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首页> 外文期刊>Journal of Applied Polymer Science >Quantitative estimation of the extent of compatibilization in heterogeneous polymer blends using their heat capacity increment at the glass transition
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Quantitative estimation of the extent of compatibilization in heterogeneous polymer blends using their heat capacity increment at the glass transition

机译:使用玻璃化转变时的热容增量,定量评估非均相聚合物共混物的相容化程度

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摘要

In this paper a new method based on the determination of heat capacity increment at the glass transition (ΔCp) is presented to quantify the effectiveness of compatibilizers for immiscible polymer blends. In order to show the validity of the method, two immiscible blends, polypropylene-poly(ethylene terephthalate) (PP-PET) and PP-polyamide-6,6 (PP-PA66), and two compatibilizers, N, N-dihydroxyethyl monomaleic amide-grafted PP (g-PP) alone and together with a phenolic resin (PR), were investigated. Scanning electron microscopy (SEM) observations prove that the two compatibilizer systems are both effective for compatibilizing the blends, and the combined use of g-PP and PR is more effective than g-PP alone. Modulated-temperature differential-scanning calorimetry (M-TDSC) determinations reveal that the ΔCp varies with the extent of compatibilization. For the uncompatibilized blends, the ΔCp for the PET component in PP-PET or for the PA66 component in PP-PA66 was found to be almost unchanged. After compatibilization these quantities become smaller. Also, the combined use of g-PP and PR results in the smallest ΔCp values for both blends. This ΔCp change with different compatibilizers is in very good agreement with the corresponding morphological variation observed by SEM. Thus, ΔCp can be taken as a new parameter for quantifying the extent of compatibilization, since it is a direct measure of interfacial content.
机译:在本文中,提出了一种基于确定玻璃化转变时的热容增量(ΔCp)的新方法,以量化相容剂对不混溶聚合物共混物的有效性。为了证明该方法的有效性,两种不混溶的共混物,聚丙烯-聚对苯二甲酸乙二酯(PP-PET)和PP-聚酰胺-6,6(PP-PA66),以及两种增容剂N,N-二羟乙基单马来酸单独研究了酰胺接枝的聚丙烯(g-PP),并与酚醛树脂(PR)一起进行了研究。扫描电子显微镜(SEM)观察证明,两种增容剂体系均能有效地使混合物相容,并且g-PP和PR的组合使用比单独使用g-PP更有效。调制温度差示扫描量热法(M-TDSC)的测定表明,ΔCp随相容性程度而变化。对于不相容的混合物,发现PP-PET中的PET组分或PP-PA66中的PA66组分的ΔCp几乎没有变化。相容后,这些数量变小。同样,g-PP和PR的组合使用可使两种混合物的ΔCp值最小。不同增容剂的ΔCp变化与SEM观察到的相应形态变化非常吻合。因此,ΔCp可作为量化相容性程度的新参数,因为它是界面含量的直接量度。

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