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Flexural and Shear Strength of Prestressed Precast Hollow-Core Slabs

机译:预应力空心空心板的抗弯和抗剪强度

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摘要

Prestressed, precast hollow-core slabs are used extensively for floor and roofing systems in precast concrete construction in Saudi Arabia. Design of these precast structural units is based on ultimate load-carrying capacity of these members. Full-scale load tests were conducted on prestressed precast hollow-core slabs with different shear span to depth (a/d) ratio, which were loaded to failure to ascertain the ultimate load-carrying capacity of these slabs. A total of 15 slab specimens, 5 and 2.5 m in span and having three different depths, 200,250 and 300 mm were tested to failure using four-point load test. It was interesting to note that the failure mode of hollow-core slabs changed from pure flexure mode to flexure-shear mode for slabs with depth greater than 200 mm. The web shear cracking strength of PPHC slabs decreased with an increase in depth of the slab. A transition from flexure-shear to web shear failure as a function of a/d was noted in the load tests. The analysis of the experimental results showed that the existing ACI code equations underestimated the flexure-shear strength of these hollow-core slabs. Based on regression analysis of experimental data, a modification is proposed in the existing ACI code equation which can capture accurately the mode of failure and ultimate load-carrying capacity of these slabs.
机译:预应力预制空心板广泛用于沙特阿拉伯预制混凝土建筑的地板和屋顶系统。这些预制结构单元的设计基于这些构件的最终承载能力。对具有不同剪切跨度与深度(a / d)比的预应力预制空心板进行了满负荷试验,将其加载到无法确定这些板的最终承载能力的位置。使用四点载荷测试对总共15个板状试样进行了破坏测试,这些试样的跨度分别为5和2.5 m,具有三个不同的深度200,250和300 mm。有趣的是,对于深度大于200 mm的板,空心板的破坏模式从纯弯曲模式变为弯曲剪切模式。 PPHC板坯的腹板抗剪开裂强度随板坯深度的增加而降低。在载荷测试中,记录了从弯曲剪切到腹板剪切破坏的转变,其为a / d的函数。对实验结果的分析表明,现有的ACI代码方程式低估了这些空心板的挠曲抗剪强度。在对实验数据进行回归分析的基础上,对现有的ACI代码方程进行了修正,可以准确地捕获这些板的破坏模式和极限承载能力。

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