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Nonlinear finite element analyses of FRP-reinforced concrete slabs using a new layered composite plate element

机译:新型层合复合板单元对FRP筋混凝土板的非线性有限元分析

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摘要

A simple and shear-flexible rectangular composite layered plate element and nonlinear finite element analysis procedures are developed in this paper for nonlinear analysis of fiber reinforced plastic (FRP)-reinforced concrete slabs. The composite layered plate element is constructed based on Mindlin-Reissner plate theory and Timoshenko's composite beam functions, and transverse shear effects and membranebending coupling effects are accounted for. Both geometric nonlinearity and material nonlinearity of the materials, which incorporates tension, compression, tension stiffening and cracking of the concrete, are included in the new model. The developed element and the nonlinear finite element analysis procedures are validated by comparing the computed numerical results of numerical examples with those obtained from experimental investigations and from the commercial finite element analysis package ABAQUS. The element is then employed to investigate the nonlinear structural behavior and the cracking progress of a clamped two-way FRP-reinforced concrete slab. The influences of reinforcement with different materials, ratio and layout in tension or compressive regions on structural behavior of the clamped slabs are investigated by parametric studies.
机译:本文针对纤维增强塑料(FRP)增强混凝土板的非线性分析,开发了一种简单且具有剪切柔性的矩形复合层合板单元和非线性有限元分析程序。基于Mindlin-Reissner板理论和Timoshenko的复合梁函数构造了复合层状板单元,并考虑了横向剪切效应和膜弯曲耦合效应。新模型包括材料的几何非线性和材料非线性,其中包括混凝土的拉伸,压缩,拉伸刚度和开裂。通过将数值示例的计算结果与通过实验研究和商业有限元分析软件包ABAQUS获得的数值结果进行比较,可以验证所开发的元素和非线性有限元分析程序的有效性。然后,使用该元素来研究双向FRP加固混凝土板的非线性结构行为和开裂进度。通过参数研究,研究了不同材料,比例和拉伸或压缩区域中的布局对钢筋板结构性能的影响。

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