Shear strengthening of fire-damaged reinforced concrete beams using bolted-side plating

Procedia Engineering Pub Date : 2017-01-01 Epub Date: 2017-12-11 DOI:10.1016/j.proeng.2017.11.065
Ling-Zhi Li , Chang-Jiu Jiang , Bo-Zhou Liu , Zhou-Dao Lu
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引用次数: 4

Abstract

Six reinforced concrete (RC) beams were fabricated and exposed to fire in accordance with the international standards ISO834 temperature curve, four of which were retrofitted employing the bolted side-plating (BSP) technique. The shear tests of two control beams and four beams strengthened with BSP after fire were carried out. The influence of the plate depth and bolt spacing on the shear strength, ductility and stiffness was investigated. The testing results indicated that the BSP method can significantly increase the shear capacity of fire damaged RC beams and improve the overall shear and flexural performance. The strengthening effect increases as the increase of plate depth and the decrease of bolt spacing. When the external load is very large, local buckling of steel plate will occur under the combined action of bending and shearing. Both longitudinal and transverse slips coexist on the plate–RC interface of BSP beams. The bolt spacing exerts an important influence on the degree of partial interaction between the plate and the concrete. In the design of BSP reinforcement, the relative relation between the number of anchor bolts and the plate depth should be taken into consideration.

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火损钢筋混凝土梁的栓边钢板剪力加固
根据国际标准ISO834温度曲线,制作了6根钢筋混凝土(RC)梁,并将其暴露在火中,其中4根采用螺栓侧镀(BSP)技术进行了改造。对2根对照梁和4根BSP加固梁进行了火灾后的抗剪试验。研究了板深和锚杆间距对锚杆抗剪强度、延性和刚度的影响。试验结果表明,BSP方法能显著提高火灾损伤RC梁的抗剪承载力,提高整体抗剪抗弯性能。加固效果随板深的增加和锚杆间距的减小而增大。当外荷载很大时,在弯剪共同作用下,钢板会发生局部屈曲。BSP梁的板- rc界面存在纵向滑移和横向滑移。锚杆间距对板与混凝土的局部相互作用程度有重要影响。在BSP加固设计中,应考虑地脚螺栓数与板深的相对关系。
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