JOURNAL ARTICLE

Effect of thermoplastic polyurethane (TPU) on the thermal and mechanical properties of polylactic acid (PLA)/curcumin blends

I.S.S. SharifahM D A AdnanM.K. Nor KhairusshimaNorhashimah ShaffiarYose Fachmi Buys

Year: 2018 Journal:   IOP Conference Series Materials Science and Engineering Vol: 290 Pages: 012081-012081   Publisher: IOP Publishing

Abstract

Polylactic acid (PLA) is known to be brittle by nature and thus limits the flexibility of the polymer. A possible solution to enhance the flexibility of PLA is to add a flexible polymeric based material such as thermoplastic polyurethane (TPU). In this study, 30-50 wt% of TPU was added into PLA/curcumin blends to improve its flexibility. Thermal analysis using differential scanning calorimetry shows that further additions of TPU at the expense of PLA did not affect the glass transition temperature, crystallisation temperature and melting temperature of the blends. Fibers of PLA/curcumin/TPU were successfully drawn and Single Fiber Tensile Test (SFTT) showed vast improvement in elongation at break. The initial addition of 30 wt% of TPU to the brittle PLA/curcumin composition causes a significant increase in elongation at break by 39 times and further additions at 50 wt %, the elongation at break increases by 105 times. However, with the increase in elongation, a decrease in strength and Young's modulus was observed.

Keywords:
Thermoplastic polyurethane Polylactic acid Materials science Differential scanning calorimetry Elongation Glass transition Ultimate tensile strength Composite material Dynamic mechanical analysis Polymer Elastomer

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