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Karakterizacija odziva magnetoaktivnih lamel na homogeno zunanje magnetno polje
ID Straus, Izidor (Author), ID Drevenšek Olenik, Irena (Mentor) More about this mentor... This link opens in a new window, ID Kokot, Gašper (Co-mentor)

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Abstract
V tem zaključnem delu podrobno obravnavamo magnetoaktivne elastomere (MAE), ki so strukturirani z lamelami na površini. Opišemo osnovno karakterizacijo relaksacijskih časov in histereznega odziva struktur v homogenem magnetnem polju. Za analizo uporabimo direktno meritev sledenja vrhovom upogibajočih lamel in indirektno meritev njihove reflektivnosti, kot nadomestne opazljivke. Rezultate primerjamo s kontinuumsko teorijo upogibanja lamel, ki nam služi za vpogled v mehanizme premikanja struktur. Razložimo in demonstriramo, da so MAE lamele zaradi histereznega odziva v realnem času primerne za izdelavo transportnih površin za tekočine, aktivnih mikrofluidičnih vezij ter opišemo njihovo potencialno uporabnost v regulabilnih optičnih zaslonkah in uklonskih mrežicah. Zaključimo s predlogi za nadaljnje eksperimente z namenom uporabe v mikrofluidiki in mehki robotiki.

Language:Slovenian
Keywords:magnetoaktiven elastomer, MAE, mikrostrukturiranje, lamele, odklon, reflektivnost, histereza, kontinuumska teorija, transportna površina, mikrofluidika
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FMF - Faculty of Mathematics and Physics
Year:2023
PID:20.500.12556/RUL-150233 This link opens in a new window
COBISS.SI-ID:164276483 This link opens in a new window
Publication date in RUL:15.09.2023
Views:559
Downloads:40
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Secondary language

Language:English
Title:Characterization of response of magnetoactive lamellae to a homogeneous external magnetic field
Abstract:
In this master thesis, we explore magnetoactive elastomers (MAEs) that are structured with lamellae on the surface. We perform basic characterization of relaxation times and the hysteresis response of the structures in a homogeneous magnetic field. For analysis, we employ direct measurement of the peak tracking of the bending lamellae and indirect measurement of their reflectivity as a proxy observable. We compare the results with the continuum theory of lamellar bending, which provides insights into the mechanisms of structure movement. We explain and demonstrate that due to their real-time hysteresis response, MAE lamellae are suitable for the fabrication of transport surfaces for liquids or for active elements in microfluidic circuits. We also describe their potential applicability in adjustable apertures and diffraction gratings. We conclude with prospects for further experiments aimed at their utilization in microfluidics and soft robotics.

Keywords:magnetoactive elastomer, MAE, microstructuring, lamellae, deflection, reflectivity, hysteresis, continuum theory, transport surface, microfluidics

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