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INTERACTION STRENGTH FOR CHS-TO-LONGITUDINAL PLATE JOINTS UNDER AXIAL LOAD AND IN-PLANE BENDING MOMENT

机译:轴向载荷和面内弯矩下CHS对纵板接头的相互作用强度

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摘要

The circular hollow section (CHS) has lots of advantages in excellent structural properties, architecturally attractive features. Thus, CHSs are used extensively in many applications in buildings, bridges, towers, and offshore. In CHS, it is necessary to understand the various complex shape of CHS joint because loads act simultaneously according to joint type. The use of high-strength steel has been continuously increased, but the current design equation in AISC 2011 or KBC 2016 limits maximum yield strength 360 MPa. This paper studies an interaction strength of high-strength CHS-to-longitudinal plate X-joint subjected to combination of plate axial load and in-plane bending moment. For the study, numerical analysis based on experimental tests was carried out. The analysis was performed according to variables for determining shape of joint, i.e., chord slendemess, plate width-to-CHS diameter ratio, and utilization ratio. Investigations have shown that a linear summation of the ratios for axial load and in-plane bending moment may be used as conservative approximation.
机译:圆形空心部分(CHS)具有优异的结构性,结构性有吸引力的特征。因此,CHSS在建筑物,桥梁,塔楼和海上的许多应用中广泛使用。在CHS中,有必要了解CHS关节的各种复杂形状,因为载荷根据关节型同时采用。使用高强度钢已经不断增加,但Aisc 2011或KBC 2016中的当前设计方程限制了最大屈服强度360MPa。本文研究了高强度CHS对纵向板X-孔的相互作用强度对板轴向载荷和面内弯矩的组合进行了影响。对于研究,进行了基于实验测试的数值分析。根据用于确定关节的形状,即弦裂解物,板宽度至CHS直径比和利用率的变量进行分析。研究表明,轴向载荷和面内弯矩的比率的线性求和可以用作保守近似。

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