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Effects of vertical stresses and flanges on seismic behavior of unreinforced brick masonry

机译:竖向应力和翼缘对非增强砖砌体抗震性能的影响

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Lateral in-plane response plays crucial role in seismic behavior of masonry structures. The aim of this article is to experimentally investigate the effects of vertical stresses and flanges (transverse walls) on the lateral in-plane response of the unreinforced brick masonry (URBM) walls. The experimental work included lateral in-plane quasi-static cyclic tests on full-scale walls (both with & without flanges). The vertical stresses resulting from typical single and two story unreinforced masonry buildings were simulated on full scale URBM walls. Flanges were introduced at both ends of the in-plane wall in single direction. In essence, the lateral in-plane stiffness & strength, deformability and energy dissipation of the two classes of walls are compared and the differences are quantified to help understand the effects of flanges on the in-plane response of masonry walls. The resulting damage mechanism and failure modes for each case are critically analyzed. The experimental results indicate that both vertical stresses and flanges incorporation significantly improved seismic response of URBM walls. In addition, the participation of flanges is critical in both vertical stress conditions.
机译:面内横向响应在砌体结构的地震行为中起着至关重要的作用。本文的目的是通过实验研究竖向应力和凸缘(横向墙)对无筋砖石(URBM)墙的横向面内响应的影响。实验工作包括在全尺寸墙壁(带和不带法兰)上进行横向平面内准静态循环测试。由典型的单层和两层无钢筋砌体建筑引起的垂直应力是在完整的URBM墙上模拟的。在平面内壁的两端以单方向引入法兰。本质上,比较了两类墙的横向平面内刚度和强度,可变形性和能量耗散,并对差异进行了量化,以帮助理解法兰对砌体墙的平面内响应的影响。严格分析每种情况下产生的损坏机理和故障模式。实验结果表明,竖向应力和法兰结合都能显着改善URBM墙的地震响应。另外,在两个垂直应力条件下,法兰的参与都至关重要。

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