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A macroscopic approach for seismic damage transition within reinforced concrete wall–frame structures

机译:钢筋混凝土墙框架结构中地震损伤过渡的宏观探讨方法

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摘要

The damage models proposed to date fail to identify the damage transition within one typical dual structural system, that is, wall-frame structures, under strong earthquakes. It's conceptually promising to combine a macroscopic global damage model physically with a simplified structural model that can characterize the interaction mechanism between the frame part and wall part of the structures. Thus, a macroscopic approach, with the integration of a macroscopic global damage model and a generalized shear-flexure coupled model, is proposed to have a closer insight into the damage transition within the wall-frame structures. The relation between the stiffness ratio and the ratio of vibration periods is established by introducing two stiffness-based damage indicators and modal damage indexes. By this relation and the stiffness degradation in the frame part and wall part, the correlations between the modal damages, global damage, and the damages of the two parts are clarified. The combination of the damage indicators of the two parts with global damage is proved to be capable of capturing the damage transition during the dynamic redistribution of internal forces. The case study indicates that the damage predictions of the wall-frame structures are consistent with the interstory drift and proportions of failed components. The comparative study implies the efficiency of strengthening the link beams.
机译:建议迄今为止的损坏模型未能识别一个典型的双结构系统内的损坏过渡,即强烈地震下的壁框架结构。在概念上承诺,使用一种简化的结构模型将宏观全球损伤模型结合在一起,该结构模型可以表征结构的框架部分和墙壁部分之间的相互作用机构。因此,建议宏观方法与宏观全局损伤模型和广义剪切弯曲耦合模型的集成,以便更靠近壁框架结构内的损坏过渡。通过引入两个基于刚度的损伤指示器和模态损伤指数来建立刚度比与振动周期之比的关系。通过该关系和框架部分和墙壁部分中的刚度劣化,阐明了模态损坏,全局损坏和两部分的损坏之间的相关性。证明,两部分具有全局损害的损坏指标的组合能够在内部力的动态再分配期间捕获损坏过渡。案例研究表明,壁框架结构的损坏预测与失败组件的壁垒漂移和比例一致。比较研究意味着加强连杆梁的效率。

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