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An experimental study on pullout and tensile behavior of ultra-high-performance concrete reinforced with various steel fibers

机译:多种钢纤维增强超高性能混凝土的抗拔性能试验研究

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This study investigates the effects of steel fiber type on the pullout and tensile performance of ultra-high-performance fiber-reinforced concrete (UHPFRC). For this, four different types of steel fibers, i.e., straight, twisted, hooked, and half-hooked, were used. In order to consider random fiber orientation in UHPFRC, various inclination angles, ranging from 0 degrees to 60 degrees, were considered for the pullout tests. Test results indicated that better pullout resistance was obtained in the deformed (twisted, hooked, and half-hooked) steel fibers embedded in ultra-high-performance concrete (UHPC) than that of the straight steel fiber as fiber breakage was prevented. The highest bond strengths of all steel fiber types were found when they were inclined 30 degrees or 45 degrees, while their slip capacities increased with increasing inclination angle. The hooked steel fiber exhibited the highest bond strengths at all inclination angles, while the twisted and half-hooked steel fibers exhibited the highest pullout energies at aligned and highly inclined (45 degrees and 60 degrees) conditions, respectively. In contrast to the pullout test results, the best tensile performance of UHPFRC was achieved by incorporating straight steel fibers, followed by the twisted, half-hooked, and hooked steel fibers. The poorer tensile performance of UHPCs reinforced with the deformed steel fibers was because of the severe matrix damage from excessive mechanical anchorage and fiber congestion, leading to insufficient matrix volume. Similarly, a relatively weak correlation between the fiber pullout and tensile behaviors of UHPFRC was observed. Therefore, a new pullout test method, which is able to consider the fiber random orientation and spacing, is required in order to improve the correlation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究调查了钢纤维类型对超高性能纤维增强混凝土(UHPFRC)的拉拔和拉伸性能的影响。为此,使用了四种不同类型的钢纤维,即直的,加捻的,钩的和半钩的。为了考虑UHPFRC中纤维的随机取向,拉拔测试考虑了从0度到60度的各种倾斜角度。测试结果表明,埋入超高性能混凝土(UHPC)中的变形(扭曲,钩状和半钩状)钢纤维比防止变形的直钢纤维具有更好的抗拔出性。在倾斜30度或45度时,发现所有钢纤维类型的粘结强度最高,而其滑移能力随倾斜角的增加而增加。钩状钢纤维在所有倾角下均表现出最高的粘结强度,而绞合和半钩状钢纤维分别在对准和高度倾斜(45度和60度)条件下表现出最高的拉拔能。与拉拔测试结果相反,UHPFRC的最佳拉伸性能是通过掺入直的钢纤维,然后掺入扭曲,半钩和钩形的钢纤维而获得的。用变形的钢纤维增强的UHPC的抗拉性能较差,是由于过度的机械锚固和纤维拥塞对基质造成的严重破坏,从而导致基质体积不足。类似地,观察到纤维拉拔与UHPFRC的拉伸行为之间的相对弱的相关性。因此,为了改善相关性,需要一种能够考虑纤维随机取向和间距的新的拉拔测试方法。 (C)2019 Elsevier Ltd.保留所有权利。

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