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首页> 外文期刊>Journal of bridge engineering >Inelastic Buckling Behavior of Steel H-Piles with Localized Severe Corrosion
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Inelastic Buckling Behavior of Steel H-Piles with Localized Severe Corrosion

机译:具有局部严重腐蚀的H型钢桩的非弹性屈曲行为

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摘要

This paper presents the findings of an experimental and analytical research study that was conducted to evaluate the buckling behavior of steel bridge piles with localized severe section loss. Seven full-scale H-piles with different degrees of simulated corrosion were tested under axial compression. A nonlinear, three-dimensional (3D), finite-element model was developed to predict the inelastic buckling behavior of corroded piles under axial compression loading. The model was validated by comparison with the experimental results. The validated model was used to conduct a parametric study. Six parameters were investigated: (1) pile slenderness, (2) reduction of the flange thickness, (3) reduction of the web thickness, (4) location of the corroded region, (5) extent of the corroded region, and (6) magnitude of the residual stresses. The results indicate that the reduction of the flange thickness is the most significant factor affecting the inelastic buckling behavior. The pile slenderness and the magnitude of the residual stresses affected only the capacity of piles for which global buckling was the dominant failure mode. The experimental and numerical results were compared to three existing design methods to evaluate the suitability of the current design specifications for predicting the axial capacity of steel compression members with localized corrosion.
机译:本文介绍了一项实验和分析研究的结果,该研究旨在评估具有局部严重断面损失的钢桥桩的屈曲行为。在轴向压缩下测试了七个具有不同模拟腐蚀程度的全尺寸H桩。建立了非线性三维(3D)有限元模型来预测锈蚀桩在轴向压缩载荷下的非弹性屈曲行为。通过与实验结果进行比较来验证该模型。经过验证的模型用于进行参数研究。研究了六个参数:(1)桩的细长度;(2)凸缘厚度的减小;(3)腹板厚度的减小;(4)腐蚀区域的位置;(5)腐蚀区域的范围;以及(6) )残余应力的大小。结果表明,凸缘厚度的减小是影响非弹性屈曲行为的最重要因素。桩的细长度和残余应力的大小仅影响以整体屈曲为主要破坏模式的桩的承载力。将实验和数值结果与三种现有设计方法进行比较,以评估当前设计规范对预测局部腐蚀的钢制压缩构件的轴向承载能力的适用性。

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