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Prediction on load carrying capacities of multi-storey door-type modular steel scaffolds

机译:多层门式组合式钢脚手架的承载能力预测

摘要

Modular steel scaffolds are commonly used as supporting scaffolds in building construction, and traditionally, the load carrying capacities of these scaffolds are obtained from limited full-scale tests with little rational design. Structural failure of these scaffolds occurs from time to time due to inadequate design, poor installation and over-loads on sites. In general, multi-storey modular steel scaffolds are very slender structures which exhibit significant non-linear behaviour. Hence, secondary moments due to both P-δ and P-Δ effects should be properly accounted for in the non-linear analyses. Moreover, while the structural behaviour of these scaffolds is known to be very sensitive to the types and the magnitudes of restraints provided from attached members and supports, yet it is always difficult to quantify these restraints in either test or practical conditions. The problem is further complicated due to the presence of initial geometrical imperfections in the scaffolds, including both member out-of-straightness and storey out-of-plumbness, and hence, initial geometrical imperfections should be carefully incorporated. This paper presents an extensive numerical study on three different approaches in analyzing and designing multi-storey modular steel scaffolds, namely, a) Eigenmode Imperfection Approach, b) Notional Load Approach, and c) Critical Load Approach. It should be noted that the three approaches adopt different ways to allow for the non-linear behaviour of the scaffolds in the presence of initial geometrical imperfections. Moreover, their suitability and accuracy in predicting the structural behaviour of modular steel scaffolds are discussed and compared thoroughly. The study aims to develop a simplified and yet reliable design approach for safe prediction on the load carrying capacities of multi-storey modular steel scaffolds, so that engineers can ensure safe and effective use of these scaffolds in building construction.
机译:模块化钢制脚手架通常用作建筑结构中的支撑脚手架,传统上,这些脚手架的承载能力是通过有限的全尺寸测试获得的,且设计合理。由于设计不足,安装不当以及现场超载,这些脚手架有时会发生结构故障。通常,多层模块化钢脚手架是非常细长的结构,表现出明显的非线性行为。因此,在非线性分析中应适当考虑由于P-δ和P-Δ效应引起的次级矩。此外,虽然已知这些支架的结构行为对由附接的构件和支撑件提供的约束的类型和大小非常敏感,但是在测试或实际条件下始终难以量化这些约束。由于支架中存在初始几何缺陷,包括构件的非直线性和多层的垂直性,该问题进一步复杂化,因此,应仔细考虑初始几何缺陷。本文对多层模块化钢制脚手架的三种不同设计方法进行了广泛的数值研究,即a)本征模态缺陷法,b)名义载荷法和c)临界载荷法。应该注意的是,这三种方法采用不同的方式,以允许在存在初始几何缺陷的情况下支架的非线性行为。此外,讨论并比较了它们在预测模块化钢脚手架结构行为方面的适用性和准确性。该研究旨在开发一种简化且可靠的设计方法,以安全地预测多层模块化钢制脚手架的承载能力,从而使工程师可以确保在建筑施工中安全有效地使用这些脚手架。

著录项

  • 作者

    Yu WK; Chung KF;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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