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Axial Compressive Behavior of Geopolymer Recycled Lump Concrete

机译:地质聚合物再生块状混凝土的轴向压缩性能

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摘要

To reduce the environmental pollution from cement production and the damage to natural resources from aggregate mining in the concrete industry, a relatively new concrete, termed geopolymer recycled lump concrete (GRLC), which uses geopolymer as the binding material to replace traditional cement and uses large demolished concrete lumps (DCLs) to partly replace concrete, is prepared in this study. Cubic and cylindrical GRLC specimens containing fresh geopolymer concrete and DCLs were tested under axial compression with various parameters, including the compressive strength levels of both fresh geopolymer concrete and DCLs, and the replacement ratio of DCLs. The compressive behavior of the GRLC specimens was compared with traditional cement recycled lump concrete (CRLC) specimens, with test results showing that GRLC specimens possess higher compressive strength than CRLC specimens under the same experimental conditions, which is due to the strengthening effect that fresh geopolymer concrete has on the DCLs. From the scanning electron microscope pattern of the GRLC specimen, it is found that the geopolymer bonds well with the old mortar attached to DCLs. As the replacement ratio increases from 0% to 33%, the elastic modulus of GRLC increases by 5%–11% but Poisson’s ratio remains almost constant (in the 0.16–0.17 range). Based on the measured strength and the predicted results, which coincide with one another well, a modified method for predicting the compressive strength of GRLC cubic and cylindrical specimens is proposed.
机译:为了减少水泥生产中的环境污染和混凝土行业中集料开采对自然资源的破坏,一种相对较新的混凝土,称为地质聚合物回收块状混凝土(GRLC),它使用地质聚合物作为粘结材料来代替传统水泥,并使用大量本研究准备了拆除的混凝土块(DCL)以部分替代混凝土。包含新鲜地质聚合物混凝土和DCL的立方和圆柱GRLC标本在轴向压缩下通过各种参数进行测试,包括新鲜地质聚合物混凝土和DCL的抗压强度水平以及DCL的替代率。将GRLC标本的抗压性能与传统的水泥再生块状混凝土(CRLC)标本进行了比较,测试结果表明,在相同的实验条件下,GRLC标本比CRLC标本具有更高的抗压强度,这是由于新鲜地质聚合物的增强作用DCL上有混凝土。从GRLC标本的扫描电子显微镜图中,发现地聚合物与附着在DCL上的旧砂浆粘结得很好。随着置换率从0%增加到33%,GRLC的弹性模量增加了5%–11%,但泊松比几乎保持恒定(在0.16-0.17范围内)。基于测得的强度和预测结果相互吻合,提出了一种改进的预测GRLC立方和圆柱试样抗压强度的方法。

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