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CFRP strengthening and rehabilitation of degraded steel welded RHS beams under combined bending and bearing

机译:组合弯弯和支座作用下CFRP加固和退化钢焊接RHS梁的修复

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To rehabilitate damaged or sub-standard box girders, techniques utilising the lightweight, high strength and corrosion resistance of carbon fibres reinforced polymers (CFRP) composites have been proposed. This paper presents experimental results for two series of CFRP strengthened and rehabilitated model box girders under quasi-static large deformation 3-point bending. The first series represents strengthening 12 un-degraded rectangular hollow section (RHS) beams from the manufacturer using externally wrapped CFRP sheets. The second series was for rehabilitation of 41 artificially degraded RHS beams strengthened using externally wrapped sheets or bonded plates. The main parameters examined in this paper were the section type, section and member slenderness and the type and number of the CFRP sheets. The flange and web slenderness examined in this paper was in the range of b/t=20 to 66.67 and d/t_w=20 to 75. The CFRP sheets were wrapped around the section in the transverse direction with a sufficient overlap. The results show that the combined flexural and bearing strength of the steel box girder can be significantly increased by adhesively bonding CFRP. Expressions for the bearing strength and plastic moment of the composite section were obtained by means of an equivalent thickness approach. The newly derived interaction equations were compared against the present design rules in steel specifications. The average gain in strength due to bonding the CFRP laminate was 65% and 19.9% for the strengthening and rehabilitations series, respectively. The percent increase in strength was mostly affected by the section slenderness where the maximum gain was obtained for the slender section.
机译:为了修复损坏的或不合格的箱形梁,已经提出了利用碳纤维增强聚合物(CFRP)复合材料的轻质,高强度和耐腐蚀性的技术。本文介绍了在准静态大变形三点弯曲作用下的两个系列CFRP加固和修复模型箱梁的试验结果。第一个系列表示使用外部包装的CFRP板加固制造商的12个未降解矩形空心截面(RHS)梁。第二个系列是修复41根人工降解的RHS梁,这些梁使用外部包裹的薄板或粘结板进行了加固。本文研究的主要参数是截面类型,截面和成员细长度以及CFRP板的类型和数量。本文研究的法兰和纤网的细长度在b / t = 20到66.67且d / t_w = 20到75的范围内。CFRP薄板在横截面上横向包裹,并有足够的重叠。结果表明,通过粘结CFRP可以显着提高钢箱梁的综合抗弯强度和承载强度。通过等效厚度方法获得了复合材料截面的承载强度和塑性矩的表达式。将新推导的相互作用方程与钢规格中的当前设计规则进行了比较。对于加固系列和修复系列,由于粘结CFRP层压板而获得的平均强度分别提高了65%和19.9%。强度增加的百分比主要受截面细长度的影响,在细长截面中,细长截面获得最大增益。

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