Friction and wear experiments conducted on polyimide films bonded to 440C stainless steel disks indicated that a wear transition (from high wear to low wear) accompanied a friction transition (from high friction to low friction). In dry argon or dry air (less than 20 ppm H2O), the transition was found to occur at 40 plus or minus 10 C; when H20 was present in air (10,000 ppm H2O), the transition was found to be elevated to a temperature between 100 and 200 C. Wear rate calculations made at 25, 100, and 200 C indicated that film wear was relatively constant for particular experimental conditions; however, the rate was strongly dependent on temperature and atmosphere
A friction and wear life study was conducted on the use of a polyimide (PI) varnish as a binder for ...
To obtain a better understanding of how bonded solid lubricant films lubricate and wear (in general)...
Tribological studies were conducted on five different polyimide solid bodies formulated from the dia...
Friction and wear experiments conducted on polyimide films bonded to 440C stainless steel disks indi...
A transition in the friction coefficient and wear life properties of Pyralin polyimide (PI) thin fil...
The tribological properties of seven polyimide films applied to 440 C high temperature stainless ste...
Friction, wear, and wear mechanisms of several different polyimide films, solid bodies, composites, ...
The effect of thermal exposure on the weight loss, adherence, friction, and wear properties of polyi...
The friction characteristics of polyimide films bonded to metallic substrates were studied from 25 t...
The friction characteristics of polyimide films bonded to metallic substrates were studied from 25 t...
The tribological properties of polyimide dry films and composites are reviewed. Friction coefficient...
Friction, wear life, rider wear, and film wear for a 440 C high-temperature-stainless-steel, hemisph...
A pin-on-disk type of friction and wear apparatus was used to study the tribological properties of s...
Sliding friction and wear tests of polyimide, pyrrone, and poly/amide-imide/ resin seals on steel ro...
Thermal exposure experiments at 315 and 350 C were performed in air on nine different types of polyi...
A friction and wear life study was conducted on the use of a polyimide (PI) varnish as a binder for ...
To obtain a better understanding of how bonded solid lubricant films lubricate and wear (in general)...
Tribological studies were conducted on five different polyimide solid bodies formulated from the dia...
Friction and wear experiments conducted on polyimide films bonded to 440C stainless steel disks indi...
A transition in the friction coefficient and wear life properties of Pyralin polyimide (PI) thin fil...
The tribological properties of seven polyimide films applied to 440 C high temperature stainless ste...
Friction, wear, and wear mechanisms of several different polyimide films, solid bodies, composites, ...
The effect of thermal exposure on the weight loss, adherence, friction, and wear properties of polyi...
The friction characteristics of polyimide films bonded to metallic substrates were studied from 25 t...
The friction characteristics of polyimide films bonded to metallic substrates were studied from 25 t...
The tribological properties of polyimide dry films and composites are reviewed. Friction coefficient...
Friction, wear life, rider wear, and film wear for a 440 C high-temperature-stainless-steel, hemisph...
A pin-on-disk type of friction and wear apparatus was used to study the tribological properties of s...
Sliding friction and wear tests of polyimide, pyrrone, and poly/amide-imide/ resin seals on steel ro...
Thermal exposure experiments at 315 and 350 C were performed in air on nine different types of polyi...
A friction and wear life study was conducted on the use of a polyimide (PI) varnish as a binder for ...
To obtain a better understanding of how bonded solid lubricant films lubricate and wear (in general)...
Tribological studies were conducted on five different polyimide solid bodies formulated from the dia...