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Modified cyclic steel law including bond-slip for analysis of RC structures with plain bars

机译:改性循环钢定律,包括用于分析带普通条形的RC结构的粘结滑移

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The paper describes a modified cyclic bar model including bond-slip phenomena between steel reinforcing bars and surrounding concrete. The model is focused on plain bar and is useful, for its simplicity, for the seismic analyses of RC structures with plain bars and insufficient constructive details, such as in the case of '60s-'70s Mediterranean buildings. The model is based on an imposed exponential displacements field along the bar including both steel deformation and slip; through the adoption of equilibrium and compatibility equations a stress-slip law can be deducted and simply applied, with opportune operations, to RC numerical models. This study aims to update and complete the original monotonic model published by the authors, solving some numerical inconsistencies and, mostly, introducing the cyclic formulation. The first aim is achieved replacing the imposed linear displacement field along the bar with an exponential too, while the cyclic behaviour is described through a formulation based on the results of parametric analyses concerning a large range of steel and concrete properties and geometric configurations. Validations of the proposed model with experimental results available in the current literature confirm its accuracy and the reduced computational burden, highlighting its suitability in performing nonlinear analyses of RC structures.
机译:本文描述了一种改进的循环条模型,包括钢筋钢筋和周围混凝土之间的粘结滑动现象。该模型专注于普通栏,可用于其简单性,对于具有普通条形的RC结构的地震分析和建设性细节不足,例如在60年代 - 70年代的地中海建筑物的情况下。该模型基于沿着钢条施加的指数位移场,包括钢变形和滑动;通过采用平衡和兼容性方程,可以扣除应力滑移法,并简单地用适当运营地应用于RC数值模型。本研究旨在更新和完成作者发布的原始单调模型,解决一些数值不一致,主要是引入循环制剂。第一个目的是通过指数沿着杆替换施加的线性位移场,而循环行为是通过基于关于大范围钢和混凝土特性和几何配置的参数分析的结果来描述的。当前文献中提供实验结果的提出模型的验证证实了其准确性和降低的计算负担,突出了其在执行RC结构的非线性分析方面的适用性。

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