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首页> 外文期刊>Polymer engineering and science >Studies on the Phase Transition and Thermal Stability of Xydar and Zenite Series Liquid Crystalline polymers
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Studies on the Phase Transition and Thermal Stability of Xydar and Zenite Series Liquid Crystalline polymers

机译:Xydar和Zenite系列液晶聚合物的相变和热稳定性的研究

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摘要

Four commercially available main-chain LCPs, Xydar and Zenite series, are characterized by FTIR spectroscopy, DSC, polarized light microscopy (PLM), TGA, TGA-FTIR, and elemental analysis. The FTIR spectrum of Zenite 8000B is found to be more similar to that of Vectra A950 than those fo teh otehr three LCPs. Xydar SRT900 and 1000 have almost the same FTIR spectra. Zenite LCPs have broader crystal-mesophase transition (T_CM) and less clear liquid crystalline textures at T_CM than those of Xydar LCPs. Xydar SRT1000 and Zenite 8000B have lower T_CM than Xydar SRT900 and Zenite 6000, respectively. For all the four LCPs, the glass transitions can not be easily observed by DSC without the aid of annealing and the isotropic phase does not appear before thermal degradation, Xydar SRT1000 and Zenite 8000B have lower thermal stabilities as well as lower T_CMs than Xydar SRT900 and Zenite 6000, respectively. It is interesting to find that E_a(Apparent activation energy of thermal degradation) curves of Xydar SRT900 and SRT1000 have the similar shapes as those of Zenite 6000 and 8000B, respectively. For the first time, we have found that there is a minor degradation maximumj for Zenite 8000 at about 2.5% weight loss in N_2. For all the four LCPs, the E_a values in an air atmosphere begin to decrease at a temperature close to the deflection points on the first derivative curves. The first stage of the thermal degradation in an air atmosphere has similar mechanisms as that in N_2.
机译:FTIR光谱,DSC,偏振光显微镜(PLM),TGA,TGA-FTIR和元素分析对四种市售的主链LCP Xydar和Zenite系列进行了表征。与三个LCP相比,Zenite 8000B的FTIR光谱与Vectra A950的光谱更相似。 Xydar SRT900和1000具有几乎相同的FTIR光谱。与Xydar LCP相比,Zenite LCP具有更宽的晶体-中间相转变(T_CM)和T_CM处较不清晰的液晶纹理。 Xydar SRT1000和Zenite 8000B的T_CM分别低于Xydar SRT900和Zenite 6000。对于所有四个LCP,如果不进行退火,则DSC均无法轻易观察到玻璃化转变,并且在热降解之前不会出现各向同性相,因此Xydar SRT1000和Zenite 8000B的热稳定性以及T_CMs均比Xydar SRT900和TyCM低。 Zenite 6000分别。有趣的是,Xydar SRT900和SRT1000的E_a(热降解的表观活化能)曲线分别具有与Zenite 6000和8000B相似的形状。第一次,我们发现Zenite 8000在N_2的重量减少约2.5%时有一个较小的降解最大值。对于所有四个LCP,空气气氛中的E_a值在接近一阶导数曲线的偏转点的温度下开始降低。空气中热降解的第一阶段与N_2具有相似的机理。

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