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Effectiveness of some conventional seismic retrofitting techniques for bare and infilled R/C frames

机译:裸露和填充的R / C框架的一些常规抗震改造技术的有效性

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摘要

The effectiveness of a technique for the repair of reinforced concrete members in combination with a technique for the repair of masonry walls of infilled frames, damaged due to cyclic loading, is experimentally investigated. Three single - story, one - bay, 1/3 - scale frame specimens are tested under cyclic horizontal loading, up to a drift level of 4%. One bare frame and two infilled frames with weak and strong infills, respectively, have been tasted. Specimens have spirals as shear reinforcement. The applied repair technique is mainly based on the use of thin epoxy resin infused under pressure into the crack system of the damaged RC joint bodies, the use of a polymer modified cement mortar with or without a fiberglass reinforcing mesh for the damaged infill masonry walls and the use of CFRP plates to the surfaces of the damaged structural RC members, as external reinforcement. Specimens after repair, were retested in the same way. Conclusions concerning the effectiveness of the applied repair technique, based on maximum cycles load, loading stiffness, and hysteretic energy absorption capabilities of the tested specimens, are drawn and commented upon.
机译:实验研究了一种用于修补钢筋混凝土构件的技术与用于修补因循环荷载而损坏的填充框架的砌体墙的技术的有效性。在循环水平载荷下测试了三层单层,一格,1/3比例的框架标本,最大漂移水平为4%。分别品尝了一个裸框和两个填充框,分别填充了弱填充和强填充。标本具有螺旋作为剪切增强。应用的修补技术主要是基于在压力下将环氧树脂灌注到受损的RC接头体的裂缝系统中,使用聚合物改性水泥砂浆(带或不带玻璃纤维增​​强网)来破坏填充砌体墙和将CFRP板用于受损的结构RC构件的表面,作为外部加固。维修后的样品以相同的方式重新测试。基于最大循环载荷,载荷刚度和被测样品的滞后能量吸收能力,得出了有关所应用修复技术有效性的结论,并提出了意见。

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