The aim of this article is to investigate the effectiveness of commercial compatibilizers for two kinds of virgin plastic mixtures, high density polyethylene (HDPE)/ polypropylene (PP) and HDPE/polystyrene (PS) blends, in order to gain insight into the recycling of wastes from those frequently encountered mixed plastics. Blends were made using a single-screw extruder to follow an industrial-convenient process. Morphology and melt-rheological properties of several blends (compatibilized and not compatibilized) was studied. When compatibilized, blends present better dispersions: the size of the dispersed particles decreases, the shape of these particles is generally spherical, size-distribution is reduced and interfacial adhesion is better. S...
It is a common industrial practice to blend virgin polymer with the same polymer recycled from scrap...
Powder processing of thermoplastic polymer composites is an effective way to achieve a high level of...
In this article, we discuss the phase morphology, thermal, mechanical, and crystallization propertie...
Many plastic waste recycle streams are blends of various types of polypropylene (PP) and polyethylen...
Many plastic waste recycle streams are blends of various types of polypropylene (PP) and polyethylen...
The thermoplastic polymer blends of commercial interest generally need a phase compatibilization to ...
In the context of recycling plastic matter from waste, we study here polyethylene terephthalate (PET...
The most widely used commodity polymers in the rigid packaging industry are polypropylene (PP) and h...
Immiscible blends of recycled high density polyethylene (HDPE) and polyethylene terephthalate (PET) ...
One of the big engineering challenges in recycling thermoplastics is to manufacture competitive prod...
International audienceMechanical and morphological characterictics of mixed plastics waste depend on...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprüftAbweichender Titel nach Übersetz...
Le polyéthylène téréphtalate (PET) et les polyoléfines (PE, PP ... ) sont largement utilisés dans le...
Cette étude permet d’évaluer le potentiel des nanocharges en tant que compatibilisant afin de propos...
Le présent travail analyse l’effet de la présence de polluants sur le comportement thermo-rhéologiqu...
It is a common industrial practice to blend virgin polymer with the same polymer recycled from scrap...
Powder processing of thermoplastic polymer composites is an effective way to achieve a high level of...
In this article, we discuss the phase morphology, thermal, mechanical, and crystallization propertie...
Many plastic waste recycle streams are blends of various types of polypropylene (PP) and polyethylen...
Many plastic waste recycle streams are blends of various types of polypropylene (PP) and polyethylen...
The thermoplastic polymer blends of commercial interest generally need a phase compatibilization to ...
In the context of recycling plastic matter from waste, we study here polyethylene terephthalate (PET...
The most widely used commodity polymers in the rigid packaging industry are polypropylene (PP) and h...
Immiscible blends of recycled high density polyethylene (HDPE) and polyethylene terephthalate (PET) ...
One of the big engineering challenges in recycling thermoplastics is to manufacture competitive prod...
International audienceMechanical and morphological characterictics of mixed plastics waste depend on...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprüftAbweichender Titel nach Übersetz...
Le polyéthylène téréphtalate (PET) et les polyoléfines (PE, PP ... ) sont largement utilisés dans le...
Cette étude permet d’évaluer le potentiel des nanocharges en tant que compatibilisant afin de propos...
Le présent travail analyse l’effet de la présence de polluants sur le comportement thermo-rhéologiqu...
It is a common industrial practice to blend virgin polymer with the same polymer recycled from scrap...
Powder processing of thermoplastic polymer composites is an effective way to achieve a high level of...
In this article, we discuss the phase morphology, thermal, mechanical, and crystallization propertie...