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Numerical modelling of prestressed composite cold-formed steel flooring systems

机译:预应力复合冷弯型钢地板系统的数值模拟

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A novel and highly-efficient prestressed composite flooring system comprising cold-formed steel joists and wood-based floorboards is introduced herein. The prestressing is applied by means of a high-strength steel cable housed within the bottom hollow flange of the steel joist, while the composite action is mobilised by making simple alterations to the currently employed fastening arrangements between the joist and the board. Geometrically and materially nonlinear finite element models with initial geometric imperfections have been developed to simulate the behaviour of the proposed system during the prestressing and vertical loading stages. The structural performance of the prestressed system is compared with that of conventional non-prestressed systems, demonstrating that substantial benefits can be achieved both in terms of load-carrying capacity and serviceability performance. Subsequently, a parametric study is conducted to investigate the effect of the steel section thickness on the ultimate moment capacity and bending stiffness of the system.
机译:本文介绍了一种新颖且高效的预应力复合地板系统,该系统包括冷弯型钢托梁和木质地板。预应力是通过容纳在钢托梁底部空心法兰内的高强度钢缆施加的,而复合作用是通过对托梁与木板之间当前使用的紧固装置进行简单改动来动员的。已经开发了具有初始几何缺陷的几何和材料非线性有限元模型,以模拟所提出系统在预应力和垂直载荷阶段的行为。将预应力系统的结构性能与常规非预应力系统的结构性能进行了比较,证明了在承载能力和可维修性方面都可以实现巨大的收益。随后,进行了参数研究,以研究钢截面厚度对系统的极限弯矩承载力和弯曲刚度的影响。

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