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首页> 外文期刊>Journal of Applied Polymer Science >Thermal and Mechanical Properties of Blends of Polylactide and Poly(ethylene glycol-co-propylene glycol): Influence of Annealing
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Thermal and Mechanical Properties of Blends of Polylactide and Poly(ethylene glycol-co-propylene glycol): Influence of Annealing

机译:聚丙交酯和聚乙二醇-丙二醇共混物的热力学性能:退火的影响

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Two kinds of polylactide (PLA) which was named PLA1 with L-lactide content of 98% and PLA2 with L-lactide content of 88% were blended with poly(ethylene glycol-co-propylene glycol) (PI-PG) in a batchwise mixer and pressed into films. The effect of annealing on the thermal properties, crystallization behavior, and mechanical properties of the quenched blends were Studied by means of differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), polar optical microscopy (POM), and tensile tests. PEPC was miscible with the two kinds of PLA in the blend composition range of 5-20 wt % and can effectively decrease the,lass transition temperature of PLA. Neat PLA2 lost the ability to crystallize in the DSC and DMA measurements; however, it could crystallize after annealing for long time and crystallize more easily due to the improved crystallizability with the addition of PFPG. Both of the PLAs underwent cold crystallization when annealing at 90 degrees C, and there were signs of phase separation occurring in the blends at the same time. The crystallization morphology and tensile properties of the annealed blends were different and dependent of the Optical purity of PLA. The blends with PLA2 after annealing regained the brittleness with maximum of elongation at break about 20% and showed larger spherulites in the POM images, whereas the blends with PLA1 after annealing still kept some flexibility with maximum of elongation at break about 65% and showed fine spherulites.
机译:将两种聚丙交酯(PLA)分别与L-丙交酯含量为98%的PLA1和L-丙交酯含量为88%的PLA2与聚乙二醇-共-丙二醇(PI-PG)分批混合混合并压成薄膜。通过差示扫描量热法(DSC),动态力学分析(DMA),极谱法(POM)和拉伸试验研究了退火对淬火共混物的热性能,结晶行为和机械性能的影响。 PEPC与两种PLA在5-20 wt%的共混物范围内互溶,可有效降低PLA的玻璃化转变温度。纯净的PLA2在DSC和DMA测量中失去了结晶能力;但是,由于添加了PFPG,结晶性提高,因此长时间退火后可能结晶,并且更容易结晶。当在90摄氏度下退火时,两种PLA均经历了冷结晶,并且在共混物中同时出现相分离的迹象。退火共混物的结晶形态和拉伸性能不同,并且取决于PLA的光学纯度。退火后与PLA2的共混物恢复了脆性,断裂时的最大伸长率约为20%,并且在POM图像中显示出较大的球晶,而退火后与PLA1的共混物仍保持了一定的柔韧性,断裂时的最大伸长率约为65%,并表现出优良球晶。

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