Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil

effect of alloying element and its contents

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Friction and wear with a single-crystal abras ...
Kazuhisa Miyoshi
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December 15, 2009 | History

Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil

effect of alloying element and its contents

  • 0 Ratings
  • 0 Want to read
  • 0 Currently reading
  • 0 Have read

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Cover of: Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil
Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil: effect of alloying element and its contents
1979, National Aeronautics and Space Administration, Scientific and Technical Information Office, for sale by the National Technical Information Service
in English
Cover of: Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil
Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil: effect of alloying element and its contents
1979, National Aeronautics and Space Administration, Scientific and Technical Information Office, for sale by the National Technical Information Service
in English
Cover of: Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil
Friction and wear with a single-crystal abrasive grit of silicon carbide in contact with iron-base binary alloys in oil: effect of alloying element and its contents
1979, National Aeronautics and Space Administration, Scientific and Technical Information Office, for sale by the National Technical Information Service
in English

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Book Details


Edition Notes

February 1979.

Includes bibliographical references.

Published in
Washington, Springfield, Va
Series
NASA technical paper ; 1394, NASA technical paper -- 1394.

The Physical Object

Pagination
16 p. :
Number of pages
16

ID Numbers

Open Library
OL17819639M

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December 15, 2009 Edited by WorkBot link works
October 1, 2008 Created by ImportBot Imported from Oregon Libraries MARC record