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Seismic Upgrade of Corroded Confined Reinforced Concrete Columns Using Composite Materials

机译:采用复合材料的锈蚀约束钢筋混凝土柱的抗震升级

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Increasing cases of reinforcement corrosion in reinforced concrete (RC) elements raise serious concerns for achieving desired strength and ductility despite following the relevant seismic guidelines. The present study is an experimental attempt to evaluate the seismic behavior of corroded RC columns and thereby to examine the effectiveness of advanced composite materials in restoring the seismic behavior of such corroded columns. To this end, seven full-scale RC columns were cast and tested. Six column specimens were corroded using a precalibrated, accelerated corrosion regime, while one specimen acted as a control uncotroded column. Columns were corroded at two nominal degrees of corrosion: 10% and 20%. These corroded columns were then tested for evaluating their seismic behavior; while companion columns with the same degree of corrosion were retrofitted. Retrofitting was aimed at restoring the ductility and strength of corroded columns as well as to achieve increased durability against future corrosion. Advanced composite materials such as ultra-high performance fiber-reinforeed concrete (UHPFRC) and glassfiber-reinforced polymer (GFRP) were employed for retrofitting of columns. The results show an alarming reduction in seismic performance of columns due to corrosion of reinforcement. Corroded specimens when retrofitted with only UHPFRC jacket yielded satisfactory recovery of strength and ductility for 10% corrosion but showed insufficient improvement against 20% corrosion. For columns with 20% corrosion, a combination of UHPFRC and two layers of GFRP worked well in improving ductility and strength.
机译:尽管遵循相关的地震准则,但钢筋混凝土(RC)单元中钢筋腐蚀的情况越来越多,人们对于达到所需的强度和延展性提出了严重的担忧。本研究是一项实验尝试,旨在评估锈蚀钢筋混凝土柱的抗震性能,从而研究先进复合材料在恢复此类锈蚀柱抗震性能方面的有效性。为此,铸造并测试了七个全尺寸RC柱。使用预先校准的加速腐蚀方案腐蚀了六根色谱柱标本,而一根标本则作为未腐蚀的对照色谱柱。色谱柱在两个标称腐蚀度下被腐蚀:10%和20%。然后对这些腐蚀的柱子进行测试以评估其抗震性能。同时对同等腐蚀程度的配套色谱柱进行了改造。翻新的目的是恢复被腐蚀的柱子的延展性和强度,并提高抗腐蚀能力。先进的复合材料,例如超高性能纤维增强混凝土(UHPFRC)和玻璃纤维增​​强聚合物(GFRP),被用于立柱的改造。结果表明,由于钢筋的腐蚀,柱的抗震性能令人震惊地降低。仅加装UHPFRC夹套的腐蚀试样在10%腐蚀时仍能令人满意地恢复强度和延展性,但对20%腐蚀却显示不足。对于腐蚀率为20%的色谱柱,UHPFRC和两层GFRP的结合可以很好地改善延展性和强度。

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