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首页> 外文期刊>Steel & Composite Structures: An International Journal >Experimental study on hollow steel-reinforced concrete-filled GFRP tubular members under axial compression
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Experimental study on hollow steel-reinforced concrete-filled GFRP tubular members under axial compression

机译:轴压下空心钢筋混凝土钢管管构件的实验研究

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摘要

Hollow steel-reinforced concrete-filled GFRP tubular member is a new kind of composite members. Firstly set the mold in the GFRP tube (non-bearing component), then set the longitudinal reinforcements with stirrups (steel reinforcement cage) between the GFRP tube and the mold, and filled the concrete between them. Through the axial compression test of the hollow steel-reinforced concrete-filled GFRP tubular member, the working mechanism and failure modes of composite members were obtained. Based on the experiment, when the load reached the ranges of 55-70%P-u (P-u-ultimate load), white cracks appeared on the surface of the GFRP tubes of specimens. At that time, the confinement effects of the GFRP tubes on core concrete were obvious. Keep loading, the ranges of white cracks were expanding, and the confinement effects increased proportionally. In addition, the damages of specimens, which were accompanied with great noise, were marked by fiber breaking and resin cracking on the surface of GFRP tubes, also accompanied with concrete crushing. The bearing capacity of the axially compressed components increased with the increase of reinforcement ratio, and decreased with the increase of hollow ratio. When the reinforcement ratio was increased from 0 to 4.30%, the bearing capacity was increased by about 23%. When the diameter of hollow part was decreased from 55mm to 0, the bearing capacity was increased by about 32%.
机译:中空钢钢筋混凝土填充GFRP管状构件是一种新型复合构件。首先将模具设置在GFRP管(非轴承部件)中,然后将纵向增强与GFRP管和模具之间的马镫(钢筋笼)设定,并在它们之间填充混凝土。通过中空钢钢筋混凝土填充GFRP管状构件的轴向压缩试验,获得了复合构件的工作机构和失效模式。基于实验,当负荷达到55-70%的P-U(P-U-Ultimate Load)的范围时,样品GFRP管的表面上出现了白色裂缝。那时,GFRP管对核心混凝土的限制效果显而易见。保持载荷,白色裂缝的范围正在扩大,限制效果比例增加。此外,伴随着极大的噪声的标本损坏是通过GFRP管表面上的纤维破碎和树脂裂缝标记,还伴随着混凝土破碎。随着增强比的增加,轴向压缩部件的承载力增加,随着中空比的增加而降低。当加固率从0增加到4.30%时,承载力增加约23%。当中空部分的直径从55mm降低至0时,承载能力增加约32%。

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