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首页> 外文期刊>Journal of thermal analysis and calorimetry >Isothermal and nonisothermal crystallization kinetics of novel biobased poly(ethylene succinate-co-ethylene sebacate) copolymers from the amorphous state
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Isothermal and nonisothermal crystallization kinetics of novel biobased poly(ethylene succinate-co-ethylene sebacate) copolymers from the amorphous state

机译:来自非晶态的新型生物化聚(乙烯琥珀酸酯 - 共乙烯酸丁烷)共聚物的等温和非等热结晶动力学

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摘要

In this work, the isothermal and nonisothermal crystallization kinetics of three novel biobased poly(ethylene succinate-co-ethylene sebacate) (PESSe) copolymers was systematically investigated with differential scanning calorimetry under different crystallization conditions from the amorphous state. For the isothermal cold crystallization kinetics study, the Avrami equation could well describe the crystallization process of PESSe at various crystallization temperatures. All three PESSe copolymers crystallized through the same crystallization mechanism; moreover, the overall isothermal cold crystallization rate of PESSe decreased with increasing ethylene sebacate (ESe) comonomer content. The nonisothermal cold crystallization kinetics of PESSe was also studied at different heating rates. With increasing ESe content or heating rate, the nonisothermal cold crystallization exotherm of PESSe copolymers shifted to high temperature range. Both the crystallization rate parameter and crystallization rate coefficient of PESSe copolymers decreased with increasing ESe content, indicating that PESSe copolymer with higher ESe content crystallized more slowly than that with lower ESe content. The Ozawa equation was used to analyze the nonisothermal cold crystallization kinetics of PESSe copolymers, which was found to fit the crystallization process very well.
机译:在这项工作中,通过从非晶态的不同结晶条件下系统地研究了三种新型生物化聚(乙烯琥珀酸乙酯 - 共聚乙烯Spacate)(PESE)共聚物的等温和非等温结晶动力学。对于等温性冷结晶动力学研究,Avrami方程可以很好地描述Pesse在各种结晶温度下的结晶过程。通过相同的结晶机制结晶,所有三个PESE共聚物结晶;此外,PESE的总体热性冷结晶速率随着乙烯癸二酸乙酯(ESE)共聚单体含量的增加而降低。还在不同的加热速率下研究了Pesse的非吸收性冷结晶动力学。随着ESE含量或加热速率的增加,PESE共聚物的非等温冷结晶放热移至高温范围。 Pesse共聚物的结晶率参数和结晶速率系数随着ESE含量的增加而降低,表明PESE共聚物具有较高的ESE含量比具有较低ESE含量的更缓慢地结晶。 Ozawa方程用于分析Pesse共聚物的非等温冷结晶动力学,这被发现非常适合结晶过程。

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