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Experimental and Analytical Studies of Door-Type Modular Scaffolds with Initial Geometrical Imperfections

机译:具有初始几何缺陷的门型模块化脚手架的实验和分析研究

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In the study, the performance and structural behaviors of door-type modular steel scaffolds with different degrees of initial geometrical imperfections were evaluated through experimental and analytical investigations. Two one-story and nine two-story modular steel scaffolds were tested to failure. When the number of stories increased from 1 to 2, a 14.8% reduction in load capacity was obtained for the scaffolds with relatively straight columns. The capacity reduction was mainly due to flexibility at column joints and an increase in the deviation from the vertical alignment. The average capacity reductions increased to 18.9% when the out-of-straightness approached the limit provided by the standards. The effective length factors for capacity calculation were determined. In conjunction with the initial imperfections, the results indicated that the flexibility at column joints and the stiffness of beam and sub-frame elements on modular frames significantly affected the failure mode and ultimate load. The beam and sub-frame elements prevented the buckling failure in the modular-frame plane. Hence, the initial imperfections in the plane of cross bracings were more critical than that of the modular-frame plane, and it is necessary to closely inspect the same while using scaffolds in construction.
机译:在研究中,通过实验和分析研究评估了具有不同程度的初始几何缺陷的门型组合式钢制脚手架的性能和结构行为。测试了两个1层和9个2层模块化钢制脚手架是否损坏。当层数从1增加到2时,具有相对笔直的脚手架的承重减少了14.8%。容量减少的主要原因是柱接头处的柔韧性以及与垂直对齐方式的偏差增加。当不平直度达到标准规定的极限时,平均产能降低量增加到18.9%。确定了用于容量计算的有效长度因子。结合最初的缺陷,结果表明,柱关节的柔韧性以及模块化框架上梁和子框架单元的刚度显着影响了破坏模式和最终载荷。梁和子框架元素防止了模块化框架平面中的屈曲失败。因此,交叉支撑平面中的初始缺陷比模块化框架平面中的缺陷更为严重,并且在施工中使用脚手架时有必要对其进行仔细检查。

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