Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Viscoelastic and Properties of Amphiphilic Chitin in Plasticised Polylactic Acid/Starch Biocomposite

View through CrossRef
The enhancement of the PLA thermomechanical properties is significant due to its suitability as a replacement for primary synthetic polymer use in diverse industrial production. The amphiphilic chitin was used as a compatibilizer in PLA/starch biocomposite. The properties of plasticised polylactic acid blended with starch, and amphiphilic chitin was studied for enhanced thermomechanical and viscoelastic properties. Chitin was modified using acetylated substitution reaction and blended with plasticised PLA/starch biocomposite. The biocomposite was prepared with combined compression and melt extrusion techniques. The biocomposite’s thermomechanical, thermal, mechanical, and morphological properties were studied using dynamic mechanical analysis, TGA-DSC, tensile test, and scanning electron microscopy. The storage and loss modulus were significantly enhanced with increased amphiphilic chitin content. Similarly, the single peak of tan delta showed good miscibility of the polymeric blend. Additionally, the modulus increases with frequency change from 1 Hz to 10 Hz. The thermal stability of the biocomposite was observed to be lower than the neat PLA. The tensile properties of the biocomposite increased significantly more than the neat PLA, with P4S4C having the highest tensile strength and modulus of 87 MPa and 7600 MPa. The SEM images show good miscibility with no significant void in the fractured surface. The viscoelastic properties of PLA were enhanced considerably with plasticizer and amphiphilic chitin with improved biodegradability. The properties of the biocomposite can be adapted for various industrial applications.
Title: Viscoelastic and Properties of Amphiphilic Chitin in Plasticised Polylactic Acid/Starch Biocomposite
Description:
The enhancement of the PLA thermomechanical properties is significant due to its suitability as a replacement for primary synthetic polymer use in diverse industrial production.
The amphiphilic chitin was used as a compatibilizer in PLA/starch biocomposite.
The properties of plasticised polylactic acid blended with starch, and amphiphilic chitin was studied for enhanced thermomechanical and viscoelastic properties.
Chitin was modified using acetylated substitution reaction and blended with plasticised PLA/starch biocomposite.
The biocomposite was prepared with combined compression and melt extrusion techniques.
The biocomposite’s thermomechanical, thermal, mechanical, and morphological properties were studied using dynamic mechanical analysis, TGA-DSC, tensile test, and scanning electron microscopy.
The storage and loss modulus were significantly enhanced with increased amphiphilic chitin content.
Similarly, the single peak of tan delta showed good miscibility of the polymeric blend.
Additionally, the modulus increases with frequency change from 1 Hz to 10 Hz.
The thermal stability of the biocomposite was observed to be lower than the neat PLA.
The tensile properties of the biocomposite increased significantly more than the neat PLA, with P4S4C having the highest tensile strength and modulus of 87 MPa and 7600 MPa.
The SEM images show good miscibility with no significant void in the fractured surface.
The viscoelastic properties of PLA were enhanced considerably with plasticizer and amphiphilic chitin with improved biodegradability.
The properties of the biocomposite can be adapted for various industrial applications.

Related Results

Tuning the Chemical and Thermo-Mechanical Properties of Cassava Starch Thin Films to Produce Biodegradable Packaging Materials
Tuning the Chemical and Thermo-Mechanical Properties of Cassava Starch Thin Films to Produce Biodegradable Packaging Materials
Abstract Starch is a renewable resource and starch films play a vital role as an alternative for synthetic polymers in packaging applications. However, the films prepared f...
Metabolism of chitin precursors by crayfish tissues during chitin synthesis
Metabolism of chitin precursors by crayfish tissues during chitin synthesis
AbstractIn order to follow changes in chitin precursors during chitin synthesis in the crayfish, Orconectes sanborni, tissue extracts were analyzed with an anion exchange column be...
REMOVAL OF ORANGE G FROM AQUEOUS SOLUTIONS BY POLYSTYRENE-MODIFIED CHITIN
REMOVAL OF ORANGE G FROM AQUEOUS SOLUTIONS BY POLYSTYRENE-MODIFIED CHITIN
In this work, polystyrene modified-chitin was evaluated for the first time as adsorbent for the removal of Orange G from aqueous solutions. Its absorption capacity was compared to ...
Systematic genetic dissection of chitin degradation and uptake in Vibrio cholerae
Systematic genetic dissection of chitin degradation and uptake in Vibrio cholerae
SUMMARY Vibrio cholerae is a natural resident of the aquatic environment, where a common nutrient is the chitinous exoskeletons...
The peridynamic model of viscoelastic creep and recovery
The peridynamic model of viscoelastic creep and recovery
Purpose – The purpose of this paper is to establish a peridynamic method in predicting viscoelastic creep behaviour with recovery stage and to find the suitable num...
Influence of Manufacturing Parameters on the Properties of 3D Printed Polylactic Acid Carbon Fiber Components
Influence of Manufacturing Parameters on the Properties of 3D Printed Polylactic Acid Carbon Fiber Components
This study investigates the impact of printing parameters on fused filament fabrication parts using Polylactic acid and polylactic acid carbon fibre filament. It aims to determine ...
Preparation and pH Controlled Release of Fe3O4/Anthocyanin Magnetic Biocomposites
Preparation and pH Controlled Release of Fe3O4/Anthocyanin Magnetic Biocomposites
Anthocyanins are a class of antioxidants extracted from plants, with a variety of biochemical and pharmacological properties. However, the wide and effective applications of anthoc...
The Effect of Phosphorylation (Sodium Trimetaphosphate) of Faro 40 Rice Starch for the Production of Pharmaceutical Grade Starch
The Effect of Phosphorylation (Sodium Trimetaphosphate) of Faro 40 Rice Starch for the Production of Pharmaceutical Grade Starch
Introduction: Nigerian FARO 40 rice starch has been underutilized due to low edible qualities. The aim of this study was to chemically modify underutilized rice variety using stand...

Back to Top