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Experimental Investigation of Multihazard Resistant Bridge Piers Having Concrete-Filled Steel Tube under Blast Loading

机译:爆炸荷载作用下钢管混凝土多危害桥墩的试验研究

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This paper presents the development and experimental validation of a multizard bridge pier concept, i.e., a bridge pier system capable of providing an adequate level of protection against collapse under seismic and blast loading (but not acting simultaneously). A multicolumn pier-bent with concrete-filled steel tube (CFST) columns is the proposed concept, and the adequacy of this system is experimentally investigated under blast loading. This paper describes simplified blast analysis, multihazard design of bridge piers, and blast experimental program and results. Additionally, the results from the blast experiments are compared with the results from the simplified method of analysis considering an equivalent single degree of freedom system having an elastic-perfectly plastic behavior. It is found that prototype bridge CFST columns can be designed to provide both satisfactory seismic performance and adequate blast resistance. It is also shown that the CFST columns exhibited a ductile behavior under blast load in a series of tests at 1/4 scale. Maximum deformation of the columns could be calculated using simplified analysis considering a factor to account for the reduction of pressures on the circular column and determined from this experimental program.
机译:本文介绍了多扎桥墩概念的发展和实验验证,即能够在地震和爆炸荷载作用下(但不能同时作用)提供足够水平的防塌保护的桥墩系统。提出了带有钢管混凝土(CFST)柱的多柱墩骨式弯管概念,并在爆炸荷载下通过实验研究了该系统的适用性。本文介绍了简化的爆炸分析,桥墩的多灾种设计以及爆炸试验程序和结果。另外,将爆炸实验的结果与简化分析方法的结果进行比较,该方法考虑了具有弹性完美塑性行为的等效单自由度系统。结果发现,原型桥梁CFST柱可以设计成提供令人满意的抗震性能和足够的抗爆炸性。还显示出CFST柱在爆炸载荷下在1/4规模的一系列测试中表现出延性。可以使用简化的分析方法来计算柱的最大变形,该分析考虑了一个因素来解决圆柱上压力的降低,并可以从该实验程序中确定。

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