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Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron base binary alloys in oil: Effects of alloying element and its contentSliding friction experiments were conducted with various iron-base binary alloys (alloying elements were Ti, Cr, Mn, Ni, Rh, and W) in contact with a rider of 0.025-millimeter-radius, single-crystal silicon carbide in mineral oil. Results indicate that atomic size and content of alloying element play a dominant role in controlling the abrasive-wear and -friction properties of iron-base binary alloys. The coefficient of friction and groove height (wear volume) general alloy decrease, and the contact pressure increases in solute content. There appears to be very good correlation of the solute to iron atomic radius ratio with the decreasing rate of coefficient of friction, the decreasing rate of groove height (wear volume), and the increasing rate of contact pressure with increasing solute content C. Those rates increase as the solute to iron atomic radius ratio increases from unity.
Document ID
19790009056
Acquisition Source
Legacy CDMS
Document Type
Technical Publication (TP)
Authors
Miyoshi, K.
(Kanazawa Univ. Cleveland, OH, United States)
Buckley, D. H.
(NASA Lewis Research Center)
Date Acquired
September 3, 2013
Publication Date
February 1, 1979
Subject Category
Mechanical Engineering
Report/Patent Number
E-9765
NASA-TP-1394
Report Number: E-9765
Report Number: NASA-TP-1394
Accession Number
79N17227
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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