UHPFRC和CFRP加固外梁-柱节点循环荷载的数值模拟

Q. Fayaz, G. Kaur, P. Bansal
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引用次数: 0

摘要

混凝土梁柱节点在地震作用下,由于剪应力的产生而极易受到破坏。剪切应力是由于作用在梁柱节点上的压缩力和拉力的方向不断变化而产生的。结果影响了整个结构的强度、刚度和耗能。它需要事先通过改善其剪切,拉伸和能量耗散能力来解决,以便将损害降到最低。因此,在发生重大破坏之前,需要对结构进行加固。本文采用ABAQUS软件对某超高性能纤维增强混凝土(UHPFRC)与碳纤维增强聚合物(CFRP)复合加固的BCJ结构进行了抗震性能分析。观察到的地震参数为UHPFRC和CFRP加固试件的滞回响应、强度、刚度、延性和耗能。结果表明,与单一加固方案相比,两种加固方案的组合有效地提高了峰值荷载2.62倍,试件的延性提高了近6%。采用组合强化策略时,能耗增加7.3%。强度的退化率也大大降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Modelling of an Exterior RC Beam Column Joint Subjected to Cyclic Loading Strengthened Using UHPFRC and CFRP
A poorly detailed reinforced concrete (RC) beam-column joint (BCJ) is highly susceptible to damage under seismic forces due to the generation of shear stresses. Shear stresses are generated due to the continuous change in the direction of the compression and tension forces acting on the beam-column joint. As a result, the strength, stiffness and the energy dissipation of the whole structure is affected. It needs to be addressed beforehand by improving its shear, tensile and energy dissipation capacities so that the damage is minimised. So a structure needs to be strengthened prior to any major damage. In the present study the seismic performance assessment of a BCJ strengthened by a combination of ultra-high performance fibre reinforced concrete (UHPFRC) and carbon fibre reinforced polymer (CFRP) has been done analytically in ABAQUS. The seismic parameters observed are the hysteresis response, strength, stiffness, ductility and energy dissipation of the specimens strengthened both by UHPFRC and CFRP. From the results it is clear that the combination of the two strengthening schemes is very efficient in increasing the peak load 2.62 times and the ductility by almost 6% of the specimens as compared to the specimens strengthened using only one scheme. Also the energy dissipation shows an increase of 7.3% in case of using the combination strengthening strategy. The rate of degradation of the strength is also reduced substantially.
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