首页> 外文期刊>Journal of Composites for Construction >Repair Of Cracked Steel Girders Connected To Concrete Slabs Using Carbon-fiber-reinforced Polymer Sheets
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Repair Of Cracked Steel Girders Connected To Concrete Slabs Using Carbon-fiber-reinforced Polymer Sheets

机译:用碳纤维增强的聚合物板修复与混凝土板相连的破裂钢梁

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摘要

This paper presents the results of an experimental study on the repair of artificially damaged steel-concrete composite beams repaired using adhesively bonded carbon-fiber-reinforced polymer (CFRP) sheets. Eleven, 2 m long, beams composed of W150 × 22 steel sections with 465 × 75 mm concrete slabs were tested in four-point bending. Severe damage was first introduced in ten beams by saw cutting the tension flange completely at mid span, to simulate a fatigue crack or a localized severe corrosion. Standard modulus (SM) and high modulus (HM) CFRP sheets were then used to repair nine damaged beams. The length and number of CFRP layers applied to the cracked flange on the underside, or on both sides, were varied. Results showed that the damage had reduced flexural strength and stiffness by 60 and 54%, respectively. Nevertheless, CFRP-repaired beams achieved various levels of recovery, and in some cases, exceeded the original capacities. The strength of beams repaired with sheets, ranging in length from 8 to 97% of the span, varied from 46-116% of the original undamaged strength, whereas the stiffness range was 86-126% of original stiffness. SM-CFRP failed by debonding whereas HM-CFRP was ruptured. Bonding the sheets to both sides of the flange was not very advantageous over bonding to the underside only.
机译:本文介绍了使用粘结碳纤维增强聚合物(CFRP)板修复人工损坏的钢-混凝土复合梁的修复实验研究结果。用四点弯曲测试了11个2 m长,由W150×22钢截面和465×75 mm混凝土板组成的梁。首先通过在中跨完全锯切张力法兰,在十根梁中引入严重损坏,以模拟疲劳裂纹或局部严重腐蚀。然后使用标准模量(SM)和高模量(HM)的CFRP板修复九个受损的梁。施加在底面或两侧的裂纹法兰上的CFRP层的长度和数量都不同。结果表明,损伤使弯曲强度和刚度分别降低了60%和54%。尽管如此,经过CFRP修复的光束仍达到了不同的恢复水平,在某些情况下还超过了原始容量。用薄板修复的梁的强度范围为跨度的8%至97%,其强度为原始未损坏强度的46-116%,而刚度范围为原始刚度的86-126%。 SM-CFRP脱胶失败,而HM-CFRP断裂。将片材粘合到凸缘的两侧比仅粘合到下侧不是非常有利。

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