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Development of numerical simulation methods and analysis of extrusion processes of particle-filled plastic materials subject to slip at the wall

机译:数值模拟方法的发展和颗粒易滑墙填充塑料材料的挤压过程分析

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摘要

Many particle-filled materials, such as powder/binder mixtures, are known to show slip phenomena at a solid wall. It is thus of great importance to characterize the slip phenomena for rheological data of particle-filled plastic materials and ultimately to introduce an appropriate slip modeling into the numerical simulations of the extrusion process. In order to simulate screw extrusion processes of such particle-filled materials, numerical analysis programs were developed via a finite element method and a finite difference method for quasi three-dimensional and two-dimensional flow models of extrusion processes, respectively, with the slip phenomena taken into account in terms of a slip velocity. The present paper presents detailed numerical methods to incorporate the slip velocity as a function of wall shear stress and discusses essential slip effects in the screw extrusion process using the slip-corrected and uncorrected viscosity data for both the two-dimensional flow and the quasi three-dimensional flow model. It was confirmed that the quasi three-dimensional result at the center line of the channel from the finite element analysis was in good agreement with the two-dimensional one from the finite difference analysis. Slip effects were found to be very significant on the overall flow behavior during the extrusion process from the numerical results based on viscosity data without the slip correction. These deviated from those based on the slip-corrected viscosity data, especially in analyzing the screw characteristics.
机译:已知许多颗粒填充的材料,例如粉末/粘合剂混合物,在固体壁上会显示出滑移现象。因此,至关重要的是表征颗粒填充塑料材料的流变数据的滑移现象,并最终将适当的滑移模型引入挤出过程的数值模拟中。为了模拟这种颗粒填充材料的螺杆挤压过程,通​​过有限元方法和有限差分方法分别针对具有挤压现象的挤压过程的准三维和二维流动模型,开发了数值分析程序。考虑到滑移速度。本文提出了详细的数值方法,将滑移速度作为壁面剪应力的函数,并讨论了二维流动和准三流滑移校正和未校正粘度数据在螺杆挤出过程中的基本滑移效应。尺寸流模型。通过有限元分析证实了通道中心线处的准三维结果与有限差分分析中的二维结果吻合良好。根据基于粘度数据的数值结果(未进行滑移校正),发现滑移效应对挤出过程中的总体流动行为非常重要。这些偏离了基于滑移校正的粘度数据的结果,特别是在分析螺杆特性时。

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