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Injection Molding of Beverage Container Caps Made of a Composite Consisting of Wood Cellulose Fiber and an Ethylene-Acrylic Acid Copolymer

机译:由木质纤维素纤维和乙烯-丙烯酸共聚物组成的饮料容器盖的注塑成型

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The influence of processing parameters on injection-molded bottle caps Consisting of 20 wt% of cellulose fibers and an ethylene-acrylic acid copolymer was studied. The study included three cylinder barrel temperatures and three mold temperatures. For each combination of temperatures, the holding pressure time was varied and the mold sealing time was determined. High density polyethylene caps were also produced as reference material, and injection-molded tensile test bars were also produced in order to assess the tensile mechanical properties. The results showed no major differences in sealing time for the caps containing cellulose fibers, except for the highest melt and mold temperatures where a slightly longer time was observed. The viscosity of the composite material was higher than that of the polymeric matrix. For the highest temperature and high shear rates, the viscosity of the composite material was close to the viscosity of the matrix material. The moisture content of the injection-molded bars was less than 1 %, showing that almost no water was absorbed during the compounding or after several months. The crystallinity decreased when the fibers were included but was not influenced by the mold temperature. Enhanced mechanical properties were obtained by using the fibers compared to the pure ethylene-acrylic acid copolymer, both in the tensile test bars and in the caps. The reference high density polyethylene had, however, a higher mechanical performance than the composite.
机译:研究了工艺参数对注塑瓶盖的影响,该瓶盖由20 wt%的纤维素纤维和乙烯-丙烯酸共聚物组成。该研究包括三个气缸筒温度和三个模具温度。对于每种温度组合,改变保压时间并确定模具密封时间。还生产了高密度聚乙烯瓶盖作为参考材料,还生产了注塑拉伸测试棒,以评估拉伸机械性能。结果显示,对于含纤维素纤维的瓶盖,密封时间没有重大差异,除了最高熔融温度和模具温度外,观察到的时间略长。复合材料的粘度高于聚合物基体的粘度。对于最高温度和高剪切速率,复合材料的粘度接近于基质材料的粘度。注塑棒的水分含量小于1%,表明在混合期间或几个月后几乎没有水被吸收。当包含纤维时,结晶度降低,但不受模具温度的影响。通过使用与纯乙烯-丙烯酸共聚物相比的纤维,在拉伸测试棒和盖中均获得了增强的机械性能。然而,参考高密度聚乙烯具有比复合材料更高的机械性能。

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