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A comparison of compounding processes for wood-fiber/thermoplastic composites

机译:木纤维/热塑性复合材料复合工艺的比较

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This study was carried out to investigate the feasibility of developing a continuous compounding process for wood-fiber/thermoplastic composites using the Szego mill, a unique, high speed planetary ring-roller grinding mill. Prior to compounding, air-dried sawdust was ground to evaluate the grinding effect in the mill. As the feed rate and the mill speed increased, the particle size increased and decreased, respectively. Sawdust particles were successfully compounded in linear low-density polyethylene using the Szego mill without any major heat application. A Gelimat mixer, used for the compounding of wood fiber through a high-shear thermokinetic mixing process, was also employed for comparison. Composites with 30 wt% wood fiber were prepared by both compounding processes, and their mechanical properties were evaluated. The use of a compatibilizer in compounding improved the mechanical properties of the composites regardless of the compounding process. The composites prepared by Szego mill compounding showed comparable strength properties with their counterparts from the Gelimat mixer. Power consumption during mill compounding was in the range of twin-screw extruder processing.
机译:进行这项研究是为了研究使用独特的高速行星环辊磨机Szego磨机开发木纤维/热塑性复合材料连续复合工艺的可行性。在混合之前,先对风干的木屑进行研磨,以评估研磨机中的研磨效果。随着进料速度和研磨速度的增加,粒径分别增加和减小。使用Szego磨机将木屑颗粒成功地混入线性低密度聚乙烯中,而无需施加任何大的热量。比较中还使用了Gelimat混合器,该混合器用于通过高剪切热动力学混合过程来混合木纤维。通过两种复合方法均制备了具有30 wt%木纤维的复合材料,并评估了其机械性能。相容剂在复合中的使用改善了复合材料的机械性能,而与复合过程无关。通过Szego研磨混合制备的复合材料显示出与Gelimat混合机对应的强度性能相当的性能。混炼过程中的功率消耗在双螺杆挤出机加工范围内。

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