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Integracija micelija v oblikovanje interiernih elementov
ID Pertoci, Zarja (Author), ID Jenko, Marija (Mentor) More about this mentor... This link opens in a new window, ID Kržišnik, Davor (Comentor)

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Abstract
Diplomsko delo raziskuje uporabo micelijskega kompozita kot trajnostnega materiala za oblikovanje interiernih elementov. Raziskava je bila izvedena z micelijem v povezavi z jutinim substratom, pri čemer smo preučevali njegove materialne in oblikovalske značilnosti. Teoretični del obravnava osnovne značilnosti gliv in micelija, razvoj micelijskih biomaterialov, postopke njihove proizvodnje ter uporabi na področju arhitekture, oblikovanja in interierja. Obravnava tudi o potencialu samega materiala kot alternative tem, ki so že prisotni na trgu. Eksperimentalni del zajema izdelavo micelijskih kompozitov z uporabo glive smolene pološčenke (Ganoderma resinaceum) na jutinem substratu. Vzorci so bili izdelani v nadzorovanih laboratorijskih pogojih, nato pa smo bile preverili natezno trdnost in omočljivost površine. Rezultati so pokazali, da je micelij zmanjšal natezno trdnost materialov in znižal omočljivost površine. Na podlagi rezultatov je bil razvit izdelek. Glede na eksperimentalne vzorce so bili razviti koncepti modularnih interiernih elementov, pri katerih predstavlja sam proces rasti micelija pomemben del oblikovalskega procesa. Raziskava potrjuje, da so micelijski kompoziti zelo kakovostna alternativa, predvsem za uporabo pri nenosilnih interiernih elementih, hkrati pa ponujajo velik potencial za nadaljnje raziskave. Zaradi koristnih lastnosti micelija, kot so vodoodbojnost ter akustična in toplotna izolativnost, ima material veliko možnosti za uporabo v interierju. Končni izdelek so modularni elementi micelija na žični konstrukciji, ki smo jih v interier vključili kot senčnike, skozi katerih špranje prehaja veter in kot zunanji element stene.

Language:Slovenian
Keywords:micelij, micelijski kompoziti, biomateriali, trajnostno oblikovanje, interierno oblikovanje
Work type:Bachelor thesis/paper
Organization:NTF - Faculty of Natural Sciences and Engineering
Year:2026
PID:20.500.12556/RUL-187146 This link opens in a new window
Publication date in RUL:09.09.2026
Views:54
Downloads:16
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Secondary language

Language:English
Title:Integration of Mycelium into Design of Interior Elements
Abstract:
This thesis explores the use of mycelium composites as a sustainable material for designing interior elements. The research was conducted using mycelium combined with a jute substrate, and we investigated its material and design characteristics. The theoretical section discusses the basic characteristics of fungi and mycelium, the development of mycelium-based biomaterials, their production processes, and their applications in architecture, design, and interior design. It also addresses the potential of the material itself as an alternative to materials already on the market. The experimental part covers the production of mycelial composites using the fungus Ganoderma resinaceum on a jute substrate. Samples were produced under controlled laboratory conditions, after which their tensile strength and water resistance were tested. The results showed that the mycelium improved tensile strength and reduced water absorption. Based on these results, a product was developed. Based on the experimental samples, concepts for modular interior elements were developed, in which the mycelium growth process represents an important part of the design process. The research confirms that mycelium composites are a high-quality alternative, particularly for use in non-load-bearing interior elements, and offer great potential for further research. Due to the beneficial properties of mycelium, such as water resistance and acoustic and thermal insulation, the material has many potential applications in interior design. The final product consists of modular mycelium elements mounted on a wire frame, which we incorporated into the interior as sunshades that allow wind to pass through the slats and the exterior.

Keywords:mycelium, mycelial composites, biomaterials, sustainable design, interior design

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