A Beam Finite Element for Shear-Critical RC Beams

F. Filippou, A. Saritas
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引用次数: 17

Abstract

The proposed beam finite element is capable of describing the response of reinforced concrete members under the interaction of axial force, shear, and bending moment. The element is based on a mixed formulation and does not exhibit the shear locking problems of displacement-based elements. The material model of the Modified Compression Field Theory by Vecchio and Collins (1986) was used to describe the biaxial response of the concrete at monitoring points across several monitoring sections along the element axis. With this model the proposed beam element is able to capture well the overall monotonic response of shear critical beams, while equally satisfactory agreement is obtained with local response measures, such as crack orientations. In spite of this promising agreement with experimental results the numerical performance of the material model was rather slow for the lack of a consistent tangent stiffness matrix. This fact coupled with the material model's inability to represent cyclic loading point out the need for a numerically consistent, robust and efficient constitutive model.
临界剪力RC梁的梁有限元
所提出的梁有限元能够描述钢筋混凝土构件在轴力、剪力和弯矩相互作用下的响应。该单元基于混合公式,不会出现基于位移的单元的剪切锁定问题。采用Vecchio和Collins(1986)修正压缩场理论的材料模型来描述沿单元轴跨越几个监测断面的监测点上混凝土的双轴响应。利用该模型,所提出的梁单元能够很好地捕捉剪切临界梁的整体单调响应,同时与局部响应措施(如裂缝方向)获得同样令人满意的一致性。尽管这与实验结果一致,但由于缺乏一致的切线刚度矩阵,材料模型的数值性能相当缓慢。这一事实加上材料模型无法表示循环载荷,表明需要一个数值一致、鲁棒和高效的本构模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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