in the present work, scrap packaging glass coming from urban separted collection (post consumer waste) and industrial ceramic waste (pre-consumer waste) were used as secondary raw materials to prepare protoypes of ceramic tiles 100% green. Opportunely balances mixes of wastes are able ti sinergically interact during the thermal cycle, giving rise to innovative materials able to sinter about 200 C lower than a traditional ceramic tile mix, maintain good performances in terms of flexural strength, Young's modulus and Weibull's modulus

Innovative ceramic tile mixes: 100% green / Rambaldi, E.; Fazio, S.; Prete, F.; Bignozzi, Maria. - In: CFI-CERAMIC FORUM INTERNATIONAL. - ISSN 0173-9913. - STAMPA. - 93:6-7(2016), pp. 57-60.

Innovative ceramic tile mixes: 100% green

BIGNOZZI, MARIA
2016

Abstract

in the present work, scrap packaging glass coming from urban separted collection (post consumer waste) and industrial ceramic waste (pre-consumer waste) were used as secondary raw materials to prepare protoypes of ceramic tiles 100% green. Opportunely balances mixes of wastes are able ti sinergically interact during the thermal cycle, giving rise to innovative materials able to sinter about 200 C lower than a traditional ceramic tile mix, maintain good performances in terms of flexural strength, Young's modulus and Weibull's modulus
2016
Innovative ceramic tile mixes: 100% green / Rambaldi, E.; Fazio, S.; Prete, F.; Bignozzi, Maria. - In: CFI-CERAMIC FORUM INTERNATIONAL. - ISSN 0173-9913. - STAMPA. - 93:6-7(2016), pp. 57-60.
Rambaldi, E.; Fazio, S.; Prete, F.; Bignozzi, Maria
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/598817
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