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Deformation and power characteristics monolithic reinforced concrete bearing systems in the mode of progressive collapse

机译:渐进倒塌模式下整体式钢筋混凝土承载系统的变形和功率特性

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The paper considers the question of substantiating the choice of criteria for limiting states of monolithic reinforced concrete bearing systems for the regime of progressive collapse. Based on the results of computational and theoretical studies, structural elements and structural units of monolithic reinforced concrete buildings are determined, the destruction of which occurs first of all in the event of a failure of the vertical bearing structure. It is established that the destruction of such structural units and structural elements leads to the initialization of the process of progressive collapse. A computational and theoretical analysis has been performed to determine the ultimate deformation effects or load values according to the criteria for the bearing capacity of crutial units of monolithic reinforced concrete systems with different span sizes. It is established that as a basic criterion for estimating the stress-and-strain state of monolithic reinforced concrete structures for the mode of failure of a vertical bearing structure, the relative deformation amount corresponding to the formation of the “fracture” zone of the retaining section of the overlap under the action of transverse forces can be adopted.
机译:本文考虑了在渐进倒塌状态下为整体式钢筋混凝土轴承系统限制状态的准则选择标准的问题。根据计算和理论研究的结果,确定了整体式钢筋混凝土建筑物的结构元素和结构单元,如果竖向承载结构发生故障,首先会破坏其结构。可以确定的是,这种结构单元和结构元件的破坏导致渐进塌陷过程的初始化。已经进行了计算和理论分析,以根据具有不同跨度大小的整体式钢筋混凝土系统的关键单元的承载能力标准,确定最终的变形效应或载荷值。已经确定,作为估计竖向承载结构破坏模式的整体式钢筋混凝土结构的应力和应变状态的基本标准,相对变形量对应于护板“断裂”区域的形成。可以采用在横向力作用下重叠的截面。

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