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Razvoj naprave za svetlobno polimerizacijo dentalnih kompozitnih materialov
ID Sečkar, Aleš (Author), ID Brunčko, Mihael (Mentor) More about this mentor... This link opens in a new window

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MD5: 52624A62B2E56F5F4387CA8FFAD4CC09
PID: 20.500.12556/rul/85b43eb3-0680-4325-b2db-650c9f5d088b

Abstract
Uvod: Razvita je bila laboratorijska naprava za svetlobno polimerizacijo dentalnih kompozitnih materialov na osnovi diodnih luči. Namen: Raziskali smo proces svetlobne polimerizacije dentalnih kompozitnih materialov, ki so bili polimerizirani z lastno razvito napravo. Rezultate smo primerjali z rezultati polimerizacije, opravljene na komercialno dostopni napravi (Solidilite V), ki deluje na osnovi halogenskih luči, in izpostavili prednosti razvite naprave na osnovi diodnih luči pred halogenskimi lučmi. Metode dela: Metoda teoretičnega dela je deskriptivna in obsega literaturo, ki jo diplomsko delo obravnava. Raziskovalni del temelji na analizi rezultatov eksperimentalno določene upogibne trdnosti kompozitnega materiala Ceramage. Praktični del obsega izdelavo polno kompozitne prevleke, ki je polimerizirana v lastno razviti napravi. Rezultati: Iz pridobljenih rezultatov je razvidno, da na mehanske lastnosti kompozita vpliva gostota energije svetlobnega snopa (jakost svetlobnega snopa × čas osvetlitve). Ugotovili smo, da srednji časi izpostavljenosti in jakosti svetlobnega snopa privedejo do višje eksperimentalno določene upogibne trdnosti kot svetlobno strjevanje z uporabo kratkih časov izpostavljenosti z visoko jakostjo svetlobnega snopa ali dolgimi časi izpostavljenosti in nizko jakostjo svetlobnega snopa. Razprava in sklep: Lastno razvita naprava omogoča uspešno svetlobno polimerizacijo dentalnih kompozitnih materialov na osnovi fotoiniciatorja kamforkinona z absorbcijskim maksimumom 465 nm. Uspešnost razvite naprave smo potrdili z rezultati eksperimentalno določene upogibne trdnosti kompozitnega materiala ter analizo njegove mikrostrukture.

Language:Slovenian
Keywords:dentalni kompozitni materiali, svetlobna polimerizacija, diodne luči, jakost svetlobnega snopa
Work type:Bachelor thesis/paper
Organization:ZF - Faculty of Health Sciences
Year:2018
PID:20.500.12556/RUL-99574 This link opens in a new window
COBISS.SI-ID:5385835 This link opens in a new window
Publication date in RUL:03.02.2018
Views:3361
Downloads:848
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Secondary language

Language:English
Title:The development of device for the light-curing of dental composite materials
Abstract:
Introduction: A laboratory device for light curing dental composite materials based on diode lights was developed. Purpose: We researched the process of light polymerization of dental composite materials that were polymerized in the developed device. The results were compared with the results of polymerization performed on a commercially available device (Solidilite V), which operates based on halogen lights. We highlighted the advantages of the developed device based on diode lights compared to halogen lamps. Methods: The method of theoretical work is descriptive and covers the literature that this thesis deals with. The research part is based on the analysis of the results of the experimental determined flexural strength of the Ceramage composite material. The practical part consists of the production of a full composite crown, which is polymerized in the developed device. Results: From the obtained results, it is evident that the mechanical properties of the composite are influenced by the energy density of the light beam (power density x exposure duration). We found out that the mean time of exposure and the power density lead to higher experimentally determined flexural strength compared to light curing using short exposure times with high power density or long exposure times and low power density. Discussion and conclusion: The self-developed device enables successful light-curing polymerization of dental composite materials based on camphorquinone photoinitiator, with an absorption maximum of 465 nm. The successful performance of the developed device was confirmed by the results of the experimentally determined flexural strength of the composite material and the analysis of its microstructure.

Keywords:dental composite materials, light curing, diode lights, energy density

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