In this study, the influence of adding graphite filler, on the mechanical, electrical and tribological properties of nylon-6 composites, is studied. Graphite fillers with different percentages, varying between 5 and 15 wt% were added to nylon-6 polymer material. Nylon-6 composite samples were prepared by the injection molding process. Tensile, impact, electrical and tribological tests were carried out and the dielectric permittivity tangent loss factor, tensile strength, modulus of elasticity, elongation at break, impact strength, specific wear rate and coefficient of friction properties were obtained. The results showed that the tensile strength, elongation at break, impact strength, and specific wear rate of nylon-6 composites, decrease w...
Polyamide 4.6 has excellent properties, such as high temperature resistance, crystallinity, fatigue ...
The aim of this study is to develop composites with high thermal conductivity by employing the therm...
KAYA, ugur/0000-0003-4867-3135WOS: 000375036700007In this study, the influence of wax content on the...
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...
The quality of plastic gears, especially their durability, is becoming increasingly important due to...
The effects of polytetrafluoroethylene (PTFE), graphite, ultrahigh molecular weight polyethylene (UH...
In general addition compounds are added to polymers to design composite materials with improved prop...
Copyright © 2013 Duxin Li et al.This is an open access article distributed under the Creative Common...
In this investigation, the influence of filler type and filler content on the mechanical properties ...
New types of polymers are usually produced with different additives. In this work, the effect of gra...
Particulate reinforced thermoplastic composites are designed to improve the properties and to lower ...
Electrically and thermally conductive resins can be produced by adding conductive fillers to insulat...
Electrically and thermally conductive resins can be produced by adding conductive fillers to insulat...
Polyamide 4.6 has excellent properties, such as high temperature resistance, crystallinity, fatigue ...
Polyamide 4.6 has excellent properties, such as high temperature resistance, crystallinity, fatigue ...
The aim of this study is to develop composites with high thermal conductivity by employing the therm...
KAYA, ugur/0000-0003-4867-3135WOS: 000375036700007In this study, the influence of wax content on the...
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...
The quality of plastic gears, especially their durability, is becoming increasingly important due to...
The effects of polytetrafluoroethylene (PTFE), graphite, ultrahigh molecular weight polyethylene (UH...
In general addition compounds are added to polymers to design composite materials with improved prop...
Copyright © 2013 Duxin Li et al.This is an open access article distributed under the Creative Common...
In this investigation, the influence of filler type and filler content on the mechanical properties ...
New types of polymers are usually produced with different additives. In this work, the effect of gra...
Particulate reinforced thermoplastic composites are designed to improve the properties and to lower ...
Electrically and thermally conductive resins can be produced by adding conductive fillers to insulat...
Electrically and thermally conductive resins can be produced by adding conductive fillers to insulat...
Polyamide 4.6 has excellent properties, such as high temperature resistance, crystallinity, fatigue ...
Polyamide 4.6 has excellent properties, such as high temperature resistance, crystallinity, fatigue ...
The aim of this study is to develop composites with high thermal conductivity by employing the therm...
KAYA, ugur/0000-0003-4867-3135WOS: 000375036700007In this study, the influence of wax content on the...