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首页> 外文期刊>Journal of Composites for Construction >Confinement Model for Concrete Columns Reinforced with GFRP Spirals
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Confinement Model for Concrete Columns Reinforced with GFRP Spirals

机译:GFRP筋加固混凝土柱的约束模型。

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摘要

Confinement of concrete using glass fiber-reinforced polymer (GFRP) spirals was evaluated using small-scale concrete cylindrical specimens with a 254-mm diameter and 762-mm height under concentric axial compression. The contribution of longitudinal GFRP bars to confinement was excluded by using wood dowels as longitudinal reinforcement to maintain a constant spiral pitch. Thus, concrete confinement was provided exclusively by the GFRP spiral. An ultimate hoop strain of 1.0 to 1.5% was achieved for the GFRP spirals of well-confined small-scale concrete specimens. Expressions were developed for the confined compressive strength and ultimate axial compressive strain of concrete confined with GFRP spirals. The resulting confinement model is compared with axial column tests of reinforced concrete columns with GFRP spirals and GFRP longitudinal bars from the present study and the literature. An expression is proposed for the ultimate axial compression capacity of concrete columns reinforced with GFRP spirals and GFRP longitudinal bars.
机译:使用玻璃纤维增​​强聚合物(GFRP)螺旋线对混凝土的约束,使用直径为254 mm,高度为762 mm的小型混凝土圆柱试样在同心轴向压缩下进行评估。通过使用木榫钉作为纵向钢筋来保持恒定的螺距,可以排除纵向GFRP筋对约束的影响。因此,仅由GFRP螺旋提供混凝土限制。密闭的小型混凝土试样的GFRP螺旋的极限环向应变达到1.0至1.5%。建立了用GFRP螺旋约束混凝土的极限抗压强度和极限轴向压缩应变的表达式。根据本研究和文献,将所得的约束模型与带有GFRP螺旋和GFRP纵向钢筋的钢筋混凝土柱的轴向柱试验进行比较。提出了用GFRP螺旋和GFRP纵筋加固的混凝土柱的极限轴向压缩能力的表达式。

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