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Extended Regression Models for Predicting the Pumping Capability and Viscous Dissipation of Two-Dimensional Flows in Single-Screw Extrusion

机译:扩展回归模型,用于预测单螺杆挤出中二维流动的泵送能力和粘性耗散

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摘要

Generally, numerical methods are required to model the non-Newtonian flow of polymer melts in single-screw extruders. Existing approximation equations for modeling the throughput–pressure relationship and viscous dissipation are limited in their scope of application, particularly when it comes to special screw designs. Maximum dimensionless throughputs of ΠV<2.0, implying minimum dimensionless pressure gradients Πp,z0.5 for low power-law exponents are captured. We present analytical approximation models for predicting the pumping capability and viscous dissipation of metering channels for an extended range of influencing parameters (Πp,z1.0, and t/Db2.4) required to model wave- and energy-transfer screws. We first rewrote the governing equations in dimensionless form, identifying three independent influencing parameters: (i) the dimensionless down-channel pressure gradient Πp,z, (ii) the power-law exponent n, and (iii) the screw-pitch ratio t/Db. We then carried out a parametric design study covering an extended range of the dimensionless influencing parameters. Based on this data set, we developed regression models for predicting the dimensionless throughput-pressure relationship and the viscous dissipation. Finally, the accuracy of all three models was proven using an independent data set for evaluation. We demonstrate that our approach provides excellent approximation. Our models allow fast, stable, and accurate prediction of both throughput-pressure behavior and viscous dissipation.
机译:通常,需要数值方法来模拟单螺杆挤出机中聚合物熔体的非牛顿流。现有的用于模拟通量-压力关系和粘性耗散的近似方程式在其应用范围内受到限制,特别是在涉及特殊的螺杆设计时。 Π V << / mo> 2.0 ,表示最小无因次压力梯度<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm2”溢出=“ scroll”> Π p z 0.5 。我们提供了解析近似模型,用于预测在较大范围的影响参数范围内计量通道的泵送能力和粘性耗散( Π p z - 1.0 < / math>和 t < / mi> / D b 2.4 )来建模波和能量传递螺钉。我们首先以无量纲形式重写控制方程,确定三个独立的影响参数:(i)无量纲下行通道压力梯度 Π p ,< / mo> z ,(ii)幂律指数 n ,并且(iii)螺钉间距比率 t / D b 。然后,我们进行了参数设计研究,涵盖了无量纲影响参数的扩展范围。基于此数据集,我们开发了回归模型来预测无量纲的吞吐压力关系和粘性耗散。最后,使用独立的数据集对所有三个模型的准确性进行了评估。我们证明了我们的方法可以提供出色的近似值。我们的模型可以对吞吐压力行为和粘性耗散进行快速,稳定和准确的预测。

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