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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Cocrystallization of ethylene/1-octene copolymer blends during crystallization analysis fractionation and crystallization elution fractionation
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Cocrystallization of ethylene/1-octene copolymer blends during crystallization analysis fractionation and crystallization elution fractionation

机译:乙烯/ 1-辛烯共聚物共混物在结晶分析分级和结晶洗脱分级中的共结晶

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摘要

Blending of ethylene/1-octene copolymers can be used to achieve a well-controlled broad chemical composition distribution (CCD) required in several polyolefin applications. The CCD of copolymer blends can be estimated using crystallization analysis fractionation (CRYSTAF) or crystallization elution fractionation (CEF). Unfortunately, both techniques may be affected by the cocrystallization of chains with different compositions, leading to profiles that do not truly reflect the actual CCD of the polymer. Therefore, understanding how the polymer microstructure and the analytical conditions influence copolymer cocrystallization is critical for the proper interpretation of CRYSTAF and CEF curves. In this investigation, we studied the effect of chain crystallizabilities, blend compositions, and cooling rates on cocrystallization during CEF and CRYSTAF analysis. Cocrystallization is more prevalent when the copolymer blend has components with similar crystallizabilities, one of the components is present in much higher amount, and fast cooling rates are used. CEF was found to provide better CCD estimates than CRYSTAF in a much shorter analysis time.
机译:乙烯/ 1-辛烯共聚物的共混可用于实现几种聚烯烃应用中所需的良好控制的宽化学组成分布(CCD)。可以使用结晶分析分级分离(CRYSTAF)或结晶洗脱分级分离(CEF)估算共聚物共混物的CCD。不幸的是,两种技术都可能受到具有不同组成的链的共结晶的影响,从而导致其轮廓不能真正反映出聚合物的实际CCD。因此,了解聚合物的微观结构和分析条件如何影响共聚物的共结晶对于正确解释CRYSTAF和CEF曲线至关重要。在这项研究中,我们研究了CEF和CRYSTAF分析过程中链结晶性,共混物组成和冷却速率对共结晶的影响。当共聚物共混物具有可结晶性相似的组分时,共结晶更为普遍,其中一种组分的含量高得多,并且使用了快速冷却速率。发现CEF在短得多的分析时间内比CRYSTAF提供更好的CCD估计。

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