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High-strength steel plates in hybrid fiber-reinforced polymer-concrete-steel columns: concept and behavior

机译:混合纤维增强聚合物-混凝土钢柱中的高强度钢板:概念和行为

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摘要

Applications of high-strength steel products in civil engineering have been limited by elastic local buckling, by the perceived lack of ductility, and by the perceived difficulties of welding such steels. This article proposes a new column (i.e. high-strength steel plate-concrete-filled fiber-reinforced polymer tube) consisting of an outer fiber-reinforced polymer tube, concrete infill, and encased high-strength steel plates that are connected to each other by bolted angle brackets at discrete elevations. The column offers an ideal opportunity for the use of high-strength steel plates in construction, with their high yield stresses being fully utilized and without welding (and without welding residual stresses). The rationale for the column form and its expected advantages are explained and demonstrated through laboratory tests. Prefabricated glass fiber-reinforced polymer tubes of 1.5 and 3.0 mm thick and 203 mm diameter were infilled with concrete having a nominal strength of 32 MPa, with most specimens encasing steel plates of various configurations and yield stresses ranging from 290 to 455 MPa. Results from concentric and eccentric compression tests involving 13 specimens are presented to confirm the expected structural advantages. The results demonstrated that the concrete in the tested specimens was very effectively confined, and that buckling of all the steel plates was prevented by the encasing concrete up to and beyond the rupture of the fiber-reinforced polymer tubes, leading to full structural utilization of the construction materials and very ductile column responses under concentric and eccentric loadings. The needs for future research on high-strength steel plate-concrete-filled fiber-reinforced polymer tube columns are also discussed.
机译:高强度钢产品在土木工程中的应用受到弹性局部屈曲,延展性不足和焊接难度的限制。本文提出了一种新的立柱(即高强度钢板-混凝土填充纤维增强聚合物管),它由外纤维增强聚合物管,混凝土填充物和包裹的高强度钢板组成,它们通过在不连续的高度上用螺栓固定的尖括号。该立柱为在建筑中使用高强度钢板提供了理想的机会,因为它们可以充分利用其高屈服应力,并且无需焊接(也没有焊接残余应力)。通过实验室测试来解释和证明色谱柱形式的基本原理及其预期的优势。预制玻璃纤维增​​强聚合物管的厚度为1.5和3.0毫米,直径为203毫米,其混凝土的标称强度为32兆帕,大多数试样包裹着各种结构的钢板,屈服应力范围为290至455兆帕。提出了涉及13个样品的同心和偏心压缩试验的结果,以确认预期的结构优势。结果表明,被测样品中的混凝土非常有效地被限制,并且通过将混凝土包裹到纤维增强聚合物管破裂之前和之后,防止了所有钢板的屈曲,从而导致了整个结构的充分利用。建筑材料以及在同心和偏心荷载下非常易延展的柱响应。还讨论了未来对高强度钢板混凝土填充纤维增强聚合物管柱的研究需求。

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