Fibrillar reinforced composites of polytetrafluoroethylene (PTFE) and polycarbonate (PC) were prepared by in situ fibrillation of PTFE into PC matrix using twin screw extruder. Different samples were obtained by varying the relative ratio between PC and PTFE. The rheological properties of the PC/PTFE composites were found to depend on concentration of the PTFE fibrils. The melt strength analysis in nonisothermal conditions was also studied. The increase in force and decrease in drawability with increasing the PTFE content are associated with the PTFE fibrils formed in situ during the thermomechanical process in twin screw extruder
This paper reports a comprehensive laboratory study into the thermophysical, physical-mechanical cha...
Published by Wiley for the Society of Plastics Engineers (SPE).Vapor Grown Carbon Fiber (VGCF)–polyc...
In this paper, the effect of manufacturing methods on the compressive properties of Cu-PTFE (polytet...
Fibrillar reinforced composites of polytetrafluoroethylene (PTFE) and polycarbonate (PC) were prepa...
The results of the investigations into the technological formation of new wear-resistant polymer com...
Vapour-grown carbon fibres were produced from methane in a flow reactor. The fibres were compounded ...
The experience of many theoretical and practical works concerning the technology of PTFE-composites ...
The results of the investigations into the technological formation of new wear-resistant polymer com...
In-situ fibrillary PTFE was usually developed by melt blending to enhance the melt strength and proc...
Carbon fiber reinforced plastics (CFRP) are attracting attention in the automotive industry due to t...
ABSTRACT: Blending polytetrafluorothylene (PTFE) with PA6 in different compositions was carried out ...
The experience of many theoretical and practical works concerning the technology of PTFE composite ...
As part of the present work, polymer composites used in 3D printing technology, especially in Melted...
This paper reports a comprehensive laboratory study into the thermophysical, physical-mechanical cha...
Currently, lightweight and high-strength polymer composites can provide weight savings in the automo...
This paper reports a comprehensive laboratory study into the thermophysical, physical-mechanical cha...
Published by Wiley for the Society of Plastics Engineers (SPE).Vapor Grown Carbon Fiber (VGCF)–polyc...
In this paper, the effect of manufacturing methods on the compressive properties of Cu-PTFE (polytet...
Fibrillar reinforced composites of polytetrafluoroethylene (PTFE) and polycarbonate (PC) were prepa...
The results of the investigations into the technological formation of new wear-resistant polymer com...
Vapour-grown carbon fibres were produced from methane in a flow reactor. The fibres were compounded ...
The experience of many theoretical and practical works concerning the technology of PTFE-composites ...
The results of the investigations into the technological formation of new wear-resistant polymer com...
In-situ fibrillary PTFE was usually developed by melt blending to enhance the melt strength and proc...
Carbon fiber reinforced plastics (CFRP) are attracting attention in the automotive industry due to t...
ABSTRACT: Blending polytetrafluorothylene (PTFE) with PA6 in different compositions was carried out ...
The experience of many theoretical and practical works concerning the technology of PTFE composite ...
As part of the present work, polymer composites used in 3D printing technology, especially in Melted...
This paper reports a comprehensive laboratory study into the thermophysical, physical-mechanical cha...
Currently, lightweight and high-strength polymer composites can provide weight savings in the automo...
This paper reports a comprehensive laboratory study into the thermophysical, physical-mechanical cha...
Published by Wiley for the Society of Plastics Engineers (SPE).Vapor Grown Carbon Fiber (VGCF)–polyc...
In this paper, the effect of manufacturing methods on the compressive properties of Cu-PTFE (polytet...