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Micromechanical Modeling of Fracture Energy for Hooked-End Steel Fiber-Reinforced Cementitious Composites

机译:钩端钢纤维增强水泥基复合材料断裂能的微力学建模

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摘要

Since pullout behaviors of fibers intersecting a fracture plane of cementitious composite are similar to those in a single-fiber pullout test, micromechanical model of fracture energy for hooked-end steel fiber-reinforced cementitious composite (HSFRCC) is developed on the basis of single hooked-end steel fiber pullout test. The hooked-ends of steel fibers intersecting a fracture plane have various deformations which can be generally classified into hooked-end total deformation, partial deformation, and nondeformation. The pullout energy of steel fiber with deformed hooked-end is significantly different from that with nondeformed one; derivations of pullout energies of hooked-end steel fibers with deformedondeformed hooked-ends are carried out first. The fracture energy model of HSFRCC is proposed using probabilistic method accounting for energy contributions from all steel fibers intersecting the fracture plane. Experimental validation of the proposed micromechanical model is performed, and excellent agreements are observed in comparison with experimental data from uniaxial tensile tests. As the proposed fracture energy model is a function of physical and micro-geometric properties of hooked-end steel fibers and cementitious matrix, it can guide optimal design of HSFRCC.
机译:由于与水泥基复合材料断裂面相交的纤维的拉拔行为与单纤维拉拔试验中的相似,因此在单钩的基础上建立了钩端钢纤维水泥基复合材料断裂能的微力学模型。端钢纤维拉拔试验。与断裂面相交的钢纤维的钩端具有各种变形,通常可将其分类为钩端总变形,部分变形和非变形。钩端变形的钢纤维的拉拔能量与未变形的钩状纤维的拉拔能量显着不同。首先进行钩端变形/未变形的钩端钢纤维拉拔能的推导。利用概率方法提出了HSFRCC的断裂能模型,该模型考虑了所有与断裂面相交的钢纤维的能量贡献。对提出的微机械模型进行了实验验证,与单轴拉伸试验的实验数据相比,观察到了很好的一致性。由于所提出的断裂能模型是钩端钢纤维和胶结基体的物理和微观几何特性的函数,因此可以指导HSFRCC的优化设计。

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