Shear resistance of reinforced concrete frames with masonry infill walls by structural components (CROSBI ID 651145)
Prilog sa skupa u zborniku | sažetak izlaganja sa skupa | međunarodna recenzija
Podaci o odgovornosti
Penava, Davorin
engleski
Shear resistance of reinforced concrete frames with masonry infill walls by structural components
In design, the contribution of the masonry infill wall to shear resistance of the infilled frame structural system is often neglected. However, past research shows that this can lead to inaccurate predictions of system`s behaviour. This paper investigates the influence of the opening type, size and position on the shear resistance and deformation capacity of the individual components (e.g. infill and frame) in masonry infilled reinforced concrete (RC) frame structures. A computational model based on the non-linear finite element method of analysis has been developed. The computational model has been validated against a series of experimental tests carried out in the laboratory. An extensive parametric study carried out and the influence of different in size and location window and door opening on shear resistance of infilled frame investigated. As a measure of the influence of the infill component, a shear resistance ratio for the frame was introduced. The normalized shear resistance capacity ratio represented the ratio of the shear force taken by the frame component (infilled frame case) divided by the shear force induced by the RC bare frame at observed drift ratios (damage grades). From the results analysis it was found that the type of opening influences the design characteristics of the infilled RC frame. In particular. the shear resistance at columns of the infilled RC frame with window opening is lower than the shear resistance of the columns of the RC frame. On the other hand, the shear resistance at the columns of the infilled RC frame with door opening is higher by the shear resistance of the columns of the RC frame and in this case the contribution of the shear capacity of the frame is underestimated.
shear resistance; reinforced concrete frames; masonry infill walls; openings; structural components
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Podaci o prilogu
1-82.
2017.
objavljeno
Podaci o matičnoj publikaciji
Abrahamczyk, Lars
Weimar: Bauhaus-Universität Weimar
Podaci o skupu
predavanje
20.08.2017-01.09.2017
Weimar, Njemačka