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COMPATIBILIZING IMMISCIBLE BLENDS WITH BLOCK COPOLYMERS AND PULVERIZATION

机译:将不相容的共混物与嵌段共聚物和粉化剂相容

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摘要

While addition of block copolymer during melt mixing of immiscible polymer blends has yielded compatibilization in small-scale academic studies, it has not been commercially successful due to thermodynamic and kinetic limitations. We show that addition of a commercially available styrene/ethylene-butylene/styrene triblock copolymer to an immiscible polystyrene-polyethylene blend during solid-state shear pulverization (SSSP) can substantially reduce coarsening in subsequent melt processing. In comparison with blends made by melt mixing, blends mixed by SSSP led to coarsening of the dispersed phase during high temperature annealing that was reduced by more than an order of magnitude. We believe that mixing block copolymer with the blend by SSSP yields greater levels of block copolymer near the interfacial regions as compared to melt processing. By overcoming the thermodynamic limitation of block copolymer micelle formation during melt processing, block copolymer addition via SSSP offers a commercially viable strategy for blend compatibilization.
机译:尽管在不混溶的聚合物共混物的熔融混合过程中添加嵌段共聚物已在小规模的学术研究中取得了兼容性,但由于热力学和动力学的限制,在商业上还没有成功。我们表明,在固态剪切粉碎(SSSP)过程中,向不混溶的聚苯乙烯-聚乙烯共混物中添加可商购的苯乙烯/乙烯-丁烯/苯乙烯三嵌段共聚物可以大大减少随后的熔融加工中的粗化。与通过熔融混合制得的共混物相比,通过SSSP混合的共混物导致高温退火期间分散相的粗化,其降低了一个数量级以上。我们相信,与熔体加工相比,通过SSSP将嵌段共聚物与共混物混合会在界面区域附近产生更高含量的嵌段共聚物。通过克服熔融加工过程中嵌段共聚物胶束形成的热力学限制,通过SSSP添加嵌段共聚物为共混增容提供了一种商业可行的策略。

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