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Ecomaterials design and ecomaterials technology of short - cut fiber reinforced cement composites
Fundamental schemes of ecodesign of short-cut fibre reinforced cement composites (FRC), using new advanced fibres under various environmental conditions are proposed and discussed. In this process, the performance of these materials with respect to their structural, durability, fire-proofing and resistance and also ecobalance behaviour are taken into account. Data base and expert system concerning this design are reported, focusing on the prediction/evaluation system of dynamic characteristics and recyclability. In addition, the dynamic behaviour of pitch type, general purpose class carbon short-cut fibre (Pitch-GPCF) reinforced cement composites (Pitch-CFRC) using ecocement and pulverized waste FRP powder as replacement for ordinary Portland cement, and recycled fine aggregates as replacement for river sand are reported.
Ecomaterials design and ecomaterials technology of short - cut fiber reinforced cement composites
Fundamental schemes of ecodesign of short-cut fibre reinforced cement composites (FRC), using new advanced fibres under various environmental conditions are proposed and discussed. In this process, the performance of these materials with respect to their structural, durability, fire-proofing and resistance and also ecobalance behaviour are taken into account. Data base and expert system concerning this design are reported, focusing on the prediction/evaluation system of dynamic characteristics and recyclability. In addition, the dynamic behaviour of pitch type, general purpose class carbon short-cut fibre (Pitch-GPCF) reinforced cement composites (Pitch-CFRC) using ecocement and pulverized waste FRP powder as replacement for ordinary Portland cement, and recycled fine aggregates as replacement for river sand are reported.
Ecomaterials design and ecomaterials technology of short - cut fiber reinforced cement composites
Fukushima, T. (author) / Kasai, T. (author) / Kimura, K. (author) / Shiire, T. (author) / Sone, T. (author) / Kurauchi, H. (author)
2000
13 Seiten, 8 Bilder, 3 Tabellen, 8 Quellen
Conference paper
English
Kurzfaser , Umwelttechnik , faserverstärkter Beton , faserverstärkter Zement , Dauerhaftigkeit , Feuerfestigkeit , Brandschutz , Baustoff-Recycling , Pech , Portlandzement , Ersatzstoff , Zuschlagstoff , Sand , Pulver , Aramidfaser , Vorhersage , Konstruktion , Verfahrenstechnik , wirtschaftliche Studie
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