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Design Oriented Model for the Assessment of T-Shaped Beam-Column Joints in Reinforced Concrete Frames

机译:钢筋混凝土框架T形梁柱节点评估的设计模型

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摘要

Beam-column joints represent very important elements of reinforced concrete (RC) structures. In fact, beams and columns, at the boundary, generate internal forces acting on concrete core and on reinforcement bars with a very high gradient. To fully understand the seismic performances and the failure modes of T-shaped beam-column joints (external corner-positioned) in RC structures, a simplified analytical model of joint behaviour is proposed and theoretical simulations have been performed. The model is based on the solution of a system of equilibrium equations of cracked joint portions designed to evaluate internal stresses at different values of column shear forces. The main aim of the proposed model is to identify the strength hierarchy. Limit values of different internal stresses allow us to detect the occurrence of different failure modes (namely the failure of the cracked joint, the bond failure of passing through bars, and the flexural/shear failures of columns or beams) associated with column shear forces; the smaller one represents the capacity of the joint. The present work, focusing on T-shaped joints, could represent a useful tool for designers to quantify the performance of new structures or of existing ones. In fact, such a tool allows us to push an initial undesired failure mode to a more appropriate one to be evaluated. Finally, some experimental results of tests available in literature are reported, analysed, and compared to the predictions of the proposed model (by means of a worked example) and of some international codes. The outcomes confirm that failure modes and corresponding joint capacities require an analytical model, like the proposed one, to be accurately predicted
机译:梁柱节点代表钢筋混凝土(RC)结构的非常重要的元素。实际上,在边界处的梁和柱会产生内力,这些内力以非常高的梯度作用在混凝土芯和钢筋上。为了充分理解钢筋混凝土结构中T形梁柱节点(外角定位)的抗震性能和破坏模式,提出了节点行为的简化解析模型,并进行了理论模拟。该模型基于裂纹接缝部分平衡方程组的解,该方程组用于评估在不同柱剪力值下的内部应力。提出的模型的主要目的是确定强度等级。不同内部应力的极限值使我们能够检测与柱剪力相关的不同破坏模式的发生(即,开裂接头的破坏,穿过钢筋的粘结破坏以及柱或梁的弯曲/剪切破坏);较小的代表关节的力量。目前的工作集中在T形接头上,可以为设计人员量化新结构或现有结构的性能提供有用的工具。实际上,这种工具使我们能够将最初不希望的故障模式推向更合适的待评估模式。最后,报告,分析了一些文献中可用测试的实验结果,并将其与所提出模型的预测(通过一个实例)和一些国际法规进行了比较。结果表明,失效模式和相应的联合能力需要一种分析模型(如拟议的模型)才能准确预测

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