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Thermo-mechanical degradation of plasticized poly(lactide) after multiple reprocessing to simulate recycling: Multi-scale analysis and underlying mechanisms

机译:多次加工以模拟回收后增塑聚丙交酯的热机械降解:多尺度分析和潜在机理

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摘要

The thermo-mechanical recycling of poly(lactide) (PLA) by reprocessing was recently considered as a new end-of-life scenario for this biosourced and biodegradable polymer. With this regard, the degradation mechanisms of plasticized PLA (pPLA) engendered by multiple reprocessing were little investigated to date, and hence, the relevancy of its reprocessing was not assessed. They were identified in this paper by a multiscale approach in the case of a lab-developed grade of pPLA obtained by the reactive extrusion of PLA with acrylated poly(ethylene glycol) (acryl-PEG) as reactive plasticizer. pPLA structure consisted of a semi-crystalline PLA matrix in which grafted poly(acryl-PEG) micro-inclusions were dispersed. Up to 5 successive processing cycles including extrusion and compression-molding, the tensile and impact properties drastically dropped indicating an embrittlement of pPLA. Structural analyses revealed that reprocessing caused these mechanisms: chain scission of PLA, crystallization of PLA, damaging of the inclusions, decrease of the size of poly(acryl-PEG) phases within the inclusions, and cracking of PLA. At the same time, the amount of grafted poly(acryl-PEG) was not influenced by the reprocessing. Inclusion damaging and matrix cracking are believed to be responsible for the embrittlement of pPLA after multiple reprocessing, which makes it not suitable for being reused for its initial application.
机译:通过再加工对聚丙交酯(PLA)进行热机械回收,最近被认为是这种生物来源且可生物降解的聚合物的新的报废方案。鉴于此,迄今为止,很少研究通过多次后处理产生的增塑PLA(pPLA)的降解机理,因此未评估其后处理的相关性。在实验室开发的等级pPLA的情况下,它们是通过多级方法鉴定的,该产品是通过PLA丙烯酸酯化聚乙二醇(丙烯酸-PEG)作为反应性增塑剂的反应挤出而获得的。 pPLA结构由半结晶的PLA基质组成,其中分散了接枝的聚(丙烯酸-PEG)微内含物。多达5个连续的加工循环(包括挤出和压缩成型),拉伸和冲击性能急剧下降,表明pPLA变脆。结构分析表明,后处理引起这些机理:PLA的断链,PLA的结晶,夹杂物的破坏,夹杂物中聚(丙烯酸-PEG)相尺寸的减小以及PLA的开裂。同时,接枝的聚(丙烯酸-PEG)的量不受后处理的影响。据信夹杂物损坏和基体开裂是造成多次再加工后pPLA脆化的原因,这使其不适用于其初始应用。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2016年第9期|132-144|共13页
  • 作者单位

    Department Materials Research and Technology (MRT) and National Composite Centre - Luxembourg (NCC-L), Luxembourg Institute of Science and Technology (LIST), ZAE Robert Steichen, 5 Rue Bommel, L-4940 Hautcharage, Luxembourg;

    Department Materials Research and Technology (MRT) and National Composite Centre - Luxembourg (NCC-L), Luxembourg Institute of Science and Technology (LIST), ZAE Robert Steichen, 5 Rue Bommel, L-4940 Hautcharage, Luxembourg;

    Department of Chemical Engineering, University of Chemistry and Technology (UCT) Prague, Technicka 3, Prague 6 - Dejvice, 166 28, Czech Republic;

    Department Materials Research and Technology (MRT) and National Composite Centre - Luxembourg (NCC-L), Luxembourg Institute of Science and Technology (LIST), ZAE Robert Steichen, 5 Rue Bommel, L-4940 Hautcharage, Luxembourg;

    Laboratory of Polymeric and Composite Materials (LPCM), Centre d'Innovation et de Recherche en Materiaux Polymeres (CIRMAP), Universite de Mons, Place du Parc, 20, B-7000 Mons, Belgium;

    Laboratory of Polymeric and Composite Materials (LPCM), Centre d'Innovation et de Recherche en Materiaux Polymeres (CIRMAP), Universite de Mons, Place du Parc, 20, B-7000 Mons, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poly(lactide); Plasticization; Thermo-mechanical degradation; Reprocessing; Mechanical properties;

    机译:聚丙交酯;增塑热机械降解;后处理;机械性能;

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