Numerical Simulation of Solids Conveying in Grooved Feed Sections of Single Screw Extruders

吞吐量 塑料挤出 水准点(测量) 流量(数学) 计算机科学 软件 离群值 块(置换群论) 算法 机械工程 模拟 材料科学 工程类 数学 几何学 人工智能 大地测量学 程序设计语言 复合材料 无线 地理 电信
作者
Florian Brüning,Volker Schöppner
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:14 (2): 256-256 被引量:7
标识
DOI:10.3390/polym14020256
摘要

For plastic processing extruders with grooved feed sections, the design of the feed section by means of analytical calculation models can be useful to reduce experimental costs. However, these models include assumptions and simplifications that can significantly decrease the prediction accuracy of the throughput due to complex flow behavior. In this paper, the accuracy of analytical modeling for calculating the throughput in a grooved barrel extruder is verified based on a statistical design of experiments. A special focus is placed on the assumptions made in the analytics of a backpressure-independent throughput, the assumption of a block flow and the differentiation of the solids conveying into different conveying cases. Simulative throughput tests with numerical simulation software using the discrete element method, as well as experimental throughput tests, serve as a benchmark. Overall, the analytical modeling already shows a very good calculation accuracy. Nevertheless, there are some outliers that lead to larger deviations in the throughput. The model predominantly overestimates the throughputs, whereby the origin of these deviations is often in the conveying angle calculation. Therefore, a regression-based correction factor for calculating the conveying angle is developed and implemented.
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