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Analiza trdnosti ploščnega kompozitnega elementa z metodo končnih elementov : diplomsko delo - univerzitetni študij
ID Koderman, Dominik (Author), ID Merhar, Miran (Mentor) More about this mentor... This link opens in a new window, ID Šernek, Milan (Reviewer)

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Abstract
V nalogi smo ugotavljali korelacijo med numeričnim izračunom trdnosti kompozitnega elementa in eksperimentalno dobljenimi vrednostmi pri štiri točkovnem upogibu. Numerično analizo smo naredili z metodo končnih elementov (FEM) s programom Solidworks Simulation, kjer smo vzorce modelirali kot linearno elastičen ortotropen kompozitni element. Izdelali smo vezane plošče z različno usmerjenimi sloji bukovega furnirja in različnim številom slojev. Vzorce iz vezanih plošč smo izrezali pod različnimi koti, tako, da je bil prvi sloj vzorca pod različnim kotom glede na vzdolžno usmerjenost vzorca. Lastnosti materiala za definiranje materiala v simulaciji smo določili eksperimentalno z mehanskimi preizkusi bukovega furnirja debeline 1,5 mm in vzdolžno vezanih vzorcev večjih debelin. V povprečju je bil rezultat računalniške simulacije štiri točkovnega upogiba 55% rezultata mehanskega preizkusa in v nobenem primeru ni presegel vrednosti maksimalne obremenitve v mehanskem preizkusu.

Language:Slovenian
Keywords:metoda končnih elementov, kompozitni les, upogibna trdnost, porušitvene hipoteze
Work type:Undergraduate thesis
Typology:2.11 - Undergraduate Thesis
Organization:BF - Biotechnical Faculty
Place of publishing:Ljubljana
Publisher:D. Koderman
Year:2016
Number of pages:X, 52 f.
PID:20.500.12556/RUL-158763 This link opens in a new window
UDC:630*862
COBISS.SI-ID:2593929 This link opens in a new window
Publication date in RUL:20.06.2024
Views:289
Downloads:29
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Secondary language

Language:English
Title:Strength analysis of planar composite element with the finite element method : graduation thesis - university studies
Abstract:
The correlation between numerically computed strength of composite element and experimentally acquired values from four point bending test was researched. Numerical analisys was made with the finite element method (FEM) with Solidworks Simulation software, where samples were modeled as linear elastic orthotropic composite element. Plywood panels with different orientations of veneer plies and different numbers of plies were made. Samples were cut from plywood boards at different angles so that the first ply of the sample was at an varying angle compared to the length of the sample. Material properties for simulation were obtained experimentally with mechanical tests of beech veneer of 1,5 mm thickness and parallely glued samples of bigger thicknesses. The result of computer simulation was on average 55% of the result of mechanical test and in no case it didn't exceed value of maximum load in mechanical test.

Keywords:finite element method, wood composites, bending strength, failure criteria

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