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AN INNOVATIVE APPROACH TO THE DESIGN OF PILE SUPPORTED SFRC SLABS

机译:桩支撑SFRC板设计的创新方法

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摘要

Pile supported concrete slabs, have until recently, and in most cases, been made as heavily reinforced concrete slabs with increased shear and flexural capacity in a square around the pile. The shear reinforcement has primarily been stirrups or additional flexural reinforcement (bars or welded fabrics). The normal ways of calculating the need of reinforcement are to divide the slab into strips and obtain moment equilibration or to use yield line theory. Another way of constructing these suspended pile supported slabs is to exchange part of the main reinforcement with steel fibres. The latter reinforcement solution has now been used for floors in several major building projects totalling hundred thousands of square meters. To add extra economical advantage, the system may be designed as solely a steel fibre reinforced concrete (SFRC) slab. In fact, it is possible to design such floors using ordinary yield line theory. The SFRC slab will result in an attractive floor solution when the pile distance is moderate. A thicker floor is needed in cases where the loads or the pile distance increase. One way of reducing the slab thickness is to consider the arch action, a built-in resistance of the floor to carry loads through horizontal restraints.
机译:直到最近,并且在大多数情况下,桩支撑混凝土板一直被制成为高强度钢筋混凝土板,并在桩周围的正方形中增加了抗剪和抗弯能力。抗剪钢筋主要是马stir或其他抗弯钢筋(钢筋或焊接织物)。计算钢筋需求的通常方法是将板分成条带并获得弯矩平衡或使用屈服线理论。构造这些悬挂桩支撑平板的另一种方法是用钢纤维替换部分主筋。后者的加固解决方案现已用于几项总建筑面积达数十万平方米的大型建筑项目的地板中。为了增加额外的经济优势,可以将系统设计为仅钢纤维增强的混凝土(SFRC)平板。实际上,可以使用普通的屈服线理论来设计这种地板。当桩距适中时,SFRC平板将产生有吸引力的地板解决方案。如果载荷或桩距增加,则需要更厚的地板。减小楼板厚度的一种方法是考虑拱形作用,即地板的内置阻力,可通过水平约束物来承载载荷。

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