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Influence of axial tension on the shear strength of RC beams without stirrups
This contribution is addressing the investigation on the effect of axial tension on the shear strength of reinforced concrete beam elements without stirrups. The paper presents the results of a test program of 15 beams without stirrups that differed from each other mainly by the intensity of the axial tensile force N. During the tests, cracking was measured by Digital Image Correlation technique to identify the crack evolution mechanisms. After some consideration on the resisting mechanisms, the experimental results are compared with several code formulas to predict the shear strength VRc. Then an empirical formula is proposed for the variation of VRc between its two limits: the values for N = 0 and for VRc = 0 at the ultimate limit state of axial tension. This formula makes it possible to easily design for shear and tension.
Influence of axial tension on the shear strength of RC beams without stirrups
This contribution is addressing the investigation on the effect of axial tension on the shear strength of reinforced concrete beam elements without stirrups. The paper presents the results of a test program of 15 beams without stirrups that differed from each other mainly by the intensity of the axial tensile force N. During the tests, cracking was measured by Digital Image Correlation technique to identify the crack evolution mechanisms. After some consideration on the resisting mechanisms, the experimental results are compared with several code formulas to predict the shear strength VRc. Then an empirical formula is proposed for the variation of VRc between its two limits: the values for N = 0 and for VRc = 0 at the ultimate limit state of axial tension. This formula makes it possible to easily design for shear and tension.
Influence of axial tension on the shear strength of RC beams without stirrups
Pham, Duc Toan (Autor:in) / Fouré, Bernard (Autor:in) / Pinoteau, Nicolas (Autor:in) / Abouri, Salim (Autor:in) / Mège, Romain (Autor:in)
Structural Concrete ; 22 ; 1037-1053
01.04.2021
17 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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