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引用本文:宋军伟,朱街禄,刘方华,冯胜雷.铜尾矿粉对复合胶凝体系强度和微结构的影响[J].建筑材料学报,2019,22(6):846-852
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铜尾矿粉对复合胶凝体系强度和微结构的影响
宋军伟, 朱街禄, 刘方华, 冯胜雷
江西科技学院土木工程学院,江西南昌330098
摘要:
为阐明铜尾矿粉在水泥铜尾矿粉复合胶凝体系中的作用机理,制备了铜尾矿粉掺量分别为15%,30%和45%的水泥铜尾矿粉净浆试样,并采用抗压强度活性指数和水化活性贡献率等指标,定量分析了铜尾矿粉研磨时间和养护温度等活性激发方式对净浆试样抗压强度的影响;用X射线衍射(XRD)和扫描电镜(SEM)观察了净浆试样水化产物的微观结构.结果表明:常温养护条件下,增加铜尾矿粉掺量将降低净浆试样的抗压强度,但对其后期强度增长有利;当铜尾矿粉掺量为45%时,铜尾矿粉的水化活性很低,浆体中存在大量孔隙;铜尾矿粉在水泥浆体中没有形成新的晶相,直到28d龄期时铜尾矿粉的活性才被激发;增加研磨时间可显著提高铜尾矿粉的水化活性;在增加养护温度的同时增加铜尾矿粉的研磨时间,可进一步提高净浆试样的抗压强度,但对其后期强度增长不利.
关键词:  铜尾矿粉  抗压强度活性指数  水化活性  微观形貌  活性激发
DOI:103969/j.issn.1007 9629201906002
分类号:
基金项目:国家自然科学基金资助项目(51668021);江西省科技厅重点研发计划一般项目(20192BBHL80006);江西省交通运输厅科技项目(2019H0013);江西省教育厅科学技术研究项目(GJJ180968,GJJ180969);江西科技学院校级自然课题(ZR1712,ZR1713)
Influence of Copper Tailing Powder on the Compressive Strength and Microscopic Structure of Complex Binder
SONG Junwei, ZHU Jielu, LIU Fanghua, FENG Shenglei
School of Civil Engineering, Jiangxi University of Technology, Nanchang 330098, China
Abstract:
In order to investigate the action mechanisms of copper tailing powder in the complex binders pastes, the samples of complex binder with copper tailing powder content up to 15%,30% and 45% were prepared. Influence of different grinding time and curing temperature of copper tailing powder on the compressive strength of complex binder paste were investigated by compressive strength activity index and hydration activity contribution rate. The hydrated product of complex binders pastes were studied by using XRD and SEM. The results show that the compressive strength of complex binder paste decreases with the increasing copper tailing powder content, but the later strength will increase. The hydration activity of copper tailing powder is very low when the content is 45%, and there are many pores in the slurry. Copper tailings do not form new crystal phase in cement slurry until 28d when the activity of copper tailings is activated.The complex binders pastes strength will increase and the later strength growth rate will decrease when the curing temperature and grinding time increased.
Key words:  copper tailing powder  compressive strength activity index  hydration activity  morphology  active excitation
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