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Direct analysis of steel frames with asymmetrical semi-rigid joints

机译:具有不对称半刚性接头的钢框架直接分析

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Semi-rigid joints have been widely studied in literature in recent decades because they affect greatly the structural response of frames. In literature, the behavior of semi-rigid joints is commonly assumed to be identical under positive and negative moments which are obviously incorrect in many cases where joint details such as bolt arrangement or placement of haunch are vertically asymmetrical. This paper evaluates two common types of steel frames with asymmetrical beam-to-column joints by Direct Analysis allowing for plasticity. A refined design method of steel frames using a proposed simple forth order curved-quartic element with an integrated joint model allowing for asymmetrical geometric joint properties is presented. Furthermore, the ultimate behavior of six types of asymmetrical end-plate connections under positive and negative moment is examined by the Finite Element Method (FEM). The FEM results are further applied to the proposed design method with the curved-quartic element for Direct Analysis of two types of steel frames under dominant gravity or wind load. The ultimate frame behavior under the two different scenarios are examined with respect to their failure modes and considerably different structural performances of the frames were observed when compared with the identical frames designed with the traditional method where symmetrical joints characteristics were assumed. The finding of this research contributes to the design of steel frames as their asymmetrical beam-to-column joints lead to different frame behavior when under positive and negative moment and this aspect should be incorporated in the design and analysis of steel frames. This consideration of asymmetrical joint behavior is recommended to be highlighted in future design codes.
机译:近几十年来,半刚性关节已在文献中被广泛研究,因为它们影响了框架的结构响应。在文献中,在正极和负片下,半刚性关节的行为在正负时刻在许多情况下显然是不正确的,其中螺栓布置或凸起的放置垂直不对称。本文通过直接分析允许可塑性评估具有不对称光束到柱接头的两个常见类型的钢框。提出了一种具有允许非对称几何接合性能的综合接头模型的钢帧的精制设计方法。此外,通过有限元方法(FEM)检查正极和负片下六种类型的非对称端板连接的最终行为。 FEM结果进一步应用于具有曲面 - 四分之一元素的所提出的设计方法,用于直接分析两种类型的重力或风负荷。在与假设对称接合特性的传统方法设计的相同框架相比,观察到两个不同场景下的最终帧行为,并且观察到帧的显着不同的结构性能。该研究的发现有助于钢框架的设计,因为它们的不对称光束柱接头导致在正面和负时刻的不同框架行为,并且该方面应结合在钢框架的设计和分析中。建议在未来的设计代码中突出显示不对称联合行为的这种考虑。

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