Matches in SemOpenAlex for { <https://semopenalex.org/work/W2047732649> ?p ?o ?g. }
- W2047732649 abstract "Due to its origin from renewable resources, its biodegradability, and recently, its industrial implementation at low costs, poly(lactide) (PLA) is considered as one of the most promising ecological, bio-sourced and biodegradable plastic materials to potentially and increasingly replace traditional petroleum derived polymers in many commodity and engineering applications. Beside its relatively high rigidity [high tensile strength and modulus compared with many common thermoplastics such as poly(ethylene terephthalate) (PET), high impact poly(styrene) (HIPS) and poly(propylene) (PP)], PLA suffers from an inherent brittleness, which can limit its applications especially where mechanical toughness such as plastic deformation at high impact rates or elongation is required. Therefore, the curve plotting stiffness vs. impact resistance and ductility must be shifted to higher values for PLA-based materials, while being preferably fully bio-based and biodegradable upon the application. This review aims to establish a state of the art focused on the recent progresses and preferably economically viable strategies developed in the literature for significantly improve the mechanical performances of PLA. A particular attention is given to plasticization as well as to impact resistance modification of PLA in the case of (reactive) blending PLA-based systems." @default.
- W2047732649 created "2016-06-24" @default.
- W2047732649 creator A5003536932 @default.
- W2047732649 creator A5031028323 @default.
- W2047732649 creator A5037685446 @default.
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- W2047732649 creator A5078246013 @default.
- W2047732649 creator A5084598163 @default.
- W2047732649 creator A5091400637 @default.
- W2047732649 date "2013-01-01" @default.
- W2047732649 modified "2023-10-12" @default.
- W2047732649 title "Recent advances in high performance poly(lactide): from “green” plasticization to super-tough materials via (reactive) compounding" @default.
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