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handle: 2117/115994
PLA bio-blends with a predominantly biosourced PA10.10 in the composition range 10-50wt.% were prepared by melt blending in order to overcome the advanced brittleness of PLA. Due to the inherent immiscibility of the blends, 30 wt.% of PA was needed to achieve a brittle-to-ductile transition and a co-continuous morphology was predicted at 58 wt.% of PA. The initial enhancement of the PLA rheological behaviour through the environmentally friendly reactive extrusion process yielded a finer and more homogeneous microstructure and hence enhanced the mechanical properties of the bio-blends at much lower PA contents. The brittle-to-ductile transition could be achieved with only 10 wt.% and co-continuity was observed already at 44 wt.% of PA. Results indicate the significant potential of modifying PLA flow behaviour as a promising green manufacturing method toward expanding PLA-based bio-blends applications.
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Biopolymers, biocomposites, Biopolímers, Material testing, Chemical technology, Àrees temàtiques de la UPC::Enginyeria química, Mechanical properties, TP1-1185, Materials -- Propietats mecàniques, Biopolymers, TA401-492, Rheology, Materials of engineering and construction. Mechanics of materials, Materials--Mechanical properties, Reologia
Biopolymers, biocomposites, Biopolímers, Material testing, Chemical technology, Àrees temàtiques de la UPC::Enginyeria química, Mechanical properties, TP1-1185, Materials -- Propietats mecàniques, Biopolymers, TA401-492, Rheology, Materials of engineering and construction. Mechanics of materials, Materials--Mechanical properties, Reologia
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