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FEM Analysis and Experimental Study on Monolayer Cable Net for Glass Facades: Static Performance

机译:玻璃幕墙单层电缆网的有限元分析与实验研究:静态性能

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Monolayer cable nets have been widely applied in point-supported glass facades in recent years because of transparency, light weight and flexibility of construction. In this paper, work on the static load bearing performance of this type of cable net is described through the use of finite element analysis (FEA) and tests on a 1/10-scale model of a real project in P.R. China under construction. Firstly a method of analysis inverse to the sequence of erection and much different from conventional methods, is used to model the pre-stretching of cables with the aid of FEA to provide guidelines for the tests. Cable pre-stretching proceeds by three stages, then load bearing behaviour tests on the cable net are carried out both before and after the installation of glass panels. The agreement between the pre-stretching tests and the FEA analysis indicates that the inverse analysis method is convenient in calculation, and provides useful references for the pre-stretching of similar types of cable net in practical engineering. The nonlinear relationship found between loads and displacements just indicates the nonlinear properties of flexible cable nets. Before the installation of glass panels, the structural stiffness actually increases slowly with increasing external loads, and greater initial pre-tension is more beneficial to load bearing capacity of the structure. But too large an initial pre-tension may overload the supporting structures of the cable net. The increase in cable force due to external loads is small. Nevertheless, the stiffness of the glass panels themselves make a significant contribution to the overall structural stiffness, the contribution which becomes less obvious as the stiffness of the cable net itself increases.
机译:近年来,由于透明性,重量轻和结构灵活,单层电缆网已广泛应用于点支式玻璃幕墙。在本文中,通过使用有限元分析(FEA)以及在中国在建的实际项目的1/10比例模型进行测试,描述了此类电缆网的静载荷性能工作。首先,使用一种与安装顺序相反的分析方法,该方法与常规方法大不相同,该方法借助FEA为电缆的预拉伸建模,从而为测试提供指导。电缆的预拉伸过程分为三个阶段,然后在安装玻璃面板之前和之后都对电缆网上进行了承载性能测试。预拉伸试验与有限元分析之间的一致性表明,逆分析方法计算方便,为实际工程中类似类型电缆网的预拉伸提供了有益的参考。载荷与位移之间的非线性关系仅表明柔性电缆网的非线性特性。在安装玻璃面板之前,结构刚度实际上会随着外部载荷的增加而缓慢增加,并且更大的初始预张力更有利于结构的承载能力。但是太大的初始预张力可能会使电缆网的支撑结构过载。由于外部负载引起的电缆力增加很小。然而,玻璃面板本身的刚度对整体结构刚度做出了很大的贡献,随着电缆网本身刚度的增加,这种贡献变得不那么明显。

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