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3D Extrusion Simulation of the Single Screw Head and Optimization Design

机译:单螺杆头的3D挤出模拟及优化设计

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摘要

In the chemical industry,various screw extruders are widely used for melting,dispersing and homogenizing polymers.Compared with twin-screw extruders and tri-screw extruders,the single-screw extruder are of more prevalent use with its more durable structure,easier to be constantly maintained,lower prices and simpler operation.In particular,it is worth noting that the single screw head has a significant impact on extrusion characteristics.The problem of extrusion of polymers involves aspects of fluid dynamics and rheology,leading to the difficulty to calculate the velocity field and pressure field theoretically.In this paper,the numerical simulation method is adopted to account for 3D non-Newtonian polymer extrusion process of single screw head.Then,the screw head is optimized,thus leveling down the velocity nonuniformity at outlet in order to meet design requirements.
机译:在化学工业中,各种螺杆挤出机被广泛用于熔融,分散和均化聚合物。与双螺杆挤出机和三螺杆挤出机相比,单螺杆挤出机由于其更耐用的结构而更加流行,更易于使用。不断维护,降低价格和简化操作。尤其值得注意的是,单螺杆头对挤出性能有重大影响。聚合物的挤出问题涉及流体动力学和流变学方面,导致计算困难。本文采用数值模拟的方法对单螺杆头的3D非牛顿聚合物挤出工艺进行了说明,然后对螺杆头进行了优化,从而降低了出口处的速度不均匀度满足设计要求。

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