TY - GEN
T1 - Influence of the parameter of ductility of reinforcing steel on the behaviour of a narrow three-span reinforced concrete slab based on experimental investigations
AU - Wieczorek, Miroslaw
N1 - Publisher Copyright:
© (2016) Trans Tech Publications, Switzerland
PY - 2016
Y1 - 2016
N2 - In the time of the exploitation of building structures frequently situations do occur, in which due to failures they are exposed to much higher loads than has been originally predicted. In a state of emergency due to overloading of the structure, significant reserves of load capacity may be appear in the case of a self-acting tension member work. The aim of the paper was to demonstrate the influence of reinforced steel parameters and its quantity on the mechanism of destruction of four three-span models of reinforced concrete strips with the dimensions 7140×500×190 mm.
AB - In the time of the exploitation of building structures frequently situations do occur, in which due to failures they are exposed to much higher loads than has been originally predicted. In a state of emergency due to overloading of the structure, significant reserves of load capacity may be appear in the case of a self-acting tension member work. The aim of the paper was to demonstrate the influence of reinforced steel parameters and its quantity on the mechanism of destruction of four three-span models of reinforced concrete strips with the dimensions 7140×500×190 mm.
KW - Concrete structures
KW - Progressive collapse
KW - Reinforced concrete structures
KW - Slab structures
KW - Steel with high ductility
KW - Steel with middle ductility
UR - https://www.scopus.com/pages/publications/84954288038
U2 - 10.4028/www.scientific.net/SSP.240.218
DO - 10.4028/www.scientific.net/SSP.240.218
M3 - Conference contribution
AN - SCOPUS:84954288038
SN - 9783038355687
T3 - Solid State Phenomena
SP - 218
EP - 224
BT - 26th Symposium on Experimental Mechanics of Solids
A2 - Pyrzanowski, Pawel
A2 - Gadomski, Jacek
PB - Trans Tech Publications Ltd.
T2 - 26th Symposium on Experimental Mechanics of Solids, 2014
Y2 - 22 October 2014 through 25 October 2014
ER -