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Importance of composite steel concrete structures in earthquake resistant design ― a critical review

机译:复合钢混凝土结构在抗震设计中的重要性-一项重要评论

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A large number of reinforced concrete buildings collapsed with storey failures, which can be observed in the earthquake resulted in USA, Mexico, Japan, Chile, Turkey and India from 1904 to 2001. Especially RC columns at the corner posts of failure storey collapsed in shear under larger compressive axial forces generated by larger horizontal and vertical accelerations. In order to prevent the shear failure of RC columns resulting in the storey failure of building structures, 'it is necessary to make the ductility of the columns larger'. In this paper the concept of steel composite have been highlighted in the form of Core steel composite columns, Concrete filled rectangular tubular columns (this being the new trend in high rise composite construction), Partially encased composite beam-columns, Composite RCS (Reinforced Concrete Steel) moment resisting frame system typically consisting of reinforced concrete columns, which may have smaller embedded I-shape for erection purpose and act as structural beams. From the above study, and through experimental work, it reveals the importance of steel composites in resisting earthquake forces by significant improvements in ductility and energy absorption capacity.
机译:1904年至2001年,美国,墨西哥,日本,智利,土耳其和印度在地震中可观察到大量钢筋混凝土建筑物倒塌而倒塌的现象。尤其是在破坏层拐角处的RC柱在剪力作用下倒塌了。在较大的水平和垂直加速度下产生较大的压缩轴向力的情况下。为了防止RC柱的剪切破坏导致建筑结构的层状破坏,“有必要使柱的延展性更大”。在本文中,以芯钢复合柱,混凝土填充矩形管状柱(这是高层复合结构的新趋势),部分包裹的复合梁柱,复合RCS(钢筋混凝土)的形式突出了钢复合材料的概念。钢)抗弯框架系统通常由钢筋混凝土柱组成,出于安装目的,该混凝土柱可能具有较小的嵌入式I形并用作结构梁。通过上述研究,并通过实验工作,通过显着提高延展性和能量吸收能力,揭示了钢复合材料在抵抗地震力中的重要性。

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