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Experimental Investigation of Seismically Resistant Bridge Piers under Blast Loading

机译:爆炸荷载作用下抗震桥墩的试验研究

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This paper reports the findings of research examining the blast resistance of bridge piers that are designed in accordance with current knowledge and specifications to ensure ductile seismic performance. Blast testing was conducted on 1/4 scale ductile RC columns, and nonductile RC columns retrofitted with steel jacketing. The seismically designed RC and steel jacketed RC columns did not exhibit a ductile behavior under blast loading and failed in shear at their base rather than flexural yielding. A moment-direct shear interaction model was proposed to account for the reduction of direct shear resistance on cross sections when large moments are simultaneously applied. This made it possible to match and explain the experimentally obtained behavior when direct shear strength was compared with the shear demand obtained from plastic analysis.
机译:本文报告了研究结果,这些研究结果是根据目前的知识和规范设计的以确保延性抗震性能的桥墩的抗爆炸性研究。爆破试验在1/4尺寸的延性RC柱和非延性RC柱上进行了钢衬套改造。抗震设计的RC柱和钢套RC柱在爆炸载荷下没有表现出延性,并且在其基部的剪切而不是在弯曲屈服方面失败。提出了一个力矩-直接剪力相互作用模型来解决当同时施加大力矩时截面上的直接剪力的减小的问题。当将直接剪切强度与通过塑性分析获得的剪切需求进行比较时,这可以匹配并解释实验获得的行为。

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