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A physico-mathematical model for the dispersion process in a co-rotating intermeshing twin screw extruder

机译:用于共旋转啮合双螺杆挤出机中的分散过程的物理学模型

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To modify the properties of polymers, mineral fillers are frequently added during the compounding process. Due to adhesive forces, these pulverized fillers tend to agglomerate. Therefore, in order to achieve a good homogenisation, it is essential not only to distribute them but also to break down the solid agglomerates. A number of relating models have been published, describing observations (agglomerate rupture, erosion, clustering) made during the dispersion process in a mostly isolated manner. Here, a new model considering each observed effect have been developed in order to get a comprehensive descripton of the dispersion process. To verify the model, it was implemented into a program for the process simulation of co-rotating twin screw extruders (SIGMA [1]), and thus compared to experimental data. It showed that the model could well describe the experimentally determined data.
机译:为了改变聚合物的性质,在复合过程中经常加入矿物填料。由于粘合力,这些粉碎的填料倾向于附聚。因此,为了达到良好的均匀化,不仅要分发它们,还必须分解固体附聚物。已经公布了许多相关模型,描述了在分散过程中以大多数分离的方式进行的观察结果(附聚裂化,侵蚀,聚类)。这里,考虑每个观察到每个观察到的效果的新模型是为了获得分散过程的全面描述。为了验证该模型,它被实现为用于共旋转双螺杆挤出机的过程模拟的程序(Sigma [1]),从而与实验数据相比。它表明,该模型可以很好地描述实验确定的数据。

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