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理解聚合物挤出动力学:行星辊式挤出机热塑性塑料加工模拟

Understanding the Dynamics of Polymer Extrusion: Simulation of Thermoplastics Processing with Planetary Roller Extruders.

作者信息

Radwan Mario, Schneider Steffen, Müller Thomas Ernst, Frerich Sulamith

机构信息

Ruhr-Universität Bochum, Virtualization of Process Technology, Universitätsstr. 150, 44801 Bochum, Germany.

Ruhr-Universität Bochum, Carbon Sources and Conversion, Universitätsstr. 150, 44801 Bochum, Germany.

出版信息

Heliyon. 2024 Mar 27;10(7):e28729. doi: 10.1016/j.heliyon.2024.e28729. eCollection 2024 Apr 15.

Abstract

Resource efficient processing of polymers is of paramount importance to minimize energy consumption, processing time, and material losses in the polymer industry. This study is concerned with polymer processing in planetary roller extruders. A three-dimensional numerical flow simulation was tailored to understand the polymer flow through the extruder in detail. Using the simulation software ANSYS Polyflow, we quantified both directly measurable process parameters, such as pressure build-up, and more intangible parameters, such as material shear. By varying operational and material parameters in a sensitivity analysis, we showed that the dynamics, material stress and pressure build-up are controlled primarily by the number of spindles and their rotational speed. Notably, this work provides the first successful validation of a 3D simulation of a polymer flow in a planetary roller extruder against actual experimental data. The simulation showed robust agreement between the simulated and experimental values, provided that a critical backpressure length is reached. This computational approach minimizes labor-intensive experimental testing in polymer processing.

摘要

聚合物的资源高效加工对于最大限度地减少聚合物行业的能源消耗、加工时间和材料损失至关重要。本研究关注行星螺杆挤出机中的聚合物加工。定制了一个三维数值流动模拟,以详细了解聚合物在挤出机中的流动情况。使用模拟软件ANSYS Polyflow,我们对直接可测量的工艺参数(如压力建立)和更难以捉摸的参数(如材料剪切)进行了量化。通过在敏感性分析中改变操作和材料参数,我们表明动力学、材料应力和压力建立主要由螺杆数量及其转速控制。值得注意的是,这项工作首次成功地将行星螺杆挤出机中聚合物流动的三维模拟与实际实验数据进行了验证。模拟结果表明,只要达到临界背压长度,模拟值与实验值就会有很强的一致性。这种计算方法最大限度地减少了聚合物加工中劳动强度大的实验测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d34/11002057/2513b9fea0b3/gr1.jpg

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