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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Reactively formed block and graft copolymers as compatibilizers for polyamide 66/PS blends
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Reactively formed block and graft copolymers as compatibilizers for polyamide 66/PS blends

机译:反应性形成的嵌段和接枝共聚物,可作为聚酰胺66 / PS共混物的增容剂

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Pathalic anhydride terminated polystyrene (PS-An) and styrene-maleic anhydride copolymer (SMA) were compared as a compatibilizer at low loadings (<10 wt%) in 70/30 polyamide 66 (PA66)/polystyrene (PS) blends.Compatibilization efficiency was judged by morphology of the blends and the extent of interfacial coupling to copolymer.Fluorescent labels of functional PS's (anthracene and pyrene for PS-An and SMA,respectively) allowed the detection of small amounts of reactively formed block (PA66-b-PS) or graft copolymer (SMA-g-PA66) in the blends via gel permeation chromatography with a fluorescence detector.Extremely fast reactions giving >60% conversion in 0.5 min mixing were observed regardless of the molecular weight,the structure,and the amount of the functional PS's.Interfacial stability of the reactively formed copolymers was estimated by micelle formation in the bulk phases and hte interfacial coverage,SIGMA.PS-An with higher molecular weight (37 kg/mol) was most effective as a compatibilizer at the interface,showing less tendency to form microemulsions by suppressing interfacial roughening.However,a large portion of PA66-b-PS from low molecular weight PS-An (10 kg/mol) and SMA-g-PA66 from random functional SMA (16 kg/mol) migrated to the bulk phase to form micelles even at <2 wt% loadings.Blends of PA66 with syndiotactic PS compatibilized with PS-An gave very similar morphology to the PA66/PS blends indicating that these conclusions apply also to PA66/sPS blends.
机译:在70/30聚酰胺66(PA66)/聚苯乙烯(PS)混合物中以低负载量(<10 wt%)作为增容剂,比较了以Pathalic酸酐封端的聚苯乙烯(PS-An)和苯乙烯-马来酸酐共聚物(SMA)。通过共混物的形态和与共聚物的界面偶联程度来判断。功能性PS的荧光标记(分别为PS-An和SMA的蒽和pyr)可以检测到少量反应形成的嵌段(PA66-b-PS )或接枝共聚物(SMA-g-PA66)通过凝胶渗透色谱和荧光检测器在混合物中共混。无论分子量,结构和用量如何,在0.5分钟的混合中观察到极快的反应均可实现> 60%的转化率通过本体相中的胶束形成和界面覆盖率来评估反应形成的共聚物的界面稳定性,SIGMA。具有较高分子量(37 kg / mol)的PS-An最有效。界面处的增塑剂,通过抑制界面粗糙化显示出形成微乳状液的趋势较小。但是,很大一部分来自低分子量PS-An(10 kg / mol)的PA66-b-PS和来自随机功能SMA的SMA-g-PA66 (16 kg / mol)甚至在<2 wt%的负载下也迁移到本体相形成胶束。间规PS与PS-An相容的共混物PA66的形态与PA66 / PS共混物非常相似,表明这些结论也适用于PA66 / sPS共混物。

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