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Issue 13 (3) 2014 pp. 17–25
Marek Urbański, Andrzej Łapko
EXPERIMENTAL AND THEORETICAL ANALYSIS OF STIFFNESS OF RC BEAMS WITH BASALT BARS
Keywords: BFRP, cross-sectional stiffness, concrete, basalt bars, deflection
Abstract: This paper presents a comparative analysis of experimental and theoretical deflections of simply supported beams reinforced with BFRP rebar (Basalt Fiber Reinforced Polymers). The tested BFRC model beams have been made of concrete class C30/37 and of bottom flexural basalt bars 8 mm in diameter. The reference RC beams with bottom traditional steel reinforcement have been made of the same diameter additionally. During the investigation there were registered beam deflections, concrete width cracks and strength capacity of BFRP reinforced beams diameter with the characteristic identified in strength tests in tension. It has been shown that much lesser cross-sectional stiffness of basalt BFRP bars produces higher deflections and crack widths compared to the beams reinforced with steel bars of the same cross-section.
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MLA | Urbański, Marek, and Andrzej Łapko. "EXPERIMENTAL AND THEORETICAL ANALYSIS OF STIFFNESS OF RC BEAMS WITH BASALT BARS." Acta Sci.Pol. Architectura 13.3 (2014): 17–25. |
APA | Urbański M. and Łapko A. (2014). EXPERIMENTAL AND THEORETICAL ANALYSIS OF STIFFNESS OF RC BEAMS WITH BASALT BARS. Acta Sci.Pol. Architectura, 13 (3), 17–25 |
ISO 690 | Urbański, Marek, Łapko, Andrzej. EXPERIMENTAL AND THEORETICAL ANALYSIS OF STIFFNESS OF RC BEAMS WITH BASALT BARS. Acta Sci.Pol. Architectura, 2014, 13.3: 17–25. |
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