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首页> 外文期刊>Journal of structural engineering >Theoretical and Experimental Study of Plate-Strengthened Concrete Columns under Eccentric Compression Loading
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Theoretical and Experimental Study of Plate-Strengthened Concrete Columns under Eccentric Compression Loading

机译:偏心受压板加固混凝土柱的理论与试验研究。

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摘要

Steel jacketing has been widely used for strengthening RC columns in the last four decades. In practice, the RC columns to be strengthened are usually subjected to eccentric precompressed axial loads. Until now, there have been only limited studies conducted that address the stress-lagging effects between the original column and the new jacket due to the preexisting load. In this paper, the precambered steel plate-strengthening approach, which can alleviate the stress-lagging effects, was adopted to improve the axial strength and moment capacity of the preloaded RC columns subjected to eccentric compression loading. An experimental study that involved eight specimens with different eccentricities, plate thicknesses, and initial precamber displacements was conducted to examine the ductility and moment-curvature response of strengthened columns and to validate the effectiveness of this approach. A theoretical model was developed to predict the axial load capacity of the plate-strengthened columns. A comparison of the theoretical and experimental results showed that the theoretical model accurately predicted the axial load-carrying capacities of the plate-strengthened columns under eccentric compression loading.
机译:在过去的四十年中,钢护套被广泛用于加固RC柱。实际上,要加固的RC柱通常承受偏心预压缩的轴向载荷。迄今为止,仅进行了有限的研究,以解决由于预先存在的载荷而导致原始色谱柱与新套管之间的应力滞后效应。本文采用可减轻应力滞后效应的预拱形钢板加固方法,以提高预应力RC柱在偏心压缩荷载下的轴向强度和弯矩承载力。进行了一项涉及八个具有不同偏心率,板厚度和初始前拱位移的标本的实验研究,以检查加固柱的延性和弯矩曲率响应,并验证该方法的有效性。建立了理论模型来预测板加强柱的轴向承载能力。理论和实验结果的比较表明,该理论模型可以准确地预测偏心压缩载荷下板加强柱的轴向承载能力。

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