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Melt Compounding of Various Polymers With Organoclay by Shear Flow

机译:通过剪切流将有机聚合物与有机粘土熔融共混

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We studied melt compounding of polymer/organoclay composites by shear flow in a rotating cylindrical mixer to investigate an effect of shear stress on the dispersion state of clay. The commercial organoclay, which is intercalated by dimethyl benzyl stearyl ammonium ion between clay platelets, and four kinds of commercial polymer (polystyrene (PS), poly(lactic acid) (PLA), poly-amide(PA6), and poly(butylene succinate) (PBS)) were used in this study. According to the TEM photographs, there is exfoliated clay in PA6/organoclay composite, but the exfoliated clay cannot be seen in other polymer/organoclay composites. We calculated the value of clay dispersion from the low magnification TEM photograph, called the dispersion coefficient to consider the micro level dispersion of the clay in a polymer matrix. Generally, the dispersion coefficient increases with shear stress. However, the dispersion coefficients in case using PA6 and PBS as the matrix, whose melts have low viscosity, are larger than those in case using PS and PLA, whose melts have high viscosity. According to XRD results, d_(001) peak originated from organoclay mostly shifted to the low value of angle for PA6/ organoclay composite and began shifting to the low value of angle for PBS/organoclay composite. However, there is a peak for PS and PLA based organoclay composites. From the cases of PA6 and PBS in the DMA results, the storage modulus increases with an addition of organoclay. These results imply that low viscosity polymer is typical easy to get the composites with intercalated clay by melt compounding.
机译:我们在旋转的圆柱形混合器中通过剪切流研究了聚合物/有机粘土复合材料的熔融复合,以研究剪切应力对粘土分散状态的影响。商用有机粘土,在粘土薄片之间插入了二甲基苄基硬脂基铵离子和四种商用聚合物(聚苯乙烯(PS),聚乳酸(PLA),聚酰胺(PA6)和聚丁二酸丁二酯) )(PBS))用于这项研究。根据TEM照片,PA6 /有机粘土复合材料中存在片状粘土,但在其他聚合物/有机粘土复合物中则看不到片状粘土。我们从低倍TEM照片中计算了粘土的分散值(称为分散系数),以考虑粘土在聚合物基质中的微级分散。通常,色散系数随着剪切应力而增加。但是,使用PA6和PBS作为熔体粘度低的基质时的分散系数大于使用PS和PLA的熔体粘度高的情况下的分散系数。根据XRD结果,源自有机粘土的d_(001)峰大部分移至PA6 /有机粘土复合材料的低角度值,而开始移至PBS /有机粘土复合材料的低角度值。然而,基于PS和PLA的有机粘土复合材料存在一个峰值。从DMA结果中PA6和PBS的情况来看,储能模量随着有机粘土的添加而增加。这些结果表明,低粘度聚合物是典型的易于通过熔融混合而获得的具有插层粘土的复合材料。

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