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Experimental and numerical studies on axially loaded reinforced square hollow section T-joints

机译:轴向加载增强方空心截面T关节的实验性和数值研究

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摘要

This paper presents outcomes of experimental and numerical studies completed on unreinforced, collar plate reinforced and doubler plate reinforced Square Hollow Section (SHS) T-joints subjected to axial compressive loading on the brace member. A total of nine full-scale SHS T-joint specimens were fabricated and tested, in which six specimens were reinforced with collar plate and doubler plate. Non-linear finite element (FE) models were developed using finite element code, ABAQUS. Test data was used to validate these FE models. Subsequently, validated FE models were used to conduct an extensive parametric study to investigate the effect of various geometrical parameters of main members and reinforcement plates on the ultimate capacity of reinforced SHS T-joints. The parametric study found that use of both collar and doubler plate reinforcements significantly increase the ultimate capacity of SHS T-joints. Thickness of the reinforcing plate has a positive effect if the thickness of the reinforcing plate is limited to twice the thickness of the chord member. This study, however, found that the capacity of a reinforced SHS T-joint is not dependent on the type of reinforcing plate. The study concludes that the maximum capacity that can be achieved from a reinforced joint is about double the capacity of a similar unreinforced joint. It was found that the Eurocode EN 1993-1-8 overestimates the capacity of reinforced SHS T-joints. Therefore, a new design method for predicting the ultimate capacity of the collar plate and doubler plate reinforced SHS T-joints was developed and this new design method is presented in this paper.
机译:本文介绍了在括号构件上经受轴向压缩负载的未原始的,套环增强和倍增方增强方形中空部分(SHS)T关节的实验和数值研究的结果。制造和测试了总共九个全尺寸SHS T关节标本,其中用套环和倍增板增强了六个样品。非线性有限元(FE)模型是使用有限元代码,ABAQUS开发的。测试数据用于验证这些FE模型。随后,验证的Fe模型用于进行广泛的参数研究,以研究主要成员和加固板各种几何参数对增强SHS T关节的最终容量的影响。参数研究发现,使用套环和倍增板增强材料的使用显着增加了SHS T关节的最终容量。如果加强板的厚度限制在弦成员的厚度的两倍,则加强板的厚度具有正效果。然而,这项研究发现,增强SHS T关节的容量不依赖于加强板的类型。该研究得出结论,可以从增强关节实现的最大容量大约是类似的未合成关节的增加的能力。有人发现,欧洲EN 1993-1-8高估了加强SHS T关节的能力。因此,开发了一种用于预测套环板和倍增板增强SHS T关节的最终容量的新设计方法,本文提出了新的设计方法。

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