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Development of earthquake-resistant, vibration control, and base isolation technology for building structures
This paper outlines recent developments concerning earthquake resistance, base isolation and vibration control of structures at the Building Construction Division of Nippon Steel. The energy absorption requirements of steels are introduced for buckle-restraining unbonded braces, steel plate shear panels and steel bar dampers. New directions in structural steels are presented, as new seismic design ideas that are appearing in the construction field. The Great Hanshin Earthquake of January 17, 1995 enhanced peoples interest in the safety of buildings. Against this background this research area will receive ever increasing attention. Steel engineers will have to work together with structural engineers to design earthquake-resistant buildings. A friction damper made of advanced ceramic material and a tuned liquid damper (TLD) are also described.
Development of earthquake-resistant, vibration control, and base isolation technology for building structures
This paper outlines recent developments concerning earthquake resistance, base isolation and vibration control of structures at the Building Construction Division of Nippon Steel. The energy absorption requirements of steels are introduced for buckle-restraining unbonded braces, steel plate shear panels and steel bar dampers. New directions in structural steels are presented, as new seismic design ideas that are appearing in the construction field. The Great Hanshin Earthquake of January 17, 1995 enhanced peoples interest in the safety of buildings. Against this background this research area will receive ever increasing attention. Steel engineers will have to work together with structural engineers to design earthquake-resistant buildings. A friction damper made of advanced ceramic material and a tuned liquid damper (TLD) are also described.
Development of earthquake-resistant, vibration control, and base isolation technology for building structures
Entwicklung einer Technologie zur Errichtung von Bauwerken mit hoher Erdbebensicherheit, Schwingungsregelung und Gründungsisolation
Sugisawa, M. (Autor:in) / Nakamura, H. (Autor:in) / Ichikawa, Y. (Autor:in) / Hokari, M. (Autor:in) / Saeki, E. (Autor:in) / Hirabayashi, R. (Autor:in) / Ueki, M. (Autor:in)
Nippon Steel Technical Report ; 37-46
1995
10 Seiten, 32 Bilder, 5 Tabellen, 1 Quelle
Aufsatz (Zeitschrift)
Englisch
Stahlbau , Konstruktion , Bauelement , Stütze , Träger (Bauwesen) , Aussteifung , Steifigkeit , Knickung , Tragfähigkeit , Sicherheitsfaktor , Dämpfung , mechanische Hysterese , Verbundträger , Plastizität , Baustahl , hochfester Stahl , Bruchzähigkeit , Streckgrenze , erdbebensicheres Bauwerk , Strebe
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