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Hybrid Fiber Reinforcement and Crack Formation in Cementitious Composite Materials

机译:水泥复合材料中的杂化纤维增强和裂缝形成

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The use of different types of fibers simultaneously for reinforcing cementitious matrices is motivated by the concept of a multi-scale nature of the crack propagation process. Fibers with different geometrical and mechanical properties are used to bridge cracks of different sizes from the micro- to the macro-scale. In this study, the performance of different fiber reinforced cementitious composites is assessed in terms of their tensile stress-crack opening behavior. The results obtained from this investigation allow a direct quantitative comparison of the behavior obtained from the different fiber reinforcement systems. The research described in this paper shows that the multi-scale conception of cracking and the use of hybrid fiber reinforcements do not necessarily result in an improved tensile behavior of the composite. Particular material design requirements may nevertheless justify the use of hybrid fiber reinforcements.
机译:同时使用不同类型的纤维来加强水泥矩阵是通过裂纹传播过程的多尺度性质的概念来激励。具有不同几何和机械性能的纤维用于将不同尺寸的裂缝从微量到宏观桥接桥接。在这项研究中,根据其拉伸应力 - 裂纹开口行为来评估不同纤维增强水泥复合材料的性能。从该研究获得的结果允许直接定量比较从不同的纤维增强系统获得的行为。本文描述的研究表明,裂化和混合纤维增强材料的多尺度概念不一定导致复合材料的改善的拉伸行为。尽管如此,可能的材料设计要求可以证明使用混合纤维增强剂。

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