首页> 外文期刊>The Journal of Supercritical Fluids >Batch foaming of chain extended PLA with supercritical CO2: Influence of the rheological properties and the process parameters on the cellular structure
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Batch foaming of chain extended PLA with supercritical CO2: Influence of the rheological properties and the process parameters on the cellular structure

机译:超临界CO2扩链PLA的分批发泡:流变性和工艺参数对孔结构的影响

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摘要

This study has been dedicated to the foaming of modified poly (lactic acid) with supercritical CO2. The first part of this work consisted in a rheological modification of neat PLA through chain extension. Improvement of the melt viscosity and elasticity has been achieved by the use of an epoxy additive during a reactive extrusion process. Rheological characterizations confirmed an increase of the melt strength due to this chain extension process. Foaming was then performed on the neat and modified PLAs using a batch process with supercritical CO2 as blowing agent. The investigation of the foaming temperature revealed an enlarged processing window for modified PLAs compared to neat PLA. Depending on the foaming parameters, foams with a cellular structure ranging from macro scale to micro scale have been obtained. A concomitant effect of the CO2-plasticization and the crystallisation on the melt rheology could explain this wide range of cellular morphologies.
机译:这项研究致力于将改性聚乳酸​​与超临界CO2发泡。这项工作的第一部分包括通过扩链对纯PLA进行流变改性。通过在反应挤出过程中使用环氧添加剂,可以提高熔体粘度和弹性。流变学特性证实了由于这种扩链过程而提高了熔体强度。然后使用以超临界CO2为发泡剂的分批工艺对纯净和改性的PLA进行发泡。发泡温度的研究表明,与纯PLA相比,改性PLA的加工窗口扩大了。根据发泡参数,已经获得了具有从宏观到微观范围的孔结构的泡沫。 CO 2塑化和结晶化对熔体流变学的伴随影响可以解释这种广泛的细胞形态。

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