The present study is a contribution to the understanding of \u3b1-quartz reactivity towards the alkali-silica reaction (ASR), based on the use of X-ray powder diffraction (XRPD) line broadening. In particular the relationship between \u3b1-quartz structural disorder and its potential alkali reactivity towards ASR was investigated by combining traditional and advanced analytical techniques. Two aggregates were characterised by means of optical, physical and chemical analyses. Their potential alkali-reactivity was then tested by the ultra-accelerated mortar-bar test (RILEM AAR-2). Moreover a full profile analysis by XRPD was performed to extract the microstructural features (crystallite size and microstrain) of \u3b1-quartz in two aggregates,...
The paper reports on the initial stages of a study into the use of phase analysis using typical labo...
The alkali–silica reaction can shorten concrete life due to expansive pressure build-up caused by re...
The effects of reactive aggregate size and aggregate angularity on alkali-silica reaction (ASR) were...
Reliable assessment of the potential alkali reactivity of aggregate to develop deleterious alkali-si...
Defects in the crystalline structure of quartz facilitate the connection with the alkali hydroxides,...
Reliable assessment of the potential of quartz in aggregate to develop deleterious alkali-silica rea...
The alkali-silica reaction is one of the most damaging chemical reactions taking place in concrete, ...
This paper presents research on the influence of quartz deformation in aggregates for the developmen...
This paper presents research on the influence of quartz deformation in aggregates for the developmen...
Alkali silica reaction (ASR) is a harmful phenomenon occurring as a result of chemical interactions ...
The differences in the expansive mechanisms of both Alkali Silica (ASR) and Alkali Carbonate Reactiv...
The alkali-silica reaction (ASR) causes internal expansion that leads to severe concrete degradation...
Alkali-silica reaction (ASR) is one of the most important deterioration mechanisms in concrete leadi...
A first attempt to investigate samples affected by alkali-silica reaction (ASR) by synchrotron X-ray...
Les liens qui unissent la structure et les propriétés physiques, chimiques des matériaux sont très i...
The paper reports on the initial stages of a study into the use of phase analysis using typical labo...
The alkali–silica reaction can shorten concrete life due to expansive pressure build-up caused by re...
The effects of reactive aggregate size and aggregate angularity on alkali-silica reaction (ASR) were...
Reliable assessment of the potential alkali reactivity of aggregate to develop deleterious alkali-si...
Defects in the crystalline structure of quartz facilitate the connection with the alkali hydroxides,...
Reliable assessment of the potential of quartz in aggregate to develop deleterious alkali-silica rea...
The alkali-silica reaction is one of the most damaging chemical reactions taking place in concrete, ...
This paper presents research on the influence of quartz deformation in aggregates for the developmen...
This paper presents research on the influence of quartz deformation in aggregates for the developmen...
Alkali silica reaction (ASR) is a harmful phenomenon occurring as a result of chemical interactions ...
The differences in the expansive mechanisms of both Alkali Silica (ASR) and Alkali Carbonate Reactiv...
The alkali-silica reaction (ASR) causes internal expansion that leads to severe concrete degradation...
Alkali-silica reaction (ASR) is one of the most important deterioration mechanisms in concrete leadi...
A first attempt to investigate samples affected by alkali-silica reaction (ASR) by synchrotron X-ray...
Les liens qui unissent la structure et les propriétés physiques, chimiques des matériaux sont très i...
The paper reports on the initial stages of a study into the use of phase analysis using typical labo...
The alkali–silica reaction can shorten concrete life due to expansive pressure build-up caused by re...
The effects of reactive aggregate size and aggregate angularity on alkali-silica reaction (ASR) were...