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Numerical simulation of pressure and velocity profiles in kneading elements of a co-rotating twin screw extruder

机译:同向双螺杆挤出机捏合元件中压力和速度分布的数值模拟

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摘要

The objective of this work is to validate, via comparison with available experimental data, the results obtained from the numerical simulation of polymer melt flow in the kneading disc section of an intermeshing co-rotating twin screw extruder. A quasi-steady state 3-D solution of the conservation equations via the finite element method was obtained, and comparisons were made with experimental pressure profiles measured by McCullough and Hilton (1) on various kneading block elements. These measurements helped provide understanding of the flow patterns developed within the unit and provided a comprehensive approach of validating the numerical model. Results confirm the importance of a fully 3-D model for this type of geometry, where the model predicts the development of flow patterns in the radial directions and within the intermeshing region. The influence of inlet and outlet boundary conditions was studied and it was determined that they play an important role in the physical significance of the model solution. Comparisons of the simulation results with experimental data by McCullough and Hilton (1) for two different configurations of kneading discs showed good agreement, with some differences in the peaks of pressure produced at the narrow clearances encountered in intermeshing co-rotating twin screw extruders. Differences between simulation and experiments are attributed to a number of factors. It is difficult to measure the very steep pressure gradients generated over small lengths. The assumptions of isothermal flow and quasi-steady state may cause an over-prediction of the pressure peaks. Simulation results describe the general trends and produce good quantitative agreement in most of the kneading disc region. [References: 23]
机译:这项工作的目的是通过与可用的实验数据进行比较,来验证从相互啮合的同向旋转双螺杆挤出机捏合盘部分中的聚合物熔体流动的数值模拟获得的结果。通过有限元方法获得了守恒方程的准稳态3-D解,并与McCullough和Hilton(1)在各种捏合块单元上测得的实验压力曲线进行了比较。这些测量有助于了解设备内部形成的流动模式,并提供了一种验证数值模型的综合方法。结果证实了完整的3D模型对于这种类型的几何形状的重要性,其中该模型可预测径向方向和相互啮合区域内流动模式的发展。研究了入口和出口边界条件的影响,并确定它们在模型解决方案的物理意义中起着重要作用。两种不同配置的捏合盘的模拟结果与McCullough和Hilton(1)的实验数据的比较显示出很好的一致性,在相互啮合的同向旋转双螺杆挤出机遇到的狭窄间隙处产生的压力峰值存在一些差异。模拟和实验之间的差异归因于许多因素。很难测量在很小的长度上产生的非常陡峭的压力梯度。等温流动和准稳态的假设可能会导致压力峰值的过高预测。模拟结果描述了总体趋势,并在大多数捏合盘区域产生了良好的定量一致性。 [参考:23]

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