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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Rheological Characterization and Thermal Stability of Different Intrinsic Viscosity Poly(ethylene terephthalate) in Air and Nitrogen
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Rheological Characterization and Thermal Stability of Different Intrinsic Viscosity Poly(ethylene terephthalate) in Air and Nitrogen

机译:空气和氮气中不同固有粘度聚对苯二甲酸乙二醇酯的流变特性和热稳定性

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摘要

Four PET samples of different intrinsic viscosity values based on diverse manufacturing processes were characterized for their linear viscoelasticity using a parallel plate rheometer. Thermal stability and frequency sweep experiments were performed in the meh state at 270 degrees C. The influences of drying temperature, testing atmosphere (air or nitrogen), and preparation (granules vs. samples cut from compression molded sheets) were investigated. Results indicated that a higher drying temperature promoted complex viscosity significantly and compression molded sheets generated irreversible structural changes in harsh conditions. The samples measured in air decreased because of thermo-oxidation degradation, whereas that in nitrogen unexpectedly increased slightly because of polycondensation without surface renewal. The role of carboxyl end group towards PET thermal stability was found to be influenced by the atmosphere.
机译:使用平行板流变仪表征了基于不同制造工艺的四种特性粘度值不同的PET样品的线性粘弹性。在meh状态下于270摄氏度下进行了热稳定性和扫频实验。研究了干燥温度,测试气氛(空气或氮气)和制备(颗粒与从压塑板切下的样品)的影响。结果表明,较高的干燥温度显着提高了复数粘度,并且在恶劣条件下,压模片材产生了不可逆的结构变化。空气中测量的样品由于热氧化降解而降低,而氮气中的样品由于未发生表面更新的缩聚而出乎意料地略有增加。发现羧基端基对PET热稳定性的作用受大气影响。

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