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作 者:李春[1] 王恩峰[1] 崔乐[1] 崔孝炜[1] 张欣 王之宇[1] 郭家林[1] Li Chun Wang Enfeng Cui Le Cui Xiaowei Zhang Xin Wang Zhiyu Guo Jialin(Shangluo University Shaanxi Key Laboratory of Comprehensive Utilization of Tailings Resources, Shangluo, Shannx)
机构地区:[1]商洛学院陕西省尾矿资源综合利用重点实验室,陕西商洛726000
出 处:《矿产综合利用》2017年第5期80-84,共5页Multipurpose Utilization of Mineral Resources
基 金:商洛学院科研项目(14SKY-FWDF003;15SKY004);陕西省尾矿资源综合利用重点实验室开放基金资助项目(2014SKY-WK013);国家大学生创新创业训练项目(201511396704);陕西省大学生创新创业训练项目(2247)
摘 要:采用免蒸压工艺,研究了钼尾矿、水泥、石灰及矿渣对加气混凝土性能的影响。结果表明:随着水泥和石灰添加量的增大,加气混凝土的强度分别呈增大和先增大后减小的变化趋势,其干密度均呈现出先减小后增大的变化趋势,矿渣的掺入明显提高了混凝土制品的强度,但同时增大了制品的干密度。其最佳的原材料配比为(钼尾矿∶矿渣∶水泥∶石灰∶石膏)=(40∶25∶10∶22∶3),Al粉的质量分数为0.06%,水料比质量分数为0.6。此配比下所得加气混凝土制品抗压强度为3.12 MPa,干密度为660 kg/m3。The effect of molybdenum, cement,lime and slag on properties of autoclaved aerated concrete was studied by non-autoclaved process. The results show that with increasing of cement additon, the compressive strength of aer- ated concrete are increasing. With lime addition increased, the compressive strength of aerated concrete is firstly in- creasing and then decreasing. The dry density are all firstly decreasing and then increasing. The compressive strength of aerated concrete is obviously improved by the slag, but the dry density is increased. The best raw material rate is(molybdenum tailings:slag:cement:lime:plaster)= (40 : 25 : 10 : 22 : 3) ,and the addition of A1 powder is 0. 06% ,and the ratio of water to material is 0.6. The compressive strength of aerated concrete is 3.12 MPa and the dry density is 660 kg/m^3.
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