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Experimentally evaluating the seismic retrofitting of square engineered cementitious composite columns using CFRP

机译:通过CFRP进行实验评估方形工程水泥复合柱的地震改造

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摘要

The present experimental study evaluated the seismic performance of six engineered cementitious composite (ECC)columns strengthened with carbon fiber reinforced polymer (CFRP) laminates under cyclic lateral loading. The ECC columns damaged and crushed in the first stage of cyclic tests were repaired using the ECC with a certain polyvinyl alcohol (PVA) fiber and strengthened with flexural and sheer CFRP laminates and then re-assessed under the cyclic loading. The effects of some variables were examined on lateral displacement, energy absorption and dissipation, failure modes, crack patterns, load bearing capacity and plasticity, and the obtained results were compared with those of the first stage of cyclic tests. The results showedthat retrofitting the ECC columns can improve their performance, plasticity and load-bearing threshold, delayed the concrete failure, changed the failure modes and increased the energy absorbed by the strengthened columns element by over 50%.
机译:本实验研究评估了六种工程化水泥复合(ECC)柱的地震性能,在循环横向载荷下加强了碳纤维增强聚合物(CFRP)层压材料。 使用ECC与某种聚乙烯醇(PVA)纤维的ECC进行损坏和粉碎的ECC柱,并用弯曲和纯CFRP层压材料加强,然后在环状载荷下重新评估。 在横向位移,能量吸收和耗散,失效模式,裂纹模式,承载能力和可塑性上检查了一些变量的影响,并将得到的结果与循环试验的第一阶段进行了比较。 结果表明,改装ECC柱可以提高它们的性能,可塑性和承载阈值,延迟混凝土故障,改变了故障模式,并将加强柱元素吸收的能量增加超过50%。

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