The influence of material aging on the structural behavior of a flexible roof with a polymer membrane shell

A. Chesnokov, V. Mikhailov, I. Dolmatov
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Abstract

The roof structure considered in the research consists of continuous cables and a number of spreaders forming a three-dimensional frame. The frame is covered with a polymer membrane made of flexible architectural fabrics. The elements of the roof are compact and suitable for transportation to remote construction sites. The roof also has advantages for developing areas with harsh climatic conditions. The flexible elements of the roof, however, only provide transmission of tensile forces. Under compression, cables slacken and the membrane becomes wrinkled. Pre-tension of the flexible elements, which is introduced to retain the operability of the roof, tends to gradually diminish due to material aging. The aging results in the alteration of strength properties and creep elongation of the structural elements. It induces membrane tearing on local areas. Force alteration in primary structural members is examined in the present study, with statistical methods used for data analysis. They include significance hypothesis testing and correlation coefficients estimation. The data are obtained by the Finite Element simulation of the roof using EASY-2020 software. The results of the work may be used for life expectancy assessment of flexible roof structures, providing important infor - mation for the preliminary design stage. The work contributes to the safety enhancement of cable-membrane structures and the expansion of their scope in permanent building constructions.
材料老化对聚合物膜壳柔性屋面结构性能的影响
研究中考虑的屋顶结构由连续的索和若干张拉索组成一个三维框架。框架覆盖着一层由柔性建筑织物制成的聚合物膜。屋顶元素紧凑,适合运输到偏远的建筑工地。这种屋顶对于气候条件恶劣的开发地区也有优势。然而,屋顶的柔性构件只提供拉力的传递。受压作用下,索松弛,膜起皱。由于材料老化,为保持屋顶的可操作性而引入的柔性元件的预张力趋于逐渐减少。时效导致构件的强度性能和蠕变伸长率发生变化。它会引起局部的膜撕裂。本研究考察了主要结构构件的受力变化,并采用统计方法进行数据分析。它们包括显著性假设检验和相关系数估计。采用EASY-2020软件对顶板进行有限元模拟,得到数据。研究结果可用于柔性屋面结构的寿命评估,为柔性屋面结构的初步设计提供重要信息。对提高索膜结构的安全性,扩大索膜结构在永久性建筑中的应用范围具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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