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首页> 外文期刊>European Polymer Journal >Assessing the mechanical, phase inversion, and rheological properties of poly-[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyvalerate] (PHBV) blended with poly-(l-lactic acid) (PLA)
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Assessing the mechanical, phase inversion, and rheological properties of poly-[(R)-3-hydroxybutyrate-co-(R)-3-hydroxyvalerate] (PHBV) blended with poly-(l-lactic acid) (PLA)

机译:评估与聚(1-乳酸)(PLA)混合的聚[[(R)-3-羟基丁酸酯-共-(R)-3-羟基戊酸酯](PHBV)]的机械,相转化和流变性质

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摘要

Poly-(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) and poly-(l-lactic acid) (PLA) have attracted much interest in recent years since they are biodegradable, thus can replace synthetic non-degradable materials. In this study, improvements of PHBV, mechanical, phase inversions, and rheological properties were investigated after blending with PLA in varying ratio's. Three different blends of commercially available PLAs with 92-98% l-lactide units and one grade of PHB with 5% valerate content were blended using a micro-compounder at 175 C. The composition of PHBV in blends ranged from 50% to 80%. With the addition of PLA, increases in the flexural strength and elastic modulus were observed for several blends, while minor to no changes were detected in the elongation at break and tensile strength as compared to pure PHBV material. Like many conventional plastics, the complex viscosity decreased with increasing rotational frequency due to decreasing entanglements and molecular weight. The complex viscosity with respect to time was very stable for the blends, but no improvements in the PHBV viscosity were observed with the addition of PLA at 170 C. Three phase inversion models were used to predict the continuity of the blends, and the results showed both dual- and PLA-continuity phase for the blends. In summary, the mechanical results showed improvements in the tensile and flexural properties, while the rheological observation showed minor improvements in the complex viscosity for numerous concentrations.
机译:聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)和聚(1-乳酸)(PLA)近年来引起了人们的极大兴趣,因为它们是可生物降解的,因此可以代替合成的不可降解材料。在这项研究中,以不同的比例与PLA混合后,研究了PHBV的改善,机械性能,相转化和流变性的改善。使用微粉碎机在175°C下将三种不同的市售PLA混合物(具有92-98%的L-丙交酯单元)和一级PHB(戊酸含量为5)进行混合.PHBV在混合物中的组成范围为50%至80% 。与纯PHBV材料相比,加入PLA可以观察到几种共混物的抗弯强度和弹性模量增加,而断裂伸长率和拉伸强度几乎没有变化。像许多常规塑料一样,由于缠结和分子量降低,复数粘度随着旋转频率的增加而降低。混合物的时间复数粘度非常稳定,但在170°C下添加PLA时,未观察到PHBV粘度的改善。使用三相转化模型预测混合物的连续性,结果表明共混物的双连续相和PLA连续相。总而言之,机械结果表明拉伸和弯曲性能有所改善,而流变学观察结果表明,在许多浓度下复数粘度均略有改善。

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