Ultimate Strength of Parabolic Concrete Arches

A. Al-kuaity
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Abstract

This investigation is aimed to present a simple analytical approach for predicting the ultimate strength of concrete arch using theory of plasticity. Six models of two-hinged parabolic concrete arches with and without steel reinforcement were tested under concentrated load. The observed behavior of cracking strength and collapse load of the arches tested were compared with those predicted by the analytical procedure proposed here. The arches tested were un-reinforced concrete, lightly reinforced concrete, and concrete with filing iron respectively. A Good agreement is found between the proposed analysis and test results. Tests have shown that the collapse of all arches was mainly due to the formation of two plastic hinges at a point of maximum bending moment which is similar to collapse mechanism adopted in this study. The use of light concentric steel reinforcement resulted into a significant increase in the ultimate load. This increase reaches up to three times of that without reinforcement. Ductility was also found to be greatly improved due to using steel reinforcement in arches. The procedure of analysis in this paper can give a simple guide for design of concrete arch.
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抛物面混凝土拱的极限强度
本研究的目的是提出一种简单的分析方法来预测混凝土拱的极限强度塑性理论。对6种带和不带钢筋的双铰抛物型混凝土拱进行了集中荷载试验。将试验中观察到的拱的开裂强度和倒塌荷载行为与本文提出的分析方法预测的结果进行了比较。试验拱分别为无钢筋混凝土、轻钢筋混凝土和锉铁混凝土。分析结果与试验结果吻合较好。试验表明,所有拱的倒塌主要是由于在最大弯矩处形成了两个塑性铰,这与本研究采用的倒塌机制相似。轻质同心钢筋的使用导致了极限荷载的显著增加。这一增长达到了没有加强的三倍。由于在拱中使用钢筋,延展性也得到了极大的改善。本文的分析过程对混凝土拱的设计具有简单的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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