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Axial compression behavior of reinforced geopolymer concrete columns with demolished concrete lumps

机译:拆除混凝土肿块的加固拓聚混凝土柱的轴向压缩行为

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This paper presents results of an experimental study on the axial compression behavior of reinforced geopolymer concrete columns with demolished concrete lumps (DCLs). A total of 22 reinforced concrete short columns were tested under axial compression. The test variables include the type of fresh concrete (ordinary Portland cement concrete (CC) and geopolymer concrete (GC)), strength level of fresh concrete (FC) and demolished concrete, and replacement ratio of FC by DCLs. The test results were used to evaluate the effect of strength difference between fresh and demolished concrete, and replacement ratio of FC by DCLs on bearing capacity and deformalion ductility of geopolymer concrete columns with DCLs. Data from these tests showed that the axial compression behaviors of short columns made of geopolymer concrete and ordinary concrete with DCLs were similar. The ultimate bearing capacity and stiffness of recycled concrete columns with DCLs decrease with an increase in replacement ratio. Nevertheless, the maximum reduction in bearing capacity of geopolymer recycled concrete columns is only 10%, when the replacement ratio of FC by DCLs is 24%. The strength difference between fresh concrete and DCLs has a significant influence on mechanical properties of recycled concrete columns, especially for geopolymer recycled concrete columns. Compared to ordinary recycled concrete columns with DCLs, geopolymer recycled concrete columns with DCLS exhibit a slight lower bearing capacity, but a higher ductility.
机译:本文介绍了拆除混凝土块(DCLS)加筋地缘多聚合物混凝土柱轴向压缩行为的实验研究的结果。在轴向压缩下测试了22个钢筋混凝土短柱。试验变量包括新鲜混凝土(普通波特兰水泥混凝土(CC)和地缘聚合物混凝土(GC)),新鲜混凝土(FC)的强度水平,并拆除混凝土,以及DCLS的FC的更换比。试验结果用于评估新鲜和拆除混凝土的强度差异的影响,以及DCLS对DCLS耐缘多聚合物混凝土柱的承载力和恶性延展性的替代比。来自这些测试的数据表明,用DCLS制成的岩土混凝土和普通混凝土制成的短柱的轴向压缩行为是相似的。随着替代比的增加,DCLS再循环混凝土柱的最终承载力和刚度降低。然而,盖聚合物再循环混凝土柱的最大降低的承载能力仅为10%,当DCLS的Fc的替代比为24%时。新鲜混凝土和DCLS之间的强度差异对再生混凝土柱的力学性能有显着影响,特别是对于地缘聚合物再生混凝土柱。与DCLS的普通再循环混凝土柱相比,地质聚合物与DCLS的再生混凝土柱表现出较低的轴承容量,但延展性较高。

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