic dental crowns offer long-term success if applied following the manufacture guide limitations and suggestions.
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spelling pubmed-53943892017-05-04 FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials Bramanti, Ennio Cervino, Gabriele Lauritano, Floriana Fiorillo, Luca D'Amico, Cesare Sambataro, Sergio Denaro, Deborah Famà, Fausto Ierardo, Gaetano Polimeni, Antonella Cicciù, Marco ScientificWorldJournal Research Article The aim of this paper is to underline the mechanical properties of dental single crown prosthodontics materials in order to differentiate the possibility of using each material for typical clinical condition and masticatory load. Objective of the investigation is to highlight the stress distribution over different common dental crowns by using computer-aided design software and a three-dimensional virtual model. By using engineering systems of analyses like FEM and Von Mises investigations it has been highlighted the strength over simulated lower first premolar crowns made by chrome cobalt alloy, golden alloy, dental resin, and zirconia. The prosthodontics crown models have been created and put on simulated chewing stresses. The three-dimensional models were subjected to axial and oblique forces and both guaranteed expected results over simulated masticatory cycle. Dental resin presented the low value of fracture while high values have been recorded for the metal alloy and zirconia. Clinicians should choose the better prosthetic solution for the teeth they want to restore and replace. Both prosthetic dental crowns offer long-term success if applied following the manufacture guide limitations and suggestions. Hindawi 2017 2017-04-03 /pmc/articles/PMC5394389/ /pubmed/28474002 http://dx.doi.org/10.1155/2017/1029574 Text en Copyright © 2017 Ennio Bramanti et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bramanti, Ennio
Cervino, Gabriele
Lauritano, Floriana
Fiorillo, Luca
D'Amico, Cesare
Sambataro, Sergio
Denaro, Deborah
Famà, Fausto
Ierardo, Gaetano
Polimeni, Antonella
Cicciù, Marco
FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials
title FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials
title_full FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials
title_fullStr FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials
title_full_unstemmed FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials
title_short FEM and Von Mises Analysis on Prosthetic Crowns Structural Elements: Evaluation of Different Applied Materials
title_sort fem and von mises analysis on prosthetic crowns structural elements: evaluation of different applied materials
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5394389/
https://www.ncbi.nlm.nih.gov/pubmed/28474002
http://dx.doi.org/10.1155/2017/1029574
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