magistrsko delo magistrskega študijskega programa II. stopnje Strojništvo
Gašper Krivic (Author), Janko Slavič (Mentor)

Abstract

V zadnjem času se za 3D tisk uveljavljajo alternativni kompozitni materiali, katerih lastnosti so še precej neraziskane. V nalogi je predstavljena brezkontaktna eksperimentalna metoda za sočasno določevanje modula elastičnosti in temperaturnega razteznostnega koeficienta (TRK) 3D natisnjenih struktur. Modul elastičnosti določimo iz lastne frekvence strukture, medtem ko TRK določimo iz meritev temperature s termokamero in meritev deformacij z metodo korelacije digitalnih slik. Uporaba metode je prikazana za identifikacijo ortotropnih materialnih lastnosti PLA in kompozitnega materiala iz PLA z dodatkom lesnih delcev.

Keywords

magistrske naloge;elektrotermični mehki aktuatorji;3D tisk;ortotropne materialne lastnosti;modul elastičnosti;temperaturni razteznostni koeficient;

Data

Language: Slovenian
Year of publishing:
Typology: 2.09 - Master's Thesis
Organization: UL FS - Faculty of Mechanical Engineering
Publisher: [G. Krivic]
UDC: 539.3:539.52:004.9(043.2)
COBISS: 119299587 Link will open in a new window
Views: 24
Downloads: 13
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Other data

Secondary language: English
Secondary title: An experimental method for simultaneous non-contact identification of elastic modulus and coefficient of thermal expansion in 3D printed materials
Secondary abstract: Recently, alternative composite materials have been promoted for 3D printing, but their properties are still largely unexplored. This thesis presents a non-contact experimental method for the simultaneous determination of elastic modulus and coefficient of thermal expansion (CTE) in 3D printed materials. The elastic modulus is obtained from the natural frequency of the structure, while the CTE is obtained from temperature measurements with a thermal camera and strain measurements with the digital image correlation method. The application of the method is demonstrated for the identification of the orthotropic material properties of PLA and a composite material made of PLA with the addition of wood particles.
Secondary keywords: master thesis;soft electrothermal actuators;3D printing;orthotropic material properties;elastic modulus;coefficient of thermal expansion;
Type (COBISS): Master's thesis/paper
Study programme: 0
Thesis comment: Univ. Ljubljana, Fak. za strojništvo
Pages: XXII, 56 str.
ID: 16279620
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