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Description
  • The main goal of this study is to develop a micromechanical model of a particle-filled dental composite focused on the residual stress (RS) field developed during the curing process in its microstructure. A finite element model of a representative volume element of filler and resin was developed, and volumetric shrinkage was simulated during the curing process. Four material models (von Mises plasticity model, Drucker–Prager plasticity model, von Mises plasticity model with stress relaxation and Drucker–Prager plasticity with stress relaxation) of the polymer resin were built to assess the influence of the material model on the resulting internal stress. The relationship between the curing process and the magnitude of the stress components will be described, and an analysis of the post-curing state of the material in particular microstructure locations will be conducted in this study. Obtained RS is comparable to the stresses developed in the material under the external load. The substantial dependence on the choice of material model for resin is to be observed, and the suitability of particular models is discussed.
  • The main goal of this study is to develop a micromechanical model of a particle-filled dental composite focused on the residual stress (RS) field developed during the curing process in its microstructure. A finite element model of a representative volume element of filler and resin was developed, and volumetric shrinkage was simulated during the curing process. Four material models (von Mises plasticity model, Drucker–Prager plasticity model, von Mises plasticity model with stress relaxation and Drucker–Prager plasticity with stress relaxation) of the polymer resin were built to assess the influence of the material model on the resulting internal stress. The relationship between the curing process and the magnitude of the stress components will be described, and an analysis of the post-curing state of the material in particular microstructure locations will be conducted in this study. Obtained RS is comparable to the stresses developed in the material under the external load. The substantial dependence on the choice of material model for resin is to be observed, and the suitability of particular models is discussed. (en)
Title
  • Microstructural residual stress in particle-filled dental composite
  • Microstructural residual stress in particle-filled dental composite (en)
skos:prefLabel
  • Microstructural residual stress in particle-filled dental composite
  • Microstructural residual stress in particle-filled dental composite (en)
skos:notation
  • RIV/68407700:21220/13:00204635!RIV14-GA0-21220___
http://linked.open...avai/predkladatel
http://linked.open...avai/riv/aktivita
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  • P(GD101/08/H068)
http://linked.open...iv/cisloPeriodika
  • 0
http://linked.open...vai/riv/dodaniDat
http://linked.open...aciTvurceVysledku
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  • 88238
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  • RIV/68407700:21220/13:00204635
http://linked.open...riv/jazykVysledku
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  • dental composite; FE modelling; residual stress; plasticity (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...odStatuVydavatele
  • GB - Spojené království Velké Británie a Severního Irska
http://linked.open...ontrolniKodProRIV
  • [6E23283A4ECA]
http://linked.open...i/riv/nazevZdroje
  • Computer Methods in Biomechanics and Biomedical Engineering
http://linked.open...in/vavai/riv/obor
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http://linked.open...vavai/riv/projekt
http://linked.open...UplatneniVysledku
http://linked.open...iv/tvurceVysledku
  • Mareš, Tomáš
  • Španiel, Miroslav
  • Prejzek, Ondřej
issn
  • 1476-8259
number of pages
http://bibframe.org/vocab/doi
  • 10.1080/10255842.2013.781158
http://localhost/t...ganizacniJednotka
  • 21220
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