Finland has typically been considered a country with very durable granitic aggregate that is used in a wide range of construction applications. In general, the chemical reaction between Finnish aggregates and their surrounding environment is usually quite low. In this regard, the risk of Alkali Aggregate Reactions (AAR), where the alkalinity of concrete harmfully reacts with certain aggregates to cause expansion and cracking, has been considered negligible in Finland. However, when investigating reinforced concrete infrastructure in Finland for other types of deterioration attack, such as chloride ingress and frost-salt exposure, AAR has been found. AAR deterioration is limited to certain rock types. The geology of Finnish bedrock and soil ...
The alkali–aggregate reaction (AAR) is an expansion reaction of the aggregate in concrete caused by ...
AbstractThe alkali–aggregate reaction (AAR) is an expansion reaction of the aggregate in concrete ca...
In concrete affected by alkali–silica reaction (ASR), aggregates react in the high pH environment an...
Finland has typically been considered a country with very durable granitic aggregate that is used in...
Alkali-aggregate reaction (ASR) in concrete is one of the least dealt with concrete degradation mech...
The history of alkali-aggregate reactions and the geology are quite different Nordic Europe, which i...
In Central Europe and Scandinavia, alkali-aggregate reaction (AAR) typically occurs in massive concr...
In Central Europe and Scandinavia, alkali-aggregate reaction (AAR) typically occurs in massive concr...
The adverse effects from reactions of reactive aggregates in concrete dams are well known worldwide....
Alkali-aggregate reaction (AAR) is a prominent degradation mechanism of concrete structures, which r...
The adverse effects from reactions of reactive aggregates in concrete dams are well known worldwide....
The article analyses the reactivity level of aggregates from Lithuanian quarries and their effect on...
Alkali-aggregate reaction (AAR) can cause damage to concrete structures, which can vary from serious...
The article analyses the reactivity level of aggregates from Lithuanian quarries and their effect on...
A study examining damaging alkali-aggregate reaction (AAR) in concretes containing recycled aggregat...
The alkali–aggregate reaction (AAR) is an expansion reaction of the aggregate in concrete caused by ...
AbstractThe alkali–aggregate reaction (AAR) is an expansion reaction of the aggregate in concrete ca...
In concrete affected by alkali–silica reaction (ASR), aggregates react in the high pH environment an...
Finland has typically been considered a country with very durable granitic aggregate that is used in...
Alkali-aggregate reaction (ASR) in concrete is one of the least dealt with concrete degradation mech...
The history of alkali-aggregate reactions and the geology are quite different Nordic Europe, which i...
In Central Europe and Scandinavia, alkali-aggregate reaction (AAR) typically occurs in massive concr...
In Central Europe and Scandinavia, alkali-aggregate reaction (AAR) typically occurs in massive concr...
The adverse effects from reactions of reactive aggregates in concrete dams are well known worldwide....
Alkali-aggregate reaction (AAR) is a prominent degradation mechanism of concrete structures, which r...
The adverse effects from reactions of reactive aggregates in concrete dams are well known worldwide....
The article analyses the reactivity level of aggregates from Lithuanian quarries and their effect on...
Alkali-aggregate reaction (AAR) can cause damage to concrete structures, which can vary from serious...
The article analyses the reactivity level of aggregates from Lithuanian quarries and their effect on...
A study examining damaging alkali-aggregate reaction (AAR) in concretes containing recycled aggregat...
The alkali–aggregate reaction (AAR) is an expansion reaction of the aggregate in concrete caused by ...
AbstractThe alkali–aggregate reaction (AAR) is an expansion reaction of the aggregate in concrete ca...
In concrete affected by alkali–silica reaction (ASR), aggregates react in the high pH environment an...