Investigating Load-Bearing Capabilities and Failure Mechanisms of Inflatable Air Ribs
Ying Liu, Shengchao Liang, Yanru Li, Jun Zhang
Beijing University of Civil Engineering and Architecture Beijing Institute of Graphic Communication
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摘要与影响
Air ribs are the critical components of tents. Ten air ribs were designed to study the influence of rise–span ratios on load-bearing performance and explore the failure mechanism. According to the maximum stress that appears at the top and bending regions of the rib, the ribs can be divided into an upright region and an arc-like region. So, a segmentation failure competition mechanism was proposed. In order to enhance the bearing performance, the upright region and arc-like region should be designed to fail at the same time. For the rib named 0.333-S, the stress distributes uniformly and the critical load is 2.62 kN/m2; the upright region and arc-like region fail at the same time. For the rib named 0.5-S/R, the critical load is 1.465 kN/m2, and it fails at the upright region, resulting in a reduction of 44%. The tent with ribs named 0.333-S shows better resistance performance against wind load, and the end ribs of this tent deform less. Its maximum displacement is 0.112 m, which is reduced by 65.8% compared with that of the original upright arch tent.
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工程Structural Analysis and Optimization
Vibration and Dynamic Analysis · Structural Engineering and Vibration Analysis
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