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

Rambaldi, E., Fazio, S., Prete, F., Bignozzi, M. (2016). Innovative ceramic tile mixes: 100% green. CFI-CERAMIC FORUM INTERNATIONAL, 93(6-7), 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
Rambaldi, E., Fazio, S., Prete, F., Bignozzi, M. (2016). Innovative ceramic tile mixes: 100% green. CFI-CERAMIC FORUM INTERNATIONAL, 93(6-7), 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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