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Influence of CG With High Content of Metallic Particles as a Cement Admixture on Cement Strength

机译:含金属颗粒含量高的CG作为水泥外加剂对水泥强度的影响

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摘要

Copper gangue (CG), containing a large amount of water with grain sizes of 0.037 to 0.10mm, is an inactive industrial waste generated from copper refineries. When it is dried and used as a cement admixture, the influence of the presence of finely dispersed metallic particles in CG on the microstructure and com-pressive strength of cement paste, has been studied. The results show that the higher the replacement, of CG is, the lower the compressive strength of cement mortar is. However, the long-term strength of the specimens with 10% CG, especially after being cured for 3 months, approached to that of the plain mortar. Its mechanism was studied by an electron probe X-ray microanalyzer (EPXMA). The results indicate that a small quantity of Fe(OH)_3· nH_2O slowly formed from Fe_2O_3 in the presence of Ca(OH)_2, free CaO and MgO of the clinker also slowly hydrated and formed Ca(OH)_2 and Mg(OH)_2 respectively, so the hardened cement paste became more compact.
机译:铜石(CG)含有大量水,粒径为0.037至0.10mm,是铜精炼厂产生的惰性工业废物。当将其干燥并用作水泥外加剂时,已研究了CG中细分散的金属颗粒的存在对水泥浆的微观结构和抗压强度的影响。结果表明,置换率越高,水泥砂浆的抗压强度越低。但是,CG含量为10%的试样的长期强度,特别是固化3个月后的强度,接近普通砂浆的强度。通过电子探针X射线微分析仪(EPXMA)研究了其机理。结果表明,在Ca(OH)_2存在下,少量Fe(OH)_3·nH_2O由Fe_2O_3缓慢形成,熟料的游离CaO和MgO也缓慢水合形成Ca(OH)_2和Mg(OH) )_2,因此硬化的水泥浆变得更致密。

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