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首页> 外文期刊>Polymers for advanced technologies >Rheology and crystallization behavior of asymmetric PLLA/PDLA blends based on linear PLLA and PDLA with different structures
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Rheology and crystallization behavior of asymmetric PLLA/PDLA blends based on linear PLLA and PDLA with different structures

机译:基于不同结构的线性PLLA和PDLA的不对称PLLA / PDLA共混物的流变和结晶行为

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摘要

In this study, several asymmetric poly(L-lactide)/poly(D-lactide) (PLLA/PDLA) blends were prepared by adding small amounts of PDLA with different structures into linear PLLA matrix. The effect of PDLA on rheological behavior, crystallization behavior, nucleation efficiency and spherulite growth of PLLA was investigated. Rheological results indicated that PLLA/PDLA blends showed solid-like viscoelastic behavior at low temperature (<200 degrees C), and the cross-linking density of PLLA/PDLA melt at 180 degrees C followed the order: PLLA/6PDLA>PLLA/L-PDLA>PLLA/3PDLA>PLLA/4PDLA. No-isotherm and isotherm crystallization results indicated that the crystallization capacity of PLLA/PDLA blends was strongly related to the PDLA structure, crystallization temperature and thermal treatment temperature. Furthermore, the dimension of crystal growth during isotherm crystallization presented the obvious dependent on the PDLA structure. The nucleation efficiency of sc-crystallites in the blends and spherulite density during isothermal crystallization were also studied. Nucleation efficiency of sc-crystallites in the PLLA/S-PDLA blends showed the obvious dependent on thermal treatment temperature with respect to PLLA/L-PDLA, and nucleation efficiency sc-crystallites in the PLLA/S-PDLA blends first decreased and then increased as the thermal treatment temperature increased. Spherulite density of PLLA/PDLA blends was also related to thermal treatment temperature and the PDLA structure. This study has discussed the temperature dependence of the stereocomplex networks between PLLA and PDLA with different structure, and then its consequential influence on rheology and crystallization capacity of PLLA, which would provide the theoretical direction for PLA processing. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:在这项研究中,通过向线性PLLA矩阵中添加少量具有不同结构的PDLA,制备了几种不对称的聚(L-丙交酯)/聚(D-丙交酯)(PLLA / PDLA)共混物。研究了PDLA对PLLA的流变行为,结晶行为,成核效率和球晶生长的影响。流变学结果表明,PLLA / PDLA共混物在低温(<200摄氏度)下表现出类似固体的粘弹性行为,并且PLLA / PDLA熔体在180摄氏度下的交联密度遵循以下顺序:PLLA / 6PDLA> PLLA / L -PDLA> PLLA / 3PDLA> PLLA / 4PDLA。无等温和等温结晶结果表明,PLLA / PDLA共混物的结晶能力与PDLA结构,结晶温度和热处理温度密切相关。此外,等温线结晶过程中晶体生长的尺寸明显取决于PDLA结构。还研究了等温结晶过程中sc-微晶在共混物中的成核效率和球晶密度。 PLLA / S-PDLA共混物中sc晶体的成核效率相对于PLLA / L-PDLA具有明显的热处理温度依赖性,PLLA / S-PDLA共混物中sc晶体的成核效率先降低后升高随着热处理温度的升高。 PLLA / PDLA共混物的球晶密度也与热处理温度和PDLA结构有关。本研究探讨了不同结构的PLLA和PDLA之间的立体络合物网络的温度依赖性,进而对PLLA的流变性和结晶能力的影响,为PLA的制备提供了理论指导。版权所有(C)2016 John Wiley&Sons,Ltd.

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