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Reversed In-Plane Cyclic Behavior of Posttensioned Clay Brick Masonry Walls

机译:后张黏土砖砌体墙的逆面循环行为

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摘要

A series of five large scale clay brick masonry structural walls are subjected to in-plane simulated seismic forces. The walls utilize posttensioning steel to provide flexural strength. The primary objective of the research is to investigate five basic configurations of posttensioning to determine which has the most desirable characteristics for seismic performance. In the study, the variables of interest were (1) bonded versus unbonded posttensioning steel, (2) confined versus unconfined masonry, (3) grouted versus ungrouted masonry, and (4) application of supplemental mild steel for energy dissipation. Following the results of the tests, it was shown that the best performing configuration utilized unbonded posttensioning and confinement. By utilizing unbonded posttensioning, walls have little residual deformation after loading, thus yielding structures that would require very little repair, even after large seismic events. Such behavior comes with the price of reduced energy dissipation, however. Presented in the paper are the results of the tests as well as results of a simple analysis method for prediction of wall capacity.
机译:一系列的五个大型粘土砖砌体结构墙受到平面内模拟地震力的作用。墙体采用后张钢来提供抗弯强度。该研究的主要目的是研究后张拉的五种基本配置,以确定哪种具有抗震性能最理想的特性。在研究中,关注的变量是(1)粘结与未粘结的后张预应力钢;(2)约束与未约束的砖石;(3)灌浆与非灌浆的砖石;(4)补充软钢的能耗。根据测试结果,结果表明,最佳性能的配置利用了无粘结的后张和约束。通过利用无粘结的后张紧力,墙在加载后几乎没有残余变形,因此,即使在发生大地震后,其结构也几乎不需要修复。然而,这种行为伴随着减少能量耗散的代价。本文介绍的是测试结果以及用于预测墙容量的简单分析方法的结果。

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