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The accelerating effect of the star-shaped poly(D-lactide)-block-poly(L-lactide) stereoblock copolymer on PLLA melt crystallization

机译:星形聚(D-丙交酯)-嵌段-聚(L-丙交酯)立体嵌段共聚物对PLLA熔体结晶的促进作用

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摘要

A star-shaped poly(D-lactide)-block-poly(L-lactide) (PDLA-PLLA) stereoblock copolymer was introduced into a poly(L-lactide) (PLLA) matrix. The impacts of the PDLA-PLLA copolymer on PLLA melt crystallization, mechanical properties and rheological properties were investigated. The research results indicated that the PDLA-PLLA copolymer could significantly accelerate the crystallization rate of PLLA. The non-isothermal crystallization results showed that the crystallization temperature shifted to a higher temperature with the increase in the addition of the PDLA-PLLA copolymer. The crystallization temperature increased to about 25 degrees C with the addition of 10 wt% PDLA-PLLA copolymer. The isothermal crystallization results showed that the half-time of crystallization (t(0.5)) decreased from 10 min to 2.5 min at 120 degrees C as the PDLA-PLLA copolymer fraction increased from 0 to 10 wt%. Nucleation efficiency (NE) was used to describe the nucleation efficiency of the PDLA-PLLA copolymer. The highest NE of 65% was obtained for PLLA samples with a PDLA-PLLA copolymer content of 10 wt%. As polarized optical microscopy revealed, this accelerating effect resulted from the good nucleation ability of the PDLA-PLLA copolymer. Moreover, dynamic mechanical analysis results indicated that the addition of the PDLA-PLLA copolymer enhanced the storage modulus of PLLA in the glass state. Rheological properties of nucleated PLLA showed the existence of a network structure of a stereocomplex crystallite (sc-crystallite) above 5 wt% addition of the PDLA-PLLA copolymer.
机译:将星形聚(D-丙交酯)-嵌段-聚(L-丙交酯)(PDLA-PLLA)立体嵌段共聚物引入聚(L-丙交酯)(PLLA)基质中。研究了PDLA-PLLA共聚物对PLLA熔体结晶,力学性能和流变性能的影响。研究结果表明,PDLA-PLLA共聚物可以显着加快PLLA的结晶速度。非等温结晶结果表明,随着PDLA-PLLA共聚物添加量的增加,结晶温度向较高的温度移动。加入10重量%的PDLA-PLLA共聚物,结晶温度增加到约25℃。等温结晶结果表明,随着PDLA-PLLA共聚物含量从0 wt%增加到10 wt%,半结晶时间(t(0.5))在120℃下从10分钟降低到2.5分钟。成核效率(NE)用于描述PDLA-PLLA共聚物的成核效率。对于PDLA-PLLA共聚物含量为10 wt%的PLLA样品,获得的NE最高为65%。如偏振光学显微镜所揭示的,这种加速作用是由于PDLA-PLLA共聚物的良好成核能力所致。此外,动态力学分析结果表明,PDLA-PLLA共聚物的加入提高了玻璃态PLLA的储能模量。成核PLLA的流变性质表明,在添加PDLA-PLLA共聚物的5wt%以上时,存在立体复合微晶(sc-微晶)的网络结构。

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