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首页> 外文期刊>Journal of Constructional Steel Research >Opening reinforcement for box-section walls containing continuous elliptical holes in steel pylons
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Opening reinforcement for box-section walls containing continuous elliptical holes in steel pylons

机译:包含钢塔中连续椭圆孔的箱形截面墙的开口钢筋

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This paper focuses on the reinforcing methods used for improving the compression behaviors of perforated box-section walls as provided in the anchorage zones of steel pylons to hold the cables. The rectangular plates investigated each have single-row continuous elliptical holes and are simply supported on four edges in the out-of-plane direction. Two types of reinforcing stiffeners named flat stiffener (FS) and longitudinal stiffener (LS) are considered. Uniaxial compression tests are first conducted for 46 specimens, of which 10 are unreinforced plates and 36 are reinforced plates. The mechanical behaviors such as stress concentration, out-of-plane deformation, failure pattern, and elasto-plastic ultimate strength are experimentally investigated. Finite element models are further developed to predict the ultimate strengths of plates with various dimensions. The FE results are validated by the test data. The influences of non-dimensional parameters including plate aspect ratio, hole spacing, hole width, stiffener slenderness ratio, as well as stiffener thickness on the ultimate strengths are illustrated on the basis of numerous parametric studies. Comparison of reinforcing efficiency shows that the continuous longitudinal stiffener is the best reinforcing method for such perforated plates. The simplified formulations used for estimating the compression strengths of reinforced plates are finally proposed. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文重点介绍了用于改善钢塔架锚固区域中用来固定电缆的带孔箱形截面壁的压缩性能的加固方法。所研究的矩形板均具有单行连续的椭圆孔,并简单地支撑在平面外方向的四个边缘上。考虑了两种类型的增强加劲肋,分别为平面加劲肋(FS)和纵向加劲肋(LS)。首先对46个试样进行了单轴压缩试验,其中10个是非增强板,而36个是增强板。实验研究了力学行为,如应力集中,面外变形,破坏模式和弹塑性极限强度。进一步开发了有限元模型,以预测各种尺寸板材的极限强度。 FE结果由测试数据验证。在众多参数研究的基础上,说明了包括板长宽比,孔间距,孔宽度,加劲肋细长比以及加劲肋厚度在内的无量纲参数对极限强度的影响。增强效率的比较表明,连续纵向加劲肋是此类多孔板的最佳增强方法。最后提出了用于估计增强板抗压强度的简化公式。 (C)2014 Elsevier Ltd.保留所有权利。

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