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Experimental and analytical investigation into crack strength determination of infilled steel frames

机译:确定钢框架抗裂强度的实验和分析研究

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This paper presents the results of further development of a new analytical approach for the evaluation of shear strength and cracking patterns of infill panels. This method is based on the minimum evaluated strength with reference to the failure surfaces. This paper also presents the results of an experimental investigation of small and medium scale masonry and concrete infilled frames. Eleven specimens, with and without horizontal reinforcement and bond beams, were subjected to static cyclic loads. The tests are categorized in two groups, based on their surrounding frames and scale. In the first group a small scale factor is used, and the frames have pinned connections with very stiff beams and columns representing the lower stories of tall buildings. In the second group a medium scale factor is used, and the frames have rigid connections. Both experiments and analysis have confirmed that the efficiency of horizontal reinforcement and bond beams depends on the dominant pattern of cracking. The results also indicate that as opposed to masonry infills, the corner crushing is the dominant mode of failure in concrete infills.
机译:本文介绍了进一步发展的一种新的分析方法,用于评估填充板的抗剪强度和开裂模式的结果。该方法基于相对于破坏面的最小评估强度。本文还介绍了中小型砖石和混凝土填充框架的实验研究结果。带有和不带有水平钢筋和粘结梁的11个试样都承受了静态循环载荷。这些测试根据其周围的框架和规模分为两类。在第一组中,使用较小的比例因子,并且框架具有固定的连接,这些连接具有非常坚固的横梁和圆柱,代表了高层建筑的下层。在第二组中,使用中等比例系数,并且框架具有刚性连接。实验和分析均证实,水平钢筋和粘结梁的效率取决于裂缝的主要模式。结果还表明,与砖石填充物相反,边角压碎是混凝土填充物破坏的主要方式。

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