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叶轮结构对浮选动力学特性的影响 被引量:2
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作者 唐军 滕瑜崇 +3 位作者 刘辉 于明明 匡敬忠 符东成 《金属矿山》 CAS 北大核心 2022年第4期195-201,共7页
为提高自吸式浮选机循环量及浮选过程矿物悬浮均匀性,以 JJF-0. 2m;试验样机作为基础研究模型,对原有的星型径向叶轮进行结构优化后形成了一种改进叶轮。 通过 CFD 方法对比分析了两种叶轮对流场特征、湍动能分布、循环量及功耗的影响,... 为提高自吸式浮选机循环量及浮选过程矿物悬浮均匀性,以 JJF-0. 2m;试验样机作为基础研究模型,对原有的星型径向叶轮进行结构优化后形成了一种改进叶轮。 通过 CFD 方法对比分析了两种叶轮对流场特征、湍动能分布、循环量及功耗的影响,并进一步对两种叶轮的整体性能参数进行了研究,探讨了粒度和叶轮结构对矿物悬浮均匀性的影响。 结果表明:在叶轮转速为 997r/ min 时,2 种叶轮均能形成适宜矿物浮选的流场特征,相较于星型径向叶轮,改进叶轮在竖筒和循环筒内形成了更强的湍动能,循环量提升了 45%,功耗增大了 5%,吸气量提升了 3%。 随粒度增大矿物悬浮均匀性变差,改进叶轮在提高矿物悬浮均匀性和解决矿物沉槽问题方面效果显著。 展开更多
关键词 自吸式浮选机 叶轮 CFD 循环量 矿物粒度 悬浮均匀性
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Novel Implicit Lorentz Force-Type Magnetic Bearing for High-Precision Agile Maneuver of Magnetically Suspended Gyrowheel
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作者 WANG Qirui LIU Qiang LI Zhuang 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第S01期57-68,共12页
The lorentz force-type magnetic bearing(LFTMB)with good linearity is suitable for the high-precision deflection control of the magnetically suspended gyrowheel(MSGW). Two kinds of novel implicit LFTMBs are proposed in... The lorentz force-type magnetic bearing(LFTMB)with good linearity is suitable for the high-precision deflection control of the magnetically suspended gyrowheel(MSGW). Two kinds of novel implicit LFTMBs are proposed in allusion to the poor magnetic flux density uniformity of the existing explicit LFTMB. The improvement of uniformity is realized under the paramagnetic contribution of magnetic ring. Their structures are introduced,the mathematical models are established based on the equivalent magnetic circuit method and the magnetic fields are analyzed by the finite element method based on the design parameters. Simulation results indicate that the magnetic flux density uniformity of implicit LFTMBs is superior to the traditional explicit LFTMB. Furthermore,the implicit trapezoid LFTMB with double magnetic circuits is better than that of those with single magnetic circuit,in terms of the magnetic flux density uniformity and the magnetic flux density. The magnetic flux density of implicit trapezoid double magnetic circuits LFTMB is verified by the experiment. The error between the experimental results and the simulation results is within 5%,which shows that the implicit trapezoid double magnetic circuits LFTMB is promising to meet the high-precision agile maneuver requirement of the magnetically suspended gyrowheel. 展开更多
关键词 finite element method Lorentz force-type magnetic bearing(LFTMB) magnetically suspended gyrowheel(MSGW) magnetic flux density fluctuation
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