During the thesis, the development of ceramic components was proposed in order to optimize their mechanical and adsorption properties. Thanks to the use of Additive Manufacturing techniques, it was possible to create TiO2-based ceramic filters with a complex geometry, while still maintaining an adequate level of porosity, necessary for the adsorption of harmful volatile substances. After a thermal treatment, the material's mechanical, physical, and chemical properties were tested and analyzed.
Durante la tesi è stato proposta la realizzazione di componenti ceramici al fine di ottimizzarne le proprietà meccaniche e di adsorbimento. Grazie all'utilizzo di tecniche di Additive manufacturing è stato possibile realizzare filtri ceramici a base di TiO2 con una geometria complessa, mantenendo comunque un adeguato livello di porosità, necessario per l'adsorbimento di sostanze volatili nocive. A seguito di un trattamento termico, le proprietà meccaniche , fisiche e chimiche del materiale sono state testate ed analizzate.
Additive Manufacturing of TiO2 based ceramic components for gas adsorption
CASAGRANDE, FILIPPO
2024/2025
Abstract
During the thesis, the development of ceramic components was proposed in order to optimize their mechanical and adsorption properties. Thanks to the use of Additive Manufacturing techniques, it was possible to create TiO2-based ceramic filters with a complex geometry, while still maintaining an adequate level of porosity, necessary for the adsorption of harmful volatile substances. After a thermal treatment, the material's mechanical, physical, and chemical properties were tested and analyzed.File | Dimensione | Formato | |
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https://hdl.handle.net/20.500.12608/84227