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Analysis Of Retrofitted Rc Beam With Fixed End Supports Against Blast Loads

机译:端部固定式钢筋混凝土梁抗爆分析

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摘要

Currently, there are adequate guidelines available for FRP retrofitting RC structures against static and seismic loads. However, there is still limited information on retrofitting RC structures against short-duration dynamic loading effects such as blast loading. Due to the increasing threat of terrorism in recent years, retrofitting of RC structures against blast loading is of paramount importance in structural engineering. In this paper, a dynamic model that is based on single-degree-of-freedom (SDOF) approach is developed for the analysis of the response of retrofitted fixed end supported RC slabs subjected to blast loads. A previously validated layered capacity analysis method is used to determine the yielded and ultimate blast resistant capacity of a cross-section of a RC slab which allows varying strain rates with time along the depth of the member. The corresponding deflections are determined by plastic hinge analysis. To simplify the calculation process, a tri-linear resistance-deflection function which consists of elastic, elasto-plastic and plastic region for fixed end supported RC slabs is converted to an equivalent bilinear function. This developed model can adequately predict the retrofitted members' response to blast loading. It is then is used to conduct a parametric study to optimise the retrofitting of RC slabs subjected to blast loading by varying the quantity, material type and technique of retrofitting.
机译:当前,有足够的指南可用于FRP加固RC结构以抵抗静态和地震荷载。但是,关于针对短时动态载荷效应(如爆炸载荷)的钢筋混凝土结构的改型信息仍然很少。由于近年来恐怖主义威胁的增加,在结构工程中对钢筋混凝土结构进行加固以抵抗爆炸载荷至关重要。本文建立了一种基于单自由度(SDOF)方法的动力学模型,用于分析爆炸冲击载荷下加装的固定端支撑RC板的响应。使用先前验证的分层容量分析方法来确定RC平板横截面的屈服和极限抗爆炸能力,该能力允许沿构件深度随时间变化的应变率。相应的挠度通过塑料铰链分析确定。为了简化计算过程,将由弹性,弹塑性和塑性区域组成的用于固定端支撑RC板的三线性电阻-挠度函数转换为等效的双线性函数。该开发的模型可以充分预测翻新成员对爆炸荷载的反应。然后,通过改变数量,材料类型和改造技术,将其用于进行参数研究,以优化承受爆炸载荷的RC板的改造。

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