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1)  Magnetic Abrasive Finishing
磁力研磨
1.
Research on Surface Roughness Characteristics of Plastic Die Steel in Magnetic Abrasive Finishing;
磁力研磨加工塑料模具钢的表面粗糙度特性研究
2.
Robotized magnetic abrasive finishing for mould cavity surface;
模具型腔自动化磁力研磨光整加工
3.
Numerical simulation of magnetic abrasive finishing;
磁力研磨加工的数值仿真
2)  magnetic abrasive finishing(MAF)
磁力研磨
1.
This is significant for magnetic abrasive finishing(MAF)to be put into production and for its apˉplication in precision processing of dies and moulds.
这对磁力研磨技术的生产化 ,以及该技术在模具精加工中的应用具有重要的意
2.
The development history and current situation of magnetic abrasive finishing(MAF) is marrated.
在阐述磁力研磨加工技术发展历史和研究现状的基础上,介绍了磁力研磨加工机理和应用,并针对不同的加工对象,研究了各种因素对磁力研磨的影响规律。
3)  Magnetic grinding
磁力研磨
1.
Magnetic grinding is a new technology used in grinding and a polishing spares.
磁力研磨是一种零件研磨和光整加工的新工艺,它是利用磁性磨料在磁场作用下对工件表面进行研磨和抛光加工。
2.
Constituted the magnet circuit with three pieces of permanent magnet to make a magnetic grinding device, which was used in grinding the facet of parts.
用3块永磁铁组成磁路,制成磁力研磨装置,用于零件的小面积研磨。
3.
To grinding part surfaces with permanent magnet and magnetic grains is a new method of magnetic grinding.
利用永久磁体及磁性磨料对零件表面进行研磨,是磁力研磨中的一种新方法。
4)  magnetic finishing
磁力研磨法
1.
In view of that there exist burrs in the edges and corners of the ground servo-valve, an experimental device was designed by using magnetic finishing.
根据磁力研磨法的工作原理,研制了阔芯棱边去毛刺实验装置,并通过实验分析了各种因素对去毛刺效率、工作表面粗糙度以及工件形状误差的影响。
5)  magnetic grinder
磁力研磨机
1.
INTRODUCE the stuctral design of the magnetic grinder came from a nomal CA6140 lathe is introduced.
磁力研磨技术是新型的光整加工技术,目前在我国尚不普及,没有专用的设备,为了推广该项技术,研制开发了磁力研磨机。
6)  magnetic abrasive finishing
磁力研磨加工
1.
Computer Simulation and System Design of Micro-controller Based Magnetic Abrasive Finishing Using Rotating Magnetic Field;
基于单片机的旋转磁场磁力研磨加工的计算机仿真与系统设计
2.
45 teel tubes with different walls have been done,and these results show it is unsuita ble for magnetic abrasive finishing on internal surface of magnetisable material tubing with thick wall
在分析内圆磁力研磨加工原理的基础上,通过建立适量的假设条件,简化了磁力研磨加工区域中的磁场,利用拉普拉斯方程及必要的边界条件推导出在磁场中圆柱腔内、外磁感应强度的近似关系,并对不同壁厚的45钢圆柱管进行对比试验,结果表明内圆磁力研磨加工只适合加工薄壁磁性材料圆管工件。
补充资料:磁力选矿
分子式:
分子量:
CAS号:

性质:简称磁选。矿石磨细以后,利用不同矿物颗粒间磁性的差异及它们在磁场中所受磁力的大小,进行矿物分离的选矿方法。分强磁选和弱磁性,湿式和干式。为了增强弱磁性矿物的磁性,有时需要将被分选的矿物进行磁化(还原)焙烧,以提高磁选效果。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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