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Shaking table experiment of a recycled concrete block masonry building structure with a 'self-contained' structural system

机译:用“独立”结构系统的回收混凝土砌块砌块结构结构的振动台试验

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摘要

This paper proposed a ‘self-contained’ structural system for structural columns and ring beams and used recycled concrete blocks (RCBs) as wall materials. Based on this design concept, a full-scale model of a new masonry building structure was established. The Castaic wave, the Taft wave, and an artificial wave were sequentially input to the shaking table, and the effects of different ground motions on the structural model were simulated. The changes in the natural frequency and damping ratio of the test model and the acceleration, displacement, and strain responses of the structure were studied under different seismic wave excitations. Finally, the overall seismic resistance of the model was determined. The results showed that the ‘self-contained’ structure system exhibited excellent cooperative performance. Moreover, the test model can fully meet the degree-7 seismic fortification requirements, in which the damage sustained from small earthquakes is not substantial, the damage sustained from moderate earthquakes can be repaired, and the damage sustained from large earthquakes does not cause structural failure. The results showed that RCBs can replace ordinary concrete blocks in practical engineering projects. However, the construction measures for the door and window openings should be strengthened in actual projects.
机译:本文提出了一种“独立”结构柱和环形梁的结构系统,并使用回收的混凝土块(RCBS)作为壁材料。基于这种设计理念,建立了一种新的砖石建筑结构的全规模模型。依次输入旋流波,塔夫曲波和人工波,模拟了不同地面运动对结构模型的影响。在不同地震波激发下研究了测试模型的自然频率和阻尼比的变化以及结构的加速,位移和应变响应。最后,确定了模型的整体地震抗性。结果表明,“独立”结构体系表现出出色的合作表现。此外,测试模型可以完全满足学位 - 7抗震抗化要求,其中来自小地震的损害是不实质性的,可以修复中等地震持续的损害,大地震损害不会引起结构失败。结果表明,RCBS可以在实际工程项目中取代普通的混凝土块。但是,应在实际项目中加强门窗开口的施工措施。

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