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2D COMPOSITE MODELS OF MODULAR TANGENTIAL COUNTER-ROTATING TWIN SCREW EXTRUDERS

机译:模切对角旋转双螺杆挤出机的二维复合模型

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摘要

A new 2D composite model with hybrid FEM/FDM formulation was developed for simulating the fully filled and starved regions with the associated pressure profiles of a modular tangential counter-rotating twin screw extruder. 1D composite models combine the screw characteristic curve of individual element to analysis flow of an entire modular screw and the flow fields of the whole domain are not calculated again. Based on the linear relationship of the drag flow rate and the screw rotation speed under the single screw extrusion theory, the new mesh with artificial screw rotation speed boundary conditions was used to simulate the entire flow fields for the counter-rotating twin screw extrusion process in our 2D composite models. To demonstrate applicability, the predictions of individual screw elements via hybrid FEM/FDM agree well with Nichols's experimental studies. The pressure and filling factor profiles in a modular LSM34-34 extruder provided by 2D composite models show good agreements with those of 1D composite models.
机译:开发了一种新的具有混合FEM / FDM配方的2D复合模型,以模拟模块化切向反向双螺杆挤出机的相关压力曲线来模拟完全填充和饥饿的区域。一维复合模型结合了单个元件的螺杆特性曲线来分析整个模块化螺杆的流量,并且不再计算整个域的流场。在单螺杆挤出理论下,根据阻力流量与螺杆转速的线性关系,采用具有人工螺杆转速边界条件的新型网格来模拟反向旋转双螺杆挤出过程的全部流场。我们的2D复合模型。为了证明其适用性,通过混合FEM / FDM对单个螺杆元件的预测与Nichols的实验研究非常吻合。由2D复合模型提供的模块化LSM34-34挤出机中的压力和填充系数曲线与1D复合模型显示出良好的一致性。

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