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Dynamic response of rubberized concrete columns with and without FRP confinement subjected to lateral impact

机译:带有和不带有FRP约束的橡胶混凝土柱承受侧向冲击的动力响应

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摘要

This study experimentally investigates the impact response of rubberized concrete columns subjected to lateral impact. A pendulum impact testing apparatus was used to test the concrete columns with varied rubber contents including 0%, 15%, and 30%. Fine and coarse aggregates were replaced by crumb rubber with particle sizes of 2-5 mm and 5-7 mm, respectively. The experimental results have shown that the rubberized concrete columns significantly reduce the peak impact force (27%-40%) and thus mitigate the risk of injury and even death if rubberized concrete is used in roadside barriers. In addition, the rubberized concrete columns were more flexible than the normal concrete columns. They could deflect twice the reference columns before failure. Rubberized concrete significantly increased the impact energy absorption. The columns with 15% and 30% crumb rubber showed an increase in the impact energy absorption by 58% and 63% as compared to the reference columns. The rubberized concrete column confined with FRP outperformed the reference columns in terms of both the energy absorption and load carrying capacity. Therefore, rubberized concrete is a better alternative and recommended for the use in roadside barriers to achieve better impact energy absorption capacity and reduce the maximum impact force under vehicle collisions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究通过实验研究了承受侧向冲击的橡胶混凝土柱的冲击响应。使用摆锤冲击测试设备来测试橡胶含量包括0%,15%和30%在内的各种混凝土柱。细骨料和粗骨料分别由粒径为2-5 mm和5-7 mm的碎屑橡胶代替。实验结果表明,如果在路障中使用橡胶混凝土,则橡胶混凝土柱显着降低了峰值冲击力(27%-40%),从而降低了受伤甚至死亡的风险。此外,橡胶混凝土柱比普通混凝土柱更具柔韧性。在故障之前,它们可能会使参考柱偏转两倍。橡胶混凝土显着增加了冲击能量吸收。与参考色谱柱相比,含15%和30%碎橡胶的色谱柱的冲击能量吸收增加了58%和63%。在能量吸收和承载能力方面,用FRP约束的橡胶混凝土柱均优于参考柱。因此,橡胶混凝土是更好的替代品,建议在路障中使用,以达到更好的冲击能量吸收能力并减少车辆碰撞时的最大冲击力。 (C)2018 Elsevier Ltd.保留所有权利。

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