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Dynamic Pullout Behavior of Multiple Steel Fibers in UHPC: Effects of Fiber Geometry Inclination Angle and Loading Rate

机译:UHPC中多根钢纤维的动态拔出行为:纤维几何形状倾角和加载速率的影响

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摘要

This study examined the influences of fiber geometry, inclination angle, and loading rate on the pullout behavior of multiple steel fibers in ultra-high-performance concrete (UHPC). For this, two different steel fiber types, i.e., straight (S-) and hooked (H-), four different inclination angles (0°–60°), and four different loading rates (0.018 mm/s to 1200 mm/s) were considered. Test results indicated that the pullout performance of S-fibers in UHPC was improved by increasing the loading rate. The highest maximum pullout load of the S-fiber was obtained at the inclination angle of 30° or 45°. The maximum pullout loads of H-fibers also increased with increases in the loading rate, while their slip capacities rather decreased. No specific inclination angle was identified in the case of H-fibers that caused the highest maximum pullout load. The H-fibers yielded higher average bond strengths than S-fibers, but similar or even smaller pullout energies under the impact loads. The aligned S-fiber in UHPC was most sensitive to the loading rate compared to the inclined S-fiber and aligned H-fiber. The rate sensitivity became moderate with the fiber inclination angle. Consequently, the aligned S-fiber was recommended to achieve the best energy absorption capacity and interfacial bond strength at various impact loads.
机译:这项研究探讨了纤维几何形状,倾斜角度和加载速率对超高性能混凝土(UHPC)中多种钢纤维的拉拔行为的影响。为此,有两种不同的钢纤维类型,即直(S-)和钩形(H-),四种不同的倾斜角度(0°–60°)和四种不同的加载速率(0.018 mm / s至1200 mm / s ) 被认为是。测试结果表明,UHPC中S纤维的拉出性能通过提高加载速率而得到改善。在30°或45°的倾斜角度下,获得了S纤维的最高最大拉拔载荷。 H纤维的最大拔出载荷也随着加载速率的增加而增加,而其滑移能力却下降了。在H纤维引起最大最大拉拔载荷的情况下,没有发现特定的倾斜角度。 H纤维比S纤维具有更高的平均粘结强度,但在冲击载荷下其拉拔能量相似甚至更低。与倾斜的S纤维和对齐的H纤维相比,UHPC中对齐的S纤维对加载速率最敏感。速率灵敏度随着光纤的倾斜角度而变得中等。因此,建议使用对齐的S纤维在各种冲击载荷下达到最佳的能量吸收能力和界面粘结强度。

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