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A Network-Theory-Based Comparative Study of Melt-Conveying Models in Single-Screw Extrusion: A. Isothermal Flow

机译:基于网络理论的单螺杆挤出熔体输送模型比较研究:A.等温流动

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摘要

In many extrusion processes, the metering section is the rate-controlling part of the screw. In this functional zone, the polymer melt is pressurized and readied to be pumped through the die. We have recently proposed a set of heuristic models for predicting the flow behavior of power-law fluids in two- and three-dimensional metering channels. These novel theories remove the need for numerical simulations and can be implemented easily in practice. Here we present a comparative study designed to validate these new methods against experimental data. Extensive experiments were performed on a well-instrumented laboratory single-screw extruder, using various materials, screw designs, and processing conditions. A network-theory-based simulation routine was written in MATLAB to replicate the flow in the metering zones in silico. The predictions of the three-dimensional heuristic melt-conveying model for the axial pressure profile along the screw are in excellent agreement with the experimental extrusion data. To demonstrate the usefulness of the novel melt-flow theories, we additionally compared the models to a modified Newtonian pumping model known from the literature.
机译:在许多挤出过程中,计量部分是螺杆的速率控制部分。在此功能区中,聚合物熔体被加压并准备好泵送通过模头。我们最近提出了一组启发式模型,用于预测二维和三维计量通道中幂律流体的流动行为。这些新颖的理论消除了对数值模拟的需求,并且可以在实践中轻松实现。在这里,我们提出了一项比较研究,旨在针对实验数据验证这些新方法。使用各种材料,螺杆设计和加工条件,在仪器完善的实验室单螺杆挤出机上进行了广泛的实验。在MATLAB中编写了基于网络理论的仿真例程,以在计算机中复制计量区域中的流量。沿螺杆的轴向压力分布的三维启发式熔体传输模型的预测与实验挤出数据非常吻合。为了证明新颖的熔体流动理论的有用性,我们还将该模型与文献中已知的改进的牛顿泵模型进行了比较。

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