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Experimental analysis and modeling of two-way reinforced concrete slabs over different kinds of yielding supports under short-term dynamic loading

机译:短期动力荷载下双向屈服混凝土双向屈服板的试验分析与建模

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摘要

This paper presents the experimental and theoretical results of an investigation carried on reinforced concrete plates placed on yielding supports along their perimeter under short-term dynamic loading. The yielding supports are made of elements with annular cross-section. Their functionality allows operations in elastic and elasto-plastic stages with a further turning to hardening stage. This particular support scheme has been adopted in order to simulate the different boundary conditions that r.c. slabs subjected to impacts may encounter in practical applications of civil engineering (e.g. roofs, vertical panels, retaining walls, guardrails, etc.). The experimental results showed that influence of support deformability on the structural response under impact depends on their rigidity and on the deformation stage. The results of numerical simulations based on a simple mechanical model qualitatively agree with the experimental results. Therefore the model can be adopted for simulation and design of reinforced concrete panels under impact or high-strain loading situations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了在短期动态荷载作用下沿其周边放置在屈服支架上的钢筋混凝土板进行研究的实验和理论结果。屈服支撑件由具有环形横截面的元件制成。它们的功能允许在弹性和弹塑性阶段进行操作,并进一步转向硬化阶段。为了模拟r.c.的不同边界条件,采用了这种特殊的支持方案。在土木工程的实际应用中(例如屋顶,垂直面板,挡土墙,护栏等),可能会受到冲击的平板。实验结果表明,支撑变形能力对结构在受冲击下的响应的影响取决于其刚度和变形阶段。基于简单机械模型的数值模拟结果与实验结果基本吻合。因此,该模型可用于在冲击或高应变载荷情况下的钢筋混凝土面板的仿真和设计。 (C)2015 Elsevier Ltd.保留所有权利。

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