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Hydrocyclone is widely used in closed-circuit grinding process. However, in the first classification operation of coarse particles with high pulp density, the shortcomings of traditional cyclone are that the grinding cycle load is much high, the apex of cyclone is easily to be blocked and classification efficiency is less. Specifically, the problems of traditional cyclone used in grinding process are as follows: (1) Mill utilization factor is low and its handling capacity is small; (2) Coarse particles mixing in cyclone overflow affects the following separation process and fine particles mixing in underflow causes over-grinding, which affects the total recovery rate of valuable minerals; (3) High grinding cycle load leads to large amount of high-density slurry pumping, which causes high energy consumption and severe wear of cyclones, pipelines and pumps. The applications of new type pre-classification hydrocyclone with centrifugal volute in the first classification process of iron mine mill are introduced in the paper. Pulp particles fed in the centrifugal volute are arranged in advance, so that coarse particles can be far away from the overflow pipe, which can reduce the short circuit current to avoid coarse particles entering overflow and improve classification efficiency and accuracy of cyclone. The strong points of the new cyclone in the coarse classification operation are as follows: (1) Finer overflow and less fine particles mixing in underflow improves classification efficiency more than 10%; (2) Lower ball mill load cycle improves ball capacity more than 10%; (3) Grinding energy consumption reduces by more than 20% and cyclone feed pump reduces energy consumption by more than 12%. In short, new type pre-classification cyclone with centrifugal volute solves the problems of fine particles mixing in underflow, high grinding cycle load and less classification efficiency in the coarse classification operation. Therefore, it has broad application prospects in ferrous metal and non-ferrous metal ore dressing plant. 相似文献
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高效率真空泵的设计技术对于工业的节能具有重要意义。根据某真空泵的设计要求,针对真空泵的工作叶轮的形式和设计点参数,分析和探讨了叶片负荷分布形式和分流叶片弦向和周向位置对性能的影响规律,在此基础上完成了该离心真空泵的气动设计。利用三维数值模拟软件对不同叶片扩压器角度情况下的性能曲线和内部流动进行计算。充分考虑真空泵内部流动的非对称性,采用了全通道计算,同时分析了真空泵的离心叶轮、叶片扩压器及蜗壳内部的流动特点。结果表明,叶片负荷分布形式和分流叶片弦向和周向位置对流量、出口气流角和效率均有较大的影响;通过改变叶片扩压器角度使得离心真空泵的特性线平移,使得离心真空泵在整个工作过程中始终工作在高效率区,达到节能的目的。 相似文献
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针对单悬臂蜗壳离心压缩机结构特点和实际安装工艺难点,进行了深入分析,找出了影响安装质量的不合理因素,提出了具体解决方案。最终实现了成功安装,并提高了产品安装的质量和效率。 相似文献