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旋流器应用与拜尔法原矿浆制备磨矿回路的选择
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作者 李明 丁安平 郝向东 《世界有色金属》 2003年第1期33-37,共5页
本文讨论了分级设备及循环负荷对磨矿回路产能的影响,特别对循环负荷在磨矿作业中的重要性进行了探讨,明确提出了磨矿回路应被视为一个有机操作单元。根据我国一水硬铝石难磨的特点研究了适宜于一水硬铝石特点的拜尔法原矿浆制备磨矿回... 本文讨论了分级设备及循环负荷对磨矿回路产能的影响,特别对循环负荷在磨矿作业中的重要性进行了探讨,明确提出了磨矿回路应被视为一个有机操作单元。根据我国一水硬铝石难磨的特点研究了适宜于一水硬铝石特点的拜尔法原矿浆制备磨矿回路,明确提出格子磨加旋流器一段闭路磨矿流程是目前拜尔法原矿浆制备工艺的最佳选择,该磨矿回路已在山西铝厂工业应用且取得了良好的技术经济效益。 展开更多
关键词 拜尔法 原砂浆 格子磨 旋流器 磨矿回路 氧化铝
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Effect of waste concrete with different strength on mechanical properties of recycled fine aggregate mortar 被引量:9
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作者 Ding Xiaomeng Chen Zhongfan +1 位作者 Liu Qiong Chen Yang 《Journal of Southeast University(English Edition)》 EI CAS 2019年第3期374-380,共7页
The influence of source concrete (SC) with different compression strengths on the workability and mechanical properties of recycled mortar made with river sand substituted by 100% fine recycled concrete aggregates (FR... The influence of source concrete (SC) with different compression strengths on the workability and mechanical properties of recycled mortar made with river sand substituted by 100% fine recycled concrete aggregates (FRCA) is experimentally investigated. The basic physical performance test shows that with the increase in SC strength, FRCA exhibit lower water absorption and crushing index, meanwhile keeping higher densities. Mechanical property tests, including compressive strength, flexural strength and uniaxial compressive stress-strain tests, show that compressive strength,flexural strength and elasticity modulus of recycled sand mortars increase roughly with the increase in SC strength. The proposed mixture design method demonstrates that all of the components can be kept as the same as those in natural mortar mixture design and FRCA must be pre-wetted before making mortar mixture. Meanwhile, the reuse of higher strength SC can ensure that recycled mortar mixtures are able to achieve similar mechanical performance when compared to natural mortar designs. 展开更多
关键词 fine recycled concrete aggregates (FRCA) recycled mortar with FRCA source concrete (SC) strength compressive strength flexural strength uniaxial compressive stress-strain test
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