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Molecular Orientation of Poly(ethylene terephthalate) and Poly(butylene terephthalate) Probed by Polarized Raman Spectra: A Parallel Study

机译:偏振拉曼光谱探测的聚对苯二甲酸乙二醇酯和聚对苯二甲酸丁二醇酯的分子取向:平行研究

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摘要

Poly(ethylene terephthalate) (PET) and poly(butylene terephthalate) (PBT) samples uniaxially drawn above Tg and beyond the yield point exhibit significant differences in their molecular orientation behavior as probed by polarized Raman spectra. The quasi-amorphous PET samples, drawn close to the Tg, manifest considerable molecular orientation development; however, when drawn above Tg + 30 deg C, they exhibit significant molecular orientation relaxation. The semi-crystalline PBT samples maintain prominent molecular orientation even when drawn 110 deg C above Tg. The drawing process, in PET samples, when resulting in molecular orientation, is accompanied by a gauche-trans transformation of the glycol linkage and a concurrent initiation of crystallinity development. In PBT specimens, it gives rise to a coexistence of alpha- and beta-type crystalline phases. Phase alpha is predominant at high draw temperatures, i.e., Tg + 110 deg C, while phase beta dominates at low draw temperatures, i.e., Tg + 10 deg C. PBT samples, with beta-phase predominance, left at relevant draw temperatures without stress, exhibit a beta-alpha phase change though no molecular orientation relaxation occurs. A note is made of the fact that complete molecular orientation analysis of PBT segments utilizing the depol method gives more reliable results than the simplified analysis assuming a cylindrical tensor for the 1614 cm~(-1) symmetric stretch of the para-disubstituted benzene ring of PBT. In this context, segments of PBT specimens rich in alpha-phase exhibit higher molecular orientation than those with beta-phase predominance.
机译:单轴拉伸至Tg之上并超过屈服点的聚对苯二甲酸乙二酯(PET)和聚对苯二甲酸丁二酯(PBT)样品,通过极化拉曼光谱探测,其分子取向行为表现出显着差异。接近Tg的准非晶PET样品表现出可观的分子取向发展。然而,当在Tg + 30℃以上拉伸时,它们表现出明显的分子取向松弛。即使在比Tg高110℃拉伸的情况下,半结晶PBT样品仍保持突出的分子取向。在PET样品中进行拉伸时,当导致分子取向时,将伴随乙二醇键的gauche-trans转化和结晶性发展的同时启动。在PBT标本中,它会导致α型和β型结晶相共存。在高拉伸温度(即Tg + 110摄氏度)下,α相占主导地位,而在低拉伸温度(即Tg + 10摄氏度)下,β相则占主导地位。具有β相优势的PBT样品在相关拉伸温度下没有应力,尽管没有发生分子取向松弛,但仍表现出β-α相变。注意到以下事实:使用depol方法对PBT链段进行完整的分子取向分析,比简单分析(假设圆柱对张量为1614 cm〜(-1)的对二取代苯环的对称拉伸)给出的结果比简化分析结果更为可靠。 PBT。在这种情况下,富含α相的PBT样品的片段比具有β相占优势的片段表现出更高的分子取向。

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