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Axial compression tests on hybrid FRP-steel-concrete columns with high-strength steel plates

机译:高强钢板混合FRP-钢-混凝土柱的轴向压缩试验

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摘要

The applications of high-strength steel (HSS) products to civil engineering structures have been limited by elastic local buckling, by the perceived lack of ductility, and by the perceived difficulties of welding such steels. Against this background, the authors have recently proposed a new hybrid column (i.e. High Strength Steel Plate-Concrete Filled FRP Tube or HSSP-CFFT) consisting of an outer FRP tube, a concrete in-fill and a number of encased high-strength steel plates that are connected to each other by bolted angle brackets at discrete elevations. The new column offers an ideal opportunity for the use of HSS plates in construction, with their high yield stresses being fully utilized and without welding (and therefore without welding residual stresses). In this paper, the rationale for the new column form together with its expected advantages is first explained. Results from a series of axial compression tests are then presented to confirm some of the expected advantages. The results demonstrated that the concrete in the tested specimens was very effectively confined, and that buckling of the steel plates was prevented by the encasing concrete up to and beyond the rupture of the FRP tubes, leading to full structural utilization of the construction materials and very ductile column responses.
机译:高强度钢(HSS)产品在土木工程结构中的应用受到弹性局部屈曲,感知到的延展性不足以及感知到的焊接此类钢的困难的限制。在此背景下,作者最近提出了一种新的混合柱(即高强度钢板混凝土填充FRP管或HSSP-CFFT),该复合管由外部FRP管,混凝土填充物和许多封闭的高强度钢组成通过螺栓固定在不同高度上的角钢相互连接的板。新的立柱为在建筑中使用HSS板提供了理想的机会,因为可以充分利用它们的高屈服应力而无需焊接(因此也没有焊接残余应力)。在本文中,首先说明了新列形式的基本原理及其预期的优势。然后提供了一系列轴向压缩测试的结果,以确认某些预期的优势。结果表明,被测样品中的混凝土被非常有效地限制,并且通过在FRP管破裂之前和之后包裹混凝土来防止钢板屈曲,从而导致了建筑材料的充分结构利用,并且延性柱反应。

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