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The recent results of the project "lightweight construction with concrete - innovative adhesive-jointing technique for filigree high performance concrete facade"
At Technical University of Kaiserslautern, within the framework of the research initiation 'Future Construction', the project 'Lightweight Construction with Concrete - innovative adhesive-jointing Technique for filigree high performance Concrete Facade' is being developed. The project composes of analytical and experimental procedures. The aim of the project is to develop a lightweight facade system, to develop an adhesive-jointing technique, to ensure the serviceability of facade system and to create a design method. The last progress of this project were discussed in this paper, including load definition, results of structure analysis, results of adhesive tensile test and results of wind load tests.
The recent results of the project "lightweight construction with concrete - innovative adhesive-jointing technique for filigree high performance concrete facade"
At Technical University of Kaiserslautern, within the framework of the research initiation 'Future Construction', the project 'Lightweight Construction with Concrete - innovative adhesive-jointing Technique for filigree high performance Concrete Facade' is being developed. The project composes of analytical and experimental procedures. The aim of the project is to develop a lightweight facade system, to develop an adhesive-jointing technique, to ensure the serviceability of facade system and to create a design method. The last progress of this project were discussed in this paper, including load definition, results of structure analysis, results of adhesive tensile test and results of wind load tests.
The recent results of the project "lightweight construction with concrete - innovative adhesive-jointing technique for filigree high performance concrete facade"
Neuere Ergebnisse zum Projekt 'Leichtbauweise mit Beton - innovative adhäsive Fügetechnik für filigrane Fassaden aus Hochleistungsbeton'
Chopradub, Ake (Autor:in) / Kohl, Vitalijus (Autor:in) / Scnell, Jürgen (Autor:in)
2008
8 Seiten, 4 Bilder, 4 Quellen
Aufsatz (Konferenz)
Englisch
Leichtbauweise , Verbindungselement , Verbindungsstelle , Verbindung von Werkstoffen , Hochleistungsbeton , Fassadenbau , Klebebondieren , glasfaserverstärkter Kunststoff , Anker (Bauwesen) , Vinylester , Elastizitätsmodul , Zugprüfung , Zugfestigkeitsprüfung , Zugfestigkeit , Haftzugfestigkeit , Windbelastung
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