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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Analytical Model for the Throughput and Drive Power Calculation in the Melting Section of Single Screw Plasticizing Units considering Wall-Slippage
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Analytical Model for the Throughput and Drive Power Calculation in the Melting Section of Single Screw Plasticizing Units considering Wall-Slippage

机译:考虑壁面滑移的单螺杆塑化机组熔融段通过量和驱动功率计算分析模型

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In single-screw extrusion the simulation of the plasticizing process by means of software tools becomes more and more important. These programs need mathematical models that have to be improved continuously to simulate the process values realistically. A two-part article presents an analytical approach to calculate the pressure/throughput and drive power behaviour of wall-slipping polymers in the melting section of single-screw plasticizing units. The investigations that are conducted are based on the notion commonly found in the literature of a melt film forming between the barrel and a compact solid bed, with the simultaneous development of a melt pool. As boundary condition for describing the wall slippage, a critical shear stress, as of which a slippage process commences, and also a slippage-velocity-dependent shear stress is assumed. In this first part of the publication, the investigations focus on the processes that take place in the melt film. A new model is developed for describing the process behaviour in this area.
机译:在单螺杆挤出中,借助软件工具进行增塑过程的模拟变得越来越重要。这些程序需要数学模型,必须对其进行连续改进以真实地模拟过程值。由两部分组成的文章介绍了一种分析方法,用于计算单螺杆塑化单元熔融段中滑爽聚合物的压力/通量和驱动功率行为。进行的研究基于在文献中通常发现的观念,即在机筒和紧凑的固态床之间形成熔膜,同时形成熔池。作为描述壁滑移的边界条件,假定临界剪应力,从该临界剪应力开始滑移过程,并且还假设了与滑移速度有关的剪应力。在出版物的第一部分中,研究重点是在熔膜中发生的过程。开发了一个用于描述该区域过程行为的新模型。

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