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Rheological Characterization of Degradation and Polycondensation of Poly(ethylene terephthalate) Melt in Air and in Nitrogen

机译:空气中(对苯二甲酸乙二醇酯)熔融和氮气熔化的降解和缩聚的流变学特征

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Three different poly(ethylene terephthalate) (PET) samples based on dimethyl terephthalate or terephthalic acid, were studied in terms of alterations and mutations caused by thermal exposure during rheological characterization. Thermal stability and frequency sweep experiments were performed in the melt state at a temperature of 280°C, and the influence of the atmosphere (air or nitrogen) as well as the effect of sample preparation (pellets molten directly between the plates of the rheometer vs. samples cut from compression molded sheets) were studied. Thermal stability tests reveal a fundamentally different behavior of the storage (G') and the loss (G") modulus for measurements in air compared to measurements in a pure nitrogen atmosphere. Samples measured in air show a decrease of both moduli due to thermal degradation, while an unexpected strong increase was observed in nitrogen due to polycondensation. The loading time of the samples caused already a significant change of the rheological properties, which could be reconstructed by extrapolation to zero loading time. Frequency sweep test were significantly affected by the rapid changes of the molecular structure. Frequency sweeps were conducted bidirectional, i.e. by first increasing the angular frequency from 0.05 rad.s~(-1) to 500 rad.s~(-1), which was then followed by a decrease from 500 rad.s~(-1) to 0.05 rad.s~(-1), and vice versa. These tests confirm the effects of the atmosphere applied, air or nitrogen, causing degradation and condensation, respectively. However, besides these dominating alterations, i.e. reduction of the molecular weight due to chain scission in air and increase of the molecular weight due to condensation reactions in nitrogen, also the opposite effects were detected. This indicates clearly the formation of a bimodal molecular weight distribution whose existence was supported by the rheological characterization of compression molded plates, which were found to show more degradation but also enhanced bimodality.
机译:在流变特征期间热暴露引起的改变和突变,研究了基于对苯二甲酸二甲酯或对苯二甲酸的三种不同的聚(乙烯对苯二甲酸乙二醇酯)(PET)样品。在280℃的温度下在熔体状态下进行热稳定性和频率扫描实验,以及大气(空气或氮气)的影响以及样品制备的影响(直接熔化在流变仪的板之间的颗粒。研究了从压缩成型板切割的样品。热稳定性试验揭示了与纯氮气氛中的测量相比的空气中的测量的基本上不同的行为和空气中的测量的损失(g“)模量。在空气中测量的样品表明由于热降解导致的两种模量减少,而在氮导致由于缩聚作用,在氮气中观察到意外的强烈增加。样品的加载时间引起了流变性能的显着变化,这可以通过外推至零加载时间来重建。频率扫描测试受到迅速影响分子结构的变化。进行双向的频率扫描,即首先将角度频率从0.05 rad.s〜(-1)增加到500 rad.s〜(-1),然后从500 rad下降。 - (-1)至0.05 rad.s〜(-1),反之亦然。这些测试确认了施加的气氛,空气或氮气,引起降解和缩合的影响。但是,除了t HESE主导改变,即由于氮气中的缩小而导致的分子量和分子量增加,也检测到相反的效果。这显然表明,形成具有压缩模塑板的流变表征的存在的双峰分子量分布,其被发现表现出更多的降解但也增强了双极性。

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