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Influence of Gliding Cable Joint on Mechanical Behavior of Suspen-Dome Structures

机译:滑索接头对悬索穹顶结构力学行为的影响

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摘要

As a new type of spatial structure system, a suspen-dome structure shows good mechanical behavior, because its cable layers with pre-stress do not only improve the stability and stiffness of the top lattice shell of the structure but also decrease the push-out forces to its hoop beam. There are two kinds of connection forms on the common joints among hoop cable, radial cable and struts. One is continuous gliding cable joint where individual cable can move independently at the same joint, and the other one is no-gliding cable joint (discontinuous cable joint) where different cables at the same joint move in the same direction. These two forms will lead to different structural behavior, such as internal force distribution of cable layers when the structure is subjected to half-span loads. In this paper, frozen-heated method (FHM) is employed to analyze this problem. And, the results obtained show that the first joint form can adjust internal forces and decrease the peak value of internal forces of hoop cables and radial cables, while it has little influence on the mechanical behavior of the top lattice shell of the structure.
机译:作为一种新型的空间结构系统,悬索穹顶结构具有良好的机械性能,因为其预应力电缆层不仅可以提高结构顶部格架的稳定性和刚度,还可以减少顶出力力对其箍束。环向电缆,径向电缆和支柱之间的普通接头有两种连接形式。一种是连续滑行电缆接头,其中单个电缆可以在同一接头处独立移动,另一种是不滑行电缆接头(不连续电缆接头),其中同一接头处的不同电缆在同一方向上移动。这两种形式将导致不同的结构行为,例如当结构承受半跨载荷时电缆层的内力分布。本文采用冷冻加热法(FHM)来分析该问题。并且,获得的结果表明,第一接头形式可以调节内力并减小环向电缆和径向电缆的内力峰值,而对结构的顶部格架的机械性能影响很小。

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