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Two-layer pre-stressed beams consisting of normal and steel fibered high strength concrete

机译:普通和钢纤维高强度混凝土组成的两层预应力梁

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The paper is focused on analysis of two-layer bending pre-stressed beams consisting of steel fibered (SF) high strength concrete (HSC) in compressed zone and normal strength concrete (NSC) in tensile zone. Investigation of such beams is important for RC structural design, because calculation of fibers volume ratio is significant, like that of reinforcing steel bars for usual RC elements. In other words, such elements are made of high performance concrete (HPC). There is a growing tendency that more effective HPC structures replace NSC ones, first of all in pre-stressed elements. Definition of the HSC class lower limit, to be used in the compressed zone of a two-layer pre-stressed beam, is given. It was demonstrated that SF have little effect on the beam elastic deflections. However, the ultimate deflections of the section increase because additional potential for plastic energy dissipation (PED) in the bending element. NSC, used in the section tensile zone, contributes additionally about 20% to the section's PED potential compared to one-layer HSC beams. In order to guarantee sufficient section's ductility of the pre-stressed beams, required to withstand dynamic loadings, a minimum SF ratio is proposed to be considered. The fibers take the tensile stresses, yielding cracks in the concrete matrix. A design method for calculation of the SF volume ratio, as a function of required ductility, is proposed. A numerical example, illustrating the efficiency of this method is presented.
机译:本文着重分析两层弯曲的预应力梁,该梁由压缩区的钢纤维(SF)高强度混凝土(HSC)和拉伸区的标准强度混凝土(NSC)组成。对此类梁的研究对于RC结构设计非常重要,因为纤维体积比的计算非常重要,就像通常的RC元件的钢筋计算一样。换句话说,这种元件由高性能混凝土(HPC)制成。越来越多的趋势是,更有效的HPC结构可以替代NSC,首先是在预应力构件中。给出了在两层预应力梁的压缩区域中使用的HSC类下限的定义。结果表明,SF对梁的弹性挠度影响很小。但是,该截面的最终挠度会增加,因为在弯曲元件中存在额外的塑性能量消散(PED)潜力。与单层HSC光束相比,在截面拉伸区域中使用的NSC对截面的PED电位贡献了约20%。为了保证承受动态载荷所需的预应力梁有足够的截面延展性,建议考虑最小的SF比。纤维承受拉应力,在混凝土基体中产生裂缝。提出了一种根据所需延性计算SF体积比的设计方法。数值示例说明了该方法的有效性。

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