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现代矿业 ›› 2023, Vol. 39 ›› Issue (03): 212-215.

• 材料·装备 • 上一篇    下一篇

基于立盘式搅拌磨机的铁氧体磁粉超细磨影响规律研究

王芏卜1,2 何建成1,2 孙小旭1,2 姚建超1,2 卢世杰1,2   

  1. 1. 北矿机电科技有限责任公司;2. 矿冶科技集团有限公司
  • 出版日期:2023-03-25 发布日期:2023-05-06
  • 基金资助:
    国家自然科学基金项目(编号:51674033,51604027)

Influence Factors Research on Superfine Grinding Technology for Ferrite Magnetic Powder Based on Vertical Disc Stirring Mill

WANG Dubo1,2 HE Jiancheng1,2 SUN Xiaoxu1,2 YAO Jianchao1,2 LU Shijie1,2   

  1. 1. Beijing General Research Institute of Mining and Metallurgy; 2. BGRIMM Machinery and Automation Technology Co.,Ltd.
  • Online:2023-03-25 Published:2023-05-06

摘要: 为了研究验证立盘式搅拌磨机对铁氧体磁粉超细磨效果的影响规律,基于试验室立盘 式搅拌磨机试验平台进行正交试验,进行了搅拌盘直径、相邻搅拌盘间隙、空隙盘面积比、搅拌盘边 缘线速度、搅拌盘数量5 个关键参数对磨矿效果的影响规律研究。研究结果表明:以能耗作为考核指 标,影响作用从大到小依次为搅拌盘转动速度、搅拌盘数量、搅拌盘直径、相邻搅拌盘间隙和空隙盘 面积比;试验对比了北矿科技阜阳生产基地铁氧体磁粉的超细磨过程,使用立盘式搅拌磨机为超细 磨设备,可降低吨能耗22.5%。

关键词: 立盘式搅拌磨机, 超细磨, 铁氧体磁粉, 正交试验, 关键参数

Abstract: In order to study and verify the influence of vertical disc stirred mill on the ultrafine grinding effect of ferrite magnetic powder,the orthogonal test was carried out based on the test platform of vertical disc stirred mill in the laboratory.The influence of five key parameters,such as the diameter of the stirring plate,the gap between adjacent stirring plates,the area ratio of the gap plate,the linear velocity of the edge of the stirring plate and the number of stirring plates,on the grinding effect was studied. The results show that with energy consumption as the assessment index,the influence from large to small is the rotation speed of the stirring plate,the number of stirring plates,the diameter of the stirring plate,the gap between adjacent stirring plates and the area ratio of the gap plate.The ultra-fine grinding process of ferrite magnetic powder in Fuyang production base of BGRIMM Machinery and Automation Technology Co.,Ltd.was compared. The vertical plate stirring mill was used as the ultra-fine grinding equipment,which can reduce the energy consumption by 22.5% per ton.

Key words: vertical disc stirring mill, super-fine grinding, ferrite magnetic powder, orthogonal experiments, key parameters