In this study, the influences of wax content on the tribological and mechanical performance of nylon-polytetrafluoroethylene blend were evaluated. Wear tests were carried out using nylon 6+10% polytetrafluoroethylene+wax pins on AISI 316L disc material. The wax percentages in the blend are 2%, 4% and 6% by weight. Tests were carried out at room temperature with applied loads of 50-100N and sliding speeds of 0.4-1.6m/s. These conditions are equvilent to a combined pressure and speed factor values of 0.141-5.664MPam/s. Although the results showed a slight drop in mechanical properties, the friction coefficients and the wear rates of nylon blend were significantly reduced by the addition of wax filler. The friction coefficient was reduced from...
In this study, the effect of applied load and sliding speed on friction and wear behaviour of 25 wt%...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
In this study, the tribological performance of graphite and wax filled nylon composites was predicte...
The friction and wear performance of pure polyamide-6 (PA-6), 5 wt%, 15 wt% graphite filled polyamid...
In this study, the tribological performances of some neat polymers and graphite and wax filled polym...
The friction and wear performance of cast polyamide, poly-oxy-methylene, 10 wt.% graphite filled pol...
Wear experiments have been carried out with a range of unfilled and filled engineering thermoplastic...
The effects of polytetrafluoroethylene (PTFE), graphite, ultrahigh molecular weight polyethylene (UH...
In this study, the influence of wax content on the electrical, thermal and tribological properties o...
In this study, the influence of wax content on the electrical, thermal and tribological properties o...
Friction properties of plastic materials are very important under dry sliding contact conditions for...
Copyright © 2013 Duxin Li et al.This is an open access article distributed under the Creative Common...
In this study, the tribological performance of poly-ether-ketone (PEEK), ultrahigh molecular weight ...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
In this study, the effect of applied load and sliding speed on friction and wear behaviour of 25 wt%...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
In this study, the tribological performance of graphite and wax filled nylon composites was predicte...
The friction and wear performance of pure polyamide-6 (PA-6), 5 wt%, 15 wt% graphite filled polyamid...
In this study, the tribological performances of some neat polymers and graphite and wax filled polym...
The friction and wear performance of cast polyamide, poly-oxy-methylene, 10 wt.% graphite filled pol...
Wear experiments have been carried out with a range of unfilled and filled engineering thermoplastic...
The effects of polytetrafluoroethylene (PTFE), graphite, ultrahigh molecular weight polyethylene (UH...
In this study, the influence of wax content on the electrical, thermal and tribological properties o...
In this study, the influence of wax content on the electrical, thermal and tribological properties o...
Friction properties of plastic materials are very important under dry sliding contact conditions for...
Copyright © 2013 Duxin Li et al.This is an open access article distributed under the Creative Common...
In this study, the tribological performance of poly-ether-ketone (PEEK), ultrahigh molecular weight ...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
In this study, the effect of applied load and sliding speed on friction and wear behaviour of 25 wt%...
Polytetrafluroethylene (PTFE) is an important engineering material. When rubbed or slide against a h...
In this study, the tribological performance of graphite and wax filled nylon composites was predicte...