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Seismic capacity of brick masonry walls externally bonded GFRP under in-plane loading

机译:面内荷载作用下外结合GFRP砖砌体墙的抗震性能

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By carrying out the experiment of eight pieces of brick masonry walls with pilaster strengthened by Glass fiber reinforced polymer (GFRP) and one piece of normal masonry wall with pilaster under low reversed cyclic loading, the failure characteristic of every wall is explained; Seismic performances such as hysteresis, stiffness and its degeneration, deformation, energy consumption and influence of some measures including strengthening means, reinforcement area proportion between GFRP and wall surface, "through-wall" anchor on reinforcement effects are studied. The test results showed that strengthening modes have little influence on stiffness, stiffness degeneration and deformation of the wall, but it is another thing for energy consumption of the wall; The ultimate load, deformation and energy consumption of the walls reinforced by glass fiber sheets was increased remarkably, rigidity and its degeneration was slower; Seismic performance of the wall which considers strengthening means, reinforcement area proportion between GFRP and wall surface, "through wall" anchor at the same time is better than under the other conditions.
机译:通过在低反向循环荷载下进行玻璃纤维增​​强聚合物(GFRP)加固的八块带壁柱的砖砌墙和一幅普通的带壁柱的砖砌墙的试验,解释了每面墙的破坏特性。研究了诸如滞后,刚度及其退化,变形,能耗等抗震性能,以及一些措施的影响,这些措施包括加强手段,GFRP与墙面之间的加固面积比例,“穿墙”锚对加固效果的影响。试验结果表明,加固方式对墙体的刚度,刚度退化和变形影响不大,但这是墙体能耗的另一原因。玻璃纤维板加固的墙的极限载荷,变形和能耗显着增加,刚度和退化速度较慢;考虑到加固方法,GFRP和墙面之间的加固面积比例,“穿墙”锚固同时出现的墙体抗震性​​能要优于其他条件。

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