In this paper, the preparation and characterisation of polymer materials suitable for single point incremental forming (SPIF) technology were performed. Three different kinds of mixtures were selected: a mixture of neat polyamide 12 (PA12), a nanocomposite with PA12 matrix and 1% clay (Cloisite 93A), and a nanocomposite with PA12 matrix and 3% clay (Cloisite 93A). Materials were produced using a melt intercalation method followed by compression moulding. According to the needs of SPIF technology, morphological and mechanical properties were investigated in the obtained mixtures. Transmission electron microscopy (TEM) and X-ray diffraction (XRD) were used to characterize morphological properties. It was determined that the most desired obtai...
Three commercial clays: Cloisite Na+ , Cloisite 30B and Cloisite 15A were used to melt compound with...
Nano has now become a theme in almost all the established discipline. The confluence ofinnovative me...
The success of a polymer/clay nanocomposite depends from a number of factors including the intrinsic...
In this paper, the preparation and characterisation of polymer materials suitable for single point i...
Polyamide 6/montmorillonite (MMT) nanocomposites were prepared by melt compounding method comprising...
The nanocomposites are multiphase materials where at least one phase is in nanoscale, less than 100 ...
AbstractThe possibility of creating new polymers with desired properties is now harder, so there is ...
Polymer/clay nanocomposites have attracted great attention of researchers for two decades because th...
Polyamide (PA6) nanocomposites containing 4 wt% organo-montmorillonite (OMMT) were melt-compounded f...
The topic of this presentation concerns to create polymeric nanocomposites using distinctive polymer...
Bio-based polymers and polymer nanocomposites have known an increasing interest during the past few ...
This work aims at comparing the efficiency of three melt compounding methods for preparing polyamide...
Polypropylene (PP)/ Cloisite® 30B Montmorillonite (MMT) Clay Nanocomposites were prepared using a ne...
Polymer nanocomposites consist of a polymer matrix and reinforcing particles that have at least one ...
AbstractNanocomposites based on polyamide 6 (PA6) and montmorillonite-type (MMT) commercial clays, e...
Three commercial clays: Cloisite Na+ , Cloisite 30B and Cloisite 15A were used to melt compound with...
Nano has now become a theme in almost all the established discipline. The confluence ofinnovative me...
The success of a polymer/clay nanocomposite depends from a number of factors including the intrinsic...
In this paper, the preparation and characterisation of polymer materials suitable for single point i...
Polyamide 6/montmorillonite (MMT) nanocomposites were prepared by melt compounding method comprising...
The nanocomposites are multiphase materials where at least one phase is in nanoscale, less than 100 ...
AbstractThe possibility of creating new polymers with desired properties is now harder, so there is ...
Polymer/clay nanocomposites have attracted great attention of researchers for two decades because th...
Polyamide (PA6) nanocomposites containing 4 wt% organo-montmorillonite (OMMT) were melt-compounded f...
The topic of this presentation concerns to create polymeric nanocomposites using distinctive polymer...
Bio-based polymers and polymer nanocomposites have known an increasing interest during the past few ...
This work aims at comparing the efficiency of three melt compounding methods for preparing polyamide...
Polypropylene (PP)/ Cloisite® 30B Montmorillonite (MMT) Clay Nanocomposites were prepared using a ne...
Polymer nanocomposites consist of a polymer matrix and reinforcing particles that have at least one ...
AbstractNanocomposites based on polyamide 6 (PA6) and montmorillonite-type (MMT) commercial clays, e...
Three commercial clays: Cloisite Na+ , Cloisite 30B and Cloisite 15A were used to melt compound with...
Nano has now become a theme in almost all the established discipline. The confluence ofinnovative me...
The success of a polymer/clay nanocomposite depends from a number of factors including the intrinsic...