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Effect of in-plane damage on out-of-plane strength of unreinforced masonry walls

机译:面内损伤对未加固砌体墙面外强度的影响

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摘要

The out-of-plane capacity of unreinforced masonry (URM) walls is crucial for their overall stability and safety, especially after being damaged by in-plane forces. A nonlinear finite element model was developed to investigate the behavior of load bearing URM walls having different slenderness ratio and aspect ratio under combined in-plane and out-of-plane loading. The walls were subjected to sequence of cyclic in-plane drifts and monotonically increasing out-of-plane pressure and reduction in out-of-plane capacity due to in-plane damage was estimated. The reduction was larger for walls having slenderness ratio and aspect ratio greater than 20 and 2.0, respectively. Under severe in-plane damage, the out-of-plane capacity of cracked URM wall reduced to nearly one-third of its undamaged capacity. Fragility curves were generated to predict the probability of out-of-plane failure of URM walls with prior in-plane damage. These curves can be used to evaluate the vulnerability of URM walls in out-of-plane direction for expected in-plane damage corresponding to a specified performance level.
机译:非钢筋砌体(URM)墙的平面外容量对于其整体稳定性和安全性至关重要,尤其是在受到平面内力破坏后。建立了非线性有限元模型,以研究在平面内和平面外组合荷载下具有不同长细比和长宽比的URM墙的承载性能。使壁经受循环的平面内漂移的序列,并且单调地增加平面外压力,并且估计由于平面内损坏而导致的平面外容量的减小。对于长径比和长径比分别大于20和2.0的墙,减小幅度更大。在严重的面内损坏下,破裂的URM墙的面外容量减少到其未损坏容量的近三分之一。生成易碎性曲线以预测具有先前面内损坏的URM壁面外破坏的可能性。这些曲线可用于评估URM墙在平面外方向上的易损性,以获得与指定性能水平相对应的预期平面内损坏。

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