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首页> 外文期刊>ACS Omega >Enhanced Rheological Properties of PLLA with a Purpose-Designed PDLA-b-PEG-b-PDLA Triblock Copolymer and the Application in the Film Blowing Process to Acquire Biodegradable PLLA Films
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Enhanced Rheological Properties of PLLA with a Purpose-Designed PDLA-b-PEG-b-PDLA Triblock Copolymer and the Application in the Film Blowing Process to Acquire Biodegradable PLLA Films

机译:具有目的设计的PDLA-B-PEG-B-PDLA三嵌段共聚物的PLLA的流变性能,以及在薄膜吹割过程中的应用以获得可生物降解的PLLA薄膜

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摘要

The inadequate rheological properties limit the film blowing process of biodegradable polylactic acid (PLA), thus hindering its potential application in environmentally friendly packaging films and mulch films. Herein, biodegradable polyethylene glycol (PEG) and d-lactide were used to synthesize three kinds of poly-d-lactic acid (PDLA)-b-PEG-b-PDLA (DPD) triblock copolymers, and their effects on stereocomplex (sc) structure formation and rheological properties of the composites were studied. The results showed that the poly l-lactic acid (PLLA)/DPD4k sample introduced the highest sc content, storage modulus, and complex viscosity value compared with PLLA/DPD2k and PLLA/DPD10k at the same loading condition, indicating that the PEG4k chains can better accelerate the formation of a sc network between DPD4k and the PLLA matrix. The introduction of 10 wt % DPD4k also resulted in about 38 times longer relaxation time and a strain-hardening behavior during the steady biaxial extension of PLLA. At last, the continuous film blowing process was successfully conducted in the PLLA/DPD4k composites, which acquired a stable blow-up ratio of 3.07. On the basis of the above results, the soft chain-grafted PDLA copolymer may provide a novel method for film blowing of biodegradable PLA.
机译:流变性质不足限制可生物降解的聚乳酸(PLA)的薄膜吹塑过程,从而阻碍了其在环保包装薄膜和覆盖膜中的潜在应用。这里,使用可生物降解的聚乙二醇(PEG)和D-丙交酯合成三种聚-D-乳酸(PDLA)-B-PEG-B-PDLA(DPD)三嵌段共聚物,以及它们对立体复合物(SC)的影响研究了复合材料的结构形成和流变性质。结果表明,与PLLA / DPD2K和PLLA / DPD10K在相同的负载条件下,聚L-乳酸(PLLA)/ DPD4K样品引入了最高的SC含量,储存模量和复合粘度值,表明PEG4K链可以更好地加速DPD4K和PLLA矩阵之间的SC网络的形成。引入10wt%DPD4K也导致在PLLA的稳定双轴延伸期间的弛豫时间和应变硬化行为长约38倍。最后,在PLLA / DPD4K复合材料中成功地进行了连续薄膜吹塑方法,该复合材料稳定地进行了3.07的稳定吹气比。在上述结果的基础上,软链接枝的PDLA共聚物可以提供一种新的用于生物降解PLA的吹膜方法。

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