Abstract from the Young Researchers’ Forum, XIII AIMAT Congress and SIB Congress - Ischia, Italy, July 2016. Geopolymers are a new class of material synthetized through the alkali activation of a low-calcium aluminosilicate precursor. Several studies highlighted their remarkable thermal stability. However, the majority of the research focus on metakaolin-based geopolymers and, in most of the cases, a thermal curing is performed. This study, instead, aims to investigate the thermal properties of fly ash-based geopolymers containing refractory powder, cured both at room and high (70°C) temperature.

Carabba, L., Ridolfi, G., Manzi, S., Bignozzi, M. (2016). Thermal properties of fly ash based geopolymers containing refractory powder. JOURNAL OF APPLIED BIOMATERIALS & FUNCTIONAL MATERIALS, 14(3), e319-e319.

Thermal properties of fly ash based geopolymers containing refractory powder

CARABBA, LORENZA;MANZI, STEFANIA;BIGNOZZI, MARIA
2016

Abstract

Abstract from the Young Researchers’ Forum, XIII AIMAT Congress and SIB Congress - Ischia, Italy, July 2016. Geopolymers are a new class of material synthetized through the alkali activation of a low-calcium aluminosilicate precursor. Several studies highlighted their remarkable thermal stability. However, the majority of the research focus on metakaolin-based geopolymers and, in most of the cases, a thermal curing is performed. This study, instead, aims to investigate the thermal properties of fly ash-based geopolymers containing refractory powder, cured both at room and high (70°C) temperature.
2016
Carabba, L., Ridolfi, G., Manzi, S., Bignozzi, M. (2016). Thermal properties of fly ash based geopolymers containing refractory powder. JOURNAL OF APPLIED BIOMATERIALS & FUNCTIONAL MATERIALS, 14(3), e319-e319.
Carabba, Lorenza; Ridolfi, G; Manzi, Stefania; Bignozzi, Maria
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/570839
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