Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Experimental Study on Stiffness of Dougong in Chinese Ancient Buildings
As an important structural member in Chinese timber structure system, Dougong has an excellent capability in earthquake resistance. Through low cyclic loading experiment of single Dougong, two Dougongs and four Dougongs, the degrading rule of lateral stiffness of Dougong was studied. According to that, the hysteresis curve and skeleton curve of force –displacement were researched and the formula of resilience model and mechanical model were established. The experiment data show that slippage is the main deformation of Dougong. Energy dissipation due to frictional slippage is an important reason for the excellent seismic behavior of ancient wooden structure. The shape of hysteretic loops of Dougong assumes to be parallelogram. Plump area of hysteretic loop accounts for its excellent energy dissipation performance. The mechanic model of Dougong belongs to linear strengthen elastic-plastic model. Both the fitting equation of force-displacement and resilience model reflect stiffness changes of Dougong. These basic theories provide a theoretical basis for the study on the seismic performance, repair and strengthening of ancient wooden structures.
Experimental Study on Stiffness of Dougong in Chinese Ancient Buildings
As an important structural member in Chinese timber structure system, Dougong has an excellent capability in earthquake resistance. Through low cyclic loading experiment of single Dougong, two Dougongs and four Dougongs, the degrading rule of lateral stiffness of Dougong was studied. According to that, the hysteresis curve and skeleton curve of force –displacement were researched and the formula of resilience model and mechanical model were established. The experiment data show that slippage is the main deformation of Dougong. Energy dissipation due to frictional slippage is an important reason for the excellent seismic behavior of ancient wooden structure. The shape of hysteretic loops of Dougong assumes to be parallelogram. Plump area of hysteretic loop accounts for its excellent energy dissipation performance. The mechanic model of Dougong belongs to linear strengthen elastic-plastic model. Both the fitting equation of force-displacement and resilience model reflect stiffness changes of Dougong. These basic theories provide a theoretical basis for the study on the seismic performance, repair and strengthening of ancient wooden structures.
Experimental Study on Stiffness of Dougong in Chinese Ancient Buildings
Advanced Materials Research ; 368-373 ; 819-822
24.10.2011
4 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Experimental Study on Stiffness of Dougong in Chinese Ancient Buildings
British Library Conference Proceedings | 2012
|The Experimental Study on Stiffness of Dougong in Chinese Historic Buildings
British Library Conference Proceedings | 2009
|Ancient Chinese architecture: Buddhist buildings
TIBKAT | 2000
|Ancient Chinese architecture: Islamic buildings
TIBKAT | 2003
|Ancient Chinese architecture: Taoist buildings
TIBKAT | 2001
|