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Innovative method for strengthening dapped-end beams using an external prestressing technique

机译:使用外部预应力技术加固端梁的创新方法

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摘要

Dapped-end beams are precast members of concrete structures that are widely used in buildings and bridges. At the end of dapped-end beams, the discontinuities caused by the abrupt changes in cross-sectional dimensions, as well as the concentrated applied load, characterize this as a disturbed region. Improper dimensioning and distribution of reinforcing steel lead to undesirable cracking and failure mechanisms that must be predicted to apply proper strengthening systems. This article presents an experimental program for eight reinforced concrete beams with dapped ends. Seven specimens were strengthened using different shapes of external prestressing technique directions: horizontal, vertical and inclined. A non-strengthened specimen was investigated as a reference beam. The test results showed that vertical external prestressing techniques are a very effective strengthening method to increase the capacity of dapped-end beams up to 82 % compared to the control specimen. A new failure mode according to the strengthening technique using horizontal external prestressing appeared and led to compression failure. Additionally, a comparative study was conducted to evaluate the efficiency of various strengthening techniques. A strut-and-tie model was utilized in the analysis of such discontinuity in the D-region. A comparison between the present strengthening techniques and other previous work was conducted to provide a reasonable estimation of the efficiency of the results.
机译:端梁是混凝土结构的预制构件,广泛用于建筑物和桥梁。在端部横梁的末端,由横截面尺寸的突然变化以及集中施加的载荷引起的不连续性将其表征为受干扰区域。增强钢的尺寸和分布不当会导致不良的开裂和破坏机制,必须预测使用适当的增强系统。本文提出了一个试验程序,用于八根端部为干的钢筋混凝土梁。使用不同形状的外部预应力技术方向(水平,垂直和倾斜)加固了七个试样。研究了未加强的试样作为参考光束。测试结果表明,垂直的外部预应力技术是一种非常有效的加固方法,与对照组相比,该方法可以将端梁的承载能力提高至82%。根据采用水平外部预应力的加固技术,出现了一种新的破坏模式,并导致了压缩破坏。此外,进行了一项比较研究,以评估各种加固技术的效率。在这种D区域的不连续性分析中,采用了拉杆-拉杆模型。将当前的加固技术与其他先前的工作进行了比较,以提供对结果效率的合理估计。

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