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Title:Trajnostni vidiki optimizacije postopka sintranja keramičnih materialov
Authors:ID Bajda, Matevž (Author)
ID Maletič, Matjaž (Mentor) More about this mentor... New window
Files:.pdf MAG_Bajda_Matevz_2025.pdf (1,13 MB)
MD5: 7D723F4A9A7595CBD21F21CBD72A308D
 
Language:Slovenian
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FOV - Faculty of Organizational Sciences in Kranj
Abstract:Sodobna industrija keramike se sooča z naraščajočimi zahtevami po trajnostni proizvodnji, pri čemer so v ospredju energetska učinkovitost, optimizacija surovin, recikliranje odpadnih materialov in zmanjšanje emisij toplogrednih plinov. Tradicionalni postopki sintranja, kot sta konvencionalno sintranje in vroče stiskalno sintranje, so pogosto energetsko intenzivni in povzročajo znatne emisije CO₂, kar povečuje okoljski odtis proizvodnje. Napredne metode, kot sta Spark Plasma Sintering (SPS) in Pulse Laser Sintering (PLS), omogočajo krajše čase sintranja, nižje temperature in natančen nadzor mikrostrukture materiala. Te tehnologije izboljšujejo energetsko in materialno učinkovitost ter omogočajo vključevanje obnovljivih virov energije, s čimer se dodatno zmanjšuje okoljski vpliv proizvodnje. Cilj magistrskega dela je raziskati možnosti trajnostnega razvoja procesa sintranja keramike z vidika energetske učinkovitosti, materialne učinkovitosti, recikliranja odpadnih materialov in zmanjšanja emisij toplogrednih plinov. Posebna pozornost je namenjena primerjavi različnih tehnologij sintranja, in sicer konvencionalnega sintranja, sintranja SPS, sintranja PLS in vročega stiskalnega sintranja, ter analizi njihovega okoljskega vpliva, učinkovitosti in potenciala za trajnostno proizvodnjo. Delo bo predstavilo tudi strategije za optimizacijo procesov, vključevanje recikliranih materialov in uporabo obnovljivih virov energije kot ključnih elementov trajnostnega sintranja keramike.
Keywords:sintranje, energijska učinkovitost, PLS, SPS
Place of publishing:Maribor
Year of publishing:2025
PID:20.500.12556/DKUM-96388 New window
COBISS.SI-ID:269877251 New window
Publication date in DKUM:27.02.2026
Views:203
Downloads:24
Metadata:XML DC-XML DC-RDF
Categories:FOV
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Licences

License:CC BY-NC-SA 4.0, Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International
Link:http://creativecommons.org/licenses/by-nc-sa/4.0/
Description:A Creative Commons license that bans commercial use and requires the user to release any modified works under this license.
Licensing start date:23.12.2025

Secondary language

Language:English
Title:Sustainable aspects of optimizing the sintering process of ceramic materials
Abstract:The modern ceramics industry is faced with increasing demands for sustainable production, focusing on energy efficiency, material optimization, waste recycling, and the reduction of greenhouse gas emissions. Conventional sintering processes such as conventional sintering and hot pressing, are often energy-intensive and cause significant CO₂ emissions, which increases the environmental footprint of production. Advanced processes such as Spark Plasma Sintering (SPS) and Pulsed Laser Sintering (PLS), enable shorter sintering times, lower temperatures, and precise control of the material microstructure. These methods improve both energy and material efficiency while enabling the integration of renewable energy sources, further reducing the environmental impact of production. The aim of this study is to investigate the possibilities for sustainable development opportunities in ceramic sintering processes, focussing on energy efficiency, material efficiency, waste recycling, and the reduction of greenhouse gas emissions. Particular attention will be paid to comparing different sintering technologies – conventional, SPS, PLS, and hot pressing – in terms of their environmental impact, efficiency, and potential for sustainable production. The study also presents strategies for process optimization, the inclusion of recycled materials, and the use of renewable energy as key elements of sustainable ceramic sintering.
Keywords:sintering, energy efficiency, PLS (Pulse Laser Sintering), SPS (Spark Plasma Sintering).


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