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Transverse shear stiffness of bolted cold-formed steel storage rack upright frames with channel bracing members

机译:带通道支撑构件的螺栓冷弯钢制储物架立式框架的横向剪切刚度

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Accurately evaluating the transverse shear stiffness of cold-formed steel storage rack upright frames is crucial to calculate the frame elastic buckling load, perform earthquake design and serviceability checks. This is especially essential for high-bay racks, which are subjected to large second-order effects, and racks supporting the building enclosure, which are exposed to transverse wind loads. The shear behaviour of these frames is poorly understood and experimental testing is usually required to measure their stiffness. Previous studies have shown that Finite Element Analyses (FEA), solely using beam elements, fail to reproduce experimental test results and may overestimate the transverse shear stiffness by a factor up to 25. In this paper, a commercially used upright frame, with either bolted lip-to-lip or back-to-back channel section bracing members, has been modelled using shell elements. The model is verified against available experimental data and found to accurately predict the experimental shear stiffness with an average error of 7%. Based on the verified FE model, the factors contributing to the frame shear deformation are quantified. The different frame deformations imposed by the test set-ups in the European (EN15512) and Australian (AS4084) standards are both considered. The effects of the bracing lay-out, the bolt bending, local deformations of the uprights and bracing members at the connections on the performance of the upright frames are quantified and discussed.
机译:准确评估冷弯型钢储物架立式框架的横向剪切刚度对于计算框架的弹性屈曲载荷,进行地震设计和使用性检查至关重要。这对于经受高阶二阶效应的高架机架以及支撑建筑物机柜的机架(尤其是承受横向风荷载)尤其重要。这些框架的剪切行为了解得很少,通常需要进行实验测试以测量其刚度。先前的研究表明,仅使用梁单元的有限元分析(FEA)无法重现实验测试结果,并且可能将横向剪切刚度高估了多达25倍。唇对唇或背对背通道截面支撑构件已使用壳单元建模。根据可用的实验数据验证了该模型,发现该模型可准确预测实验剪切刚度,平均误差为7%。基于验证的有限元模型,量化了影响框架剪力变形的因素。都考虑了欧洲(EN15512)和澳大利亚(AS4084)标准中的测试设置所施加的不同框架变形。量化并讨论了支撑布局,螺栓弯曲,立柱和支撑构件在连接处的局部变形对立柱框架性能的影响。

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