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Effect of the Content of Micro-Active Copper Tailing on the Strength and Pore Structure of Cementitious Materials

机译:微细活性铜尾矿含量对胶凝材料强度和孔结构的影响

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摘要

This study investigates the effect of micr-oaggregate filling with copper tailing on the pore structure of cement paste containing copper tailing (CPCT). The particle size of the CPCT and the pore structure of CPCT were analyzed by laser particle size analysis and mercury instruction porosimetry (MIP). Results showed that at the early stage of curing time, with increasing copper tailing content, the compressive strength of cement mortar with copper tailing (CMCT) was lower, and the porosity and pore diameter of CPCT were higher and greater; with the extension of curing age, when the content of copper tailing was less than 30%, the compressive strength of CMCT and the porosity of CPCT changed slightly with the increase of the content of copper tailing. However, the maximum hole diameter of CPCT decreased gradually (a curing age between 7 d and 365 d under standard conditions). Scanning electron microscopy analysis showed that at the early stage of cement hydration in the CPCT, the copper tailing did not fill the pores in CPCT well, while in the later stage of cement hydration, the microaggregates of copper tailing filled the pores well and closely combined with the surrounding hydration products. In the later stage of cement hydration, the microaggregate filling of copper tailing was primarily responsible for the strength increase of the CMCT.
机译:本研究调查了含铜尾矿的微团聚物填充对含铜尾矿(CPCT)的水泥浆孔结构的影响。通过激光粒度分析和汞指示孔隙率法(MIP)分析了CPCT的粒度和CPCT的孔结构。结果表明,在养护初期,随着铜尾矿含量的增加,含铜尾矿的水泥砂浆的抗压强度降低,CPCT的孔隙度和孔径越来越大。随着固化时间的延长,当铜尾矿含量小于30%时,CMCT的抗压强度和CPCT孔隙率随铜尾矿含量的增加而略有变化。但是,CPCT的最大孔径逐渐减小(标准条件下的固化年龄为7 d至365 d)。扫描电子显微镜分析表明,在CPCT水泥水化的早期阶段,铜尾矿并未很好地填充CPCT的孔,而在水泥水化后期,铜尾矿的微聚集体很好地填充了孔隙并紧密结合与周围的水合产品。在水泥水化的后期,铜尾矿的微骨料填充主要是导致CMCT强度增加的原因。

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