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首页> 外文期刊>International Journal of Fracture >Multiscale failure analysis of fiber reinforced concrete based on a discrete crack model
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Multiscale failure analysis of fiber reinforced concrete based on a discrete crack model

机译:基于离散裂纹模型的纤维混凝土多尺度破坏分析

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In this work the capabilities of an interface model to predict failure behavior of steel fiber reinforced cementitious composites (SFRCCs) are evaluated at both macro and mesoscale levels of observation. The interface model is based on a hyperbolic maximum strength criterion defined in terms of the normal and shear stress components acting on the joint plane. Pre-peak regime is considered linear elastic, while the post-peak behavior is formulated in terms of the fracture energy release under failure mode I and/or II. The well-known "Mixture Theory" is adopted for modeling the interactions between fibers and the surrounding cementitious composite. The effects of both the axial forces on the fibers induced by normal relative displacements, as well as the dowel action due to tangential relative displacements in the interfaces are considered in the formulation of the interaction mechanisms between fibers and cementitious composites. After describing the interface model, this work focuses on numerical analyses of SFRCC failure behavior. Firstly, the validation analysis of the interface model is performed at the constitutive level by comparing its numerical predictions against experimental results available in scientific literature. Then, the sensitivity of the interface theory for SFRCC regarding the variation of main parameters of the composite constituents is evaluated. Finally, the attention is focused on Finite Element (FE) analysis of SFRCC failure behavior at meso and macroscopic levels of observation. The results demonstrate the capabilities of the interface theory based on the Mixture Theory to reproduce the main features of failure behavior of SRFCC in terms of fiber content and involved fracture modes.
机译:在这项工作中,在宏观和中观水平上评估了界面模型预测钢纤维增强水泥基复合材料(SFRCC)破坏行为的能力。界面模型基于双曲最大强度准则,该准则根据作用在接合面上的法向应力分量和剪切应力分量定义。峰前状态被认为是线性弹性,而峰后行为则根据破坏模式I和/或II下的断裂能释放来表述。采用了著名的“混合物理论”来模拟纤维与周围水泥基复合材料之间的相互作用。在确定纤维与胶结复合材料之间的相互作用机理时,应考虑轴向力对法向相对位移引起的纤维的影响,以及由于界面中切向相对位移引起的销钉作用。在描述了接口模型之后,这项工作着重于SFRCC故障行为的数值分析。首先,通过将本构模型的数值预测与科学文献中可获得的实验结果进行比较,在本构层次上对界面模型进行了验证分析。然后,评估了SFRCC界面理论关于复合成分主要参数变化的敏感性。最后,注意力集中在细观和宏观观察的SFRCC失效行为的有限元(FE)分析上。结果表明,基于混合理论的界面理论具有再现SRFCC失效行为的主要特征的能力,包括纤维含量和涉及的断裂模式。

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