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Moderation of Entrance Pressure Drop and Extrudate Swelling of Wood Fiber/Polypropylene Composites Melt in Rotating-Die Extrusion Process

机译:旋转模头挤出过程中木纤维/聚丙烯复合材料熔体入口压降的降低和挤出物的溶胀

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A novel rotating-die system was proposed to moderate the elastic swelling for molten polypropylene (PP) and wood/polypropylene (WPP) composite. The results suggested that the neat PP and WPP melts followed the psuedoplastic non-Newtonian pattern. The rotation of the die could moderate the extrusion load and entrance pressure drop. The die rotation effect appeared to be very pronounced for the PP with high wood contents and high extrusion rates. The decreases in extrusion load and entrance pressure drop were related with reductions of melt viscosity due to shear heating effect. The results practically implied that use of the rotating die system could increase the productivity in the extrusion process. In terms of elastic swelling, in all cases, it was found that the swelling ratio of neat PP and WPP melt composite increased with increasing shear rate, but for any given shear rates, the addition of wood particles and the use of rotating die caused decreases in swell ratio of the melts, the wood content being more welldefined than the die rotating speed.
机译:提出了一种新颖的旋转模具系统,以调节熔融聚丙烯(PP)和木材/聚丙烯(WPP)复合材料的弹性溶胀。结果表明,纯PP和WPP熔体遵循假塑性非牛顿模式。模具的旋转可缓和挤压负荷和入口压降。对于具有高木材含量和高挤出速率的PP,模具旋转效果似乎非常明显。由于剪切加热效应,挤出载荷和入口压降的降低与熔体粘度的降低有关。结果实际上暗示使用旋转模具系统可以提高挤出过程的生产率。就弹性溶胀而言,在所有情况下,都发现纯聚丙烯和WPP熔融复合材料的溶胀率随剪切速率的增加而增加,但是对于任何给定的剪切速率,木颗粒的添加和旋转模的使用都会降低在熔体的膨胀比方面,木材含量比模头旋转速度更精确。

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