FE Analysis of Steel Fiber Reinforced Concrete Beams Failing in Shear: Variable Engagement Model

S. Foster, Y. Voo, K. T. Chong
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引用次数: 25

Abstract

This paper describes how a finite element model (FEM) is developed for the analysis of fiber reinforced concrete plane stress members that failed by the mode I fracture. The constitutive law is built on the variable engagement model where the behavior of a fiber composite is obtained by integration of its parts (fibers and concrete matrix) over the cracked surface. In developing the model in this way the formulation is made generally applicable to any type of steel fiber-cement based matrix and to fiber cocktails with any combination of fibers in the mix in any ratios. The model is demonstrated for a reactive powder concrete girder failing in shear using local and non-local modeling. The paper describes how the finite element formulation is shown to be capable of modeling the girder, with good accuracy observed for the global load versus displacement history and is shown to correctly capture the localized shear failure mechanism.
钢纤维混凝土梁受剪破坏有限元分析:变接合模型
本文建立了一种分析纤维混凝土平面受力构件I型断裂的有限元模型。本构律建立在可变接合模型上,其中纤维复合材料的行为是通过纤维和混凝土基体在裂纹表面上的积分得到的。在以这种方式发展模型的过程中,该公式一般适用于任何类型的钢纤维-水泥基基体和以任何比例混合的纤维组合的纤维鸡尾酒。采用局部和非局部模型对活性粉末混凝土梁的抗剪破坏进行了验证。本文描述了有限元公式如何能够对梁进行建模,具有良好的精度,可以观察到整体荷载与位移历史,并且可以正确捕获局部剪切破坏机制。
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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