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Experimental and numerical analysis on the slope change joint of a quartet-steel-tube-column transmission tower

机译:四方钢管柱输电塔边坡转换缝的试验与数值分析

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In this paper, a new type of multi-planar slope change joint (abbreviation SCJ) in a new type of long span transmission tower is presented. Difference between the new tower and regular ones lies in the tower leg. In the new tower, each leg is a built-up column constituted with four steel tubes. The SCJ is a complicated multi-planar connection in the tower. Three-dimensional loading of the joint was achieved in the experiment. Detailed configuration of the SCJ and the experimental system were introduced. Finite element models of the SCJ were established and validated against experimental results. Experimental and numerical analysis results, under different cases, indicated that the joint zone was within the elastic bearing capacity. Buckling failures appeared in the upper or lower tubes. Then parametric studies were carried out to study different factors that may have influence on the ultimate load. Axial load distribution among the four lower tubes in the joint was also analysed. Finally, some joint design recommendations were proposed.
机译:本文提出了一种新型的大跨度输电塔中的新型多平面坡度变化缝(简称SCJ)。新塔架与常规塔架的区别在于塔架支腿。在新塔中,每个支腿都是由四个钢管组成的组合柱。 SCJ是塔中复杂的多平面连接。在实验中实现了关节的三维加载。介绍了SCJ的详细配置和实验系统。建立了SCJ的有限元模型,并针对实验结果进行了验证。在不同情况下的实验和数值分析结果表明,接头区域在弹性承载力之内。屈曲失败出现在上管或下管中。然后进行参数研究以研究可能影响最终载荷的不同因素。还分析了关节中四个下部管之间的轴向载荷分布。最后,提出了一些联合设计建议。

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