首页> 外文期刊>Journal of Applied Polymer Science >Crystallization behavior of poly(ethylene terephthalate-co-neopentyl terephthalate-co-ethylene isophthalate-co-neopentyl isophthalate) copolyester and its application in laminated tin-free steel
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Crystallization behavior of poly(ethylene terephthalate-co-neopentyl terephthalate-co-ethylene isophthalate-co-neopentyl isophthalate) copolyester and its application in laminated tin-free steel

机译:聚对苯二甲酸乙二酯-对苯二甲酸新戊酯-间苯二甲酸乙二酯-间苯二甲酸新戊酯-共邻苯二甲酸酯的结晶行为及其在层压无锡钢中的应用

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摘要

A low crystallinity, the copolyester poly(ethylene terephthalate-co-neopentyl terephthalate-co-ethylene isophthalate-co-neopentyl isophthalate) (PENIT) was synthesized and applied for laminated tin-free steel. The structures and thermal properties of the copolyester were characterized by H-1-NMR, thermogravimetry analysis, differential scanning calorimetry, wide-angle X-ray diffraction, and polarized optical microscopy. Differential scanning calorimetry, wide-angle X-ray diffraction, and polarized optical microscopy results show that the crystallization ability of the copolyester decreased obviously. Meanwhile, the peel strength, crystallinity, and water-vapor permeability of the copolyester film were also measured at varied lamination temperatures. The result confirm that an improvement in the lamination temperature led to an increased ratio of amorphous PENIT to crystalline PENIT and decreased structural orientation, and the decrease in the structural orientation sped up the increase in the rate of water-vapor permeability. On the basis of the purpose of reducing a detrimental effect on the corrosion resistance caused by water permeation, a reasonable lamination temperature was selected. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 42308.
机译:合成了一种低结晶度的共聚酯聚对苯二甲酸乙二醇酯-对苯二甲酸新戊酯对苯二甲酸-间苯二甲酸乙二酯-间苯二甲酸新戊酯-共聚酯,并将其用于层压无锡钢。通过H-1-NMR,热重分析,差示扫描量热法,广角X射线衍射和偏振光学显微镜对共聚酯的结构和热性能进行了表征。差示扫描量热法,广角X射线衍射和偏振光学显微镜结果表明,共聚酯的结晶能力明显降低。同时,在不同的层压温度下也测量了共聚酯膜的剥离强度,结晶度和水蒸气渗透性。结果证实,层压温度的提高导致非晶态PENIT与结晶态PENIT的比率增加并且结构取向降低,并且结构取向的降低加速了水蒸气渗透率的提高。基于减少对由水渗透引起的耐腐蚀性的不利影响的目的,选择合适的层压温度。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,42308。

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