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Experimental investigation of influences of several parameters on seismic capacity of masonry infilled reinforced concrete frame

机译:几个参数对砌体式钢筋混凝土框架抗震性能影响的试验研究

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摘要

This study investigated the in-plane seismic capacity of three 1/2 scale single story reinforced concrete frames with masonry infill that were subjected to static cyclic lateral loading. Three main parameters were investigated: the strength of the surrounding reinforced concrete (RC) columns, strength of RC beams, and mortar strength of the masonry infill. These parameters were selected because there are large variations between the design codes and past research on their importance. Experimental results showed that the infill shear strength greatly increased with the surrounding frame strength. The investigated parameters did not significantly affect the initial stiffness. The specimen consisting of a masonry panel built with low-strength mortar showed relatively greater ductility and relatively less damage to the masonry infill panel and surrounding frame. Based on the results, the frame strength ratio needs to be included as a parameter in the design codes for new buildings because it can alter the shear strength of the masonry infill and ductility of the whole structure.
机译:这项研究调查了三个1/2比例的带砌体填充的单层钢筋混凝土框架在静循环侧向荷载作用下的面内抗震能力。研究了三个主要参数:周围钢筋混凝土(RC)柱的强度,RC梁的强度以及砖石填充物的砂浆强度。选择这些参数是因为设计规范和其重要性的以往研究之间存在很大差异。实验结果表明,随着周围框架强度的增加,填充抗剪强度大大提高。研究的参数没有显着影响初始刚度。由用低强度砂浆建造的砌体面板组成的标本显示出较大的延展性,并且对砌体填充面板和周围框架的破坏相对较小。根据结果​​,框架强度比需要作为新建筑物的设计规范中的参数,因为它可以改变砌体填充物的抗剪强度和整个结构的延展性。

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