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首页> 外文期刊>Journal of Applied Polymer Science >Ultrasonic improvement of rheological behavior of polystyrene
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Ultrasonic improvement of rheological behavior of polystyrene

机译:超声改善聚苯乙烯的流变行为

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The effects of ultrasonic oscillation on die pressure, productivity of extrusion, melt viscosity, and melt oscillating flow of polystyrene (PS) as well as their mechanism were studied in a special ultrasonic oscillations extrusion system developed in our lab. The experimental results show that in the presence of ultrasonic oscillations, the PS melt oscillating flow or surface distortion of PS extrudate is inhibited or disappears. The surface appearance of PS extrudate gets greatly improved. The die pressure, melt viscosity, flow activation energy, and consistency efficiency of PS decreased and the productivity of PS extrudate increased in the presence of ultrasonic oscillation. The shear sensitivity of PS melt viscosity is decreased because of the increase of its power law index in the presence of ultrasonic oscillation. Introduction of ultrasonic oscillation into PS melt can greatly improve the processibility of PS. Their possible mechanism is also proposed in this article. (C) 2002 Wiley Periodicals, Inc. [References: 27]
机译:在我们实验室开发的一种特殊的超声振荡挤出系统中,研究了超声振荡对模具压力,挤出生产率,熔体粘度和聚苯乙烯(PS)熔体振荡流动的影响及其机理。实验结果表明,在存在超声振荡的情况下,PS熔体的振荡流动或PS挤出物的表面变形被抑制或消失。 PS挤出物的表面外观得到极大改善。在超声振荡的情况下,模头压力,熔体粘度,流动活化能和PS的稠度效率降低,PS挤出物的生产率提高。 PS熔体粘度的剪切敏感性降低,这是由于在超声振荡的情况下其幂律指数的增加。将超声振荡引入PS熔体中可以大大提高PS的可加工性。本文还提出了它们的可能机制。 (C)2002 Wiley Periodicals,Inc. [参考:27]

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