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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A novel XFEM cohesive fracture framework for modeling nonlocal slip in randomly discrete fiber reinforced cementitious composites
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A novel XFEM cohesive fracture framework for modeling nonlocal slip in randomly discrete fiber reinforced cementitious composites

机译:用于随机离散纤维增强水泥基复合材料非局部滑移建模的新型XFEM内聚断裂框架

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摘要

We develop and implement a new nonlocal crack-bridging model for evaluating toughening and strengthening mechanisms of fiber reinforced cementitious composites. The quasibrittle fracture of cement matrix is characterized by XFEM-cohesive crack framework. To explore fiber-bridging mechanism, the horizontal fiber phases corresponding to different embedding length are superimposed on the near-crack region of the matrix phase, while an effective homogeneous Cauchy medium is assumed outside the multiphase region. The sliding interface for each fiber phase is described by a slip field, leading to a new nonlocal slip model being proposed which can be used to treat arbitrary fiber distributions. This model is formulated in a variationally consistent framework. In this study, it is verified that the toughening effect is induced by the interfacial shear stress rather than the fiber tensile stress. Prior to evaluate new problems, the capability of the proposed model is validated to reproduce consistent fracture behaviors with the experimentations. It is concluded from our systematic studies that a higher fiber modulus leads to a higher loading capacity, but not a higher composite toughness, while unaffects its residual strength. It is found that the enhancing interfacial strength has improved the composites toughness dramatically, but has limited contribution to the strengthening effect. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们开发并实施了一种新的非局部裂纹桥接模型,用于评估纤维增强水泥基复合材料的增韧机制。水泥基体的准脆性断裂以XFEM-粘性裂纹框架为特征。为了探索纤维桥联机制,将与不同包埋长度相对应的水平纤维相叠加在基体相的近裂纹区域上,而在多相区域之外则假定有效的均质柯西介质。每个纤维相的滑动界面由滑移场描述,导致提出了一种新的非局部滑移模型,该模型可用于处理任意纤维分布。该模型是在变化一致的框架中制定的。在该研究中,证实了增韧作用是由界面剪切应力而不是纤维拉伸应力引起的。在评估新问题之前,通过实验验证了所提出模型的能力,以再现一致的断裂行为。从我们的系统研究得出的结论是,较高的纤维模量会导致较高的负载能力,但不会导致较高的复合韧性,同时不会影响其残余强度。发现增强的界面强度极大地提高了复合材料的韧性,但是对增强效果的贡献有限。 (C)2019 Elsevier B.V.保留所有权利。

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