首页> 外文期刊>Thin-Walled Structures >An improved method for analyzing shear lag in thin-walled box-section beam with arbitrary width of cantilever flange
【24h】

An improved method for analyzing shear lag in thin-walled box-section beam with arbitrary width of cantilever flange

机译:任意宽度悬臂翼缘薄壁箱形截面梁的剪力滞分析方法的改进

获取原文
获取原文并翻译 | 示例

摘要

The shear lag effect can significantly affect the performance of wide-box structures, and even becomes one of the most important influencing factors endangering structural safety. This paper develops a theoretical analysis method, which is designated as PM analysis for analyzing shear lag phenomenon in thin-walled box-section beam with arbitrary width of cantilever flange. In this method, the introduction of initial shear rotation (or initial shear strain) gamma(oi), due to the effect of web restraint on flanges, is innovatively proposed and further employed in describing the additional warping displacement in top lateral cantilever flanges, and a practical and straightforward procedure of coefficient alpha(3) is designed (DP) based on the proposed assumptions. In addition, a modified method to PM-DP analysis is developed for improving the defects of the hypothesis of shear-lag warping displacements in top lateral cantilever flanges, that is, PM-DP(M) analysis. The differential equations for generalized displacement w(x) and the standard magnitude of shear-lag warping displacement U(x) of the beam are deduced by means of the principle of minimum potential energy (MPE) and solved with the given boundary conditions. Numerous models of thin-walled box-section with arbitrary width of top lateral cantilever flanges under distributed load are chosen and built through a software program (ABAQUS). The results obtained from PM analysis (PM-LB, PM-DP and PM-DP(M)) are summarized into a series of curves indicating the distribution of normal stress and the displacements for various examples, and compared to those obtained from the finite element method (FEM). The study widely demonstrates the strong applicability and high precision of PM-DP(M) analysis, which can be considered as an ideal solution in predicting shear lag effect for thin-walled box-section beam with arbitrary width of cantilever flange and, possibly, be adopted as valuable reference for the design of related thin-walled structures.
机译:剪力滞效应会显着影响宽箱结构的性能,甚至成为危害结构安全的最重要影响因素之一。本文提出了一种理论分析方法,称为PM分析法,用于分析任意宽度悬臂翼缘的薄壁箱形截面梁的剪力滞现象。在这种方法中,由于腹板约束对法兰的影响,创新性地提出了引入初始剪切旋转(或初始剪切应变)γ(oi)的方法,并进一步用于描述顶部横向悬臂法兰的附加翘曲位移,以及根据所提出的假设,设计了一个实用而直接的系数alpha(3)程序(DP)。此外,开发了一种改进的PM-DP分析方法,以改善顶侧悬臂翼缘的剪力滞翘曲位移假设的缺陷,即PM-DP(M)分析。利用最小势能原理推导梁的广义位移w(x)和剪力滞变形位移U(x)的标准幅值的微分方程,并在给定的边界条件下求解。选择并通过软件程序(ABAQUS)建立了薄壁箱形截面模型,这些模型具有分布载荷下顶部横向悬臂法兰任意宽度。从PM分析(PM-LB,PM-DP和PM-DP(M))获得的结果汇总为一系列曲线,这些曲线表示各个示例的法向应力分布和位移,并与从有限元获得的结果进行比较元素方法(FEM)。这项研究广泛地证明了PM-DP(M)分析的强大适用性和高精度,可以认为是预测任意宽度悬臂翼缘的薄壁箱形截面梁的剪力滞后效应的理想解决方案,并且可能可作为相关薄壁结构设计的宝贵参考。

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