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Structural Assessment Of Minor Axis Steel Joints Using Photoelasticityand Finite Elements

机译:基于光弹性和有限元的短轴钢接头结构评估

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Traditionally, the steel portal frame design assumes that beam-to-column joints are rigid or pinned. However, it is largely recognized that the great majority of joints do not exhibit such idealized behaviour transmitting bending moments with non-negligible rotations. These joints are called semi-rigid and their design should be performed according to their actual structural behaviour. When minor axis beam-to-column joints are considered, the adopted design process generally assumes a flexible response although this is not true for the great majority of structural joints. Minor axis joints present a distinct behaviour that differentiates them from major axis joints. In fact, the absence of transverse stiffeners implies that the column web must resist all the tensile and compressive forces arising from the beam flanges in bending, akin to a plate supported on its vertical sides. In order to evaluate this component's behaviour, this paper presents a comparison between results obtained from a finite element model analysis and experiments. The experimental programme was based on the use of reflection photoelasticity techniques to determine the column web stress and strain distribution present in minor axis semi-rigid joints. This technique, although widely used for determining stress and strain distributions in other applications, was first used in this investigation to determine the semi-rigid joints structural response.
机译:传统上,钢门式框架设计假定梁到柱的接头是刚性的或固定的。但是,人们普遍认识到,绝大多数接头并没有表现出这种理想的行为,即传递带有不可忽略的旋转的弯矩。这些接头称为半刚性,其设计应根据其实际的结构性能进行。当考虑短轴梁到柱的连接时,尽管对于大多数结构连接而言并非如此,但采用的设计过程通常会假定为弹性响应。短轴关节表现出与长轴关节不同的独特行为。实际上,没有横向加强筋意味着柱腹板必须在弯曲时抵抗梁翼缘产生的所有拉力和压缩力,类似于支撑在其垂直侧的板。为了评估此组件的行为,本文对有限元模型分析和实验结果进行了比较。该实验程序是基于使用反射光弹性技术来确定短轴半刚性接头中存在的柱腹板应力和应变分布的。该技术虽然在其他应用中广泛用于确定应力和应变分布,但在本研究中首先用于确定半刚性接头的结构响应。

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