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Evaluation of compressive membrane action effects on punching shear resistance of reinforced concrete slabs

机译:压缩膜作用对钢筋混凝土板抗冲剪性能的影响评估

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It is widely recognized that Compressive Membrane Action (CMA), also called Arching Action, increases both the bending and punching capacities of reinforced concrete (RC) structures. In this paper a nonlinear finite element (NLFE) approach which adopts multi-layered shell modeling of RC slabs is presented. NLFE analyses (NLFEA) were carried out with ABAQUS Code and UMAT.for user subroutine in which the crack model denoted as Physical Approach for Reinforced Concrete for Cyclic Loading (PARC_CL) was implemented. Post-processing of NLFEA results is presented which exploits the Critical Shear Crack Theory (CSCT) to evaluate the punching shear resistance of shell elements. The capability of the proposed numerical procedure, to properly determine the punching shear resistance of RC slabs, is checked by comparing numerical predictions with experimental punching shear capacities obtained on circular slabs tested at the Stevin Laboratory of TU Delft. Subsequently the same numerical procedure was adopted to evaluate CMA effects on the punching shear resistance of the Corick bridge deck in Northern Ireland, UK, subjected to concentrated loads. Finally the design punching shear resistances achieved with the presented procedure are compared with the analytical values obtained using the British Code BD81/02. (C) 2015 Elsevier Ltd. All rights reserved.
机译:众所周知,压缩膜作用(CMA)也称为拱形作用,可以提高钢筋混凝土(RC)结构的弯曲和冲压能力。本文提出了一种采用RC板多层壳建模的非线性有限元(NLFE)方法。对于用户子例程,使用ABAQUS代码和UMAT进行了NLFE分析(NLFEA),在该子例程中执行了表示为循环荷载的钢筋混凝土物理方法(PARC_CL)的裂缝模型。提出了NLFEA结果的后处理方法,该方法利用临界剪切裂纹理论(CSCT)评估壳单元的抗冲剪强度。通过将数值预测与在TU Delft的Stevin实验室测试的圆形平板上获得的实验冲切剪切能力进行比较,可以检查所提出的数值程序正确确定RC板的抗冲切剪切能力的能力。随后,采用相同的数值程序来评估CMA对英国北爱尔兰Corick桥面在集中荷载作用下的抗冲剪强度的影响。最后,将通过本程序获得的设计抗冲剪强度与使用英国规范BD81 / 02获得的分析值进行比较。 (C)2015 Elsevier Ltd.保留所有权利。

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