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The effect of gas assisted length on polymer melt extrusion based on the gas-assisted extrusion technique

机译:基于气体辅助挤出技术的气体辅助长度对聚合物熔融挤出的影响

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In this study, the gas-assisted technique was used into the process of polymer melt extrusion to overcome the extrudate swell problem. The gas length is an important factors in the gas-assisted extrusion technique. To ascertain the mechanism of the gas-assisted extrusion technique, and to determine the optimal gas length, the effect of gas length on the extrudate swell ratio of melt was numerically investigated. In finite element numerical simulation, PTT constitutive model and full slip boundary condition were used to achieve the gas-assisted mode. Compared with the traditional no gas-assisted extrusion, numerical results showed that the extrudate swell problem was well eliminated by the gas-assisted method. Moreover, the extrudate swell of melt decreased with the increasing of the gas length because the pressure and shear stress of melt were greatly decreased. Moreover, the flow velocity of melt is uniform at the die outlet.
机译:在该研究中,将气体辅助技术用于聚合物熔体挤出方法中以克服挤出物的膨胀问题。气体长度是气体辅助挤出技术的重要因素。为了确定气体辅助挤出技术的机理,并确定最佳气体长度,在数值上研究了气体长度对挤出物溶胀比的影响。在有限元数值模拟中,使用PTT本构模型和全滑移边界条件来实现气体辅助模式。与传统的没有气体辅助挤出相比,数值结果表明,挤出物膨胀问题很好地消除了气体辅助方法。此外,由于气体长度的增加,熔体溶胀的熔体膨胀降低,因为熔体的压力和剪切应力大大降低。此外,熔体的流速在模具出口处是均匀的。

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