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Residual stiffness assessment of structurally failed reinforced concrete structure by dynamic testing and finite element model updating

机译:通过动态测试和有限元模型更新评估结构破坏钢筋混凝土结构的残余刚度

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When an under-reinforced concrete beam structure has been loaded to the point where reinforcing steel on the tension side has yielded, it is deemed to have structurally failed and the full load capacity and stiffness can no longer be developed. When unloaded from the point of failure, the residual stiffness of the structure is difficult to estimate. There is a need to establish the serviceability of the structure and ultimately establish the levels of further loading that can be sustained before total collapse. In this paper we present a method for assessing residual stiffness of such a "failed" reinforced concrete structure, through the application of dynamic testing and finite element (FE) model updating. In an experimental study, failed zones in a beam structure were simulated in a FE model. Through a procedure of sensitivity-based updating using the measured modal properties, the stiffness distribution along the failed beam structure was identified. [References: 15]
机译:当将钢筋不足的混凝土梁结构加载到受拉侧的钢筋屈服的程度时,则认为该结构已失效,无法再发挥满负荷能力和刚度。从故障点卸载时,很难估计结构的残余刚度。需要确定结构的可维修性,并最终确定在完全倒塌之前可以承受的进一步载荷的水平。在本文中,我们通过动态测试和有限元(FE)模型更新的应用,提出了一种评估这种“失效”钢筋混凝土结构的残余刚度的方法。在一项实验研究中,在有限元模型中模拟了梁结构中的失效区域。通过使用测得的模态特性进行基于灵敏度的更新的过程,可以确定沿失效梁结构的刚度分布。 [参考:15]

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