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首页> 外文期刊>Finite Elements in Analysis and Design >A coupled constitutive model for fracture in plain concrete based on continuum theory with non-local softening and eXtended Finite Element Method
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A coupled constitutive model for fracture in plain concrete based on continuum theory with non-local softening and eXtended Finite Element Method

机译:基于非局部软化和扩展有限元连续谱理论的普通混凝土断裂本构模型

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The paper presents a constitutive model for concrete which combines a continuous and discontinuous fracture description. In a continuum regime, two different constitutive laws were used. First, a plasticity model with a Rankine failure criterion and an associated flow rule was used. Second, a constitutive law based on isotropic damage mechanics was formulated. In order to capture the width of a localized zone and to obtain mesh-independent results, both models were equipped with a characteristic length of micro-structure by applying a non-local theory of an integral format. In order to describe a macro-crack as a displacement jump along/across a localized zone, the eXtended Finite Element Method (XFEM) was used. A transition algorithm between a non-local continuum model and XFEM was formulated. The implementation details of a coupled approach were given. The performance of two coupled models were numerically analysed based on several 2D benchmarks with a dominating mode-I (e.g. uniaxial tension and bending) and under mixed-mode conditions. The numerical results were compared with our experimental ones. The advantages of a continuous-discontinuous coupling in describing crack patterns were outlined. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种混凝土的本构模型,该模型结合了连续和不连续的断裂描述。在连续体体制中,使用了两个不同的本构定律。首先,使用具有兰金破坏准则和相关流动规则的可塑性模型。其次,建立了基于各向同性损伤力学的本构定律。为了捕获局部区域的宽度并获得与网格无关的结果,两个模型都通过应用积分格式的非局部理论配备了微结构的特征长度。为了将宏观裂缝描述为沿着/跨越局部区域的位移跳跃,使用了扩展有限元方法(XFEM)。提出了非局部连续模型与XFEM之间的过渡算法。给出了耦合方法的实现细节。基于几个具有主导模式I(例如单轴拉伸和弯曲)的2D基准并在混合模式条件下,对两个耦合模型的性能进行了数值分析。数值结果与我们的实验结果进行了比较。概述了连续不连续耦合在描述裂纹模式方面的优势。 (C)2016 Elsevier B.V.保留所有权利。

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