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PRESSURE/FLOW PERFORMANCE OF VISCOELASTIC POLYMERIC MELTS INCYLINDRICAL CHANNELS

机译:粘弹性聚合物熔融圆柱形通道的压力/流动性能

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One of the most widespread practical methods of polymer processing is the extrusion method that is based on pressing a polymeric melt through channels of the molding tool which have different geometrical cross-sections. The basic performance of extrusion is based on the pressure/flow performance which sets functional correlation between volumetric flow rate of a polymer medium, pressed through a molding tool, and created pressure drop. Arguments of this correlation are the rheological parameters of polymer and the geometrical characteristics of the channel in which the polymeric melt flows. In this paper a viscoelastic model with a corrected strain energy function is implemented. The comparison of revealed theoretical expression in this paper with the experimental data for flow of polymeric melts in cylindrical channels with various cross-sections demonstrates a good convergence over a wide range of pressure.
机译:聚合物加工的最普遍的实用方法之一是挤出方法,该方法基于将聚合物熔体压过具有不同几何横截面的模塑工具的通道。挤出的基本性能基于压力/流动性能,该压力/流动性能设定了聚合物介质的体积流量,通过成型工具压制的压力和产生的压降之间的功能相关性。这种相关性的争论是聚合物的流变参数和聚合物熔体在其中流动的通道的几何特征。在本文中,实现了具有校正后的应变能函数的粘弹性模型。本文揭示的理论表达式与具有各种横截面的圆柱状通道中聚合物熔体流动的实验数据的比较表明,在很大的压力范围内都具有良好的收敛性。

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