The aim of this study was to investigate influences of three different ethylene copolymers on the toughness and other properties of very brittle biopolymer PLA (polylactide). For this aim, PLA was melt blended by twin-screw extruder with various amounts of ethylene vinyl acetate (EVA), ethylene-methyl-acrylate (EMA) and ethylene-n-butyl acrylate-glycidyl-methacrylate (EBA-GMA). SEM and DSC analyses indicated that these ethylene copolymers were thermodynamically immiscible with phase separation in the form of 1-5 mu m sized round domains in the PLA matrix. Rubber toughening mechanisms of EVA, EMA and EBA-GMA were very effective to improve ductility and toughness of PLA significantly. Depending on the type and content of the ethylene copolyme...
Poly(lactic acid) (PLA) is brittle which restricts the range of its applications. The toughness of P...
The present work fits into the stream of study and analysis of biobased and/or biodegradable materia...
Poly(lactic acid) (PLA) is brittle which restricts the range of its applications. The toughness of P...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
In this work, a specific polylactide (PLA) 4032D was melt-mixed with a new toughener: butyl acrylate...
Two novel biodegradable copolymers, including poly(ethylene glycol)-succinate copolymer (PES) and po...
The purpose of this study was to investigate how optimum mechanical properties (strength-modulus-tou...
The effect of rubber toughening on mechanical and thermal properties of poly(lactic acid) (PLA) was ...
This study investigates the effect of natural rubber (NR), epoxidised natural rubber (ENR), and core...
This study investigates the effect of natural rubber (NR), epoxidised natural rubber (ENR), and core...
The present work fits into the stream of study and analysis of biobased and/or biodegradable materia...
Poly(lactic acid) (PLA) is brittle which restricts the range of its applications. The toughness of P...
The present work fits into the stream of study and analysis of biobased and/or biodegradable materia...
Poly(lactic acid) (PLA) is brittle which restricts the range of its applications. The toughness of P...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
The well-known bio-based and biocompostable poly(lactic acid), PLA, suffers from brittleness and a l...
In this work, a specific polylactide (PLA) 4032D was melt-mixed with a new toughener: butyl acrylate...
Two novel biodegradable copolymers, including poly(ethylene glycol)-succinate copolymer (PES) and po...
The purpose of this study was to investigate how optimum mechanical properties (strength-modulus-tou...
The effect of rubber toughening on mechanical and thermal properties of poly(lactic acid) (PLA) was ...
This study investigates the effect of natural rubber (NR), epoxidised natural rubber (ENR), and core...
This study investigates the effect of natural rubber (NR), epoxidised natural rubber (ENR), and core...
The present work fits into the stream of study and analysis of biobased and/or biodegradable materia...
Poly(lactic acid) (PLA) is brittle which restricts the range of its applications. The toughness of P...
The present work fits into the stream of study and analysis of biobased and/or biodegradable materia...
Poly(lactic acid) (PLA) is brittle which restricts the range of its applications. The toughness of P...