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首页> 外文期刊>Canadian Journal of Civil Engineering >Axial loading tests on short and long hollow structural steel columns retrofitted using carbon fibre reinforced polymers
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Axial loading tests on short and long hollow structural steel columns retrofitted using carbon fibre reinforced polymers

机译:使用碳纤维增强聚合物翻新的短和长空心结构钢柱的轴向载荷测试

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摘要

This paper describes the behaviour of axially loaded short and long square hollow structural section (HSS) columns, strengthened with carbon fibre reinforced polymer (CFRP) sheets. Twenty-seven short-column and five long-column HSS specimens were tested. The effect of CFRP sheet orientation in the longitudinal and transverse directions was studied for short columns. For long columns, CFRP sheets were oriented in the longitudinal direction only. A maximum strength gain of 18 percent was achieved for short columns with two transverse CFRP layers. For long columns, the maximum strength gain of 23 percent was achieved with three longitudinal CFRP layers applied on four sides. In all CFRP-strengthened long columns, lateral deflections were reduced. Strength gain in long columns was highly dependent on the column's imperfection. As such, no correlation was established between strength gain and number of CFRP layers. CAN/CSA 16-01 equation was modified to account for CFRP through transformed section analysis so that they could be used to predict the axial-load capacity of long columns.
机译:本文描述了用碳纤维增强聚合物(CFRP)板加固的轴向加载的短方形和长方形空心结构截面(HSS)柱的性能。测试了27个短列和5个长列HSS标本。对于短柱,研究了CFRP片材纵向和横向取向的影响。对于长柱,CFRP板仅沿纵向方向定向。对于具有两个横向CFRP层的短柱,最大强度提高了18%。对于长柱,在四个侧面上施加三个纵向CFRP层可实现23%的最大强度增加。在所有CFRP加固的长柱中,横向挠度都减小了。长柱的强度增加在很大程度上取决于柱的缺陷。这样,在强度增加和CFRP层数之间没有建立相关性。修改了CAN / CSA 16-01方程,以通过转换截面分析解决CFRP问题,从而可以将它们用于预测长柱的轴向载荷。

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