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Quantitative analysis of macro steel fiber influence on crack geometry and water permeability of concrete

机译:宏观钢纤维对混凝土裂缝几何形态和透水性影响的定量分析

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In this work, the water permeability of the cracked concrete has been investigated. Three types of cylindrical specimens with different fiber content were pre-cracked by the feedback controlled splitting test, and the specimens without any fiber reinforcement were also studied as reference. The water permeability of the specimens with different crack width was measured by hydraulic permeability test. The coordinate data of the crack surface was collected by the self designed data acquisition system, the total crack length and surface area of the samples were analyzed, the crack geometry (tortuosity and roughness) was evaluated quantitatively. A modified factor. was introduced to the Poiseuille law to verify the permeability of the cracked specimen. The results showed that with the addition of macro steel fibers, the deformability of the specimens was improved significantly and the crack width could be controlled. The coefficient of the water permeability of the specimens was declined by fiber addition, the modified Poiseuille law could be used to evaluate the water permeability of the cracked concrete, the modified factor. decreased with the increasing of fiber dosage. The crack tortuosity and surface roughness increased obviously with the addition of steel fiber.
机译:在这项工作中,已经研究了开裂混凝土的透水性。通过反馈控制分裂试验对三种不同纤维含量的圆柱状试样进行了预裂化处理,并以无纤维增强的试样作为参考。通过水力渗透试验测量了具有不同裂缝宽度的样品的水渗透性。通过自行设计的数据采集系统收集裂纹表面的坐标数据,分析样品的总裂纹长度和表面积,定量评估裂纹的几何形状(曲率和粗糙度)。修正因子。引入Poiseuille定律以验证破裂样品的渗透性。结果表明,加入大尺寸钢纤维后,试样的可变形性得到显着改善,裂纹宽度得到控制。纤维的加入降低了试件的透水系数,修正的Poiseuille定律可用于评价裂化混凝土的透水率,即修正系数。随着纤维用量的增加而降低。添加钢纤维后,裂纹曲率和表面粗糙度明显增加。

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