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Textile Reinforced Cement Composites: New Insights in Structural and Material Engineering
This Special Issue presents the latest advances in the field of Textile-Reinforced Cement Composites, including Textile-Reinforced Concrete (TRC), Textile-Reinforced Mortar (TRM), Fabric-Reinforced Cementitious Matrix (FRCM), etc. These composite materials distinguish themselves from other fibre-reinforced concrete materials by their strain-hardening behaviour under tensile loading. This Special Issue is composed of 14 papers covering new insights in structural and material engineering. The papers include investigations on the level of the fibre reinforcement system as well as on the level of the composites, investigating their impact and fatigue behaviour, durability and fire behaviour. Both the strengthening of existing structures and the development of new structural systems such as lightweight sandwich systems are presented, and analysis and design methods are discussed. This Special Issue demonstrates the broadness and intensity of the ongoing advancements in the field of Textile-Reinforced Cement composites and the importance of several future research directions.
Textile Reinforced Cement Composites: New Insights in Structural and Material Engineering
This Special Issue presents the latest advances in the field of Textile-Reinforced Cement Composites, including Textile-Reinforced Concrete (TRC), Textile-Reinforced Mortar (TRM), Fabric-Reinforced Cementitious Matrix (FRCM), etc. These composite materials distinguish themselves from other fibre-reinforced concrete materials by their strain-hardening behaviour under tensile loading. This Special Issue is composed of 14 papers covering new insights in structural and material engineering. The papers include investigations on the level of the fibre reinforcement system as well as on the level of the composites, investigating their impact and fatigue behaviour, durability and fire behaviour. Both the strengthening of existing structures and the development of new structural systems such as lightweight sandwich systems are presented, and analysis and design methods are discussed. This Special Issue demonstrates the broadness and intensity of the ongoing advancements in the field of Textile-Reinforced Cement composites and the importance of several future research directions.
Textile Reinforced Cement Composites: New Insights in Structural and Material Engineering
Tysmans, Tine (author) / Wastiels, Jan (author)
2021-02-12
Miscellaneous
Electronic Resource
English
TA1-2040 , T1-995 , practical application , fabric reinforced cementitious mortar , tensile strength , carbon concrete composite , TRC , cement composites , model calibration , micro-fiber , textile reinforced cementitious composites (TRC) , alkaline environment , test setup , fatigue , textile-reinforced mortar , foam concrete (FC) , FRCM , fire , stochastic cracking model , model , retrofitting , toughness , bending tests , normal weight/lightweight aggregates , layered finite elements , carbon-reinforced concrete , fiber , tension , ACK model , impact loading , sandwich elements , durability , textile , creep , fiber-reinforced concrete , digital image correlation (DIC) , moisture , size effect , textile reinforcement , bending , CRC , elevated temperatures , mixture rules , fibre , carbon reinforced concrete , cathodic corrosion protection , glass fabric , strengthening , design provisions , high performance concrete
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