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Morphology development of PC/PE blends during compounding in a twin-screw extruder

机译:双螺杆挤出机配混过程中PC / PE共混物的形态发展

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The morphological development of a polycarbonate/ polyethylene (PC/PE) blend in a twin-screw extruder was studied using a scanning electron microscope (SEM). The effects of extrusion temperature, viscosity ratio (the ratio of the viscosity of the dispersed phase to that of the matrix), and the screw configuration on the morphology of the PC/PE blend during the extrusion were discussed in detail. It was found that the morphology of the dispersed particles and the interfacial adhesion between the dispersed phase and matrix were both influenced by the extrusion temperature. The dispersed phase had a spheroidal shape and a small size during the high temperature processing, and an irregular shape and a large size when it was processed at low temperature. The PC phase with a lower viscosity was easier to disperse and also to coalesce. Therefore, the deformation of the low-viscosity dispersed phase during the processing was more intense than that of the high-viscosity dispersed phase. By comparing the effects of the different screw configurations on the morphology development of the PC/PE blend, it was found that the melting and breaking up of the dispersed phase were mainly affected in the initial blending stages by the number of the kneading blocks. While a kneading block with a 90 degree staggering angle was used, the size of the dispersed particles decreased and the long fibers were shortened, the large particles were drawn by the additional kneading zone. Finally, all of these structures were completely changed to the short fibers. (c) 2006 Society of Plastics Engineers
机译:使用扫描电子显微镜(SEM)研究了双螺杆挤出机中聚碳酸酯/聚乙烯(PC / PE)共混物的形态发展。详细讨论了挤出温度,粘度比(分散相与基体的粘度之比)和螺杆构型对挤出过程中PC / PE共混物形态的影响。发现分散颗粒的形态和分散相与基质之间的界面粘附力均受挤出温度的影响。分散相在高温处理期间具有球形形状和小尺寸,而在低温处理时具有不规则形状和大尺寸。粘度较低的PC相更易于分散和聚结。因此,在加工过程中低粘度分散相的变形比高粘度分散相的变形更强烈。通过比较不同螺杆配置对PC / PE共混物形态发展的影响,发现分散相的熔化和破裂在初始共混阶段主要受捏合块数的影响。当使用具有90度交错角的捏合块时,分散的颗粒的尺寸减小并且长纤维缩短,大的颗粒被附加的捏合区域吸引。最后,所有这些结构都完全变成了短纤维。 (c)2006年塑料工程师学会

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