An efficient method for evaluating the wind resistance performance of high-vertical standing seam metal cladding systems

IF 5.7 1区 工程技术 Q1 ENGINEERING, CIVIL Thin-Walled Structures Pub Date : 2024-09-11 DOI:10.1016/j.tws.2024.112433
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Abstract

Uplift wind-induced responses and failure criteria of high-vertical standing seam metal cladding systems (SSMCSs) are of paramount importance for evaluating their wind resistance performance. This paper proposes an efficient evaluation method that combines a highly efficient finite element (FE) model for structural response analysis with reasonable failure criteria, based on experimental and numerical investigation. The FE model incorporating the developed equivalent spring model is established with the calibrated stiffness from tensile tests and validated through the wind uplift resistance experiments conducted on large-scale prototype structures. The recorded structural responses from the experiments validate the feasibility of the FE model in simulating the geometric and material nonlinearities of the systems. To evaluate the wind resistance performance, the failure criteria are developed based on the observed pullout mechanisms and failure modes from the experiments. These criteria take the relative deformation of standing webs and the pullout resistance strength of seam connections as critical parameters, and the relationship between them is calibrated through a series of tensile tests using a self-designed fixture. Tensile test results show notable variability in the pullout resistance strength of seam connections, with a mean value decreasing as the relative rotational angle of the standing webs increases. According to the developed failure criteria, the ultimate uplift pressures evaluated from the FE analysis exhibit minimal positive deviations of 5.3 % and 7.3 % from the experimental results for different failure modes, respectively. This highlights the effectiveness of the proposed method in evaluating the wind resistance performance of high-vertical SSMCSs.

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评估高垂直立缝金属包层系统抗风性能的有效方法
高垂直立缝金属包层系统(SSMCS)的上浮风致响应和失效标准对于评估其抗风性能至关重要。本文在实验和数值研究的基础上,提出了一种高效的评估方法,将用于结构响应分析的高效有限元(FE)模型与合理的失效标准相结合。结合所开发的等效弹簧模型的有限元模型是根据拉伸试验的校准刚度建立的,并通过在大型原型结构上进行的抗风上浮实验进行了验证。实验记录的结构响应验证了有限元模型模拟系统几何和材料非线性的可行性。为了评估抗风性能,我们根据实验中观察到的拉拔机制和失效模式制定了失效标准。这些标准将立腹板的相对变形和接缝连接的抗拉强度作为关键参数,并通过使用自行设计的夹具进行一系列拉伸试验来校准两者之间的关系。拉伸试验结果表明,接缝连接的抗拉强度存在明显差异,平均值随着立腹板相对旋转角度的增大而减小。根据所制定的失效标准,在不同的失效模式下,通过有限元分析评估出的极限翘曲压力与实验结果的正偏差极小,分别为 5.3 % 和 7.3 %。这凸显了所提出的方法在评估高垂直 SSMCS 抗风性能方面的有效性。
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来源期刊
Thin-Walled Structures
Thin-Walled Structures 工程技术-工程:土木
CiteScore
9.60
自引率
20.30%
发文量
801
审稿时长
66 days
期刊介绍: Thin-walled structures comprises an important and growing proportion of engineering construction with areas of application becoming increasingly diverse, ranging from aircraft, bridges, ships and oil rigs to storage vessels, industrial buildings and warehouses. Many factors, including cost and weight economy, new materials and processes and the growth of powerful methods of analysis have contributed to this growth, and led to the need for a journal which concentrates specifically on structures in which problems arise due to the thinness of the walls. This field includes cold– formed sections, plate and shell structures, reinforced plastics structures and aluminium structures, and is of importance in many branches of engineering. The primary criterion for consideration of papers in Thin–Walled Structures is that they must be concerned with thin–walled structures or the basic problems inherent in thin–walled structures. Provided this criterion is satisfied no restriction is placed on the type of construction, material or field of application. Papers on theory, experiment, design, etc., are published and it is expected that many papers will contain aspects of all three.
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