1) Magnets
强磁体
2) pulsed magnet
脉冲强磁体
1.
The design of pulsed magnets involves electro-magnetic field analysis,thermal analysis and structural analysis.
在设计脉冲强磁体时,需综合考虑材料的电性能、热性能和机械性能,优化磁体结构,使其达到最佳。
3) a gradient strong magnet
梯度强磁体
4) high intensity magnetic
强磁
1.
Through the research,the dephosphorizing process of low intensity magnetic-high intensity magnetic-shacking table separation was selected.
通过工艺研究,最后选择弱磁—强磁—摇床精选的工艺流程,加强矿物的细磨,是铁矿降磷和提高精矿指标的重要措施。
2.
By the research,the dephosphorizing process of low intensity magnetic-high intensity magnetic shacking table separation is selected.
通过工艺研究,最后选择弱磁-强磁-摇床精选的工艺流程,加强矿物细磨是铁矿降磷和提高精矿指标的重要措施。
5) Strong magnetism
强磁
1.
The electricity class medical equipment is following the strong electricity, the strong magnetism and the high radiation frequently and so on the non-safety factor.
电气类医疗设备常常伴随着强电、强磁、高辐射等不安全因素,介入人体、植入人体等与人体体表及体液发生直接接触的医疗器械又涉及到交叉感染及生物安全等问题。
6) HIMS
强磁选
1.
High Intensity Magnetic Separation (HIMS) of A Low-grade Manganese-Silver Ore;
某低品位锰银矿强磁选工艺研究
2.
Based on conditional tests,a closed-circuit test was made on the flowsheet consisting of primary grinding,high intensity magnetic separation(HIMS),secondary grinding,silver flotation and manganese flotation.
通过各种条件试验,最终采用粗磨-强磁选-细磨-浮选银-浮选锰泥的流程进行闭路试验,可以得到强磁精矿含银595。
3.
In order to better exploit and utilize the oolitic hematite ore resource in Zhangjiakou region,staged grinding-separation process consisting of high intensity magnetic separation(HIMS)and reverse floatation was adopted in the beneficiation test on the regionally representative oolitic hematite ore of Longyan Iron Mine,Xuan Steel.
试验结果表明,以SLon脉动高梯度磁选机为强磁选设备,以NaOH、淀粉、CaO和TS为反浮选药剂,在一段为-200目65%、二段为-200目95%的磨矿细度下,经过2次强磁选和一粗一精反浮选,可以获得较好的分选指标,精矿铁品位为62。
参考词条
补充资料:实验室高场超导磁体——15.5T磁体(1985)
实验室高场超导磁体——15.5T磁体(1985)
实验室高场超导磁体一f 5 5T磁体 r1 9851
说明:补充资料仅用于学习参考,请勿用于其它任何用途。