Friction and Wear of Iron-base Binary Alloys in Sliding Contact with Silicon Carbide in Vacuum1980 - 11 pages |
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Page 7
... NASA TP - 1612 4. Title and. ( a ) Mn - Fe alloys . ـلمـ 1.2 , 1. 0 .2 ( d ) Ti - Fe alloys . ( b ) Ni - Fe alloys . ( e ) W - Fe alloys . .2 5 10 15 20 0 5 10 SOLUTE CONTENT , at % ( c ) Cr - Fe alloys . ( f ) Rh - Fe alloys . Figure 11 ...
... NASA TP - 1612 4. Title and. ( a ) Mn - Fe alloys . ـلمـ 1.2 , 1. 0 .2 ( d ) Ti - Fe alloys . ( b ) Ni - Fe alloys . ( e ) W - Fe alloys . .2 5 10 15 20 0 5 10 SOLUTE CONTENT , at % ( c ) Cr - Fe alloys . ( f ) Rh - Fe alloys . Figure 11 ...
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... NASA TP – 1394 , 1979 . 2. Miyoshi , Kazuhisa ; and Buckley , Donald H .: Adhesion and Friction of Iron - Base Binary Alloys in Contact with Silicon Carbide in Vacuum . NASA TP - 1604 , 1980 . 3. Stephens , Joseph R .; and Witzke ...
... NASA TP – 1394 , 1979 . 2. Miyoshi , Kazuhisa ; and Buckley , Donald H .: Adhesion and Friction of Iron - Base Binary Alloys in Contact with Silicon Carbide in Vacuum . NASA TP - 1604 , 1980 . 3. Stephens , Joseph R .; and Witzke ...
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Kazuhisa Miyoshi. 1. Report No. NASA TP - 1612 4. Title and Subtitle 2. Government Accession No. FRICTION AND WEAR OF IRON - BASE BINARY ALLOYS IN SLIDING CONTACT WITH SILICON CARBIDE IN VACUUM 7. Author ( s ) Kazuhisa Miyoshi and Donald ...
Kazuhisa Miyoshi. 1. Report No. NASA TP - 1612 4. Title and Subtitle 2. Government Accession No. FRICTION AND WEAR OF IRON - BASE BINARY ALLOYS IN SLIDING CONTACT WITH SILICON CARBIDE IN VACUUM 7. Author ( s ) Kazuhisa Miyoshi and Donald ...
Common terms and phrases
alloy pins alloy transfer alloys having low ALLOYS IN SLIDING atomic percent ATOMIC RADIUS RATIO atomic-radius ratio increases Buckley calculated from maximum Carbide in Vacuum CHANGE OF COEFFICIENT chromium cient of friction coeffi coefficient of friction concentration of alloying CONTACT WITH SILICON crystal silicon carbide decreases from unity Donald H experiments were conducted friction and wear friction during multipass friction experiments friction generally increases friction with number friction with succeeding function of solute iron-base binary alloys load of 0.2 maximum peak heights Miyoshi multipass sliding NASA TP number of passes pascal produce more transfer RATE OF CHANGE Rh-Fe alloy rhodium Scanning electron micrographs silicon car silicon carbide 0001 silicon carbide flats silicon carbide surfaces single-crystal silicon carbide sliding contact sliding velocity solute concentration produce SOLUTE-TO-IRON ATOMIC RADIUS solute-to-iron atomic-radius ratio strain gage succeeding passes Ti-Fe pin total sliding distance tracks on SiC transfer film Wear tracks