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Mechanical behaviour of seawater sea-sand recycled coarse aggregate concrete columns under axial compressive loading

机译:轴向压缩荷载下海水海砂再生粗骨料混凝土柱的力学性能

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The use of locally available seawater and sea-sand to produce seawater sea-sand concrete (SSC) is promising in marine and coastal projects. This paper investigates the mechanical behaviour of SSC columns that are prepared with recycled coarse aggregates (SSRAC). The results demonstrate that the seawater-sea-sand-based concrete column behaves similarly to conventional natural aggregate concrete (NAC) when the shell content in sea-sand equals 2.31%. SSRAC columns outperform RAC columns in terms of strength and deformability with a peak load capacity that is approximately 17% higher. Based on the monolithic specimens, the SSRAC composite concrete column is realized by confining the SSRAC core using steel-reinforced NAC or an engineered cementitious composite (ECC) shell. Compared with monolithic specimens, the peak load capacity of the NAC-SSRAC composite column is similar, whereas that of the ECC-SSRAC column is 15% higher. It is feasible to use the ECC shell without stirrups to confine SSRAC. Furthermore, the applicability of available stirrup-confined concrete stress-strain models on the SSRAC and its composite concrete columns is evaluated. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在海洋和沿海项目中,使用当地可用的海水和海砂生产海水海砂混凝土(SSC)是有希望的。本文研究了用再生粗骨料(SSRAC)制备的SSC色谱柱的力学性能。结果表明,当海砂壳含量为2.31%时,海水-海砂基混凝土柱的性能与常规天然骨料混凝土(NAC)相似。在强度和可变形性方面,SSRAC色谱柱的性能优于RAC色谱柱,其峰值载荷能力高出约17%。基于整体样本,通过使用钢加强型NAC或工程胶结复合材料(ECC)壳体约束SSRAC芯,可以实现SSRAC复合混凝土柱。与整体样品相比,NAC-SSRAC复合柱的峰值载荷能力相似,而ECC-SSRAC复合柱的峰值载荷能力高15%。使用不带箍筋的ECC外壳来限制SSRAC是可行的。此外,评估了可用的箍筋约束混凝土应力-应变模型在SSRAC及其复合混凝土柱上的适用性。 (C)2019 Elsevier Ltd.保留所有权利。

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