Finite element analysis of weakened roots restored with composite resin and posts
Конечно-элементный анализ ослабленных корней, восстановленных композитной смолой и штифтами
2009-01-01
SCID: 54.1/mmarccd3
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fiber-reinforced postsfinite element analysispost systemsstress distributionweakened teeth
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Abstract (AI)
Finite element analysis (FEA) was used to investigate the influence of different post systems on the stress distribution of weakened teeth under oblique-load application. A maxillary central incisor root obtained from a sound tooth was weakened by partial removal of dentin inside the root canal. Seven two-dimensional numerical models, one from the sound tooth and six from the weakened root restored with composite resin and post systems were created as follows - ST: sound tooth; CPC: cast CuAl post and core; SSP: stainless steel post + composite core; GP: fiberglass + composite core; CP: carbon fiber + composite core; ZP: zirconium dioxide post + composite core; TP: titanium post + composite core. The numerical models were considered to be restored with a leucite-reinforced all-ceramic crown and received a 45 masculine occlusal load (10 N) on the lingual surface.All the materials and structures were considered linear elastic, homogeneous, and isotropic, with the exception of fiberglass and carbon fiber posts which assumed orthotropic behavior. The numerical models were plotted and meshed with isoparametric elements, and the results were analyzed using von Mises and Sy stress criteria. When compared with the sound tooth, FEA revealed differences in stress distribution when post systems were used. Among the restored teeth, the use of CPC, SSP, ZP, and TP resulted in higher stress concentration in the post itself when compared to GP and CP. Therefore, results from the FEA images suggested that the use of non-metallic post systems could result in improved mechanical behavior for the weakened restored teeth.
Key Findings
1
Cast CuAl, stainless-steel, zirconium dioxide, and titanium posts showed higher stress concentrations within the posts than fiberglass and carbon-fiber systems.
2
Finite element analysis evaluated how six post systems affect stress distribution in weakened maxillary central incisors restored with composite resin and all-ceramic crowns.
3
Post-supported weakened teeth exhibited stress distributions different from those of a sound tooth under a 10 N oblique occlusal load.
4
The FEA results suggest that non-metallic posts, particularly fiberglass and carbon-fiber posts, may provide improved mechanical behavior in weakened restored teeth.
Research Object
weakened maxillary central incisor roots restored with composite resin and different post systems under oblique loading
Research Subject
stress distribution and mechanical behavior of the restored weakened roots as influenced by post-system type
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2009-01-01
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