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Bond-Slip Effects on the Behaviour of RC Beam under Monotonic Loading - An Integrated 3D Computational Model using EAS Approach

机译:粘结滑移对单调荷载作用下钢筋混凝土梁性能的影响-基于EAS方法的集成3D计算模型

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摘要

This paper presents a formulation of hypo-elasticity based RC beam model with bond-slip. Details of the constitutive model and analysis method used are provided. A procedure has been described to carry out three-dimensional analysis considering both geometrical as well as material nonlinearity for a simply supported RC beam employing finite element technique, which uses 8-noded isoparametric hexahedral element HCiS18. Enhanced assumed strain (EAS) formulation has been utilized to predict load-deformation and internal stresses both in the elastic as well as nonlinear regime. It models the composite behaviour of concrete and reinforcements in rigid /perfect bond situation and their mutual interaction in bond-slip condition considering continuous interface elements at the material level. An attempt has been made to reduce the gap significantly between the results found experimentally and numerically using the proposed model and a computer code has been developed for the purpose. The results of the analysis are presented, discussed and compared with a few benchmark experimental results.
机译:本文提出了基于低弹性的具有粘结滑移的RC梁模型的公式。提供了使用的本构模型和分析方法的详细信息。已经描述了一种程序,该程序使用有限元技术对考虑了几何以及材料非线性的三维有限元技术进行了三维分析,该有限元技术使用8节点等参六面体元素HCiS18。增强的假定应变(EAS)公式已被用于预测弹性和非线性状态下的载荷变形和内部应力。它考虑了材料级别的连续界面元素,对在刚性/完美粘结情况下混凝土和钢筋的复合行为及其在粘结滑移条件下的相互作用进行了建模。已经尝试使用所提出的模型来显着减小实验和数值上发现的结果之间的差距,并且为此目的已经开发了计算机代码。提出,讨论了分析结果,并与一些基准实验结果进行了比较。

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