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Sinteza in zgoščevanje W-tipa heksaferitov
ID Boštic, Doroteja (Author), ID Skalar, Tina (Mentor) More about this mentor... This link opens in a new window

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Abstract
Trajni magneti (TM) so ključni sestavni deli zelenega prehoda. Imajo osrednjo vlogo pri obnovljivi in trajnostni energiji ter mobilnosti. Najbolj zmogljivi TM temeljijo na elementih redkih zemelj (REE), medtem ko so manj zmogljivi TM feriti. Vendar pa REE zaradi tveganja pri dobavi in nestanovitnosti cen ter tudi njihovega škodljivega vpliva na okolje predstavljajo določeno stopnjo tveganja in z njo povezano iskanje alternativ. V tem kontekstu so feriti ena najpogosteje uporabljenih magnetnih materialov uporabljenih za trajne magnete, predvsem zaradi nizkih stroškov, dobre razpoložljivosti in uporabe v številnih aplikacijah. Cilj diplomske naloge je optimizacija sinteze W-tipa heksaferitov (SrZn$_2$Fe$_{16}$O$_{27}$) ter njihovo zgoščevanje. SrZn$_2$Fe$_{16}$O$_{27}$ smo sintetizirali z metodo sol-gel, ki ji je sledila kalcinacija pri različnih temperaturah in zadrževalnih časih. Najobetavnejše prahove smo zgoščevali z metodo sintranja s pulzirajočim električnim tokom brez dovedenega tlaka (p-SPS) in konvencionalno. Sintetiziranim in kalciniranim prahovom ter peletom po zgoščevanju smo določili fazno sestavo, analizirali mikrostrukturo ter magnetne lastnosti.

Language:Slovenian
Keywords:W-tip heksaferiti, trajni magneti, sinteza, sintranje
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Technology
Year:2025
PID:20.500.12556/RUL-172595 This link opens in a new window
COBISS.SI-ID:255400195 This link opens in a new window
Publication date in RUL:09.09.2025
Views:546
Downloads:145
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Secondary language

Language:English
Title:Synthesis and densification of W-type hexaferrites
Abstract:
Permanent magnets (TM) are key components of the green transition. They play a central role in renewable and sustainable energy and mobility. The highest performing TMs are based on rare earth elements (REEs), while the lower performing TMs are ferritic. However, due to supply risk and price volatility, as well as their harmful impact on the environment, REEs represent a certain level of risk and drive the search for alternatives. In this context, ferrites are one of the most commonly used magnetic materials for permanent magnets, primarily due to their low cost, good availability, and wide range of applications. This thesis aims to optimize the synthesis of W-type hexaferrites (SrZn$_2$Fe$_{16}$O$_{27}$), and their densification. SrZn$_2$Fe$_{16}$O$_{27}$ was synthesized by the sol-gel method, followed by calcination at various temperatures and durations. We densified powders with the best properties using the pressureless spark plasma sintering (p-SPS) and conventional sintering method. We determined the phase composition of the synthesized and calcined powders and pellets after densification, analysed the microstructure and magnetic properties.

Keywords:W-type hexaferrites, permanent magnets, synthesis, sintering

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