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Toughness and Compatibility Improvement of Thermoplastic Starch/Poly(lactic acid) Blends

机译:热塑性淀粉/聚(乳酸)共混物的韧性和相容性改进

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Poly(lactic acid) (PLA), produced from renewable resources, is one of the most widely used biodegradable polymers. PLA has high strength and high modulus. However, its brittleness and high cost limit its application. Starch has been used as filler for environmental friendly polymers due to its low cost, biodegradable, and availability as a renewable source. Thermoplastic starch (TPS) is a biodegradable material based on starch. Incorporation of TPS into PLA matrix can reduce material cost and increases its biodegradation rate. However, PLA and TPS form immiscible blend leading to poor mechanical properties of the blend. The compatibility of the blend can be improved by adding compatibilizers. Moreover, in order to improve toughness of the TPS/PLA blend, poly(butylenes adipate-co-terephthalate) (PBAT), is introduced into the blend. In this study, PLA/TPS blends are prepared using an internal mixer and test specimens are molded using a compression molding. TPS is obtained from cassava starch and glycerol at ratio of 70/30 wt%. The ratio of TPS/PLA blend is 10/90 wt%. Poly(lactic acid) grafted maleic anhydride (PLA-g-MA) is used as a compatibilizer at contents of 3, 5, and 7 phr. PBAT content is 10 wt%. Mechanical, morphological, and thermal properties of the blends are investigated.
机译:来自可再生资源生产的聚(乳酸)(PLA)是最广泛使用的可生物降解聚合物之一。 PLA具有高强度和高模量。但是,它的脆性和高成本限制了其应用。由于其低成本,可生物降解和可用性作为可再生来源,淀粉已被用作环保聚合物的填充剂。热塑性淀粉(TPS)是基于淀粉的可生物降解的材料。将TPS掺入PLA矩阵可以降低材料成本并提高其生物降解率。然而,PLA和TPS形成不混溶的混合物,导致混合物的机械性能差。通过添加兼容器可以改善混合物的兼容性。此外,为了提高TPS / PLA混合物的韧性,将聚(丁二烯酸丁酯 - 对苯二甲酸酯)(PBAT)引入混合物中。在该研究中,使用内部混合器制备PLA / TPS共混物,并使用压缩模塑模制试样。从木薯淀粉和甘油以70/30wt%的比例获得TPS。 TPS / PLA混合物的比例为10/90wt%。聚(乳酸)接枝马来酸酐(PLA-G-MA)用作3,5和7phr的含量的增容剂。 PBAT含量为10wt%。研究了混合物的机械,形态学和热性质。

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