Non-magnetic fluid grinding

This paper describes a development of the magnetic fluid grinding process for the finish manufacture of ceramic balls. Magnetic fluid in magnetic fluid grinding has three functions: to cause viscous drag on balls moving through it, so that large sliding speeds may be created at the contacts between...

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Published inWear Vol. 223; no. 1; pp. 7 - 12
Main Authors Chang, F.Y, Childs, T.H.C
Format Journal Article
LanguageEnglish
Published Lausanne Elsevier B.V 01.12.1998
Amsterdam Elsevier Science
New York, NY
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Abstract This paper describes a development of the magnetic fluid grinding process for the finish manufacture of ceramic balls. Magnetic fluid in magnetic fluid grinding has three functions: to cause viscous drag on balls moving through it, so that large sliding speeds may be created at the contacts between the balls and their drive (grinding) shaft, to create a very compliant suspension for the balls and to levitate loose grinding grits so that they may embed in the drive shaft. But magnetic fluid is costly and needs to be maintained. Here it is shown how these functions have been realised without magnetic fluid. The non-magnetic fluid grinding process has achieved removal rates from silicon nitride balls 25 times higher than lapping, in the same way as has magnetic fluid grinding.
AbstractList This paper describes a development of the magnetic fluid grinding process for the finish manufacture of ceramic balls. Magnetic fluid in magnetic fluid grinding has three functions: to cause viscous drag on balls moving through it, so that large sliding speeds may be created at the contacts between the balls and their drive (grinding) shaft, to create a very compliant suspension for the balls and to levitate loose grinding grits so that they may embed in the drive shaft. But magnetic fluid is costly and needs to be maintained. Here it is shown how these functions have been realised without magnetic fluid. The non-magnetic fluid grinding process has achieved removal rates from silicon nitride balls 25 times higher than lapping, in the same way as has magnetic fluid grinding.
Author Childs, T.H.C
Chang, F.Y
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Cites_doi 10.1016/S0043-1648(96)07297-3
10.1016/S0007-8506(07)62192-1
10.1016/0043-1648(94)90182-1
10.1016/0301-679X(95)00018-Y
10.1299/kikaic.54.1599
10.1016/S0007-8506(07)61219-0
10.1243/PIME_PROC_1994_208_059_02
10.1299/kikaic.61.1709
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Issue 1
Keywords Ceramic finishing
Ball bearings
Grinding
Mechanical drive
Silicon nitride
Machining
Magnetic fluid
Experimental study
Surface finishing
Modeling
Ball bearing
Dragging
Friction coefficient
Cutting fluid
Ceramic materials
Sliding friction
Language English
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Elsevier Science
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Snippet This paper describes a development of the magnetic fluid grinding process for the finish manufacture of ceramic balls. Magnetic fluid in magnetic fluid...
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SubjectTerms Applied sciences
Ball bearings
Bearings, bushings, rolling bearings
Ceramic finishing
Drives
Exact sciences and technology
Friction, wear, lubrication
Grinding
Machine components
Mechanical engineering. Machine design
Title Non-magnetic fluid grinding
URI https://dx.doi.org/10.1016/S0043-1648(98)00257-9
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