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Pullout behavior of straight and hooked-end steel fibers in UHPC matrix with various embedded angles

机译:直角和弯头钢纤维在UHPC基质中具有不同嵌入角度的拔出行为

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摘要

The study provided a systematic evaluation of the pullout behavior of straight and hooked-end steel fibers embedded in ultra-high performance concrete (UHPC) with various angles using a single fiber pullout test. Three steel fibers, including one straight fiber and two hooked-end fibers, were aligned at 0 degrees, 30 degrees, and 45 degrees with respect to the loading direction. The fibers were pulled out from non-fiberous UHPC matrix with a compressive strength of 151.5 MPa. Experimental results showed that when the fiber embedded angle increased from 0 degrees to 30 degrees and 45 degrees, the average bond strengths of straight fibers were increased by 19.2% and 52.9%, while the average bond strengths of hooked-end fibers were increased by 10.3-13.6% and 16.2-26.1%, respectively. The percentage of end hook contribution to total pullout energy ranged from 50% to 56.8%, indicating significant mechanical anchorage contribution. Two types of fiber failure modes, including fiber pullout failure and fracture failure, were found, depending on fiber angles. From Scanning Electronic Microscopy (SEM) observation, interfacial transition zone failure, fiber surface scratching, and matrix failure were identified. Two new indices, namely energy dissipation index and bond strength index, were proposed to evaluate the fiber-matrix bond behavior. It was found that hooked-end fibers with a smaller diameter could be a better choice for structural application according to the proposed evaluation indices. The proposed indices offered an alternative and practical method to assess the fiber-matrix bond behavior. (C) 2018 Elsevier Ltd. All rights reserved.
机译:该研究使用单根纤维拉拔试验,对不同角度埋入超高性能混凝土(UHPC)中的直管和弯头钢纤维的拉拔性能进行了系统的评估。将三根钢纤维(包括一根直纤维和两根钩状末端纤维)相对于加载方向以0度,30度和45度对齐。从抗压强度为151.5 MPa的非纤维UHPC基质中拉出纤维。实验结果表明,当光纤包埋角从0度增加到30度和45度时,直纤维的平均粘结强度分别增加了19.2%和52.9%,而钩端纤维的平均粘结强度则增加了10.3%。 -13.6%和16.2-26.1%。端钩对总拉拔能量的贡献百分比在50%至56.8%之间,表明机械锚固作用显着。根据光纤角度,发现了两种类型的光纤故障模式,包括光纤拔出故障和断裂故障。从扫描电子显微镜(SEM)观察,可以确定界面过渡区破坏,纤维表面刮擦和基质破坏。提出了两种新的指标,即能量耗散指标和粘结强度指标,以评估纤维-基体的粘结行为。根据所提出的评估指标,发现直径较小的钩形端纤维可能是结构应用的更好选择。提出的指标提供了一种替代的实用方法来评估纤维-基质键的行为。 (C)2018 Elsevier Ltd.保留所有权利。

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