Effect of various enzymatic treatments on the mechanical properties of coir fiber/poly(lactic acid) biocomposites

The effects of enzymatic treatments on the properties of coir fiber-reinforced poly(lactic acid) (PLA) were not found in the literature. Accordingly, the effects of various enzymatic treatments on the mechanical performance of the coir fiber-reinforced PLA composites were investigated in the current...

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Veröffentlicht in:Journal of thermoplastic composite materials 2021-08, Vol.34 (8), p.1066-1079
Hauptverfasser: Coskun, Kubra, Mutlu, Aysenur, Dogan, Mehmet, Bozacı, Ebru
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container_end_page 1079
container_issue 8
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container_title Journal of thermoplastic composite materials
container_volume 34
creator Coskun, Kubra
Mutlu, Aysenur
Dogan, Mehmet
Bozacı, Ebru
description The effects of enzymatic treatments on the properties of coir fiber-reinforced poly(lactic acid) (PLA) were not found in the literature. Accordingly, the effects of various enzymatic treatments on the mechanical performance of the coir fiber-reinforced PLA composites were investigated in the current study. Four different enzymes, namely lipase, lactase, pectinase, and cellulase, were used. The mechanical properties of the composites were determined by the tensile, flexural, impact tests, and dynamic mechanical analysis. According to the test results, the use of enzyme treated coir fibers affected the mechanical properties except for the flexural properties with different extents depending upon their type. The tensile strength increased with the treatments of lipase and lactase, while the treatments with pectinase and cellulase had no remarkable effect. The impact strength was improved with enzymatic treatments except for pectinase. All enzymatic treatments improved the elastic modulus below the glass transition temperature. In brief, enzymatic treatments improved the interfacial adhesion between coir fiber and PLA via the waxes and fatty acids removal and/or the increment in surface roughness.
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title Effect of various enzymatic treatments on the mechanical properties of coir fiber/poly(lactic acid) biocomposites
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