Influence of a vacuum environment on friction and lubrication studies
Influence of vacuum system and oxygen partial pressures on friction behavior of metals in sliding contact
Engineering topics
Publications and source records attributed to Buckley, D. H..
Influence of vacuum system and oxygen partial pressures on friction behavior of metals in sliding contact
Orientation effect on friction characteristics of single crystal beryllium in vacuum
Vapor deposited gold thin films to obtain adhesion and durability between film and substrate essential as lubricants in high vacuum
Friction and wear of hexagonal metals and alloys as related to crystal structure and lattice parameters in vacuum
Vacuum effects on lubricants and bearing materials due to reduced ambient pressure and low concentration of oxidizing gases
Friction and wear characteristics of polymide and filled polymide compositions in vacuum
Friction, wear, and adhesion characteristics of titanium-aluminum alloys in vacuum
Grain orientation influence on friction properties of tungsten
Adhesion and sliding friction influenced by structure, orientation, and solubility of metal single crystals
Vapor-deposited thin gold films as lubricant in vacuum
Friction and wear of hexagonal metals and alloys as related to crystal structure and lattice parameters in vacuum
Influence of order and order-disorder transformation on friction characteristics of copper-gold alloys in vacuum
Effect of crystal orientation on friction characteristics of titanium single crystals in vacuum
Gold thin films of 1800 angstroms to be used as lubricants were vapor-deposited on Ni, Ni-Cr and Ni-Re substrates in vacuum
Friction and wear of low melting gallium alloys on stainless steel and nickel in argon and vacuum environment
Vacuum deposition of gold thin films on nickel, nickel-chromium, and nickel-rhenium substrates for use as lubricants
Friction and wear characteristics of metals and alloys related to structure and lattice parameters in high vacuum
Crystal structure influence on friction and wear characteristics of binary tungsten-cobalt and molybdenum-cobalt alloy systems in vacuum