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Effect of inclination angle on hooked end steel fiber pullout behavior in ultra-high performance concrete

机译:倾角对超高性能混凝土中钩端钢纤维拉拔性能的影响

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摘要

The bond relationship between the concrete matrix and steel fiber is a significant factor that affects the performance of ultra-high performance fiber reinforced concrete (UHPFRC). In the present research, pullout performances of hooked end fibers embedded in ultra-high performance concrete matrix under various inclination angles are systematically investigated, with special attention on fiber dimension and embedded length. Pullout load-slip curves are obtained and experimental observations including complete fiber pull-out, fiber rupture and matrix failure are analyzed in detail. The effects of the pullout angle are then studied quantitatively by parameter calculations and mechanism analysis. A new analytical model for evaluating the snubbing and spalling effects of the hooked end steel fiber is proposed and validated. It is shown that the influences of the inclination angle on the peak pullout load vary with different fiber types, embedded lengths and fiber diameters, which are also associated with the occurrences of the fiber rupture and the matrix failure. In addition, optical microscope and scanning electron microscopy observations at mesoscale are performed to further analyze the effects of orientation angle.
机译:混凝土基体与钢纤维之间的键合关系是影响超高性能纤维增强混凝土(UHPFRC)性能的重要因素。在本研究中,系统地研究了在各种倾角下嵌入超高性能混凝土基体中的钩状端部纤维的抗拉性能,并特别关注纤维的尺寸和嵌入长度。获得了拉拔载荷-滑移曲线,并详细分析了包括完整纤维拉拔,纤维断裂和基体破坏在内的实验观察结果。然后通过参数计算和机理分析定量研究拉出角的影响。提出并验证了一种新的评估模型,该模型用于评估钩状端部钢纤维的压延和剥落效果。结果表明,倾斜角度对峰值拉拔载荷的影响随纤维类型,包埋长度和纤维直径的变化而变化,这也与纤维断裂和基体破坏的发生有关。此外,还进行了中尺度的光学显微镜和扫描电子显微镜观察,以进一步分析取向角的影响。

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