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- W3019851798 abstract "One way to obtain more benefit from coconut waste is to utilise coir fibre (CF) as reinforcement in biodegradable plastics. The current work aims to study the effect of CF on the performance of a thermoplastic starch (TPS)/poly(lactic acid) (PLA) blend. TPS/PLA/CF biocomposites with a constant TPS: PLA ratio of 60:40 by weight and various concentrations of CF (2.7, 5.5, 8.2, and 10.9 wt%) were fabricated using a twin-screw extruder and then injection moulded into dumbbell-shaped specimens for property testing. The obtained TPS/PLA/CF biocomposites exhibited improved stiffness and hardness, corresponding to the stronger hydrogen bond interaction between starch and PLA and/or starch and CF and the increased PLA crystallinity. Due to the reinforcing effect, the biocomposites also exhibited lower extensibility, tensile strength and impact strength compared to the TPS/PLA blend. Incorporating CF enhanced compatibility between the TPS and PLA phases; however, it also caused reduced melt flow ability, increased shear viscosity, and a decreased shear thinning effect of the blend. The resulting TPS/PLA/CF biocomposites could potentially be used to produce bio-based and biodegradable injection-moulded products." @default.
- W3019851798 created "2020-05-01" @default.
- W3019851798 creator A5054047953 @default.
- W3019851798 creator A5057539897 @default.
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- W3019851798 date "2020-08-01" @default.
- W3019851798 modified "2023-10-11" @default.
- W3019851798 title "Thermoplastic cassava starch/poly(lactic acid) blend reinforced with coir fibres" @default.
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- W3019851798 doi "https://doi.org/10.1016/j.ijbiomac.2020.04.121" @default.
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