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Preparation and Characterization of the Injection Molded Polymer Composites Based on Natural/Synthetic Fiber Reinforcement

机译:基于天然/合成纤维增强的注塑成型聚合物复合材料的制备与表征

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Hybrid composites prepared for the purpose of this research were manufactured with the use of injection molding technique, the utilization of one step processing methodology was the main subject of the presented work. Matrix polymer used for this study was high density polyethylene, obtained from the recycling process of rotational molded parts. The mixture of natural and synthetic fibers was applied as the composite reinforcement. The natural fibers in the form of wood flour was obtained from the conifer tree wastes, while two types of bicomponent fibers were used as a second type of reinforcement. First type of synthetic fibers was made from polyolefin based polymers, and consist HDPE and PP resin, second one was produced from thermoplastic polyesters LPET and PET. The composites were obtained during one step melt processing on the injection molding machine. In order to evaluate the reinforcing efficiency and the overall performance of the developed composites, static and dynamic mechanical properties of the prepared samples were examined. Analytical thermal analysis tests were performed with the use of DSC and DMTA method, while the structure of the composites was investigated using SEM methodology. The results of the research confirm the reinforcing effect of the used hybrid system, which considering the waste nature of the used materials, may be one of the effective methods of waste management in the textile industry.
机译:为该研究的目的制备的混合复合材料是利用注射成型技术制造的,利用一步处理方法是所呈现的主要主题。用于该研究的基质聚合物是高密度聚乙烯,从旋转模塑部件的再循环过程中获得。将天然和合成纤维的混合物作为复合增强件施用。从针叶树粉废物中获得木粉形式的天然纤维,而两种类型的双组分纤维用作第二种增强。首批由聚烯烃基聚合物制成的合成纤维,并由HDPE和PP树脂组成,第二个由热塑性聚酯LPET和PET制成。在注塑机上的一步熔融加工期间获得复合材料。为了评估增强效率和发育复合材料的总体性能,检查制备样品的静态和动态机械性能。通过使用DSC和DMTA方法进行分析热分析试验,同时使用SEM方法研究复合材料的结构。研究结果证实了使用杂交系统的增强效果,这考虑了杂交性质,这可能是纺织业中的废物管理的有效方法之一。

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