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Characterization and Processability of Blends of Polylactide Acid with a New Biodegradable Medium-Chain-Length Polyhydroxyalkanoate

机译:聚乳酸与新型可生物降解的中链长聚羟基链烷酸酯共混物的表征和加工性能

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摘要

In this work the processability and the mechanical performance of polylactide acid (PLA) based blends with a sample of a new biodegradable medium-chain-length poly (hydroxyalkanoate) (PHA) were investigated. The two polymers are incompatible with scarce adhesion and with the dispersed PHA particles size increasing with the PHA content. Rheological tests in shear flow indicate that adding PHA improves the processability of the matrix by increasing the content of this second component in the blend, as observed also for the torque curves, due to the very low viscosity of this new sample of PHA. The processability is only slightly worsened in non-isothermal elongational flow as the melt strength decreases, but accompanied by an increase of the melt stretchability that improves the ability of the pure PLA matrix to produce thin films. Mechanical properties put in evidence a brittle-ductile transition adding PHA to PLA matrix. The elongation at break significantly increases when PHA is added, while the elastic modulus is significantly reduced only at higher contents of PHA. This has been interpreted in terms of both plasticization action of the PHA and also in terms of lubricant action of the PHA macromolecules that allows a better sliding of the PLA macromolecules subjected to solid deformation.
机译:在这项工作中,研究了基于聚乳酸(PLA)的共混物与新型可生物降解的中链长度聚(羟基链烷酸酯)(PHA)样品的可加工性和机械性能。两种聚合物与稀少的粘附性和分散的PHA颗粒尺寸随PHA含量的增加不相容。在剪切流中的流变测试表明,由于这种新的PHA样品的粘度极低,因此添加PHA可以通过增加共混物中第二组分的含量来提高基体的可加工性,如扭矩曲线所示。随着熔体强度的降低,可加工性在非等温伸长率流动中只会稍微变差,但伴随着熔体拉伸性的提高,从而提高了纯PLA基体生产薄膜的能力。力学性能证明了向PLA基质中添加PHA的脆性-延性转变。当添加PHA时,断裂伸长率明显增加,而弹性模量仅在PHA含量较高时才显着降低。这已经从PHA的增塑作用以及PHA大分子的润滑作用方面得到解释,PHA大分子的润滑作用使得经受了固体变形的PLA大分子能够更好地滑动。

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