首页> 外文期刊>MATEC Web of Conferences >Experimental and numerical investigations on overall buckling of steel pipe truss with circular cutout on the compression element
【24h】

Experimental and numerical investigations on overall buckling of steel pipe truss with circular cutout on the compression element

机译:压缩元件上带有圆形切口的钢管桁架整体屈曲的实验和数值研究

获取原文
           

摘要

Pitting corrosion, an extremely localized corrosion that leads to the creation of small holes in metal when a protective coating is damaged could trigger structural failure in platform structures. A single pit in a critical point, especially in compression element, can cause a great deal of reduction in overall buckling capacity of the structure. This study aims to indicate the effect of a circular cutout, representing a pitting corrosion on overall buckling capacity of steel pipe truss structure subject to static loading. Five models of truss structure having a circular cutout on their compression elements had been tested experimentally up to failure. The truss structures were made of steel pipes and contain only 2 elements as representation of part of real platform. The single cutout were located at 0.5L, 0.25L and 0.125L, where L is the length of the compression element. Two models without cutout had been used as control models. The overall buckling capacity of the truss were compared to similar truss based on the element buckling of compression element. The experimental test results, represented by nonlinear load deflection curves and their associated critical loads as well as buckling modes, had been verified numerically by eigenvalue and geometric nonlinear finite element analyses utilizing 3D solid elements on ABAQUS. The results showed that: (a) in the truss model with various hole positions, the overall buckling loads were slightly higher than that of element buckling loads: (b) the presence of cutout reduced the overall buckling capacity of the structure, (c) the capacity reduction factors depend on the cutout locations and (d) the lowest capacity reduction factor of 0.882 was associated with the presence of cutout at the middle of compression element.
机译:点蚀是一种极端的局部腐蚀,当保护涂层受损时,会在金属上形成小孔,这可能会触发平台结构的结构故障。临界点中的单个凹坑,特别是在压缩元件中,可能会导致结构的整体屈曲能力大大降低。这项研究旨在表明圆形切口的影响,即点蚀对静态载荷作用下钢管桁架结构整体屈曲能力的影响。在其压缩元件上具有圆形切口的五种桁架结构模型已通过实验进行了测试,直至失效。桁架结构由钢管制成,仅包含2个元素作为真实平台的一部分。单个切口位于0.5L,0.25L和0.125L,其中L是压缩元件的长度。两种没有切口的模型已用作控制模型。基于压缩元件的单元屈曲,将桁架的整体屈曲能力与类似的桁架进行了比较。通过使用ABAQUS上的3D实体元素进行特征值和几何非线性有限元分析,以非线性载荷挠曲曲线及其相关的临界载荷以及屈曲模式为代表的实验测试结果得到了数值验证。结果表明:(a)在具有各种孔位置的桁架模型中,整体屈曲载荷略高于单元屈曲载荷:(b)切口的存在降低了结构的整体屈曲能力,(c)容量减小因子取决于切口位置,并且(d)最小的容量减小因子0.882与压缩元件中间的切口存在有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号