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A new concept for design of fibered high strength reinforced concrete elements using ultimate limit state method

机译:极限极限状态法设计纤维高强度钢筋混凝土构件的新概念

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摘要

Existing methods for design of reinforced concrete (RC) bending elements in the ultimate limit state are based on calculating the compressed zone depth of the section. At the same time, in isotropic materials the neutral axis of the bending section crosses its center of gravity (CG). It was proved that if a neutral axis of bending RC element crosses the section's CG, the total reinforcement section (A_s +(A_s)~') is minimal. Therefore the compressed zone depth should be selected so that under the design load the neutral axis should pass through the section's CG. In this case the compressed zone depth that is unknown in existing design methods becomes a known value. This concept enables to select other parameters as unknowns (bending element concrete class, section height, etc.). It is especially important for design of modern high strength concrete (HSC) bending elements, for which the concrete class can be calculated, but not selected. It is demonstrated that applying the proposed concept enables to assume that the neutral axis location is constant for all stages of stress - strain state in bending. As HSC is rather brittle, stresses diagram in the compressed section zone has a form close to triangular. However, adding steel fibers allows improving the elastic-plastic properties of HSC. In this case a rectangular stresses diagram can be used, as for normal strength concrete. Consequently, the proposed concept yields more economical solutions and allows more effective using the HSC properties.
机译:设计极限极限状态下的钢筋混凝土(RC)弯曲元件的现有方法基于计算截面的压缩区域深度。同时,在各向同性材料中,弯曲部分的中性轴与重心(CG)相交。事实证明,如果弯曲RC元件的中性轴穿过截面的CG,则总钢筋截面(A_s +(A_s)〜')最小。因此,应选择压缩区域的深度,以使中性轴在设计载荷下应通过截面的CG。在这种情况下,现有设计方法中未知的压缩区深度变为已知值。通过此概念,可以选择其他参数作为未知参数(弯曲元素混凝土类别,截面高度等)。这对于设计可计算但不能选择的混凝土类别的现代高强度混凝土(HSC)弯曲元件特别重要。证明了应用所提出的概念能够假设中性轴位置对于弯曲的应力-应变状态的所有阶段都是恒定的。由于HSC相当脆,因此压缩截面区域中的应力图具有接近三角形的形式。但是,添加钢纤维可以改善HSC的弹塑性。在这种情况下,对于普通强度混凝土,可以使用矩形应力图。因此,提出的概念产生了更经济的解决方案,并允许更有效地使用HSC特性。

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