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Experimental testing of novel hybrid rubberised concrete double skin tubular columns with filament wound CFRP tube under axial compressive loading

机译:轴向压缩载荷下具有长丝缠绕CFRP管的新型杂交橡胶混凝土双皮柱的实验测试

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Rubberised concrete formed by using recycled scrap tyre chips as the substitution for natural aggregates, has recently emerged as an important research topic. Though it conserves the mineral aggregates, it is associated with reduced compressive strength. Different confinement techniques with fiber-reinforced polymer (FRP) wrapping and steel have been commonly used to restore the lost strength that also provided some other benefits such as enhanced ductility and energy dissipation capacity. In this paper, a novel hybrid double-skin tubular column termed as "Hybrid RuDSTC" consisting of rubberised concrete, filament wound circular CFRP tube, and cold-formed circular steel tube was developed and experimentally explored to evaluate its performance under axial load. The parameters of the experimental investigation were void ratio, slenderness ratio, and percentage rubber replacement. Results showed that the novel Hybrid RuDSTCs can provide a promising sustainable solution with greater strain capacity compared to their unconfined counterparts. Better strain and enhanced ductility of the hybrid RuDSTCs compared to non-rubberised hybrid DSTCs enable their use in seismic prone regions and mining infrastructure.
机译:通过使用回收的废轮胎芯片形成的橡胶混凝土作为自然聚集体的替代,最近成为一个重要的研究主题。虽然保存矿物骨料,但它与降低的抗压强度相关。具有纤维增强聚合物(FRP)包裹和钢的不同限制性技术通常用于恢复损失的强度,这些强度也提供了一些其他益处,例如增强的延展性和能量耗散能力。本文采用了一种新的混合式双皮管,被称为“杂交Rudstc”,由橡胶混凝土,长丝缠绕圆形CFRP管和冷成型圆形钢管组成,实验探索,以评估其在轴向载荷下的性能。实验研究的参数是空隙率,细长比和橡胶百分比。结果表明,新型杂交Rudstcs可以提供有前途的可持续解决方案,与其无共同的对应物相比具有更大的应变能力。与非橡胶杂交DSTC相比,杂交Rudstcs的更好的应变和增强的延展性,使其在地震易发地区和采矿基础设施中使用。

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