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首页> 外文期刊>Journal of Composites for Construction >In-Plane Lateral Response of a Full-Scale Masonry Subassemblage with and without an Inorganic Matrix-Grid Strengthening System
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In-Plane Lateral Response of a Full-Scale Masonry Subassemblage with and without an Inorganic Matrix-Grid Strengthening System

机译:带有和不带有无机矩阵网格加强系统的全尺寸砖石子组件的面内横向响应

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摘要

A full-scale unreinforced masonry (URM) wall with an opening was tested under in-plane lateral loading. The wall was first subjected to monotonically increasing displacements until a moderate damage level was reached. The damaged specimen was then cyclically tested up to almost the same maximum drift attained during the monotonic test to investigate the effects of previous damage on its nonlinear response. Finally, the masonry wall was repaired with inorganic matrix-grid (IMG) composites and subjected to a cyclic displacement-controlled test up to a near-collapse state. Most of the observed damage developed in the spandrel panel affecting both lateral resistance and strength degradation. Rocking of piers governed lateral stiffness and hysteretic response, which was characterized by low residual displacements and recentering behavior. The comparison between the experimental force-displacement curves demonstrated that the IMG strengthening system was able to provide energy dissipation capacity to the spandrel panel, restoring load-bearing capacity of the as-built wall, and delaying strength degradation that was indeed observed at larger displacements. Bilinear idealizations of force-displacement curves allowed the identification of displacement ductility, global overstrength, and strength reduction factor of the tested wall systems.
机译:在平面侧向荷载下测试了带开口的全尺寸无筋砌体(URM)墙。首先对墙进行单调递增的位移,直到达到中等程度的破坏水平。然后对损坏的样品进行循环测试,直至达到单调测试期间几乎达到的最大漂移,以研究先前的损坏对其非线性响应的影响。最后,用无机基质-格栅(IMG)复合材料修复砌体墙,并进行循环位移控制试验直至接近坍塌状态。在翼span板上形成的大多数观察到的损伤都会影响侧向阻力和强度降低。墩的摇摆决定了侧向刚度和滞后响应,其特征是残余位移低和弯曲行为。实验力-位移曲线之间的比较表明,IMG加固系统能够为翼span板提供能量消散能力,恢复已建墙的承重能力,并延迟在较大位移下确实观察到的强度退化。力-位移曲线的双线性理想化可以确定被测墙系统的位移延性,整体超强度和强度折减系数。

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