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Improving the toughness of poly(lactic acid) (PLA) through co-continuous, immiscible, biodegradable blends with PHA.

机译:通过与PHA共连续,不混溶,可生物降解的共混物来提高聚乳酸(PLA)的韧性。

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Poly(lactic acid) (PLA) and Polyhydroxyoctanoate (PHO) were melt blended using a Haake torque rheometer in the ratios of 80/20, 60/40, 50/50, 40/60, and 20/80. Due to the large difference in the melt viscosity in the binary blends, 0.55 wt % Hexamethylene diisocyanate was added to the PHO to improve the processability, which resulted in the formation of urethane linkages by the reaction of the isocyanate with the hydroxyl group in the PHO. The number average and weight average molecular weight of the modified PHO with 0.55 wt % isocyanate were increased 314% and 275%, respectively, as compared with those of pure PHO. In this study, thermal, mechanical, rheological, biodegradable, and morphological properties of the blends were investigated. Differential scanning calorimetry showed that the two components in these blends were immiscible.; It is concluded from the mechanical tests that the tensile strength at break and Young's modulus decreased with increasing levels of modified PHO with 0.55 wt % isocyanate content in the blends. The addition of the modified PHO in PLA increased the toughness of the PLA and increased the elongation to break more than 158%. The mechanical properties of aging PLA/modified PHO blends with 0.55 wt % isocyanate at 38°C after thirty-eight days were decreased remarkably, as compared with those of the original samples. Results obtained from the rheological tests indicate that the melt viscosities of the modified PHOs were dependent on the isocyanate content and crystallization time. The melt viscosities of PLA/modified PHO blends decreased with an increase in the content of the modified PHO with 0.55 wt % isocyanate. The hydrolytic degradation results during forty days of testing time showed that the weight loss for all of the blends has no significant change.; The fracture morphology of immiscible PLA and modified PHO blends was changed by the relative amounts of the two polymer components. PLA/modified PHO 50/50 blends composition showed a co-continuous morphology. With increasing modified PHO content, a minor phase with small spherical particles was dispersed in the major polymer matrix.
机译:使用Haake扭矩流变仪以80 / 20、60 / 40、50 / 50、40 / 60和20/80的比率将聚乳酸(PLA)和聚羟基辛酸酯(PHO)熔融共混。由于二元共混物中熔体粘度差异较大,因此将0.55 wt%的六亚甲基二异氰酸酯添加到PHO中以改善加工性能,这导致异氰酸酯与PHO中的羟基反应形成氨基甲酸酯键。与纯PHO相比,具有0.55wt%异氰酸酯的改性PHO的数均和重均分子量分别增加了314%和275%。在这项研究中,研究了共混物的热,机械,流变,可生物降解和形态特性。差示扫描量热法显示这些混合物中的两种组分是不溶混的。由机械试验得出的结论是,随着共混物中0.55%(重量)异氰酸酯含量的改性PHO含量的增加,断裂拉伸强度和杨氏模量降低。在PLA中添加改性的PHO可以提高PLA的韧性,并提高断裂伸长率,超过158%。与原始样品相比,经过38天老化后的具有0.55 wt%异氰酸酯的PLA /改性PHO共混物的机械性能在38°C时明显降低。流变测试结果表明,改性PHO的熔体粘度取决于异氰酸酯含量和结晶时间。 PLA /改性PHO共混物的熔体粘度随具有0.55 wt%异氰酸酯的改性PHO含量的增加而降低。在四十天的测试时间内的水解降解结果表明,所有共混物的重量损失均无明显变化。不混溶的PLA和改性的PHO共混物的断裂形态因两种聚合物组分的相对含量而改变。 PLA /改性PHO 50/50共混物组合物表现出共同连续的形态。随着改性PHO含量的增加,具有小球形颗粒的次要相分散在主要聚合物基质中。

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